MX1601B. Data Sheet. Universal amplifier. Special features. Block diagram Digital platform. B en

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1 MX1601B Universal amplifier Data Sheet Special features 16 individually configurable inputs (electrically isolated) Connection of of standard signals (60, 10, 100 m, 20 ma, IEPE) Individual data rates up to 20,000 Hz per channel, active low pass filter 24 bit A/D converter per channel for synchronous, parallel measurements TEDS support Configurable supply of active transducers (DC) Block diagram Digital platform Connector sockets (plug terminal) Connectors Connectors Signal Signal Transducer supply TEDS A/D Supply voltage TEDS A/D Electrically isolated Electrically isolated Ethernet IEEE1394b FireWire IEEE1394b FireWire Supply voltage

2 Specifications MX1601B General specifications Inputs Number 16, electrically isolated from each other and from the supply voltage 1) Transducer technologies oltage, current, current fed piezoelectric sensors (IEPE) A/D converter Sample rates (Domaine adjustable by software, Factory setting is HBM Classic) S/s 24 Bit Delta Sigma converter Dezimal: 0,1 20,000 HBM Classic: 0,1 19,200 Aktive low-pass filter Hz Bessel, Butterworth, linear phase ( 3 ), Filter OFF Transducer identification (TEDS, IEEE ) max. distance of the TEDS module m 100 Transducer connection Phönix Contact FMC 1,5/8 ST 3,5 RF plug terminal Supply voltage range (DC) (24 nominal (rated) voltage) Supply voltage interruption Power consumption without adjustable transducer supply with adjustable transducer supply Transducer Excitation (active transducers) Only channel : Adjustable supply voltage (DC) Maximum output power Only channel : Supply voltage (DC) Maximum output current Ethernet (data link) W W W ma max. 5 ms at 24 < 10 < ; adjustable for each channel 0.7 each channel / a total of ; Supply voltage of the module 1 30 each channel / a total of 75 10Base-T / 100Base-TX Protocol/addressing TCP/IP (direct IP address or DHCP) Connection 8P8C plug (RJ-45) with twisted pair cable (CAT-5) Max. cable length to module m 100 IEEE1394b FireWire (module synchronization, data link, IEEE 1394b (HBM modules only) optional supply voltage) Baud rate MBaud 400 (approx. 50 MByte/s) Max. current from module to module A 1.5 Max. cable length between the nodes m 5 Max. number of modules connected in series (daisy chain) 12 (=11 Hops) Max. number of modules in a IEEE1394b FireWire system (including hubs 2), backplane) 24 Max. number of hops 3) 14 Synchronization options EtherCAT IRIG B (B000 to B007; B120 to B127) IEEE1588 (PTPv2), NTP FireWire (automatically, recommended) via CX27 via MX440A- or MX840A input channel Ethernet based Network Time Protocol Nominal (rated) temperature range C [ F] [ ] Storage temperature range C [ F] [ ] Rel. humidity % (non condensing) Protection class Degree of protection IP20 per EN Mechanical tests 4) ibration (30 min) m/s 2 50 Shock (6 ms) m/s EMC requirements per EN Max. input voltage at transducer socket to ground Pin 4 (TEDS) Pin 1 (voltage) Pin 3 (current) Pin 5 (control lead) III transient free ,5 + 3,3 Dimensions, horizontal (W x H x D) mm 52.5 x 200 x 122 (with case protection) 44 x 174 x 119 (without case protection) Weight, approx. g 980 1) When the variable transducer supply is used, there is no electrical isolation from the supply voltage. 2) Hub: IEEE1394b FireWire node or distributor 3) Hop: Transition from module to module or signal conditioning / distribution via FireWire (hub, backplane) 4) Mechanical stress is tested according to European Standard EN for vibrations and EN for shock. The equipment is subjected to an acceleration of 50 m/s 2 in a frequency range of Hz in all 3 axes. Duration of this vibration test: 30min per axis. The shock test is performed with a nominal acceleration of 350 m/s 2 for 6 ms, half sine pulse shape, with 3 shocks in each of the 6 possible directions. HBM 2

3 Specifications MX1601B (Continued) 10 (DC) standardized voltage Accuracy class 0.03 Transducers that can be connected oltage sources up to 10 Permissible cable length between MX1601B and transducer m 100 Measuring range 10 Measurement frequency range ( 3 ) Hz ,000 Internal resistance of the connected voltage source k < 5 Input impedance M > 10 Noise at 25 C (peak to peak) at 1 Hz Bessel filter at 10 Hz Bessel filter at 100 Hz Bessel filter at 1 khz Bessel filter at filter Off, values/s Linearity error % < 0.02 of full scale Common-mode rejection at DC common-mode at 50 Hz common-mode, typically > Max. common-mode voltage (to housing and supply ground) 60 Zero drift % / 10 K < 0.02 of full scale Full-scale drift % / 10 K < 0.03 of measurement value 60 (DC) standardized voltage Accuracy class 0.05 Transducers that can be connected voltage generator up to 60 Permissible cable length between MX840B and transducer m 100 Measuring range 60 Measurement frequency range ( 3 ) Hz Internal resistance of the voltage source < 500 Input impedance, typ. M 1 Noise at 25 C (peak to peak) with filter 1Hz Bessel with filter 10Hz Bessel with filter 100Hz Bessel with filter 1kHz Bessel < 500 < 600 < 800 < 2,000 Linearity error % < 0.02 of full scale Common-mode rejection with DC common mode with 50 Hz common mode, typ. > Maximum common-mode voltage (to housing and supply ground) 60 Zero drift % / 10 K < 0.03 of full scale Full-scale drift % / 10 K < 0.05 of measurement value 3 HBM

4 Specifications MX1601B (Continued) 100 m DC standardized voltage Accuracy class 0.1 Transducers that can be connected voltage generator up to 100 m Permissible cable length between MX1601B and transducer m 100 Measuring range m 100 Measurement frequency range ( 3 ) Hz ,000 Internal resistance of the connected voltage source < 200 Input impedance M > 10 Noise at 25 C (peak to peak) with filter 1 Hz Bessel with filter 10 Hz Bessel with filter 100 Hz Bessel with filter 1 khz Bessel at filter Off, values/s Linearity error % < 0.02 of full scale Common-mode rejection with DC common mode with 50 Hz common mode, typically > Maximum common-mode voltage (to housing and supply ground) 60 Zero drift % / 10 K < 0.03 of full scale Full-scale drift % / 10 K < 0.03 of measurement value HBM 4

5 Specifications MX1601B (Continued) Current 20 ma (DC) Accuracy class 0.05 Transducers that can be connected Transducer with current output ( ma or ma) Permissible cable length between MX1601B and transducer m 100 Measuring range ma 20 Measurement frequency range ( 3 ) Hz ,000 Measuring resistance value 5 Noise at 25 C (peak to peak) at 1 Hz Bessel filter at 10 Hz Bessel filter at 100 Hz Bessel filter at 1 khz Bessel filter at filter Off, values/s Linearity error % < 0.02 of full scale Common-mode rejection at DC common-mode at 50 Hz common-mode, typically A A A A A > Max. common-mode voltage (to housing and supply ground) 60 Zero drift % / 10 K < 0.05 of full scale Full-scale drift % / 10 K < 0.05 of measurement value Current fed piezoelectric transducers (IEPE, Integrated electronics Piezo electric) Accuracy class 0.1 Transducer technology Current-fed piezoelectric transducer Permissible cable length between MX1601B and transducer May be laid inside closed buildings only m < 30 Transducer excitation ma 4.0 ma 15% Measuring range 8 Measurement frequency range ( 3 ) Hz ,000 Permissible Internal resistance of the connected k voltage source Input impedance M > 1 Noise at 25 C at 1 Hz Bessel filter at 10 Hz Bessel filter at 100 Hz Bessel filter at 1 khz Bessel filter at filter Off, values/s ,000 Linearity error % < 0.1 of full scale Common-mode rejection at DC common-mode at 50 Hz common-mode, typically > Max. common-mode voltage (to housing and supply ground) 60 Zero drift % / 10 K < 0.1 of full scale Full-scale drift % / 10 K < 0.1of measurement value 5 HBM

6 Decimal sample rates and digital low pass filter, type Bessel 4 th order Typ -1 (Hz) -3 (Hz) -20 (Hz) Bessel Phase delay *) (ms) Rise time (ms) Overshoot (%) Data rate (Hz) ,9 127, ,8 20,0 50, ,9 10,0 25, ,96 4,99 12, ,18 2,00 5, ,59 1,00 2, ,295 0,498 1, ,118 0,200 0, ,059 0,100 0, ,0295 0,0498 0, ,0118 0,0200 0, ,0059 0,0100 0, *) The analog-to-digital converter s delay time is 128 s for all data rates and has not been accounted for in the Phase delay column! The anti-aliasing filter s delay time (160 s) is not accounted for as well. Hence. 288 s need to be added to the Phase delay. Decimal sample rates : Amplitude response Bessel filter Hz 0,001 0,01 0, Hz 0.05 Hz 0.02 Hz 0.1Hz 0.2Hz 0.5Hz 1 Hz 2 Hz 5 Hz 10Hz 20Hz 50Hz 100Hz 200Hz 500Hz 2 khz 1 khz HBM 6

7 Decimal sample rates and digital low pass filter, type Butterworth 4 th order Typ -1 (Hz) -3 (Hz) -20 (Hz) Butterworth Phase delay *) (ms) Rise time (ms) Overshoot (%) Data rate (Hz) ,16 0,16 16, ,24 0,22 12, ,46 0,40 11, ,90 0, ,26 1, ,50 3, ,2 50,0 88,8 9,00 7, ,9 20,0 35,5 22,5 19, ,4 10,0 17, , ,22 5,00 8, , ,68 2,00 3, ,84 1,00 1, ,423 0,500 0, ,169 0,200 0, ,084 0,100 0, ,0422 0,0500 0, ,0168 0,0200 0, ,0085 0,0100 0, *) The analog-to-digital converter s delay time is 128 s for all data rates and has not been accounted for in the Phase delay column! The anti-aliasing filter s delay time (160 s) is not accounted for as well. Hence. 288 s need to be added to the Phase delay. Decimal sample rates : Amplitude response Butterworth filter Hz 0,001 0,01 0, Hz 0.05 Hz 0.02 Hz 0.1Hz 0.2Hz 0.5Hz 5 Hz 2 Hz 1 Hz 10Hz 20Hz 50Hz 2 500Hz khz 200Hz 100Hz 1 khz 3 khz 7 HBM

8 Classic HBM sample rates and digital low pass filter, type Bessel 4 th order Type -1 (Hz) -3 (Hz) -20 (Hz) Phase delay (ms) *) Rise time (ms) Overshoot (%) Date rate (Hz) Bessel Classic HBM sample rates : Amplitude response Bessel filter Hz 10 Hz 20 Hz 50 Hz 200 Hz 1 khz 500 Hz 100 Hz Hz 0.01 Hz 0.02 Hz 0.1 Hz 0.5 Hz 2 Hz 0.5 Hz 0.2 Hz 1 Hz 5 Hz HBM 8

9 Classic HBM sample rates and digital low pass filter, type Butterworth 4 th order Type -1 (Hz) -3 (Hz) -20 (Hz) Phase delay (ms) *) Rise time (ms) Overshoot (%) Date rate (Hz) *) The analog-to-digital converter s delay time is 128 s for all data rates and has not been accounted for in the Phase delay column! Butterworth Classic HBM sample rates : Amplitude response Butterworth filter Hz 10 Hz 20 Hz 200 Hz 2 khz 50 Hz 500 Hz 100 Hz 1 khz 0.01 Hz 0.02 Hz 0.1 Hz 0.5 Hz 2 Hz 0.5 Hz 0.2 Hz 1 Hz 5 Hz Hz 9 HBM

10 Specifications Power pack NTX001 NTX001 Nominal input voltage (AC) ( 10%) Stand-by power consumption at 230 W 0.5 Nominal load U A I A Static output characteristics U A I A U Br (Output voltage ripple; peak to peak) A A m % Current limiting, typically from A 1.6 Primary secondary separation galvanically, by optocoupler and converter Creep distance and clearance mm 8 High-voltage test k 4 Ambient temperature range o C [ F] [ ] Storage temperature o C [ F] [ ] Accessories, to be ordered separately General accessories Article Description Order No. oltage supply AC-DC power supply / 24 3m cable QuantumX supply Communication Ethernet cross over cable IEEE1394b FireWire cable (module-to-module) IEEE1394b IEEE1394b FireWire IEEE ExpressCard IEEE1394b FireWire cable PC-to-module IEEE1394b FireWire cable from hub to module, IP68 IEEE1394b FireWire Extender SCM FW Input : AC ( 10%), 1.5 m cable Output: 24 DC, max A, 2 m cable with ODU connector 3 m cable for voltage supply of QuantumX modules; Suitable plug (ODU Medi-Snap S11M08 P04MJGO 5280) on one side and open strands on the other end. Ethernet cross over cable for direct operation between a PC or Notebook and a module / device, length 2 m, type CAT5+ FireWire connection cable for QuantumX or SomatXR-modules; with matching plugs on both sides. Length 0.2 m/2 m/5 m Note: The cable enables modules to be supplied with power (max. 1.5 A, from the source to the last drain). FireWire IEEE 1394b ExpressCard (ExpressCard/34) to connect QuantumX modules to a notebook or PC Firewire connection cable between module and PC. With matching plugs on both sides; Length: 3 m. No voltage supply of the modules possible via KAB293. FireWire connection cable between HUB and module. For data transfer from QuantumX modules to the HUB. Fitted with suitable plugs at both ends. Length: 3 m Package including 2 in-line elements for extension of the FireWire connection up to 40 m; Required parts: 2 x 1-KAB269-x and Industrial Ethernet cable (M12, CAT5e. No voltage supply of the modules possible via KAB NTX001 1 KAB KAB KAB KAB KAB IF002 1 KAB KAB SCM-FW HBM 10

11 Specifications Power pack NTX001 MX1601B accessories Article Description Order No. Mechanic Connecting elements for QuantumX modules Connecting elements for QuantumX modules QuantumX backplane (standard) QuantumX Backplane Transducer side Connecting elements (clips) for QuantumX modules; Set comprising 2 case clips including mounting material for fast connection of 2 modules. Fitting panel for mounting of QuantumX modules using case clips (1 CASECLIP), lashing strap or cable tie. Basic fastening by 4 screws. QuantumX backplane for a maximum of 9 modules, IP20 version; Mounting on wall or control cabinet (19 ) Connection of external modules by FireWire possible Power supply 24 DC / max. 5 A (150 W) QuantumX Backplane Rack for maximum 9 modules in IP 20; - 19 rack mounting with handles left and right; - Connection of external modules via FireWire possible; - Power supply: 24 DC / max. 5 A (150 W). 1 CASECLIP 1 CASEFIT 1 BPX001 1 BPX002 Push-In connector (8 Pins), Gold 10 push-in-connectors, Phönix Contact, 8 pins Gold 1 CON S Wire EEPROMS Package of 10 pieces of 1-wire EEPROMS DS24B33 (IEEE TEDS) 1 TEDS PAK 11 HBM

12 Accessories, to be ordered separately (continued) General accessories Article Description Order No. Software and product packages catman AP catman EASY Complete package including catman Easy functionality plus additional modules such as integration of video cameras (EasyideoCam), complete post-process analysis (EasyMath), automation of recurring processes (EasyScript), offline preparation of measurement projects (EasyPlan) as well as additional functions such as calculating electrical power, special filters, frequency spectrum, etc. More details at The basic software package for measurement data acquisition comprises convenient channel parameterization using TEDS or the sensor database, measurement job parameterization, individual visualization, data storage and reporting. 1 CATMAN AP 1 CATMAN EASY catman PostProcess Post Process edition for visualization, preparation and analysis of measurement data, including many mathematical functions, data export and reporting. 1 CATEASY PROCESS LabIEW TM -Treiber 1) Universal driver from HBM for LabIEW TM. 1 LabIEW DRIER DIAdem driver QuantumX driver for DIAdem software from National 1 DIADEM DRIER Instruments. German user interface only. CANape driver QuantumX driver for CANape software from ector Informatik. CANape versions from 10.0 are supported. 1 CANAPE DRIER Hottinger Baldwin Messtechnik GmbH. Modifications reserved. All details describe our products in general form only. They are not to be understood as express warranty and do not constitute any liability whatsoever. Hottinger Baldwin Messtechnik GmbH Im Tiefen See Darmstadt Germany Tel Fax: info@hbm.com measure and predict with confidence

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