Adret Company Profile

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2 Adret Company Profile During 1991, a small company, Electronic Repairs & Manufacture was founded with its main aim to provide a service to the Electrical Test industry as a service and repairs company for the then Ferret and Biccotest range of Cable Fault Location instruments. ERM soon started to do repairs and service work to other brands of test equipment. We realized that there was a great need in the industry for a company that could supply a good, reliable and economic service to all players in the industry. During 1993, when South Africa started going through a series of political changes, the value of our currency depreciated so much that it became very difficult for consumers to buy imported test equipment. We decided that the time was right to start developing our own range of equipment and the original ERM then became Southern Africa Fault Location. We started by developing our very first ground microphone system, which saw the light during Our range grew to as many as thirty different products, ranging from Ground Microphone systems to Surge Generators and Pre-Location Scopes. During 2004 we were awarded our ISO9001 certification and is still maintaining this to date. We produce around 95% of the building blocks for our equipment in-house within our Alberton factory. We founded new companies and merged with other industry players to form the Adret Group of companies during The Adret Group of Companies consist of Southern Africa Fault Location (development and production of new test equipment), Cables For Africa (cable fault location and diagnostic testing), Surge Gen Technologies (service and repairs) and Indlovu Enterprises (sales and marketing for the group). We have built the company over the past 21 years and has and has earned a reputation in the industry as the company that delivers the very best service. We are available 24/7 to our customers. Over the past years our export market has steadily grown and today we export test equipment to Australia, UK, USA, Malaysia, Singapore, Saudi Arabia, Hong Kong and many others. Adret Test Equipment is uniquely positioned in South Africa as the only manufacturer of such equipment in the Southern Hemisphere. Our location in the SADC region offers a lot of scope in the development op the African continent. 2

3 Adret Test Equipment Southern Africa Fault Location manufactures a large range of Power Cable Fault Location and Proof Test Equipment. sales@adret.co.za Indlovu Enterprises Indlovu Enterprises are the Sales and Marketing arm of the Adret Group of Companies. We supply all items in this booklet and many more. All sales related queries will be handled as soon as possible. sales@undlovu.co.za Cables For Africa Cables For Africa is the service arm of the Adret Group of Companies. We provide services such as Cable Fault Location, Proof Testing and Diagnostic Testing. service@cfa.co.za Surge Gen Technologies Surge Gen Technologies is the support arm for the Adret Group of Companies. We provide repairs, service and calibration work to Adret and all other brands of Cable Fault Location and test equipment. repairs@sgen.co.za 3

4 Overview Power Cable Fault Location Equipment Southern Africa Fault Location produces test equipment for the Power Cable Fault Location industry. We also produce a range of High Voltage Proof Test Instruments and various safety devices for the Cable Test Industry Surge Generators 13 Surge Generators are produced in a range from 5kV to 32kV with discharge energy ranging from 500 Joules to 3500 Joules. Combination Systems are available that enables the user to Pre-Locate high resistance faults. Ground Microphone Systems 21 Ground Microphone Systems are available in a basic analogue and a high end digital range. In the higher end systems selectable filters and time of flight measurements are standard features. Fault Pre-Location Scopes 23 Fault Pre-Location scopes are used to pre determine the distance to a fault. It analyses the impedance of the cable using TDR technology. To pre-locate high resistance fault, the unit is connected to the HT pulse, which temporarily lowers the fault resistance. Cable Sheath Fault Location 26 Sheath Fault Locators are used to determine the integrity of cable sheaths. The Pool of Potential method is used to Pin-Point where tiny holes are present in the cable sheath. Cable Fault Conditioning Unit 29 Sometimes it might be necessary to reduce the resistance of certain cable faults to facilitate better Fault Pre-Location results. 4

5 Overview Mining Cable Fault Location Equipment Southern Africa Fault Location produces test equipment for the Mining Power Cable Fault Location industry. Our Partial Break Test instruments will locate a partial break in a cable core as low as 5% of total copper core. Surge Generators 30 Surge Generators are produced in a range from 5KV to 32KV with discharge energy ranging from 500 Joules to 3500 Joules. Combintion Systems are available that enables the user to Pre-Locate high resistance faults. Partial Break Systems 31 Cable Route Tracers A DC Current is passed through the cable core under test. The cable can be tapped with a small hammer or some mechanical beater to produce small mechanical shock waves through the cable. As the impedance changes at the fault, a small AC signal is produced. This signal is conditioned and amplified to an audible level. Cable route tracers are required when buried cables need to be traced. Our systems can trace Live cables, which has electrical current flowing through it or Dead cables or pipes, by inducing the necessary current into them. Depth determination is simple and accurate. Cable Locators 32 Adret Test Equipment supplies a range of Cable Route Tracing instruments. Our systems are reliable and easy to use. Depth of the traced object is displayed in a digital manner. 5

6 Overview Custom Made Test Vans and Mobile Labs Due to the sensitivity of expensive test equipment it is preferred to permanently mount these units in a trailer or panel van. The equipment can thus be protected from mechanical shock. Various Cable Reel systems are available. Our systems utilize our unique magnetic brake system. Cable Reel Systems 33 The Adret range of Cable Reel Systems are produced in single reel, 3 reel of any combinations. Our Anti-Overrun system uses powerful Rare Earth magnets to prevent the reels from overrunning when unwound. Test Equipment Trolleys 37 The range is complimented with our custom made trolleys. Test Vans 38 Due to the diversity of test equipment used by our base of customers we produce a number of custom made test van layouts. Customers are not stuck with existing designs. Mobile Test Trailers 39 Some customers prefer Test Trailers when they have access problems into buildings, or when dedicated vehicles are not available. Mobile Test Laboratories 40 We are capable of retrofitting any existing test equipment of any type, with or without onboard power supplies. 6

7 Overview Proof and Diagnostic Test Instruments We produce various different models of Electrical Proof Test Equipment. AC, DC and VLF Systems are available for any voltage up to 200KV. AC Systems 41 Alternating Current Proof Testers are used to test busbars, switchgear, transformers and a large array of different objects for electrical integrity. DC Systems 42 Direct Current Proof Testers are used to test certain cable types, for example, Paper Insulated Lead Cables. It is generally used where large capacitive loads are to be tested. AC/DC Systems 43 Combination systems are produced with the Test Engineer in mind that has to perform different tests in different electrical environments. Some units simply switch between AC/DC and in some cases it is simple as fitting a diode to the circuit. VLF Systems 47 Very Low Frequency Systems are used to test special cable types, for example, XLPE, where DC Systems may damage the solid composite insulation of the cable. Tan Delta and Off-Line Partial 53 Discharge Systems Tan Delta and Partial discharge testing can be performed at VLF Frequencies. Sophisticated equipment is available to test cables before they go into service 7

8 Overview Bucket Liner Testers High Voltage line maintenance crews need to be safely insulated from earth. Insulated Cherry Pickers use an Insulated Bucket Liner inside the bucket that need to be tested for electrical insulation integrity. We supply a range of systems custom designed to do the job. Bucket Liner Testers 54 Bucket Liners are used to test the insulation integrity of insulated Cherry Picker bucket liners. The systems can also be used to perform any other tests where voltages up to 300kV may be required. Oil Dielectric Testers Transformer and switchgear insulating oil has to be tested on a regular basis for the ingress of water and other impurities. Our range of Oil Dielectric testers are designed to test oil to a range of internationally pre-determined, pre-programmed test sequences. Oil Dielectric Testers 55 Oil Dielectric Testers are used to test the insulation properties of insulating oil. Systems of up to 100kV are available. Test Equipment Rentals Adret Test Equipment rents out test equipment for use when customers prefer to do their own testing. We have a full range of units available for extended periods. Rentals 56 Full range available for rental 8

9 Overview Inverter Mains Power Systems 57 The Adret range of inverters was developed to solve the problem of the unregulated nature of power supplied by Generators. Due to the nature and sensitivity of electronic equipment, needing a stable supply, failures can be minimized to a great extent. 9

10 Overview Safety Systems We offer a range of safety devices for the electrical test industry. Cable identification and Cable Spiking Systems are an integral part of the safe test environment. Cable Identification Systems 59 The Adret range of Cable Identification systems are designed to positively identify any chosen cable from a bundle. Cable Spiking Systems 61 The Adret Cable Spiking Gun is used to spike an identified cable to ensure there is no power present before work commences. Phasing Sticks 62 We supply a range of Phasing Sticks used to ensure there is no high voltage present before any work is done. The system can also be used to Phase cables before they are connected into ring systems. High Voltage Discharge Rods 63 Adret Manufactures a range of High Voltage Discharge Rods, used to safely discharge capacitive energy stored in cables after testing. Arc-Flash Suits 65 We supply a range of Arc-Flash suits used when electrical switching is to be safely preformed. 10

11 Overview Plymouth Tapes The Adret Group represents Plymouth Rubber Europa as the sole distributor of their High Quality Insulation tapes and associated products. Plymouth Rubber is based in Spain with development and production facilities in Spain and the United states of America. Mining Tapes 67 Due to the extreme conditions found in the mining industry, a very special type of insulation material is required to be used in this hazardous environment. Plymouth has the product for you. Electrical Tapes 68 Plymouth produces a range of electrical insulation tapes used as the basic insulation material in Power Cable Joints. Different products are available to replace different insulation materials of the cable to be repaired. Telecommunication Tapes 69 A range of telecommunication products are produced by Plymouth, providing all the needed insulation materials required by this industry. Automotive Tapes 70 The Automotive industry requires a unique line of products which can offer solutions for the difficult conditions found in motor vehicles and trucks. 11

12 Overview New Macey Electrical Connectors New Macey Africa produce a large range of Bolted couplers for mining, military, marine and defence applications. The mining plugs and sockets are produced to the highest standards and are totally resistant to water ingress. Mining Plugs and Sockets 70 New Macey Africa manufactures a range of waterproof electrical connectors, from multi-pin low voltage communications and lighting plugs to 22 kv 800 amp high voltage connectors. These are all corrosion free, robust and fully waterproof. Our objective is to supply a complete solution to a customer s problem, not just a box of components. 12

13 Power Products Surge Generator SG7505 SG7505 Surge Generators Electricity supply or distribution companies often find that buried power cables become faulty due to ageing or damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. Surge generators are used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. Surge generators are mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages selectable between 3 or 5 KV and is typically used in the location of faults in low voltage networks such as street lighting or smaller consumers. The maximum storage energy of the capacitor is 500 J at 3KV and 750 J at 5KV. All surge generators generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit has an internal automatic dump contactor which discharges both the unit and the cable under test. This is activated when the unit is turned off or when power failure occurs. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform insulation resistance tests up to the selected output levels. Specifications Supply Voltage VAC PCA Interface Built in Supply Current Output Voltage Surge energy Weight Dimensions Impulse Rate Enclosure Voltage level adjustment Meters Proof Testing 10A 3 or 5kV 500 Joules at 3kV 750 Joules at 5kV 40kg 540x315x330mm Excluding lid 6 or 20 PPM Aluminium, Electro statically powder coated Switched between 3 or 5kV 1 only voltage Indication Yes Accessories Lid Test cables Earth Lead Mains Lead Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m green/yellow 2m 3 Core 13

14 Power Products Surge Generator SG50016 SG50016 Electricity supply or distribution companies often find that buried power cables become faulty due to ageing or damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. Surge generators are used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. Surge generators are mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages ranging from 2.5 to 16kV and is typically used in the location of faults in medium voltage networks. The maximum storage energy of the capacitor is 500 J at 4,8 and 16kV. All surge generators generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit has an internal automatic dump contactor which discharges both the unit and the cable under test. This is activated when the unit is turned off or when power failure occur. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform insulation resistance tests up to the selected output levels. Surge Generator Supply Voltage Supply Current Output Voltage Surge energy Weight Dimensions Impulse Rate Enclosure Voltage level adjustment VAC 10A kV 500 at 4, 8 and 16kV 45kg 540x315x330mm Excluding lid 6 or 10 PPM Aluminium, Electro statically powder coated Switched between 2.5, 4, 5, 8, 10, 16kV Meters Proof Testing PCA Interface Accessories Lid Test cables Earth Lead Mains Lead Voltage Indication and Leakage current Indication Yes with Leakage current indication Built in Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m Green/yellow 2m 3 core 14

15 Power Products Surge Generator SG SG Surge Generators Electricity supply or distribution companies often find that buried power cables become faulty due to ageing and damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. Surge generators are used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. Surge generators are mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages adjustable from 0 to 32kV and is typically used in the location of faults in medium voltage networks. The maximum storage energy of the capacitor is 1300 J at 8,16 or 32kV. All surge generators generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit has an internal automatic dump contactor which discharges both the unit and the cable under test. This is activated when the unit is turned off or when power failure occur. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform insulation resistance tests up to the selected output levels. Surge Generator Supply Voltage VAC PCA Interface Built in Supply Current 15A Output Voltage 0-32kV Surge energy 1300 Joules at 8, 16, 32kV Weight 80kg Dimensions 540x420x400mm Excluding lid Impulse Rate 6 or 20 PPM Enclosure Aluminium, Electro statically powder coated Voltage level adjustment Continuously adjustable Meters Voltage and Current Proof Testing Yes Accessories Lid Test cables Earth Lead Mains Lead Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m green/yellow 2m 3 core 15

16 Power Products Surge Generator SG SG Surge Generators Electricity supply or distribution companies often find that buried power cables become faulty due to historic damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. Surge generators are used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. Surge generators are mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages selectable from 0 to 32kV and is typically used in the location of faults in medium voltage networks. The maximum storage energy of the capacitor is 2000 J at 8,16 or 32kV. All surge generators generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit is automatically made safe when it is turned off or when power failure occurs. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform insulation resistance tests up to the selected output levels. Specifications Supply Voltage Supply Current Output Voltage Output energy Weight Dimensions Impulse Rate Enclosure Voltage level adjustment Meters Proof Testing PCA Interface VAC 15A 0-32kV 2000 Joules Max 80kg 540x420x400mm Excluding lid 6 or 20 PPM Aluminium, Electro statically powder coated Continuously Adjustable Voltage and Current Yes Built in Accessories Lid Test cables Earth Lead Mains Lead Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m Green/Yellow 2m 3 core 16

17 Power Products Surge Generator Buffalo 5 Buffalo 5 Buffalo 5 System Electricity supply or distribution companies often find that buried power cables become faulty due to ageing or damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. The Buffalo 5 unit is used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. The Buffalo 5 unit is mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages selectable between 3 or 5 KV Buffalo Unit Supply Voltage Supply Current Output Voltage Surge energy Weight Dimensions Impulse Rate Enclosure Voltage level adjustment Meters Proof Testing PCA Interface VAC 10A 3 or 5kV 500 Joules at 3kV 750 Joules at 5kV 60kg 600x470x310mm Excluding lid 6 or 20 PPM Aluminium, Electro statically powder coated Switched between 3 or 5kV 1 only voltage Indication Yes Built in and is typically used in the location of faults in low voltage networks such as street lighting or smaller consumers. The maximum storage energy of the capacitor is 500 J at 3KV and 750 J at 5KV. All Buffalo 5 units generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit has an internal automatic dump contactor which, upon power failure or turn off, discharges both the unit and the cable under test. This is activated when the unit is turned off or when power failure occurs. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform DC insulation resistance tests up to the selected output levels. Our very successful Arc-Echo method is added to this unit and forms part of the system. Arc-Echo Interface Accessories Lid Test cables Earth Lead Mains Lead Built in Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m Green/Yellow 2m 3 core 17

18 Power Products Surge Generator Buffalo 16 Buffalo 16 Buffalo 16 System Electricity supply or distribution companies often find that buried power cables become faulty due to ageing or damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. Surge generators are used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. Surge generators are mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages selectable between KV and is typically used in the location of faults in low voltage networks such as street lighting or smaller consumers. The maximum storage energy of the capacitor is 500 J at 16kV. All surge generators generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit has an internal automatic dump contactor which discharges both the unit and the cable under test. This is activated when the unit is turned off or when power failure occurs. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform insulation resistance tests up to the selected output levels. Our very successful Arc-Echo method is added to this unit and forms part of the framework. Surge Generator Supply Voltage (optional) Supply Current Output Voltage Surge energy Weight Dimensions Impulse Rate Enclosure Voltage level adjustment Metering VAC Inverter: Battery Proof Testing PCA Interface Arc-Echo Interface Accessories Lid 10A 4, 8 or 16 kv 500 Joules at 16kV Test cables 60kg Earth Lead 564x466x383mm Mains Lead Excluding lid 6 or 20 PPM Aluminium, Electro statically powder coated Switched between 4, 8 or 16kV 1 only voltage Indication Yes Built in Built in Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m green/yellow 2m 3 core 18

19 Power Products Surge Generator Buffalo Buffalo Buffalo 32 System Electricity supply or distribution companies often find that buried power cables become faulty due to ageing or damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. Surge generators are used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. Surge generators are mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages selectable between 3-32 KV and is typically used in the location of faults in low voltage networks such as street lighting or smaller consumers. The maximum storage energy of the capacitor is 1300 J at 8, 16 and 32kV. All surge generators generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit has an internal automatic dump contactor which discharges both the unit and the cable under test. This is activated when the unit is turned off or when power failure occurs. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform insulation resistance tests up to the selected output levels. Our very successful Arc- Surge Generator Supply Voltage VAC Supply Current 16A Output Voltage 0-32kV Surge energy 1300 Joules at 8, 16, 32kV Weight 120kg Dimensions 950x540 x540mm Including lid Impulse Rate 6 or 20 PPM Enclosure Aluminium, Electro statically powder coated Voltage level adjustment Continuously adjustable Meters Voltage and Current Proof Testing Yes Scope and Coupling Unit Built in Accessories Lid Aluminium with canvas bag for test cables Test cables Earth Lead Mains Lead Trolley 5m HT lead with high Current clamps 5m green/yellow 2m 3 core Optional extra 19

20 Power Products Surge Generator Buffalo Buffalo Buffalo 32 System Electricity supply or distribution companies often find that buried power cables become faulty due to ageing or damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. Surge generators are used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. Surge generators are mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages selectable between 3-32 KV and is typically used in the location of faults in low voltage networks such as street lighting or smaller consumers. The maximum storage energy of the capacitor is 2000 J at 8, 16 and 32kV. All surge generators generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit has an internal automatic dump contactor which discharges both the unit and the cable under test. This is activated when the unit is turned off or when power failure occurs. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform insulation resistance tests up to the selected output levels. Our very successful Arc-Echo method is added to this unit and forms part of the framework. Surge Generator Supply Voltage VAC Supply Current 16A Output Voltage 0-32kV Surge energy 2000 Joules at 8, 16, 32kV Weight 120kg Dimensions 950x540x540mm Including lid Impulse Rate 6 or 20 PPM Enclosure Aluminium, Electro statically powder coated Voltage level adjustment Continuously adjustable Meters Voltage and Current Proof Testing Yes Scope and Coupling Unit Built in Accessories Lid Test cables Earth Lead Mains Lead Trolley Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m green/yellow 2m 3 core Optional extra 20

21 Power Products Ground Microphone GMA205 GMA205 General Description The GMA205 Seismophone was originally developed to cater for the needs of cable fault location technicians where simplicity of use and high accuracy is of utmost importance in noisy environments. The instrument is equipped with a sharp cutoff noise cancelling filter, which greatly simplifies the acoustic pinpoint location of faults. It is also equipped with a number of other user-friendly features to simplify the procedure. Display of information is done in analog meter fashion. Principles of Operation The instrument embodies the very latest Analog Electronic techniques. The acoustic amplifier employs high class analog filters to filter as much noise as possible before the signal is amplified. The magnetic amplifier is gain adjustable which allows the operator to attenuate the magnetic signal and then pinpoint exactly where the cable is. Filters Filter Display Hz Power supply 2 x Duracell Plus C 9V. Accessible from the side panel. Battery life: Approximately 20 hours Two 100uA FSD Analogue meters Acoustic Amplifier Gain: Better than 120 db Acoustic Indication Low Impedance Headphones (4 Ohms) Dimensions 200 x 110 x 90mm Weight 1.1 kg. (Including Batteries) 21

22 Power Products Ground Microphone GMA305 GMA305 General Description The GMA305 Seismophone was originally developed to cater for the needs of cable fault location technicians where simplicity of use and high accuracy is of utmost importance in noisy environments. The instrument is equipped with a number of filters, which greatly simplifies the acoustic pinpoint location of faults. It is also equipped with a number of other userfriendly features to simplify the procedure. Display of information is done in bar graph fashion. Principles of Operation The instrument embodies the very latest DSP (Digital Signal Processing) techniques, which greatly broadens the possibilities to upgrade and modify the instrument by simply updating the software. This means that whenever new technology is developed it will become available to you as the owner of the instrument. The acoustic amplifier employs five different filters to filter as much noise as possible before the signal is amplified. The magnetic amplifier is gain adjustable which allows the operator to attenuate the magnetic signal and then pinpoint exactly where the cable is. It also employs distance measurement techniques, which measure the time difference between the acoustic and magnetic amplifier. The display is of a 128 x 64 graphical LCD display. Automatic Magnetic Gain Adjustment feature The instrument is set up in Auto Magnetic Gain mode by memorizing the cable depth. Auto power shut down feature - Instrument shuts down after 5 min of no user interaction. Backlight also switches off after 30 seconds, if no user interaction. Filters Filter A: Hz B: Hz C: Hz D: Hz E: Hz Distance Measurement Range 1: 0 4 m Display 2: 0 20 m 3: 0 60 m 4: m 128x64 Graphical LCD display with backlight. The magnitudes of the signal peaks are indicated with a bar graph which gets cleared after 2 seconds. A line marker is then left behind to continuously indicate the signal peak s magnitude until it is reset upon the arrival of a new signal peak. Acoustic Amplifier Gain: Better than 120 db Acoustic Indication Low Impedance Headphones (4 Ohms) Dimensions 200 x 110 x 90mm Weight 1.4 kg. (Including Batteries) Power supply 2x 9 V - PP3 batteries. Accessible from the side panel. Battery life: Approximately 10 hours of continuous operation. 22

23 Power Products Power Cable Analyzer PCA100 PCA100 Power Cable Analyzer The Adret PCA100 was developed to assist power and communication cable fault location technicians in pre-locating and pre-determining distances to faults existing in power cables. It gives a direct reading in meters to the fault distance. It is capable of locating low resistance (that is any fault lower than about 120 ohms or infinity ohms). Operating Modes TDR In the TDR (Time domain Reflectometer) mode the instrument transmits a pulse which is reflected off the far end of the cable. Any impedance mismatches (i.e. Joints, open or short circuits) along the cable are also reflected. The waveforms are easy to analyze. Features Locates faults quickly and easily Automatically places cursors Automatically selects range Built in Backlight Rechargeable Batteries Simple keyboard Specifications Range Resolution Pulse Amplitude Pulse Width Dead Zone Velocity Adjust Gain Display Power Supply Dimension Weight 0-8km 1m(0-125m), 2m( m), 4m( m), 8m (500m-1km), 16m(1km- 2km), 32m(2km-4km), 64m (4km-8km) 30V 80ns-5us 1m m/us 0-80db 128*64 Lattice LCD NiMH Batteries 225*105*50mm 420gr Standard Accessories Padded canvas carry case All necessary cables Switch mode battery charger and power supply Operator manual 23

24 Power Products Power Cable Analyzer PCa101 PCA101 Power Cable Analyzer The Adret PCA101 was developed to assist power cable fault location technicians in prelocating and pre-determining distances to faults existing in power cables. It gives a direct reading in meters to the fault distance. Fault distances can also be determined from the far end of the cable by simply moving two cursors to any two points on the display screen. It is capable of locating low resistance (that is any fault lower than about 120 ohms or infinity ohms) or high resistance faults with the help of any standard impulse generator and the Adret AE101 high voltage coupling unit. Operating Modes The unit is capable of pre-locating distance to fault in three distinct modes. TDR In the TDR (Time domain Reflectometer) mode the instrument transmits a pulse which is reflected off the far end of the cable. Any impedance mismatches (i.e. Joints, open or short circuits) along the cable are also reflected. The waveforms are easy to analyze. Impulse Current In the Impulse Current Mode a high voltage discharge generated by a surge generator is applied to a faulty cable until the fault breaks down. Thus, the surge energy is then reflected back to its source. Upon arriving at the source it is reflected back into the cable. This continues until the energy is depleted. The PCA101 will capture and store the current waveform flowing in the cable and display it for analysis. ARC-Echo In the ARC-Echo mode the instrument is connected to the faulty cable via the AE101 Coupling unit. This unit provides the suitable isolation and filtering required to superimpose a TDR waveform on top of the high voltage surge generated by the surge generator. When the high voltage energy arrives at the fault it temporarily breaks it down causing a short term short circuit. The waveforms are simple and easy to analyze and look exactly like TDR waveforms. Specifications Weight Size Controls Power source Battery life Display 3Kg 300 x 300 x 130 mm Watertight front panel with integrated multi-function tactile membrane switches Rechargeable NiMH battery pack (charger with standard accessories) Approximately 4 hours for continuous use 240 x 320 Pixel Transmissive LCD with multi-level greyscaling (permanently backlit) Enclosure Standard Accessories Scratch resistant PVC enclosure with lifetime guarantee. Padded canvas carry case All necessary cables Switch mode battery charger and power supply Operator manual 24

25 Power Products Power Cable Analyzer PCA201 PCA201 Power Cable Analyzer The Adret PCA201 was developed to assist power cable fault location technicians in pre-locating and pre-determining distances to faults existing in power cables. It gives a direct reading in meters or feet to the fault position. Fault distances can also be determined from the far end of the cable by simply moving two cursors to any two points on the display screen. It is capable of locating low resistance (that is any fault lower than about 120 ohms or infinity ohms) or high resistance faults with the help of any standard impulse generator and the Adret AE101 high voltage coupling unit. the far end of the cable. Any impedance mismatches (i.e. Joints, open or short circuits) along the cable are also reflected. The waveforms are easy to analyze. Impulse Current In the Impulse Current Mode a high voltage discharge generated by a surge generator is applied to a faulty cable until the fault breaks down. Thus the surge energy is then reflected back to its source. Upon arriving at the source it is reflected back into the cable. This continues until the energy is depleted. The PCA201 will capture and store the current waveform flowing in the cable and display it for analysis. Operating Modes The unit is capable of pre-locating distance to fault in three distinct modes. The unit features an automatic mode in all ranges where the cable length, gain level and fault positions are indicated by the press of only a few buttons. In addition to this there is also the Expert Mode where all settings can be set by hand. TDR In the TDR (Time domain Reflectometer) mode the instrument transmits a pulse which is reflected off ARC-Echo In the ARC-Echo mode the instrument is connected to the faulty cable via the AE101 Coupling unit. This unit provides the suitable isolation and filtering required to superimpose a TDR waveform on top of the high voltage surge generated by the surge generator. When the high voltage energy arrives at the fault it temporarily breaks it down causing a short term short circuit. The waveforms are simple and easy to analyze and look exactly like TDR waveforms. Specifications Weight 6Kg Size 450 x 300 x 200 mm Controls Watertight front panel with Touch Display Power source Mains 240v Display 12 VGA Full Color Touch Screen with Stylus Enclosure Scratch resistant PVC enclosure with lifetime guarantee. Operating System Windows 7 Waveform Storage Windows Capabilities Limited to HDD space (250GB) Printer All Windows driven printers. Keyboard Windows Virtual Keyboard 25

26 Power Products Coupling Unit AE101 AE101 High Voltage Coupling Unit Pre-Locating distances to cable faults are not always as simple as connecting a TDR (Time domain Reflectometer) unit to the cable under test. When the fault resistance is higher than 120 ohms the fault can simply not be detected by any TDR. The AE101 and PCA101 combination was developed to fill the gap that exists above 120 ohms to well within the Meg ohm range. It will easily detect and display information which can be analyzed by anyone with TDR waveform analyzing skills. Principles of Operation which provides the high voltage energy needed to temporarily break down high resistance cable faults. When flashover occurs at the fault the AE101 will limit the current flowing and allow the arc to burn for a slightly longer period. The AE101 allows the PCA101 to be coupled through suitable filters to the high voltage high energy pulse. Because burning arcs are always a low resistance, we can now use TDR techniques. A single TDR pulse is superimposed on top of the HT pulse at the correct time. When the pulse arrives at the burning low resistance arc a short circuit is reflected to the TDR. The waveforms are then simply treated and analyzed as any other TDR waveform when a short circuit is detected. The AE101 is connected in series with any standard surge generator and faulty cable Coupling Unit Accessories Operating Voltage Weight Dimensions Enclosure Pulse Withstand Rate Coupling Capacitor Coupling Resistor Max 32kV DC 20kg 350x200x300mm Excluding lid Aluminium, Electro statically powder coated 5 PPM 100nF 300R Lid Test cables Earth Lead Aluminium with canvas bag for test cables 2m HT Interconnection lead with high current connector 5m yellow/green 26

27 Power Products Sheath Fault Locator SFL16T SFL16T Sheath Fault Locator Transmitter The SFL16T is developed to test for damages on cable sheaths. The Adret SFL16T instrument is designed with simplicity of use and maximum operator safety in mind. Principles of Operation Sheath Fault Locators are mainly used to pinpoint pinholes and damages to cable sheaths. The instrument generates a constant DC voltage that leaks into the ground and causes a Pool of Potential around the area of leakage. The leakage can then be pinpointed by using the SFL16R and two earth spikes. The instrument is automatically made safe when it is turned off and when a power failure occurs. It can be operated in the continuous or pulsing method. The instrument can also be used to perform pressure tests up to 16 kv DC Specifications Accessories Supply voltage Output voltage V AC 150mA continuously adjustable by variable trans former. Lid Test cables Earth Lead Mains Lead Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m green/yellow 2m 3 core Weight Dimensions Country of Origin 35 kg. 446X343X387mm Excluding Lid South Africa 27

28 Power Products Sheath Fault Locator SFL16R SFL16R Sheath Fault Locator Receiver It will receive leakage currents generated by the SFL16T at a constant or pulsed DC voltage that leaks into the ground and causes a Pool of Potential using the two ground spikes. The instrument can be synchronized to the SFL16T pulse, and generates an audible signal when synchronized to the SFL16T. The signals come in bursts of three with a resting period in between. The potential difference between the two earth spikes will be amplified and displayed via the galvometer on the front panel. The meter indicates the relative position of the fault relative to the two spikes. Specifications Supply voltage 9V Battery Weight 500gr Dimensions 200X200X80mm Standard Accessories Padded canvas carry case All necessary cables Switch mode battery charger and power supply Operator manual Locating Earth Spikes with carrybag 28

29 Power Products Cable Fault Conditioning Unit BU3500 BU3500 Cable fault conditioning unit Cable fault conditioning units or Burndown Units are used when the resistance of cable faults is too high for Time Domain Reflectometer s to show a reflection. TDR`s can only show a reflection under two conditions. The fault resistance has to be below 120R, or infinity. Thus, a method had to be devised to break down the resistance of faults to within the 120R level. Principles of Operation Burndown transformers use a tapped transformer system capable of producing high voltage low current at the one end of the scale and low voltage high current at the other end of the scale. The high voltage is generated through a transformer and rectified to give a maximum output of 14kV DC at around 250mA. The low end of the scale is 50V AC at around 70A. The unit is used in a sequential manner where the current flow is monitored before a decision is made to go to a higher or lower scale. Burndown unit Supply voltage Supply current 230V AC 15A Output: 14000V DC 250mA 8500V DC 411mA 3000V AC 1.16A 1500V AC 2.33A 1000V AC 3.5A 230V AC 15.5A 50V AC 70A Current indication Primary current Output selection Manually switched Weight 45kg Size 400x400x500mm Accessories Lid Test cables Earth Lead Mains Lead Aluminium with canvas Bag for test cables 5m HT lead with high Current clamps 5m green/yellow 2m 3 core 29

30 Mining Products Surge Generator SG SG Surge Generators Surge generators are mainly used for the location of faults in power cable networks. They come in a variety of models from low voltage to very high voltages. The instrument described on this pamphlet generates voltages adjustable from 0 to 32kV and is typically used in the location of faults in Electricity supply or distribution companies often find that buried power cables become medium voltage networks. faulty due to ageing and damage. Because energy cables are normally not supplied in lengths much longer than 300m, inevitably many joints are installed and buried. They are often the cause for cable faults which render the cable useless until repaired and put back into service. Surge generators are used in conjunction with pre-location and pinpoint location equipment to precisely locate the position of cable faults. The maximum storage energy of the capacitor is 1000 J at 8.5, 17 or 34kV. All surge generators generate high voltages from the mains supply voltage, which is rectified and used to charge capacitors, which is in turn discharged into a faulty cable at adjustable intervals. The unit has an internal automatic dump contactor which discharges both the unit and the cable under test. This is activated when the unit is turned off or when power failure occur. It can be operated in the single shot or continuous pulsing method if correct selection is made. The unit can also be used to perform insulation resistance tests up to the selected output levels. Specifications Supply Voltage Supply Current Output Voltage Surge energy Weight Dimensions Impulse Rate Enclosure Voltage level adjustment Meters Proof Testing VAC 15A 0-34kV 1000 Joules at 8.5, 17, 34kV 80kg 540x420 x400mm Excluding lid 6 or 20 PPM Aluminium, Electrostatically powder coated Continuously adjustable Voltage and Current Yes, Current PCA Interface Accessories Lid Test cables Earth Lead Mains Lead limiting via resistors. Leakage current displayed through viewing window. Built in Aluminium with canvas bag for test ca bles 5m HT lead with high cuurent clamps Current clamps 5m green/yellow 2m 3 core 30

31 Mining Products Mining Fault Location System PB201 PB201 Partial Break Tester The Adret PB201 was developed to assist trailing power cable fault location technicians in pre-locating and pre-determining position of partial faults existing in trailing power cables. It gives an audible indication where the fault is located by the pitch of the sound changing on the headphones. Some external cable beating device is required to make the unit operate. It is capable of locating partial breaks in cable strands to as low as 5% of strands broken. Operating Principles The unit works by simply passing a DC current through a suitable coupling transformer in series with the cores of the cable under test. When the beater approaches a fault, the resistance of the fault changes due to the mechanical movement in the core. This minute change in resistance is then sampled and amplified to produce the necessary signals. Operating Modes The unit is capable of simultaneously energizing two individual circuits in a specific cable. Specifications Standard Accessories Weight Size Controls Power source Battery life Enclosure 8Kg 300 x 300 x 300 mm Watertight front panel with integrated multifunction tactile membrane switches Mains Charging any 12V Lead Acid Battery Approximately 4 hours for continuous use with 65AH Battery Pelican Case Padded canvas carry case All necessary cables Operator manual 31

32 Cable Route Tracers Cable Locators AP-1 AP-1 Cable & Pipe Locator The AP-1 is a new high performance digital instrument for locating the alignment and depth of buried cables and pipes. The instrument is easy to use and gets the job done with accurate and consistent results. Principles of Operation The unit uses the magnetic signal detected, flowing in the cable. This signal exists in live cables and in dead cables, a suitable signal is induced either via direct connection or by using various induction techniques. Features High Accuracy up to 2.5% Triple depth detection up to 12m Maximum 10W signal output Dual Frequency transmission Automatic impedance matching 4 Antenna design Differential coils reduces interference Depth reference in Radio and Power Mode Current measurement display with depth Integrated backlight Error protection function Cable & Pipe Locator Transmitter Output Frequencies Output Power Operating Modes Battery Battery Life Battery Status 38, 9.5, 80kHz 512, 640Hz 10W Direct Inductive External Coil 10pcs Type D >20hrs Low Battery Press Key Read Visual Indication LCD Bar graph and Digital with Backlight Operating Temperature C Receiver Active Frequencies 38, 9.5, 80kHz 512, 640Hz Depth Range 12m Accuracy +- 2,5% Battery 6pcs Type AA Battery Life >20hrs Adjustment Auto/Manual Signal Display Compasses Battery, Light Sound etc Operating Temperature C 32

33 Mobile Systems Cable Reel System CRS30-3 CRS30-A Test Cable Reel Systems Our system consists of 3 reels capable of winding 30m of HT test cable, 30m of 2.5mm x 3 core mains cable and 30m of 10mm earth cable with connections every 2m for easy connection to the earthing system. Cable fault finding equipment often gets fitted inside dedicated test trailers or trucks. When this is the case the test cable are normally at least 30m long and a neat and protective storage system is required. All three reels use a unique Adret adjustable brake system to control slack when the cable is unwound. Cables are unwound and rewound manually. Cable Reel System Mains Cable 30m 3 Core 2.5mm Rubber insulated Weight Approximately 30kg when fully wound up HT Cable 30m Adret Specification 10mm 70kV HT Test Cable Height 500mm Earth Cable 30m 10mm Earth Cable with easy connection to earth system every 2m Construction materials Electro statically powder coated aluminium with steel frame Slack Control Slack is controlled through unique magnetic clutch system 33

34 Mobile Systems Cable Reel System CRS30-3 CRS30-3 Test Cable Reel Systems Our system consists of 3 reels capable of winding 30m of HT test cable, 30m of 2.5mm x 3 core mains cable and 30m of 10mm earth cable with connections every 2m for easy connection to the earthing system. Cable fault finding equipment often gets fitted inside dedicated test trailers or trucks. When this is the case the test cables is normally at least 30m long and a neat and protective storage system is required. All three reels use a unique Adret adjustable brake system to control slack when the cable is unwound. Cables are unwound and rewound manually. Cable Reel System Mains Cable 30m 3 Core 2.5mm Rubber insulated Weight Approximately 80kg when fully wound up HT Cable 30m Adret Specification 10mm 70kV HT Test Cable Height 1400mm Earth Cable 30m 10mm Earth Cable with easy connection to earth system every 2m Construction materials Electro statically powder coated aluminium with steel frame Slack Control Slack is controlled through unique magnetic clutch system 34

35 Mobile Systems Cable Reel System CRS30-3 CRS30-A Test Cable Reel Systems Our system consists of 3 reels capable of winding 30m of HT test cable, 30m of 2.5mm x 3 core mains cable and 30m of 10mm earth cable with connections every 2m for easy connection to the earthing system. Cable fault finding equipment often gets fitted inside dedicated test trailers or trucks. When this is the case the test cables is normally at least 30m long and a neat and protective storage system is required. All three reels use a unique Adret adjustable brake system to control slack when the cable is unwound. Cables are unwound and rewound manually. Cable Reel System Mains Cable 30m 3 Core 2.5mm Rubber insulated Weight Approximately 40kg when fully wound up HT Cable 30m Adret Specification 10mm 70kV HT Test Cable Height 600mm Earth Cable 30m 10mm Earth Cable with easy connection to earth system every 2m Construction materials Electro statically powder coated aluminium with steel frame Slack Control Slack is controlled through unique magnetic clutch system 35

36 Mobile Systems Cable Reel System CRS30-3 CRS50-3 Test Cable Reel Systems Our system consists of 3 reels capable of winding 50m of HT test cable, 50m of 2.5mm x 3 core mains cable and 50m of 10mm earth cable with connections every 2m for easy connection to the earthing system. Cable fault finding equipment often gets fitted inside dedicated test trailers or trucks. When this is the case the test cable is normally at least 30m long and a neat and protective storage system is required. All three reels use a unique Adret adjustable brake system to control slack when the cable is unwound. Cables are unwound and rewound manually. Cable Reel System Mains Cable HT Cable 50m 3 Core 2.5mm Rubber insulated 50m Adret Specification 10mm 70kV HT Test Cable Weight Height Approximately 80kg when fully wound up 1500mm Earth Cable Slack Control 50m 10mm Earth Cable with easy connection to earth system every 2m Slack is controlled through unique magnetic clutch system Construction materials Electro statically powder coated aluminium with steel frame 36

37 Mobile Systems Test Equipment Trolleys Custom Trolleys Specifications A wide range of different trolleys can be supplied, ranging from the smallest to the largest units available in the test industry. Frames are made of electrostatically powder coated steel and wheels are of the pneumatic type. All units are custom made to customer specifications. 37

38 Mobile Systems Test Vans Custom Test Vans Specifications A wide range of different test Vans can be supplied, ranging from the smallest to the largest units available in the test industry. Frames are made of electrostatically powder coated steel and wheels are of the pneumatic type. All units are custom made to customer specifications. 38

39 Mobile Systems Test Trailers Custom Test Trailers Specifications A wide range of different trailers can be supplied, ranging from the smallest to the largest units available in the test industry. Frames are made of electrostatically powder coated steel and wheels are of the pneumatic type. We supply trailers, but we also retrofit existing equipment in existing trailers. All units are custom made to customer specifications. 39

40 Mobile Systems Mobile Test Labs Mobile Test Labs Specifications A wide range of different Mobile Laboratories can be supplied, ranging from the smallest to the largest units available in the test industry. Frames are made of electrostatically powder coated steel and wheels are of the pneumatic type. We supply test vans, but we also retrofit existing equipment into existing vans. All units are custom made to customer specifications. 40

41 Proof Testing AC Systems 3010PT 3010PT Proof test equipment Test engineers and technicians need to prooftest cables and switchgear after installation or rework to existing systems. The Adret range of proof testers was designed with simplicity of use and maximum operator safety in mind. The range offers many different models from DC to AC and VLF (very low frequency) as well as combination AC and DC models. Principles of Operation All the units use the input voltage through a step up transformer to obtain the high AC voltages. In case of DC output the AC is rectified through a suitable rectifier capable of withstanding the high voltages. Some units use a combination of AC and DC that is switched to deliver AC or DC or both. In the case of VLF equipment a pseudo sine wave is produced through a number of switches and resistors. The outputs are current limited and the unit automatically trips when a set limit is reached. When this occurs the cable is discharged and made safe through a built in discharge resistor. In case the circuit layout does not allow (in case of split units) the automatic discharge of the cable, a suitable manual discharge resistor is supplied Proof tester Accessories 8A 0-30kV AC 10mA Continu- Supply Voltage Supply Current Output Voltage Output Current ous Weight Dimensions Enclosure Voltage level adjustment Meters Trip level VAC 40kg 420x280 x400mm Excluding lid Aluminium, Electro statically powder coated Continuously variable Voltage and Current 0-50mA (Factory Pre-set) Lid Test cables Earth Lead Mains Lead Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m yellow/green 2m 3 core 41

42 Proof Testing DC Systems 2510PT 2510PT Proof test equipment Test engineers and technicians need to prooftest cables and switchgear after installation or rework to existing systems. The Adret range of proof testers was designed with simplicity of use and maximum operator safety in mind. The range offers many different models from DC to AC and VLF (very low frequency) as well as combination AC and DC models. Principles of Operation All the units use the input voltage through a step up transformer to obtain the high AC voltages. In case of DC output the AC is rectified through a suitable rectifier capable of withstanding the high voltages. Some units use a combination of AC and DC that is switched to deliver AC or DC or both. In the case of VLF equipment a pseudo sine wave is produced through a number of switches and resistors. The outputs are current limited and the unit automatically trips when a set limit is reached. When this occurs the cable is discharged and made safe through a built in discharge resistor. In case the circuit layout does not allow (in case of split units) the automatic discharge of the cable, a suitable manual discharge resistor is supplied The units are portable and simple to operate. Tests are possible to most well used ISO standards Proof tester Supply Voltage VAC 12V internal battery Voltage level adjustment Meters Trip level powder coated Continuously variable Voltage and Current 50mA Supply Current 5A Output Voltage Output Current Weight Dimensions Enclosure 0-25kV DC 10mA Continuous 30kg B 240mmx L 400mmx H 450mm Excluding lid Aluminium, Electro statically Accessories Lid Test cables Earth Lead Mains Lead Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m yellow/green 2m 3 core 42

43 Proof Testing AC/DC Systems 3042PT 3042PT Proof test equipment Test engineers and technicians need to proof-test cables and switchgear after installation or rework to existing systems. The Adret range of proof testers was designed with simplicity of use and maximum operator safety in mind. The range offers many different models from DC to AC and VLF (very low frequency) as well as combination AC and DC models. Principles of Operation All the units use the input voltage through a step up transformer to obtain the high AC voltages. In case of DC output the AC is rectified through a suitable rectifier capable of withstanding the high voltages. Some units use a combination of AC and DC that is switched to deliver AC or DC or both. In the case of VLF equipment a pseudo sine wave is produced through a number of switches and resistors. The outputs are current limited and the unit automatically trips when a set limit is reached. When this occurs the cable is discharged and made safe through a built in discharge resistor. In case the circuit layout does not allow (in case of split units) the automatic discharge of the cable, a suitable manual discharge resistor is supplied The units are portable and simple to operate. Tests are possible to most well used ISO specifications. Proof tester Accessories 8A 0-30kVAC 0-42kVDC 10mA Continu- Supply Voltage Supply Current Output Voltage Output Current ous Weight Dimensions Enclosure Voltage level adjustment Meters Trip level VAC 40kg 420x280x400mm Excluding lid Aluminium, Electro statically powder coated Continuously variable Voltage and Current 0-50mA Factory Pre-set Lid Test cables Earth Lead Mains Lead Aluminium with canvas bag for test cables 5m HT lead with high Current clamps 5m yellow/green 2m 3 core 43

44 Proof Testing AC/DC Systems 5010PT 5010PT Proof test equipment Test engineers and technicians need to proof-test cables and switchgear after installation or rework to existing systems. The Adret range of proof testers was designed with simplicity of use and maximum operator safety in mind. The range offers many different models from DC to AC and VLF (very low frequency) as well as combination AC and DC models. Principles of Operation All the units use the input voltage through a step up transformer to obtain the high AC voltages. In case of DC output the AC is rectified through a suitable rectifier capable of withstanding the high voltages. Some units use a combination of AC and DC that is switched to deliver AC or DC or both. In the case of VLF equipment a pseudo sine wave is produced through a number of switches and resistors. The outputs are current limited and the unit automatically trips when a set limit is reached. When this occurs the cable is discharged and made safe through a built in discharge resistor. In case the circuit layout does not allow (in case of split units) the automatic discharge of the cable, a suitable manual discharge resistor is supplied The units are portable and simple to operate. Tests are possible to most well used ISO specifications. Proof tester Supply Voltage Supply Current Output Voltage 10A 0-35kVAC 0-50kVDC 50mA Continu- Discharge Stick 30kg and 20kg 350x200x300mm Control Unit 350x200x300mm HT Unit Excluding lid Aluminium, Electro statically powder coated Continuously variable Voltage and Current 10mA Output Current ous Weight Dimensions Enclosure Voltage level adjustment Meters Trip level VAC Accessories Lid Aluminium with canvas bag for test cables Test cables 5m HT lead with high Current clamps Earth Lead 5m yellow/green Mains Lead 2m 3 core Included 5m interconnection cable Rectifier diode Current limiting resistor Corona ring 44

45 Proof Testing AC/DC Systems 7010PT 7010PT Proof test equipment Test engineers and technicians need to proof-test cables and switchgear after installation or rework to existing systems. The Adret range of proof testers was designed with simplicity of use and maximum operator safety in mind. The range offers many different models from DC to AC and VLF (very low frequency) as well as combination AC and DC models. Principles of Operation All the units use the input voltage through a step up transformer to obtain the high AC voltages. In case of DC output the AC is rectified through a suitable rectifier capable of withstanding the high voltages. Some units use a combination of AC and DC that is switched to deliver AC or DC or both. In the case of VLF equipment a pseudo sine wave is produced through a number of switches and resistors. The outputs are current limited and the unit automatically trips when a set limit is reached. When this occurs the cable is discharged and made safe through a built in discharge resistor. In case the circuit layout does not allow (in case of split units) the automatic discharge of the cable, a suitable manual discharge resistor is supplied The units are portable and simple to operate. Tests are possible to most well used ISO specifications. Proof tester Supply Voltage Supply Current Output Voltage 10A 0-50kVAC 0-70kVDC 50mA Continu- Discharge Stick 30kg and 20kg 350x200x300mm Control Unit 350x200x300mm HT Unit Excluding lid Aluminium, Electro statically powder coated Continuously variable Voltage and Current 10mA Output Current ous Weight Dimensions Enclosure Voltage level adjustment Meters Trip level VAC Accessories Lid Aluminium with canvas bag for test cables Test cables 5m HT lead with high Current clamps Earth Lead 5m green/yellow Mains Lead 2m 3 core Included 5m interconnection cable Rectifier diode Current limiting resistor Corona ring 45

46 Proof Testing AC/DC Systems 10010PT 10010PT Proof test equipment Test engineers and technicians need to proof-test cables and switchgear after installation or rework to existing systems. The Adret range of proof testers was designed with simplicity of use and maximum operator safety in mind. The range offers many different models from DC to AC and VLF (very low frequency) as well as combination AC and DC models. Principles of Operation All the units use the input voltage through a step up transformer to obtain the high AC voltages. In case of DC output the AC is rectified through a suitable rectifier capable of withstanding the high voltages. Some units use a combination of AC and DC that is switched to deliver AC or DC or both. In the case of VLF equipment a pseudo sine wave is produced through a number of switches and resistors. The outputs are current limited and the unit automatically trips when a set limit is reached. When this occurs the cable is discharged and made safe through a built in discharge resistor. In case the circuit layout does not allow (in case of split units) the automatic discharge of the cable, a suitable manual discharge resistor is supplied The units are portable and simple to operate. Tests are possible to most well used ISO specifications. Proof tester Supply Voltage Supply Current Output Voltage 10A 0-70kVAC 0-100kVDC 50mA Continu- Discharge Stick 30kg and 30kg 350x200x300mm Control Unit 380x300x500mm HT Unit Excluding lid Aluminium, Electro statically powder coated Continuously variable Voltage and Current 10mA Output Current ous Weight Dimensions Enclosure Voltage level adjustment Meters Trip level VAC Accessories Lid Aluminium with canvas bag for test cables Test cables 5m HT lead with high Current clamps Earth Lead 5m yellow/green Mains Lead 2m 3 core Included 5m interconnection cable Rectifier diode Current limiting resistor Corona ring 46

47 Proof Testing Very Low Frequency Systems VLF-28CMF Very Low Frequency Testers VLF test sets are used to field test high capacitance loads like cables and motors/generators. The lower the frequency of an AC source, the lower the current and power required to apply a voltage to a capacitive load like a cable. At 0.1Hz, it requires 500 times less power to test a cable than at 50Hz. The HVI VLF instruments permit users to field testlong cables and large generators with a portable and affordable test set. A 100 lb VLF instrument can do the job of a multi-ton 50Hz AC test set. Cables should be tested with AC voltage. With the HVI VLF products, it can be down with a practical, economical, and easy to use package. Specifications Input Voltage: Output: Duty Cycle: Load Rating: Metering: HV Output Cable: Size: Weight: 230V 50Hz, 3A Peak 2A Average 0-28kV Peak, 0.1Hz Sinusodial Continuous 0.4uF Voltage kvac Current 0-50mA Peak Shielded EPR Cable 6m 381X292X559mm 34kG 47

48 Proof Testing Very Low Frequency Systems VLF-4022CMF Very Low Frequency Testers VLF test sets are used to field test high capacitance loads like cable and motors/generators. The lower the frequency of an AC source, the lower the current and power required to apply a voltage to a capacitive load like a cable. At 0.1Hz, it requires 500 times less power to test a cable than at 50Hz. The HVI VLF instruments permit users to field test long cables and large generators with a portable and affordable test set. A 100 lb VLF instrument can do the job of a multi-ton 50Hz AC test set. Cables should be tested with AC voltage. With the HVI VLF products, it can be done with a practical, economical, and easy to use package. Specifications Input Voltage: Output: Duty Cycle: Load Rating: Metering: HV Output Cable: Size: Weight: 230V 50Hz, 6A Peak, 2.5A Average 0-44kV Peak, 0.1/0.05/0.02Hz Sinusodial Continuous 0,1Hz, 0.05Hz, 0.02Hz Voltage kvac, Current 0-100mA Peak, Capacitance 0-6uF Shielded RG/8U Cable 6m Control Unit 559X286X387, HV Tank 368X267X483mm Control Unit 23kG HV Tank 33Kg 48

49 Proof Testing Very Low Frequency Systems VLF-6022CMF Very Low Frequency Testers VLF test sets are used to field test high capacitance loads like cables and motors/generators. The lower the frequency of an AC source, the lower the current and power required to apply a voltage to a capacitive load like a cable. At 0.1Hz, it requires 500 times less power to test a cable than at 50Hz. The HVI VLF instruments permit users to field test long cables and large generators with a portable and affordable test set. A 100 lb VLF instrument can do the job of a multi-ton 50Hz AC test set. Cables should be tested with AC voltage. With the HVI VLF products, it can be down with a practical, economical, and easy to use package. Specifications Input Voltage: Output: Duty Cycle: Load Rating: Metering: HV Output Cable: Size: Weight: 230V 50Hz, 8A Peak, 4A Average 0-62kV Peak, 0.1/0.05/0.02Hz Sinusodial Continuous 0,1Hz, 0.05Hz, 0.02Hz Voltage 65kVAC, Current 0-100mA Peak, Capacitance 0-6uF Shielded EPR Cable 6m Control Unit 660X330X406, HV Tank 381X260X546mm Control Unit 34kG HV Tank 54Kg 49

50 Proof Testing Very Low Frequency Systems VLF-90CMF Very Low Frequency Testers VLF test sets are used to field test high capacitance loads like cables and motors/generators. The lower the frequency of an AC source, the lower the current and power required to apply a voltage to a capacitive load like a cable. At 0.1Hz, it requires 500 times less power to test a cable than at 50Hz. The HVI VLF instruments permit users to field test long cables and large generators with a portable and affordable test set. A 100 lb VLF instrument can do the job of a multi-ton 50Hz AC test set. Cables should be tested with AC voltage. With the HVI VLF products, it can be down with a practical, economical, and easy to use package. Specifications Input Voltage: Output: Duty Cycle: Load Rating: Metering: HV Output Cable: Size: Weight: 230V 50Hz, 20A Peak, 15A Average 0-90kV Peak, 0.1/0.05/0.02Hz Sinusodial Continuous 0,1Hz, 0.05Hz, 0.02Hz Voltage 100kVAC, Current 0-100mA Peak, Capacitance 0-6uF Shielded EPR Cable 6m Control Unit 660X330X406, HV Tank 381X533X737mm Control Unit 34kG HV Tank 133Kg 50

51 Proof Testing Very Low Frequency Systems VLF-12011CMF Very Low Frequency Testers VLF test sets are used to field test high capacitance loads like cable and motors/generators. The lower the frequency of an AC source, the lower the current and power required to apply a voltage to a capacitive load like a cable. At 0.1Hz, it requires 500 times less power to test a cable than at 50Hz. The HVI VLF instruments permit users to field test long cables and large generators with a portable and affordable test set. A 100 lb VLF instrument can do the job of a multi-ton 50Hz AC test set. Cables should be tested with AC voltage. With the HVI VLF products, it can be down with a practical, economical, and easy to use package. Specifications Input Voltage: Output: Duty Cycle: Load Rating: Metering: HV Output Cable: Size: Weight: 230V 50Hz, 30A Peak, 25A Average 0-120kV Peak, 0.1/0.05/0.02/0.01Hz Sinusodial Continuous 0,1Hz, 0.05Hz, 0.02Hz,5.5uF@0.01Hz Voltage 120kVAC, Current 0-100mA Peak, Capacitance 0-6uF Shielded Shielded EPR Cable 30m Control Unit 432X280X241mm, HV Tank 660X508X686mm Control Unit 9kG HV Tank 177Kg 51

52 Proof Testing Very Low Frequency Systems VLF-200CMF Very Low Frequency Testers VLF test sets are used to field test high capacitance loads like cables and motors/generators. The lower the frequency of an AC source, the lower the current and power required to apply a voltage to a capacitive load like a cable. At 0.1Hz, it requires 500 times less power to test a cable than at 50Hz. The HVI VLF instruments permit users to field test long cables and large generators with a portable and affordable test set. A 100 lb VLF instrument can do the job of a multi-ton 50Hz AC test set. Cables should be tested with AC voltage. With the HVI VLF products, it can be down with a practical, economical, and easy to use package. Specifications Input Voltage: Output: Duty Cycle: Load Rating: Metering: HV Output Cable: Size: Weight: 230V 50Hz, 80A Peak 0-200kV Peak, 0.1/0.05/0.02/0.01Hz Sinusodial Continuous 0,1Hz, 0.05Hz, 0.02Hz Voltage 200kVAC, Current 0-100mA Peak, Capacitance 0-6uF No Cable, Bushing Only Control Unit 610X650X1800mm, HV Tank 1550X903X2200mm Control Unit 295kG HV Tank 1678Kg 52

53 Proof Testing Very Low Frequency Tan Delta VLF Tan Delta Testing Tan Delta Measurement Tan Delta can be used to help determine the insulation quality of cables and other capacitive loads. It is used in conjunction with a Very Low Frequency (VLF) AC Power Supply to measure the loss angle or Tan Delta of the insulation. These measurements can be used to track the deterioration of service aged cable and establish baseline readings on new cable installations. Changes in Tan Delta measurements can indicate degradation of the insulation, which can be used to make engineering decisions about the service life of the cables. Specifications The TD System is a bridge for use with a sinusoidal high voltage VLF power supply. High voltage is applied to the test specimen through the measuring unit. The control unit compares the phase angles of the voltage and current waveforms to give a loss angle of the insulation. Current Range 0 50 ma Frequency Range 0.01 H z 0.2 Hz Working Volt age 1 kv 60 kv Peak Resolution of Measurement Accuracy 2% Zero err or Display 128 x 64 Back lit Liquid Crystal Displayed Data Loss angle (radians) System voltage (kv Peak) and frequency (Hz) Current at HV (ma RMS) Low Battery and No Data indicators Controls Averaging Mode Normal, Medium, Extended Input Power 230 V, 50/60 Hz, 70 W Dimensions and Weights Control System 343X279X127mm, 6.4 kg Measurement Bridge 254X254X813mm, 10.4 k g 53

54 Bucket Liner Testers Bucket Liner Testers ALT-120/60F ALT-120/60 The ALT-120/60 is a portable high voltage AC test set designed to test aerial lifts. It is designed to meet all ANSI A92.2 testing requirements for insulated work platforms, bucket trucks and liners. The unit may also be used to test other electrical apparatus requiring AC voltage testing. It is rugged, reliable, economical, contains advanced features, and provides long term duty ratings. The ALT-120 is designed to provide continuously adjustable AC output up to 120 kv with a full kva tap at 60 kv. It is rated for 7 kva of power, enabling it to meet all testing requirements. Its generous duty rating allows the user to perform many tests sequentially or use the unit for other, extended time testing applications. Since versatility of test equipment is important, the duty cycle of any product should be strongly considered. Specifications Input Voltage Output Voltage Output Power Duty Cycle Metering Protection 230V, 30A 60/120kV 7 kva 1 7kVA and continuous 4kVA 250 μa current meter range Transit protecting meter circuits Other Models Available ALT-200(F) 0 30mA, 6 kva, Optional 50kVac full kva tap available ALT -300F 0 23 ma, 7 kva Liner Testers available. Up to kva 54

55 Oil Dielectric Testers Oil Testers DTS-60A The DTS-60A is a fully automatic liquid dielectric test set, typically used for testing the voltage breakdown level of insulating oils. The most commonly used testing standards are preprogrammed into the controls. Just hit the start button and the test is performed. Custom test sequences can also be programmed. The results are stored internally for downloading to a computer and/or for printing on the printer included. Features Clear and easy to use controls 128 x 64 dot matrix crystal display 10 pre programmed standard test sequences ASTM D877/87, ASTM D1816/84, IEC 156/63, IEC 156/95, VDE 0370-P5/92, CEI 10-1/73, IRAM 2341/72, UTE C27-221/74, RVHP 1985, PN-77/ED4408 Internal memory holds last 50 tests w/ RS232 interface User definable test sequences Ambient temperature sensor English, German, Spanish, French, Greek Thermal printer included Specifications Input Voltage 230 V, 50Hz, 3 amps OutputVoltage 0 60 kvac, 800 VA resistive Voltage Rise Variable. 0 5 kv/s in.1 kv/s steps Shutdown time 4.2 ms Voltage Accuracy 0.5% Size & Weight 381X356X292mm, 29 kg Operating temp -10º C to 40º C 55

56 Test Equipment Rentals Test Equipment Rentals Rental Equipment Offer Adret Test Equipment offer a large range of Cable Fault Location instruments for rental. Rental periods are totally flexible from as little as one day to as long as one year. 56

57 Inverter Mains Systems Inverters INV1000 Inverter Mains System The Adret range of inverters was developed to solve the problem of the unregulated nature of power supplied by Generators. Due to the nature and sensitivity of electronic equipment, needing a stable supply, failures can be minimized to a great extent. Our Inverter systems electronically generate a constant, regulated mains supply from 12VDC. Systems range from as little as 300W to 3000W of power. Our Dual Battery system ensures that the batteries are charged from the vehicle alternator, ensuring full batteries when the operator arrives at the work site. The system also ensures that the main vehicle battery does not discharge, preventing the engine from starting. Performance The INV1000 Standard will generate enough power to drive our SG50016 for four hours Specifications Inverter Inverter Short Term Input Voltage Output Voltage Batteries 1000W Constant 2000W 12V 230V, 50Hz 105AH Deep Cycle Charging System Charger Input Charger Output Dual Battery 230V, 50Hz 20A Dual battery charging and conditioning system from vehicle alternator (Optional) 57

58 Inverter Mains Systems Inverters INV3000 Inverter Mains System The Adret range of inverters was developed to solve the problem of the unregulated nature of power supplied by Generators. Due to the nature and sensitivity of electronic equipment, needing a stable supply, failures can be minimized to a great extent. Our Inverter systems electronically generate a constant, regulated mains supply from 12VDC. Systems range from as little as 300W to 3000W of power. Our Dual Battery system ensures that the batteries are charged from the vehicle alternator, ensuring full batteries when the operator arrives at the work site. The system also ensures that the main vehicle battery does not discharge, preventing the engine from starting. Performance The INV3000 will generate enough power to drive our SG for eight hours Specifications Inverter Inverter Short Term Input Voltage Output Voltage Batteries 3000W Constant 6000W 12V 230V, 50Hz 420AH Deep Cycle Charging System Charger Dual Battery 20A From Mains Dual battery charging and conditioning system from vehicle alternator. 58

59 Safety Devices Cable Identification CI75 The CI75 Cable ID System Power cable jointing technicians are often faced with the problem of having to cut into existing live cables in order to expand their existing networks. The CI75 was designed to facilitate the positive identification of one disconnected power cable from a bundle. It will, when used correctly positively and safely identify one specific cable. It is very simple to operate and will give perfect results time after time. Principles of Operation The unit uses a crystal controlled sine wave as a basis on both the transmitter and receiver of 625Hz. The signal is transmitted into the cable by directly connecting it to two of the cores on the cable to be identified. The far end of the cable should be disconnected and the same two cores short circuited. The unit will also function when the far end of the cable is put into earth using the switchgear. The signal is then picked up by the antenna and its signal strength displayed through the analog meter on the panel. The application of the instrument is very simple and very low levels of skill is needed for successful positive cable identification. Transmitter Output Power 5W Continuous/ Pulsed Power Supply 6 X 1.5V C Cells (Alkaline) Weight 1Kg Battery State Indication Red/Green LED Battery Life Approximately 40Hrs Operating Frequency 625Hz Range 20km Signal Pulsed or continuous sine wave Output Protection Matching transformer isolated Operating Temperature 0C to +50C Receiver Gain 120dB Max Filter Switched Capacitor Type Power Supply 1 X 9V PP3 (Alkaline) Weight 500gr Battery State Indication Red/Green LED Battery Life Approximately 40Hrs Antenna High Gain Tuned System Audio Indication Loudspeaker Visual Indication Analogue Panel Meter Operating Frequency 625Hz Operating Temperature 0C to +50C 59

60 Safety Devices Cable Identification CI200 CI200 Cable ID System Principles of Operation Power cable jointing technicians are often faced with the problem of having to cut into existing live cables in order to expand their existing networks. The CI200 was designed to facilitate the positive identification of one disconnected power cable from a bundle. It will, when used correctly positively and safely identify one specific cable. It is very simple to operate and will give perfect results time after time. The CI200TX generates a DC Pulse of 50V at about 200A. The signal is transmitted into the cable by directly connecting it to one of the cores on the cable to be identified. The far end of the cable should be connected to earth. The received signal is then picked up by the flexible current clamp and its signal strength displayed through the analog meter on the panel. The application of the instrument is very simple and very low levels of skill is needed for successful positive cable identification. Transmitter Output Power 200A Power Supply 230V Mains or 12V DC (Power Pack) Weight 1Kg Battery State Indication Level meter Battery Life Approx 8 Hrs Pulse Frequency 1Hz Range 20km Signal DC Pulsed Output Protection Fused Operating Temperature 0C to +50C Receiver Power Supply Weight Battery State Indication Battery Life Antenna 1 X 9V PP3 (Alkaline) 500gr Red/Green LED Approx 8 Hrs Clamp on Rogowski coil Visual Indication Analogue Panel Meter Operating Temperature 0C to +50C 60

61 Safety Devices Cable Spiking Gun CS-100 The Cable Spiking Gun Principles of Operation Power cable jointing technicians are often faced with the problem of having to cut into existing live cables in order to expand their existing networks. When power cables are being identified for rework, it is always necessary, after positive identification, to make sure the cable is not live. The spiking gun is a device designed with safety in mind. The instrument will ensure that the said cable is safe to work on. The unit drives a flat chisel into the cable, short circuiting all three phases together. The chisel is driven into the cable by means of a ballistic charge which is triggered remotely by the operator. The application of the instrument is very simple and very low levels of skill is needed for successful safe positive cable identification. It is recommended that the cable is positively identified by means of the non-destructive Adret CI75 before use. Specifications Maximum Cable Diamater: Minimum Cable Diameter: Accessories: Spare Parts: 100mm 50mm Cartridges, Chisels All parts available 61

62 Safety Devices Phasing Sticks Phasing Sticks Phasing Sticks The KNES test phasing stick range has been developed and refined in conjunction with industry and mining over a number of years. There are various adapters available such as the Magnafix adapter, 500mm and 700 mm extensions, spiked tips, high voltage proving unit and Angle extensions for testing OCB s. All high voltage connection tips are kept well away from the operator and there is an optional high voltage proving unit, for additional safety, which is designed to be used before and after a test to verify the operation of the meter and neon indicator (PS/2 Model only). SPECIFICATIONS MODEL PS2 M11E M1133E M33E Weight (Without case) 2.3Kg 1115mm 1.8Kg 830mm 3.1Kg 1300mm 2.4Kg 1300mm Overall Length Range On Indicator Total Resistance Of Circuit Notes 0 12kV 68Mohm Meets DIN VDE 0681/5 * 1 12kV 61Mohm 0 12kV & 0 36kV 184Mohm 0 36kV 184Mohm Neon Indicator Range = 3 12kV Weight of aluminum case 5Kg Specifications for other models on request 62

63 Safety Devices Discharge Rods DR306 DR306 High Voltage Discharge Rod The DR306 was designed with operator safety in mind. It is used to safely discharge high voltage test objects to ground before it is touched by any personnel. Principles of Operation High voltage points are discharged through a 5M Ohm or 10M Ohm resistor to earth. DR306 Rated Voltage: Discharge Capacitance: Resistor: Weight: Length: 30kV 6uF 5M 2.5kG 700mm 63

64 Safety Devices Discharge Rods DR306 DR606 High Voltage Discharge Rod The DR606 was designed with operator safety in mind. It is used to safely discharge high voltage test objects to ground before it is touched by any personnel. Principles of Operation High voltage points are discharged through a 5M Ohm or 10M Ohm resistor to earth. DR606 Rated Voltage: Discharge Capacitance: Resistor: Weight: Length: 60kV 6uF 10M 2.7kG 1000mm 64

65 Safety Devices Arc-Flash Suits Arc-Flash Suits Arc-Flash Suits ARC FLASH SUITS can increase the chances of survival and decrease the need for medical treatment (skin grafts) and the chances of subsequent infections. It can help preserve the quality of life of a worker exposed to an electric arc event. PPE is not designed to be fire fighter gear, it is worn to reduce the risk of more serious injury. Wearing ordinary clothes, especially synthetic fabrics like, nylon, in an electric arc incident may make injuries worse than if the skin was not covered at all. Normal clothes are fuel sources that ignite, burn and frequently burn into the skin. Specifications Arc-Flash Suits are available in the following Arc Thermal Performance Values: 9+ Cal 25+ Cal 40+ Cal 90+ Cal 65

66 Plymouth Insulation Tapes Mining Tapes Some of our Mining Products PLYTUFF - F/R PVC Jacketing Tape PVC tape specifically formulated for flame resistance and abrasion resistance. Use for repairing nicks and tears in all mining cables. Use this tape for primary insulation through 600V. Ideally suited for securing premolded and shrinkable sleeve ends to the cable jacket. Title 30-CFR 18.64, P-153-MSHA Acceptance. GLF Jacket Repair Wrap Use as a jacket repair or conduit repair when severe conditions tear or puncture the original cable jacket or conduit. Extremely abrasion-resistant, with excellent moisture exclusion properties. Approved under 30 CFR 7.404, approval number P-7K-SK MSHA. GLF2 Jacket Repair Wrap Is our newest laminate of a specially formulated Hypalon backing and 2 flameretardant mastic layers possessing the superior abrasion and moisture resistance required for all types of cable jacket repair. The laminate is easy to apply and remains flexible at low temperatures. GLF 2 will adhere to all types of cable jackets yielding a positive moisture seal. GLF 2 with approval number P-7K-SK MSHA. L969 Fire-Resistant Insulating Tape (Linerless Rubber) Use to insulate around the connector area on splices from 600V-69kV. Also used to fill in irregularities and to smooth out the splice profile before applying jacketing tape. Rubber Mastic (RM) Tapes A self-bonding mastic tape consisting of an ethylene propylene rubber (EPR) backing, bonded to a tacky, temperature stable, electrical grade mastic. Use for insulating and moisture sealing splices and terminations on solid dielectric cable. Can be wrapped, stretched or molded around irregular shapes for insulation buildup, water-sealing, and surface protection. Provides excellent electrical properties, superior adhesion, moisture and chemical resistance. For primary insulation up to 2kV. 66

67 Plymouth Insulation Tapes Electrical Tapes Some of our Electrical Products L969 PLYVOLT Linerless High Voltage Insulating Tape A 30 mil (0,76mm) EPR, self-bonding high voltage tape for insulating and jacketing splices through 69kV. L969 Plyvolt is linerless, and permits quicker application than a tape with liner. Yields a void-free build-up. Excellent corona, ozone, and chemical resistance. L969 Plyvolt can also be used for building stress-cones on power cable through 35kV. ASTM-D- 4388, HH-I-553C. W963 PLYSAFE High Voltage Insulating Tape with Liner A 30 mil (0,76mm) EPR, self-amalgamating high voltage tape for insulating and jacketing splices through 69kV. W963 Plysafe amalgamates quickly, yielding a void-free, electrically stable build-up and is ideal for waterproofing. ASTM-D-4388, HH-I-553C/Grade A, MIL-I- 3825B. 3 BI-SEAL High Voltage Insulating Tape with Liner A polyethylene and ethylene propylene rubber based tape possessing superior electrical, chemical, mechanical and thermal properties. Fuses quickly, yielding a void-free, electrically stable build-up. For insulating and jacketing of splices on power cable from 600 volts through 69kV and for building stress cones and jacketing of terminations on power cable from 600 volts through 35kV. Available in 20 mil (0,51mm) or 30 mil (0,76mm) thickness. ASTM-D-4388, HH-I-553C. W962 High Voltage Insulating Tape With Liner 20 mil (0,51mm) EPR based high voltage tape with superior electrical, chemical, mechanical, and thermal properties. For insulating and jacketing of splices on power cable from 600 volts through 138kV and for building stress cones and jacketing of terminations on power cable from 600 volts through 35kV. W962 is self-amalgamating. ASTM-D PIB Medium Voltage Tape with Black Liner A self-amalgamating, polyisobutylene-based medium voltage tape that maintains a tight insulation build-up for void-free electrical stability and permanent resistance to moisture penetration. For insulating and jacketing of splices on power cables from 600 volts through 46kV. Plymouth s PIB has excellent stretch capabilities that allow fast taping speeds and is compatible with all extruded dielectrical cable insulations. 17 PLYSHIELD EPR Shielding Tape A 30 mil (0,76mm) EPR self-amalgamating, conducting tape for shielding high voltage splices and terminations. Use for rebuilding strand shield and insulation shields on high voltage splices and for shielding all types ofconnections. ASTM-D PLYBRAID Tinned Copper Shielding Tape A tinned copper mesh-knit shielding with exceptional conformability for replacing metallic shield in shielded cable repair. The two-inch width allows for quicker application and a larger overlap for increased safety in flexible cables. 67

68 Plymouth Insulation Tapes Telecommunications Tapes Some of our Telecommunications Products PLYCOM T-818 (G-Vinyl) Designed specifically to meet the exacting requirements of the communications industry. T-818 is fully conformable at 0 F (-18 C) and pulls smoothly from roll at maximum splicing speeds without breaking, yet retains its strength and adhesion at elevated temperatures. Once wrapped T-818 stays down from -40 F to +176 F (-40 C to 80 C). MIL-I-24391C. G Vinyl Specification PLYWRAP 11 Vinyl Corrosion Protection Tape (E-Vinyl) A strong physical barrier which is moisture-proof, inert and non-conducting. Used for protecting splice cases, load coil cases, conduit, and other areas. Provides atmospheric, galvanic, fungal, and bacterial protection. E vinyl Specification COHESIVE RUBBER TAPE (CR) Consists of one soft, uncured layer bonded to a cured, abrasion-resistant layer. Unique separator allows controlled removal at the user s discretion. An air-tight, water-proof, gas -tight seal is formed when the uncured layer is bonded to itself. The industry standard for temporary splice coverings on communication and control cables. Maintains gas pressure in pressurized cable. Communications Industry Specification DOUBLE RUBBER TAPE (DR) Non-adhesive, self-bonding communications tape used for critical sealing and rejacketing. One layer of uncured compound permanently fused to an abrasion-resistant layer of cured rubber. Easy-tear separator. Controlled unwind. Full or half-lapped, a strong bond develops between both plies to maintain gas pressure in pressurized cables. Communications Industry DR Specifications TL-192 and ASTM RUBBER TAPE A 30-mil (0,76 mm) self-amalgamating, low voltage rubber tape that can be used for insulating cable splices through 2kV, in conjunction with a jacketing tape. Compatible with low and high density polyethylene and polypropylene PIC cables plus all rubber and PVC cable elements. 150 ASTM conforms easily and self-amalgamates into a homogenous, void-free mass to provide an effective moisture seal. ASTM-D-4388, Communications Industry Specification

69 Plymouth Insulation Tapes Automotive Tapes Some products in the Plymouth Automotive range N-15 PVC Harness Wrap N-15 PVC Harness Wrap is a durable 7 mil (0,18mm) PVC wiring harnessing tape with an aggressive yet controlled unwind adhesive, designed to eliminate problems relating to Carpal Tunnel Syndrome during taping. Available in black, white, gray, red, yellow, brown, green and blue. Meets the specification requirements of various European car makers. N-40 Black Splice Wrap N-40 Black PVC Splice Wrap is a 15 mil (0,39mm) durable splice protection tape with aggressive adhesive. This tape is very puncture resistant. Meets the specification requirements of various European car makers. # mil (0,30mm) and # mil (0,40mm) Vinyl Protective Sheets These tapes offer superior abrasion resistance. Designed with a convenient adhesive strip on one side for easy application. #575 meets the requirements of Mazda Engineering Standard PA67015 (0,3mm), UT Automotive Spec. UTMS16003 (Type I) and Sumitomo Electric Wiring Systems SES-C3008 (03T). #579 meets the requirements of Mazda Engineering Standard PA67015, Delphi Packard Electric Spec. ESM-4043, UT Automotive Spec. UTMS (Type II) and Sumitomo Electric Wiring Systems SES-C3008 (04T). N-60 N-60 is a 11.4 mil (0,29mm) cotton textile backed uncoated tape with a rubber-based adhesive, designed for use where wiring harness specifications require cotton fabric tape meeting 105?C requirements. Available in black, blue, yellow, brown and white. Meets the specification requirements of various European car makers. 69

70 New Macey Mining Mining Plug & Receptacle 200A Plug & Receptacle New Macey manufactures a large range of waterproof Mining Electrical plugs and receptacles. Traditionally, underground mining electrical couplers consisted of many small parts. Due to the complexity of the system these units needed replacement after only a few months. The New Macey system, made entirely of marine grade stainless steel, ensures simplicity of fitting and due to its unique construction an almost totally waterproof connection system. The unit shown above is a complete standard 200A connection system. 800A Plug & Receptacle New Macey manufactures a large range of waterproof Mining Electrical plugs and receptacles. Traditionally, underground mining electrical couplers consisted of many small parts. Due to the complexity of the system these units needed replacement after only a few months. The New Macey system, made entirely of marine grade stainless steel, ensures simplicity of fitting and due to its unique construction an almost totally waterproof connection system. The unit shown above is a half coupler capable of 800A at 11kV. The size, weight and totally dry termination system makes this plug unique in the industry. 70

71 New Macey Rail Rail Connection system Plate couplers The most recent addition to our inter-car connectors is the patented range of plate couplers. These allow all power, data, communications and safety circuits to be incorporated into the one connector. Each is a separate plug or receptacle module that can be individually replaced without removing the plate coupler from a carriage. The couplers are mounted under carriage draw bars and allow sets to be separated and re joined in a matter of moments. They can operate under their design electrical loads while being fully submerged in water. New Macey plate couplers were used in the Outer Suburban Carriages built for Rail Corp by United Group Rail. These proved to be reliable and met the customer s requirements for quick and safe inter-car coupling. New Macey plugs Plugs are securely connected to receptacles using the well tested Camlock coupling system. The two parts are separated by a rubber gasket which is compressed with coupling levers. This gives a secure and waterproof connection. Multiple terminal plugs are produced to suit your requirements. Apart from earth and power conductors, these can include data and communications circuits. Receptacles New Macey receptacles use high quality silver plated multiple wire or beryllium copper lamella sockets. These significantly reduce the force required to connect to plugs and give positive contact along the full length of terminal pins. Allowable current densities are higher than normal solid sockets, reducing heat generation. 71

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