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CTSR датащи(PDF) 6 Page - LEM |
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CTSR датащи(HTML) 6 Page - LEM |
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6 / 11 page ![]() Page 6/11 28January2014/version 7 LEM reserves the right to carry out modifications on its transducers, in order to improve them, without prior notice www.lem.com CTSR Series Electrical data CTSR 0.6-P At T A = 25 °C, UC = + 5 V, output voltage referred to Vref, unless otherwise noted (see Min., Max., typical definition paragraph) in page 10. Parameter Symbol Unit Min Typ Max Comment Primary nominal residual rms current I PRN mA 600 Primary residual current, measuring range I PRM mA -850 850 Supply voltage U C V 4.75 5 5.25 Current consumption I C mA 17.5 21.6 + I P (mA)/NS With N S = 1000 turns - 40 .. 105 °C Output voltage referred to GND (during Degauss cycle) V out V 0.3 0.5 Note 1) Output voltage referred to V ref (test current) V out V 0.4 0.75 1.1 Note 1) Reference voltage @ I P = 0 V ref V 2.495 2.5 2.505 Internal reference External reference voltage V ref V 2.3 4 Internal reference of V ref input = 499 Ω Note 1) Electrical offset current referred to primary (Note 2)) I OE mA -24 4.2 24 Temperature coefficient of V ref @ IP = 0 TCV ref ppm/K ±50 - 40 .. 105 °C Temperature coefficient of V OE @ IP = 0 TCV OE ppm/K ±520 ppm/K of 2.5 V - 40 .. 105 °C Theoretical sensitivity G th V/A 2.476 Sensitivity error (Note 2)) ε G % -0.7 0.3 0.7 R L > 500 kΩ Temperature coefficient of G TCG ppm/K ±100 - 40 .. 105 °C Linearity error ε L % of I PRM 0.4 1.3 Magnetic offset current (1000 x I PRN) referred to primary I OM mA 17 Output rms noise voltage (spectral density) 1 .. 10 kHz referred to primary V no mV 4 R L > 500 kΩ Reaction time @ 10 % of I PRN t ra µs 5 R L > 500 kΩ, di/dt > 5 A/µs Step response time to 90 % of I PN t r µs 30 R L > 500 kΩ, di/dt > 5 A/µs Frequency bandwidth (- 1 dB) BW kHz 9.5 R L > 500 kΩ Accuracy (Note 3)) X % 1.5 = (ε G 2 + ε L 2 )1/2 Notes: 1) See “Application information” section. 2) Only with a primary nominal residual current, see paragraph “Primary nominal residual current and primary nominal current”. 3) Accuracy @ T A and IP: XTA = (X 2 + (TCG•100•(T A - 25)) 2 + (TCV OE•2.5•(TA - 25 )/Gth•100/ IP ) 2 )1/2. |
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