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ADP1050ACPZ-R7 数据表(PDF) 37 Page - Analog Devices |
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ADP1050ACPZ-R7 数据表(HTML) 37 Page - Analog Devices |
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37 / 93 page ![]() ADP1050 Data Sheet RTD AND OTP TRIM The RTD requires two trims, one for the ADC and one for the current source. To use the internal linearization scheme, addi- tional trimming procedures are required. Trimming the Current Source Register 0xFE2D[7:6] sets the value of the RTD current source to 10 µA, 20 µA, 30 µA, or 40 µA. Register 0xFE2D[5:0] can be used to fine-tune the current value. By fine-tuning the internal current source, component tolerance can be compensated and errors can be minimized. One LSB in Bits[5:0] = 160 nA. A decimal value of 1 adds 160 nA to the current source set by Register 0xFE2D[5:0]; a decimal value of 63 adds 63 × 160 nA = 10.08 µA to the current source set by Register 0xFE2D[7:6]. Use Register 0xFE2D[7:6] to program a value for the current source, selecting the nearest possible option (10 µA, 20 µA, 30 µA, or 40 µA). Then use Register 0xFE2D[5:0] to achieve the finer step size. For example, to use a value of 46 µA as the current source, complete the following steps: 1. Place a known resistor (Rx) from the RTD pin to AGND. 2. Set Register 0xFE2D[7:6] to 11 binary (40 µA). 3. Increase the value of Register 0xFE2D[5:0], 1 LSB at a time, until the voltage at the RTD pin is VRTD = 46 µA × Rx. The current source is now calibrated and set to the factory default value. Trimming the ADC The first option for trimming the ADC uses the internal linearization scheme with 46 µA RTD current, which provides an accurate reading, expressed in degrees Celsius, read in the READ_TEMPERATURE command (Register 0x8D) in decimal format. Use an R25 = 100 kΩ, 1% accuracy NTC thermistor with beta = 4250, 1% accuracy (such as the NCP15WF104F03RC) in parallel with an external resistor of 16.5 kΩ, 1% accuracy, with the ADP1050. With this NTC thermistor and resistor combination, the ADP1050 default current source trim is set to 46 µA to achieve the best possible accuracy over temperatures ranging from 85°C to 125°C. If an external microcontroller is used, the RTD ADC value in Register 0xFEAB can be fed into the microcontroller, and a different linearization scheme can be implemented in terms of a best-fit polynomial for the selected NTC characteristics. Rev. A | Page 36 of 92 |
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