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CKSR-15-NP Datasheet(PDF) 9 Page - LEM |
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CKSR-15-NP Datasheet(HTML) 9 Page - LEM |
9 / 24 page CASR 6-NP LTSR 6-NP CASR 15-NP LTSR 15-NP CASR25-NP LTSR25-NP Nominal current, I PN A 6 15 25 Measuring range A 20 19.2 51 48 85 80 Response time us < 0.3 0.4 < 0.3 0.4 < 0.3 0.4 Bandwidth (±1 dB) kHz 200 200 200 200 200 200 Output voltage noise, 100 Hz..10 kHz (typ.) mVpp 1.7 10 0.7 4.2 0.4 2.5 Output Voltage Voltage Voltage Sensitivity mV/A 104.2 41.7 25.0 Sensitivity error (max) % of I PN 0.7 0.6 0.7 0.6 0.7 0.6 Offset drift (25°C .. 85°C) (max) % of I PN 0.72 3.6 0.48 1.5 0.24 0.9 Sensitivity drift (25°C .. 85°C) (max) % of I PN 0.24 0.3 0.24 0.3 0.24 0.3 Linearity (max) % of I PN 0.1 0.1 0.1 0.1 0.1 0.1 Accuracy at +25 °C (max) % of I PN 0.8 0.70 0.8 0.70 0.8 0.70 Accuracy at +85 °C (max) % of I PN 1.8 4.60 1.5 2.54 1.3 1.90 Offset max mV 5.3 25 2.2 25 1.4 25 Operating temperature range °C -40 .. 85 -40 .. 85 -40 .. 85 -40 .. 85 -40 .. 85 -40 .. 85 Fig. 7. Comparison between CAS and LTS ; CASR and LTSR models – Electrical performances CAS 6-NP LTS 6-NP CAS 15-NP LTS 15-NP CAS 25-NP LTS 25-NP Nominal current, I PN A 6 15 25 Measuring range A 20 19.2 51 48 85 80 Response time us < 0.3 0.4 < 0.3 0.4 < 0.3 0.4 Bandwidth (±1 dB) kHz 200 200 200 200 200 200 Output voltage noise, 100 Hz..10 kHz (typ.) mVpp 2.4 10 1.0 4.2 0.6 2.5 Output Voltage Voltage Voltage Sensitivity mV/A 104.2 41.7 25.0 Sensitivity error (max) % of I PN 0.7 0.6 0.7 0.6 0.7 0.6 Offset drift (25°C .. 85°C) (max) % of I PN 1.92 4.8 1.68 2.9 1.44 2.4 Sensitivity drift (25°C .. 85°C) (max) % of I PN 0.24 0.3 0.24 0.3 0.24 0.3 Linearity (max) % of I PN 0.1 0.1 0.1 0.1 0.1 0.1 Accuracy at +25 °C (max) % of I PN 0.80 0.70 0.80 0.70 0.80 0.70 Accuracy at +85 °C (max) % of I PN 3.0 5.80 2.7 3.58 2.5 3.40 Offset (max) mV 10.4 25 7.1 25 6.3 25 Operating temperature range °C -40 .. 85 -40 .. 85 -40 .. 85 -40 .. 85 -40 .. 85 -40 .. 85 It is also possible to cancel the offset drift of the reference voltage when working over the defined temperature range by using the same method. The use of the Closed Loop Fluxgate technology allowed achieving significantly better performances for the following parameters: • Initial offset at +25°C • Offset drift • Gain drift as expressed per the following charts (Fig. 7: Comparison between CAS and LTS ; CASR and LTSR models). |
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