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ALS31313 датащи(PDF) 18 Page - Allegro MicroSystems |
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ALS31313 датащи(HTML) 18 Page - Allegro MicroSystems |
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18 / 25 page ![]() Automotive Grade, 3-D Linear Hall-Effect Sensor with I2C Output and Advanced Low Power Management ALS31313 18 Allegro MicroSystems, LLC 955 Perimeter Road Manchester, NH 03103-3353 U.S.A. www.allegromicro.com THRESHOLD MODE In Threshold Interrupt Mode, the most recent magnetic sample data is compared to the user-selected threshold for each channel. If the magnetic ADC value is greater than or equal to this thresh- old, an interrupt event will occur. DELTA MODE Delta Interrupt Mode is used in combination with Low-Power Duty Cycle Mode, where the ALS31313 toggles between an Active and a Sleep state. In Delta Interrupt Mode, the ALS31313 will remember its last magnetic data sample when entering LPDCM. New magnetic data is compared to the original sample every time the ALS31313 toggles into the active state. If the delta (change) in magnetic data is larger than the user-selected delta, an interrupt event will occur. User-selectable values for threshold and delta share the registers Z INT Threshold, Y INT Threshold, and X INT Threshold, address 0x03, bits 17:0. In Threshold Mode, the value in these registers will be considered a threshold, while in Delta Mode, the value in these registers will be considered a delta. The ALS31313 may interpret these values as signed or unsigned based on the Signed INT Enable bit. SIGNED INTERRUPT THRESHOLD By default, the value for Signed INT Enable is set to 0, and the user-programmed value for threshold is unsigned. This will trigger an interrupt event when applying a positive or negative magnetic field, causing the absolute value of the magnetic data to meet or exceed the user-selected threshold. If Signed INT Enable is set to 1, the value for threshold becomes signed. This may be used to trigger interrupts on only positive or only negative magnetic fields that cause the value of the magnetic data to meet or exceed the user-programmed threshold. Interrupt threshold for each channel can be programmed indepen- dently using registers Z INT Threshold, Y INT Threshold, and X INT Threshold, address 0x03, bits 17:0. The following examples set an interrupt threshold for the X axis, but the technique also applies to Y and Z axes. When Signed INT Enable = 0, the interrupt threshold will be determined by the equation: threshold = (INT Threshold + 1) × 25 – 1 When Signed INT Enable = 1, the interrupt threshold will be determined by the equation: if X INT Threshold ≥ 0 threshold = (INT Threshold + 1) × 26 – 1 if X INT Threshold < 0 threshold = (INT Threshold + 1) × 26 |
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