For the electronic measurement of current: DC, AC, pulsed..., with galvanic separation between the primary and the secondary circuit.
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1 Current Transducer GO-SME series I P N = A Ref: GO 10-SME, GO 20-SME For the electronic measurement of current: DC, AC, pulsed..., with galvanic separation between the primary and the secondary circuit. Provisional Features Hall effect measuring principle Galvanic separation between primary and secondary circuit Insulated test voltage 2500 V RMS Low power consumption Extremely low profile Single power supply +5 V Fixed offset & sensitivity Response time 2 µs. Advantages Small size and space saving High immunity to external interference High insulation capability Low electrical resistance (0.9 mω) No magnetic hysteresis Robust against external fields and cross-talk. Applications Small drives HVAC Appliances E-Bikes. Standards IEC : 2007 IEC : 2010 IEC : 2005 UL 1577: Application Domains Industrial. N G ; N G Page 1/8
2 Absolute maximum ratings Parameter Symbol Unit Min Typ Max Conditions Maximum supply voltage (not destructive) Maximum supply voltage (not entering nonstandard modes) U C max Maximum overload capability Î P max A ±200 T A, 1 ms pulse Maximum electrostatic discharge voltage (HMB-Human Body Model) Maximum electrostatic discharge voltage (CDM-Charged Device Model) V U ESD HBM V 2000 AEC-Q REV D U ESD CDM V 500 AEC-Q REV B Maximum output current source I out max ma 25 Maximum output current sink I out max ma 50 Maximum junction temperature T J max C Insulation coordination Parameter Symbol Unit Value Comment RMS voltage for AC insulation test, 50 Hz, 1 min U d V 2500 According to IEC RMS voltage for AC insulation test, 60 Hz, 1 min U d V 2500 According to UL 1577 RMS voltage for AC insulation test, 50 Hz, 1 min U d V 2400 According to IEC Impulse withstand voltage 1.2/50 μs Û W V 4000 Partial discharge RMS test voltage (q m < 5 pc) U t V 850 Clearance (pri. - sec.) d CI mm 4 According to IEC , IEC , UL Primary/secondary Corresponds to a recurring peak voltage of 728 V peak-topeak According to IEC , IEC Shortest distance through air Creepage distance (pri. - sec.) d Cp Shortest path along body Comparative tracking index CTI > 600 Material group I Application example V 300 V RMS CAT II, PD2 Basic insulation according to IEC , IEC , IEC UL 1577 Non Optical isolating devices - Component File # E486776, Vol 1 Single protection, non-optical isolators, 2500 vac isolation Standards UL 1577, Optical Isolators; CSA Component Acceptance Service Notice N. 5 A, Component Acceptance Service for Optocouplers and Related Devices. Marking Only those products bearing the UL or UR Mark should be considered to be Listed or Recognized and covered under UL s Follow- Up Service. Always look for the Mark on the product. Page 2/8
3 Environmental and mechanical characteristics Parameter Symbol Unit Min Typ Max Conditions Ambient operating temperature T A C Ambient storage temperature T S C Resistance of the primary R P mω 0.9 Thermal resistance junction to board 1) R th JB K/W 15 Time constant t s 1 To reach steady state Note: 1) Done on LEM evaluation board PCB Block diagram I P UC Clock Voltage Regulator Reference V ref Amplification and filters Driver and filter X Chopping X De-chopping Calibration stored in EEPROM I P Connection diagram Pin# Name Function From 1 to 2 I P+ Input of the primary current From 3 to 4 I P Output of the primary current 5 GND Ground 6 V ref Reference voltage (output) 7 Output voltage 8 U C Supply voltage GO-SME I p + I p - I 1 p + I 2 p + +U c 8 7 I 3 p - V ref 6 I 4 p - GND 5 +Uc 47nF 47nF 4.7nF +U c V ref GND Page 3/8
4 Electrical data GO 10-SME At T A = 40 C 125 C, U C = +5 V, R L = 10 kω unless otherwise noted. Parameter Symbol Unit Min Typ Max Conditions Primary nominal RMS current I P N A 10 Primary current, measuring range I P M A Supply voltage U C V Current consumption I C ma Reference voltage (output) V ref V C Reference voltage (input) V ref V U C = 5 V Output voltage I P M V ref V 2 2 Output internal resistance R out Ω 5 Up to 10 khz Reference internal resistance R ref Ω Load resistance R L kω Capacitive loading C L nf 0 6 Theoretical sensitivity G th mv/a 80 Electrical offset I P N = 0 V O E mv 5 5 T A, V V ref = 2.5 V Electrical offset current referred to I P N I O E ma T A Temperature coefficient of V ref TCV ref ppm/k V ref = 2.5 V Temperature coefficient of V O E TCV O E mv/k Temperature coefficient of I O E TCI O E ma/k Temperature coefficient of G TCG ppm/k Step response time to 90 % of I P N t r µs 2 Reaction 10 % of I P N t ra µs 1.5 Frequency bandwidth 3 db, T A BW KHz 300 Output noise voltage spectral density e no µv/hz 1/ NBW = 1 khz 100 khz Sensitivity error ε G % 1 1 Factory adjustment Linearity error 0 I P N ε L % Linearity error 0 I P M ε L % Measurement I P N ε % T A Measurement I P N = 85 C 1) ε % Measurement I P N = 105 C ε % Measurement I P N = 125 C ε % Note: 1) Measurement error ε: ε TA TCV O E = (ε L + ε G ) + ( + TCG 10 ) -6 (T I P N G A 25) 100 Page 4/8
5 Electrical data GO 20-SME At T A = 40 C 125 C, U C = +5 V, R L = 10 kω unless otherwise noted. Parameter Symbol Unit Min Typ Max Conditions Primary nominal RMS current I P N A 20 Primary current, measuring range I P M A Supply voltage U C V Current consumption I C ma Reference voltage (output) V ref V C Reference voltage (input) V ref V U C = 5 V Output voltage I P M V ref V 2 2 Output internal resistance R out Ω 5 Up to 10 khz Reference internal resistance R ref Ω Load resistance R L kω Capacitive loading C L nf 0 6 Theoretical sensitivity G th mv/a 40 Electrical offset I P N = 0 V O E mv 5 5 T A, V V ref = 2.5 V Electrical offset current referred to I P N I O E ma T A Temperature coefficient of V ref TCV ref ppm/k V ref = 2.5 V Temperature coefficient of V O E TCV O E mv/k Temperature coefficient of I O E TCI O E ma/k Temperature coefficient of G TCG ppm/k Step response time to 90 % of I P N t r µs 2 Reaction 10 % of I P N t ra µs 1.5 Frequency bandwidth 3 db, T A BW KHz 300 Output noise voltage spectral density e no µv/hz 1/2 7 NBW = 1 khz 100 khz Sensitivity error ε G % 1 1 Factory adjustment Linearity error 0 I P N ε L % Linearity error 0 I P N ε L % Measurement I P N = 85 C 1) ε % T A Measurement I P N = 105 C Measurement I P N = 125 C Measurement I P N = 125 C ε % ε % ε % Note: 1) Measurement error ε: ε TA TCV O E = (ε L + ε G ) + ( + TCG 10 ) -6 (T I P N G A 25) 100 Page 5/8
6 Dimensions (in mm) Page 6/8
7 Tape and reel dimensions (in mm) LOCK FEATURE 6 PLACES MATTE FINISH THESE AREAS REVISIONS NO. DESCRIPTION DATE BY LOKREEL MINNEAPOLIS, USA U.S. PAT REF REF SEE DETAIL "A" NOMINAL HUB WIDTH +.6 W W MAX W1 (MEASURED AT HUB) 8mm W2 (MEASURED AT HUB) Ø20.2 MIN 12mm 16mm U.S. PATENT mm mm All Dimensions in Millimeters - Ø ±0.5 44mm mm TOLERANCES (EXCEPT AS NOTED) DECIMAL ASSEMBLED 330mm LOKREEL, 4" HUB DETAIL "A" ± FRACTIONAL ± ANGULAR ± DRAWN BY CHK'D TRACED T.S. SCALE DATE APP'D NONE 9/11/96 MATERIAL DRAWING NO. N/A A Notes: 1) 10 Sprocket hole pitch cumulative tolerance ±0.2 mm 2) Camber in compliance with EIA 481 3) Pocket position relative to sprocket hole measured as true position of pocket, not pocket hole. Page 7/8
8 Soldering requirements MSL3, 260 C - IPC/JEDEC J-STD-020 Ordering information Item number Description Package type Package quantity G GO 10-SME Reel 3000 G GO 10-SME KIT 5P Blister 5 G GO 10-SME SET OF 50 PCS ESD Bag 50 G GO 20-SME Reel 3000 G GO 20-SME KIT 5P Blister 5 G GO 20-SME SET OF 50 PCS ESD Bag 50 Page 8/8
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