MX1601B R. Data Sheet. Ultra-rugged Standard Amplifier

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1 MX1601B R Ultra-rugged Standard Amplifier Data Sheet Special features 16 individually configurable inputs (electrically isolated) Support of 60 V, 10 V, 100 mv, 20 ma or IEPE on all channels Sample rate: up to 20 ksamples/s per channel, active low pass filter TEDS support Use in harsh environments (shock, vibration, temperature, dew point) Supply voltage for active transducers (DC) Block diagram Digital platform Connector sockets (ODU) Connectors Connectors Signal Signal Individual transducer supply TEDS A/D Device supply TEDS A/D Electrically isolated Electrically isolated IEEE15888v2 Ethernt (PTP) IEEE1394b FireWire (Power) IEEE1394b FireWire (Power) Supply voltage B en

2 Specifications MX1601B R General specifications Inputs Number 16, electrically isolated channels, to each other and to supply voltage Supported transducer technologies Voltage sources: ± 60 V, ± 10 V, ± 100 mv Current: 0 20 ma, ma Current-fed piezoelectric transducers (IEPE / ICP) A/D converter 24 Bit Delta Sigma Converter Sample rates Samples/s Decimal: ,000 HBM Classic: ,200 Active low-pass filter Bessel, Butterworth, Linear Phase, Filter off Transducer identification (TEDS, IEEE ) max. distance of the TEDS module m 100 Transducer connection ODU MINI-SNAP, 14 pins Supply voltage range (DC) V (24 V 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 V W V ma max. 5 ms at 24 V < 10 < ; adjustable for each channel 0.7 each channel / a total of ; Supply voltage of the module 1 V 30 each channel / a total of 75 10Base-T / 100Base-TX Protocol TCP/IP Connector ODU MINI-SNAP, 8 pins Max. cable length to module m 100 Synchronization options FireWire IEEE1394b Ethernet PTPv2 IEEE1588 Ethernet NTP IEEE1394b FireWire (optional supply voltage) Max. current from module to module Connector FireWire based synchronization Ethernet based Precision Time Protocol Ethernet based Network Time Protocol IEEE 1394b (HBM modules only) A 1.5 ODU MINI-SNAP, 8 pins Max. cable length between the nodes m 5 Max. number of modules connected in series (daisy chain) 12 (=11 Hops 1) ) Nominal (rated) temperature range C [ F] [ ] dew point resistant Storage temperature range C [ F] [ ] Relative humidity % Protection class III Degree of protection (dust, humidity/water) IP65/IP67 per EN EMC requirements Mechanical test Vibration Acceleration Duration Frequency Shock Acceleration Pulse duration Number of impacts m/s 2 min m/s 2 ms CE conformity test per EN accord. MIL STD202G, Method 204D, Test condition C bis 2,000 accord. MIL STD202G, Method 213B, Test condition B Operating altitude, max. m 5,000 Max. input voltage at transducer socket to ground (Pin 4) Pin 14 (TEDS) Pin 3 (voltage) Pin 6 (current) Pin 5 (control lead) V V V V transient free + 5 ± 60 ± 1.5 ± 3.3 Dimensions, horizontal (W x H x D) mm 80 x 205 x 140 Weight, approx. g/pound 2,100 / ) Hop: Transition from module to module or signal conditioning / distribution via IEEE1394b FireWire (hub, backplane) HBM 2

3 Specifications MX1601B R (Continued) Voltage Input 10 V (DC coupled) Accuracy class 0.03 Permissible cable length between MX1601B and transducer m < 100 Measuring range V ± 10 Max. bandwidth (filter off, 3 ) 3,000 Internal resistance of the connected voltage source k < 5 Input impedance M > 10 Noise at 25 C (peak to peak) at 1 Bessel filter at 10 Bessel filter at 100 Bessel filter at 1 k Bessel filter Linearity error % < 0.02 of full scale Common-mode rejection at DC common-mode at 50 common-mode, typically Max. common-mode voltage (to housing and supply ground) V ± 60 Zero drift % / 10 K < 0.03 of full scale Full-scale drift % / 10 K < 0.03 of measurement value > Voltage Input 60 V (DC coupled) Accuracy class 0.05 Permissible cable length between MX1601B and transducer m < 100 Measuring range V ± 60 Max. bandwidth (filter off, 3 ) 3,000 Internal resistance of the voltage source < 500 Input impedance, typ. M 1 Noise at 25 C (peak to peak) with filter 1 Bessel with filter 10 Bessel with filter 100 Bessel with filter 1k Bessel < 500 < 600 < 800 < 2,000 Linearity error % < 0.02 of full scale Common-mode rejection with DC common mode with 50 common mode, typ. Maximum common-mode voltage (to housing and supply ground) V ± 60 Zero drift % / 10 K < 0.03 of full scale Full-scale drift % / 10 K < 0.05 of measurement value > HBM

4 Specifications MX1601B R (Continued) Voltage Input 100 mv (DC coupled) Accuracy class 0.03 Permissible cable length between MX1601B and m < 100 transducer Measuring range mv ± 100 Max. bandwidth (filter off, 3 ) 3,000 Internal resistance of the connected voltage source < 200 Input impedance M > 10 Noise at 25 C (peak to peak) with filter 1 Bessel with filter 10 Bessel with filter 100 Bessel with filter 1 k Bessel Linearity error % < 0.02 of full scale Common-mode rejection with DC common mode with 50 common mode, typically Maximum common-mode voltage (to housing and supply ground) V ± 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 R (Continued) Current Input 20 ma (DC coupled) Accuracy class 0.05 Permissible cable length between MX1601B and m < 100 transducer Measuring range ma ± 20 Max. bandwidth (filter off, 3 ) 3,000 Measuring resistance value 5 Noise at 25 C (peak to peak) at 1 Bessel filter at 10 Bessel filter at 100 Bessel filter at 1 k Bessel filter Linearity error % < 0.02 of full scale Common-mode rejection at DC common-mode at 50 common-mode, typically Max. common-mode voltage (to housing and supply ground) V ± 60 Zero drift % / 10 K < 0.05 of full scale Full-scale drift % / 10 K < 0.05 of measurement value A A A A > ICP / IEPE (Current fed piezoelectric transducers) Accuracy class 0.1 Permissible cable length between MX1601B and m < 30 transducer Transducer excitation ma 4.0 ma 15% Measuring range V ± 8 Max. bandwidth (filter off, 3 ) ,000 Permissible internal resistance of connected voltage k 2 3 source Input impedance M > 1 Noise at 25 C and measuring range 10 V (peak to peak) at 1 Bessel filter at 10 Bessel filter at 100 Bessel filter at 1 k Bessel filter Linearity error % < 0.1 of full scale Common-mode rejection at DC common-mode at 50 common-mode, typically Max. common-mode voltage (to housing and supply ground) V ± 60 Zero drift % / 10 K < 0.1 of full scale Full-scale drift % / 10 K < 0.1 of measurement value > HBM

6 Decimal sample rates and digital low pass filter, type Bessel 4 th order Type -1 () -3 () -20 () Bessel Phase delay *) (ms) Rise time (ms) Overshoot (%) Data rate () 1,203 2,000 3,830 0,09 0,20 4,8 20, ,000 2,494 0,23 0,35 1,0 20, ,278 0,55 0,70 0,9 20, ,53 1,75 0,8 20, ,20 3,5 0,8 20, ,5 7,0 0,8 20, ,3 17,5 0,8 20, ,8 35,0 0,8 20, ,0 0,8 10, ,8 10, ,8 5, ,8 1, ,8 1, , , , ,8 50 *) 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 k k 0,01 0,02 0,1 0,5 2 0,5 0,2 1 5 HBM 6

7 Decimal sample rates and digital low pass filter, type Butterworth 4 th order Type -1 () -3 () -20 () Butterworth Phase delay *) (ms) Rise time (ms) Overshoot (%) Data rate () 2,612 3,000 4,316 0,.0 0, ,000 1,703 2,000 3, , 20, ,000 1, , , , , , , , , , , , ,241 1, , ,481 3, , ,979 7, , ,407 19, , ,814 38, *) 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 k ,01 0,02 0,1 0,5 2 0,5 0, HBM

8 Decimal sample rates and digital low pass filter, Linear Phase (FIR) Typ Linear Phase Start of Roll off -3 () -20 () Phase delay *) (ms) Rise time (ms) Overshoot (%) Rate () 3, ,000 1, ,000 1, , , , , *) 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 Linear Phase (FIR) HBM 8

9 Decimal sample rates and digital low pass filter, Butterworth filter Typ Butterworth Start of Roll off -3 () -20 () Phase delay *) (ms) Rise time (ms) Overshoot (%) Rate () 1, , , , , , *) 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 HBM

10 Classic HBM sample rates and digital low pass filter, type Bessel 4 th order Type -1 () -3 () -20 () Phase delay (ms) *) Rise time (ms) Overshoot (%) Data rate () 1,000 1,575 3, ,200 1,000 1,575 3, , , , , , , , , , , , , ,950 2, ,660 4, ,800 10, ,500 21, Bessel *) 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. Classic HBM sample rates : Amplitude response Bessel filter k k HBM 10

11 Classic HBM sample rates and digital low pass filter, type Butterworth filter 4 th order Type -1 () -3 () -20 () Phase delay (ms) *) Rise time (ms) Overshoot (%) Data rate () 2,000 3,053 5, ,200 1,000 1,170 2, ,200 1,000 1,171 2, , , , , , , , , , , , , ,770 3, ,490 6, ,900 16, ,700 32, *) 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. Butterworth Classic HBM sample rates : amplitude response Butterworth filter k HBM

12 Hottinger Baldwin Messtechnik GmbH. Subject to modifications. All product descriptions are for general information only. They are not to be understood as a guarantee of quality or durability. Hottinger Baldwin Messtechnik GmbH Im Tiefen See Darmstadt Germany Tel Fax: info@hbm.com measure and predict with confidence

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