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ADA4571WHRZ-R7 数据表(PDF) 19 Page - Analog Devices |
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ADA4571WHRZ-R7 数据表(HTML) 19 Page - Analog Devices |
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19 / 21 page ![]() Data Sheet ADA4571 Rev. 0 | Page 19 of 21 Product Overview Online Documentation Design Resources Discussion Sample & Buy DIAGNOSTICS Radius Calculation The VSIN and VCOS outputs can be used to calculate a radius value. These outputs have a fixed 90° phase relationship and therefore the calculated radius value remains in a predictable, predetermined range that varies with the temperature of the device independent of the current magnetic field direction. This radius, VRAD, can be used to validate the VSIN and VCOS readings in the ECU. When the calculated radius is no longer within the acceptable bounds, a fault may occur in the system. To calculate radius, use the following formula: 2 2 ) 2 ( ) 2 ( DD COS DD SIN RAD V V V V V − + − = It is important to perform offset calibration before calculating the radius. Figure 32 shows the allowable radius values when GC mode is enabled and Figure 33 shows the allowable radius values when GC mode is disabled. The maximum and minimum VRAD values are calculated based on the allowable amplitude range for VSIN and VCOS, over the entire operating temperature of the device as specified in the Specifications section. This range is represented by the shaded region in Figure 32 and Figure 33. Typical VRAD values for −40°C, +25°C, +125°C, and +150°C are indicated as well. Figure 32. GC On Radius Values Figure 33. GC Off Radius Values Monitoring of the VTEMP pin can allow an even tighter range for radius length at the known temperature. See the Specifications section and the Typical Performance Characteristics section for exact values and output amplitude specifications at each temperature. Broken Bond Wire Detection The ADA4571 includes circuitry to detect broken bond wire conditions between the AMR sensor and the instrumentation amplifier. The detection circuitry consists of current sources and window comparators placed on the signal connections between the AMR sensor and the ASIC. The purpose of the current sources is to pull the signal node outside of the normal operating region in the event of an open bond wire between the AMR sensor and the ASIC. The purpose of the window comparators is to detect when the signal from the AMR sensor is outside of the normal operating region. When the comparators detect that the signal nodes are outside the normal operating region, the circuit pulls the VSIN and/or VCOS node to ground to indicate the fault to the host controller. In addition to the active circuitry, there are applications recommendations, such as the utilization of pull-up and pull- down resistors, which detect broken bond wires by pulling nodes outside of the defined operating regions. A broken bond wire at VTEMP, VCOS, and VSIN interrupts the corresponding outputs. To ensure that the output enters into a known state if there is a broken bond wire on these pins, connect a 200 kΩ pull-down resistor at these pins. Pulling these nodes outside of the normal operating region signals a fault to the host controller. 100 95 90 85 80 75 70 65 60 55 50 45 40 35 30 25 20 15 10 0 5 VCOS MAGNITUDE (%VDD) GC ON –40°C +25°C +125°C +150°C VSIN VCOS VCOS VRAD 100 95 90 85 80 75 70 65 60 55 50 45 40 35 30 25 20 15 10 0 5 VCOS MAGNITUDE (%VDD) GC OFF –40°C +25°C +125°C +150°C VSIN VCOS VCOS VRAD |
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