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ADA4570BRZ-R7 数据表(PDF) 12 Page - Analog Devices |
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ADA4570BRZ-R7 数据表(HTML) 12 Page - Analog Devices |
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12 / 14 page ![]() Data Sheet ADA4570 APPLICATIONS INFORMATION analog.com Rev. 0 | 12 of 14 VTEMP OUTPUT PIN An internal temperature sensor provides a voltage output at the VTEMP pin that can be used to monitor the operating temperature of the system and provide the reference for calibration. This output voltage (VTEMP) is ratiometric to the ADA4570 supply voltage. Using an ADC, the reference of which is supplied by the VDD of the ADA4570, ensures that the digitized temperature measurement is also ratiometric. To achieve maximum accuracy from the VTEMP output voltage, perform an initial calibration at a known and controlled temperature. To calculate the temperature, use the following equation: TVTEMP=VTEMP−VCAL VDD −TCAL×TCO TCO (1) where: TVTEMP is the calculated temperature (°C) from the VTEMP output voltage. VTEMP is the VTEMP output voltage during operation. VCAL is the VTEMP output voltage during calibration at a controlled temperature. TCAL is the controlled temperature during calibration. TCO is the temperature coefficient of the internal circuit. See the Specifications section for the exact value. VDD is the supply voltage. In Figure 18, an optional resistor is shown in the VTEMP signal path to the ADC. When operating in a harsh environment, this resistor increases device immunity to EMI. POWER CONSUMPTION The power consumption is dependent on the supply voltage and temperature as shown in Figure 8. The analog outputs are protected against short circuit to the VDD pin or ground by a current limitation. DIAGNOSTIC Broken Bond Wire Detection The ADA4570 includes the ability to detect broken bond wires between the AMR sensor and the ASIC. When this circuitry detects that the signal nodes are outside the normal operating region, the device pulls the VSIN+, VSIN−, VCOS+, and VCOS− analog output pins to ground. Monitor the voltage level of the analog signals to verify that the output level does not fall within the short-circuit diagnostic band shown in Figure 20. If the outputs fall within the short-circuit diagnostic band shown in Figure 20, the user must take the appropriate action. Figure 20. Short-Circuit Diagnostic Band Short-Circuit Diagnostic Bands The output levels of the ADA4570 were designed to be within the linear region shown in Figure 20 during normal operation. Validate that the output levels are within the appropriate operating band. If any, or all, of the VSIN+, VSIN−, VCOS+, and VCOS− outputs are in the diagnostic bands, the outputs must be treated at the system level because this is an indication of a potential fault. Radius Calculation The differential signal outputs, VSIN and VCOS, from the ADA4570 can be used to calculate a radius (VRAD) of the circle at any angle of the applied magnetic field, as is shown in Figure 21. Figure 21. Radius Values VRAD is equal to the vector sum of the differential signal outputs, VSIN and VCOS. VRAD = VSIN2 + VCOS2 Due to the constant phase difference of 90° between the measure- ments of the differential signal outputs, VSIN and VCOS, VRAD is constant over an entire magnetic revolution for a constant tempera- ture and supply. It is important to perform an offset calibration before a radius calculation is done. |
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