Detector (FLS) Flow transmitter (FSV)

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Transcription:

TIME DELT-C (FLS) transmitter (FSV) High accuracy measurement : 1.0% of rate Superior anti-bubble performance : Our dvanced M method is adopted. Maintenance free operation : Non-invasive setup with no moving parts Compact and lightweight : Size and mass reduced by 2/3 (compared with model FLV). Flexible communication functions : RS-232C or RS-485 (MODUS) (option) Wide application range : 13 to 6000mm applicable pipe diameters Quick and easy setup : Simple menu guided setup from the front panel or PC interface dvanced M method: anti-bubble measuring method. ECNO:636a

pplicable pipe diameter is 13mm to 6000mm dvanced received signal digital processing results in higher performance flow measurement Normal propagation Propagation interrupted by bubble ubble ubble v Received signal : t Summed 128 or 256 times for a single output Digital data of the received signals : v v Received signal : t Nothing Synchronized summation of received signals t In the case of an analog system, measurement failure will occur. cceptable value of bubble quantity dvanced M method [vol.%] velocity [m/s]

oth the mass and volume of the flow transmitter are reduced by 2/3! nalog output 1 point (4 to 20m, insulated) Relay contact output 1 point (insulated, with arrester) Transistor contact 2 points (insulated, with arrester) Communication signal (RS232 or RS485 communication)

pplication example Paint (red) transmitter Paint (blue) transmitter Paint (yellow) transmitter Pump Inverter transmitter (type: FSV) pplication: To pump underground water Pump pplication: Water supply to high-rise condominiums and buildings Pump rate regulator (type: PXH) Water supply (type: FLS) Raw water Electromagnetic (type: FM) transmitter (type: FSV) (type: FLS) Ultrapure water is supplied Measurement of the raw water flow rate Semi-conductor manufacturing device Computing unit (type: PD) Heat source Temperature sensor T1: Temperature of the heating medium on the emitting side Temperature sensor T2: Temperature of the heating medium of the receiving side Consumed heat quantity signal (4 to 20mDC) Heat quantity total value pulse signal (DO) Consumed heat quantity K: heat quantity conversion factor (For heating K = 4.123) transmitter (type: FSV) (type: FLS) Q: rate of the heating medium Load

CODE SMOL 1 2 3 4 5 6 7 8 9 10 11 12 13 FSV 1 S Description S E 1 4 S C (Language) (4th digit) Standard (Japanese) Standard (English) (Communication) (5th digit) RS232CDI RS485DI (6th digit) Single measuring path (Power supply) (7th digit) 100 to 240VC 50/65Hz 20 to 30VDC (Case structure) (9th digit) Standard (IP66) (Wire connection port) (10th digit) Weatherproof gland provided (Combination with an explosion-proof detector) (11th digit) (Parameter setting) (12th digit) Setting provided Setting provided + tag Tag (Mounting method) (13th digit) Pipe mount Wall mount 1 2 3 4 5 6 7 8 9 10 FLSE 2 E 1 2 2 2 Description Version (4th digit) Standard Type (5th and 6th digits) Small diameter detector (25 to 100mm) Small detector (50 to 225mm) coustic coupler (7th digit) (Note) Silicone rubber Silicone-free grease Optional specification (10th digit) Tag V method Note: Normally silicone rubber is selected as an acoustic couplant. Silicone rubber is provided in a tube (100g). If you place an order for several units, 1 tube may suffice for every 5 units. Select silicone-free grease for semiconductor equipment or similar that is vulnerable to silicone. The silicone-free grease is water-soluble and cannot therefore be used in an environment exposed to water or on piping subject to condensation. Since the grease does not set, periodic maintenance (cleaning, refilling every about 6 months at normal temperatures) is necessary. Note: Select silicone grease for Teflon-coated piping. 1 2 3 4 5 6 7 8 9 10 11 FLW 2 1 2 1 1 1 1 4 1 1 5 1 1 5 0 1 C D E F G H J K L M N P Q R Z 2 Description Type (4th, 5th and 6th digits) Small sensor, submersible type (50 to 400) Small sensor, submersible type* 2 (50 to 400) Middle sensor, submersible type (200 to 1200) Large sensor, submersible type (200 to 6000) Large sensor, submersible type* 2 (200 to 6000) Optional specification (7th digit) Tag indication provided Signal cable (9th and 10th digits) 10m 20 30 40 50 60 70 80 90 100 110 120 130 140 150 Others Mounting method (11th digit) Standard Z method mounting (for small sensor) V method V or Z method 2: For old pipes, cast iron pipes, mortar lining pipes or others, through which ultrasound signal cannot easily be transmitted, select FLW11 or FLW50. 5: Silicone rubber (KE-348W) is provided as a standard acoustic couplant. 1 2 3 4 5 6 7 8 9 10 11 FLW 2 Description 1 2 0 1 1 0 4 1 0 5 1 0 5 0 0 2 Type (4th, 5th and 6th digits) Small sensor, submersible type (50 to 250) Small sensor, submersible type* 2 (50 to 250) Middle sensor, submersible type (200 to 1200) Large sensor, submersible type (200 to 6000) Large sensor, submersible type* 2 (200 to 6000) Optional specification (7th digit) Tag indication provided Mounting method (11th digit) Standard Z method mounting (50 to 400 for small sensor) 2: For old pipes, cast iron pipes, mortar lining pipes or others, through which the ultrasound signal cannot easily be transmitted, select FLW11 or FLW50. 5: Silicone rubber (KE-348W) is provided as a standard acoustic couplant. 1 2 3 4 5 6 7 8 9 F LD S1 2 2 0 3 2 0 S Description Type (4th, 5th and 6th digits) Small diameter sensor (13 to 100) V method High-temperature sensor *1 (50 to 400) V or Z method elt, acoustic couplant (7th digit) For fixed type Coaxial cable (9th digit) V method V or Z method 1: For turbid fluid, old pipes, cast iron pipes, mortar lining pipes or similar, through which the ultrasound signal cannot easily be transmitted, use the guide rail TK4C6164C1 (optional) and mount the sensor using the Z method. 5: Silicone rubber (KE-348W) is provided for small diameter sensors and high-temperature grease (KS62M) for high-temperature sensors as a standard acoustic couplant.

Specifications

Meter U-bolt (M8) (option) Mounting Pipe (2) 2.5 2.5 Mounting plate 75 142 1 70 1 10 10 SS tag (option) TIME DELT-C ESC ENT 9 Mounting hole 9x10 170 200 233 Earth terminal (M4) C power supply 1 L 2 N 3 4 100 to 240VC 50/60Hz 1 2 3 4 5 6 7 8 9 DO1 TR out DO2 TR out Max. 30VDC, 0.1 DO3 REL I out Max. 240VC/ 30VDC, 1 DC power supply 1 2 3 4 20 to 30VDC 10 GND To the upstream-side sensor 11 12 13 HF1 GND HF2 *1 SH To the downstream-side sensor *1 Only for double shield cable (type FL8, 9) *1 SH Cable gland 153 Option 1 2 3 4 DI1 SHILD TXDR2 TXDR1 1 DI1 2 3 GND RXD 4 TXD Earth terminal (M4) For sensor cable (PF3/8) For power supply/output cable (PG13.5) Status input RS-485 RS-232C Status input M3 screw SS tag (option) Sensor NC connector Frame L Spacing (djustment by every 3mm) Lock clip H 50 34 28 Type Pipe size (mm) L FLSE12 25 to 100 FLSE22 50 to 225 228 348 H 31 30 Spacing 21 to 120 21 to 240 Mass approx.(kg) 0.3 0.4 Sensor Nameplate 80 60 Spacing (0 to 270) 72 Pipe 500 Frame end GND terminal Scale (inch) Scale (mm) 33 Saddle Saddle 40 Chain & spring Spacing (0 to 330) Cursor 26 52 NC connecter Element holder 33 Lock nut 33 90max 205max 530 Spacing (0 to 133) Scale (inch) Cursor 52.5 Scale (mm) NC connecter Lock nut Element holder 36 90 max 320 60 40 72 Wire rope 93 104 Wire rope 62 Fuji Electric our distributor: Coulton Instrumentation Ltd 17 Somerford usiness Park, Christchurch, H23 3RU, UK Tel: +44 1202 480 303 E-mail: sales@coulton.com Web: www.coulton.com