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CQ-3204 Datasheet(PDF) 9 Page - Asahi Kasei Microsystems |
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CQ-3204 Datasheet(HTML) 9 Page - Asahi Kasei Microsystems |
9 / 19 page [CQ-3204] 016008768-E-00 2016/07 - 9 - 10.4. Temperature Drift of Sensitivity Vh-d [%] , Temperature Drift of Zero-current output Voltage Vof-d [mV] Temperature drift of sensitivity is defined as the drift ratio of the sensitivity (Vh) at Ta = Ta1 (–40°C ≤ Ta1 ≤ 90°C) to the Vh at Ta = 35°C, and calculated from the formula below: Vh-d = 100 × (Vh(Ta = Ta1) / Vh(Ta = 35°C) – 1) Maximum temperature drift of sensitivity (Vh-dmax) is defined as the maximum value of |Vh-d| through the defined temperature range. Temperature drift of zero-current output voltage is defined as the drift value between the zero-current output voltage (Vof) at Ta = Ta1 (–40°C ≤ Ta1 ≤ 90°C) and the Vof at Ta = 35°C, and calculated from the formula below: Vof-d = Vof(Ta = Ta1) – Vof(Ta = 35°C) Maximum temperature drift of zero-current output voltage (Vof-dmax) is defined as the maximum value of |Vof-d| through the defined temperature range. Reference data of the temperature drift of sensitivity and zero-current output voltage are shown in Figure 5. Figure 5. Temperature drift of sensitivity and zero-current output voltage. |
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