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S-58LM20A-N4T1G Datasheet(PDF) 10 Page - Seiko Instruments Inc |
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S-58LM20A-N4T1G Datasheet(HTML) 10 Page - Seiko Instruments Inc |
10 / 27 page CMOS TEMPERATURE SENSOR IC S-58LM20A Series Rev.1.2_00 Seiko Instruments Inc. 10 3. Nonlinearity ( ∆NL) ∆NL is the nonlinearity of output voltage. Its deviation with the approximation line is shown below. ∆NL is calculated from the following formula. 100 b a ∆NL × = 2 * *1 Output voltage a VOUT (when −20°C) a b a VOUT (when +80°C) (B) Actual measured value (A) Approximation line 0 °C +80°C Temperature [Ta] −20°C *1. The maximum deviation of the actual measurement of output voltage (B) and an approximation line (A) in temperature −20°C to +80°C. The approximation line is the one to be drawn so that “a” should be the minimum value. *2. The difference of the actual measured value of output voltage when −20°C and +80°C. Figure 10 4. Line regulation ( ∆VOUT1) ∆VOUT1 indicates the dependency of output voltage against input voltage. This indicates how much the output voltage varies when changing the input voltage after fixing the output current constant. 5. Load regulation ( ∆VOUT2) ∆VOUT2 indicates the dependency of output voltage against output current. This indicates how much the output voltage varies when changing output current after fixing the input voltage constant. 6. Current consumption – Power supply voltage ( ∆IDD1) ∆IDD1 indicates the dependency of current consumption against power supply voltage. This indicates how much current consumption varies when changing the temperature after fixing an output current constant. 7. Current consumption - Temperature ( ∆IDD2) ∆IDD2 indicates the dependency of current consumption against temperature. This indicates how much current consumption varies when changing the temperature after fixing an output current constant. |
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