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EMC1813 Datasheet(PDF) 29 Page - Microchip Technology |
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EMC1813 Datasheet(HTML) 29 Page - Microchip Technology |
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29 / 102 page ![]() 3. Read ROC Status register: For the first conversion, the ROC Status register (3Fh) reads 00h. Note that the initial slope of the sample period is determined using the first and second samples of the sample period. 4. Stabilize ambient temperature of device to +35°C. 5. Initiate One-Shot conversion: Write a value of FFh in register 0Fh. 6. Read ROC Status register: For the second conversion the ROC Status register (3Fh) should read 00h. Again, the initial slope of the sample period is determined using the first and second samples of the sample period. 7. Stabilize ambient temperature of device to 30°C. 8. Initiate One-Shot conversion: Write a value of FFh in register 0Fh. 9. Read ROC Status register: For the third conversion, the ROC Status register (3Fh) reads F0h. The initial slope of the sample period is positive, going from +25°C to +35°C. A change in temperature from 35°C to 30°C causes a slope change, the number of slope changes is now 1 (odd). See ROC Status register (3Fh) bit descriptions for more clarification. 10. Stabilize ambient temperature of device to 45°C. 11. Initiate One-Shot conversion: Write a value of FFh in register 0Fh. 12. Read ROC Status register: For the fourth conversion the ROC Status register (3Fh) should read C0h. The previous slope was negative, going from +35°C to +30°C. A change in temperature from +30°C to +45°C causes a slope change, the number of slope changes is now two (even). 13. Stabilize ambient temperature of device to +35°C. 14. Initiate One-Shot conversion: Write a value of FFh in register 0Fh. 15. Read ROC Status register: For the fifth conversion the ROC Status register (3Fh) should read FCh. The previous slope was positive, going from +30°C to +45°C. A change in temperature from +45°C to +35°C causes a slope change, the number of slope changes is now three (odd). Once the final conversion of the sample period is completed, the ROC result is calculated using the equation below and compared to the ROC HB/LB Limit registers. In this scenario, the ROC limit was exceeded and the appropriate bits were set in the ROC Status register. 16. Read ROC Result HB/LB ROC Result register: Once the final conversion of the sample period is completed, the ROC result is calculated using the following equation. This value is loaded into the ROC HB/LB result register. Based on the equation, the result is 5: ROCResults= 35−25��2 4 =5: The ROCx high byte and low byte are in 9-bit signed two's complement format. The MSB of the low byte is the LSB of the corresponding high byte. For this example the ROC HB and LB would be as follows: Table 5-10. ROC1,2/3 High-Byte (40h, 44h) Sign 7 6 5 4 3 2 1 0 0 0 0 0 0 1 0 Table 5-11. ROC Low-Byte (45h) LSB 2 1 0 LSB 3 2 1 HB2 — — — HB1 — — — 1 0 0 0 1 0 (Note) 0 (Note) 0 (Note) Multi-Channel Low-Voltage Remote Di... System Block Diagram © 2018 Microchip Technology Inc. Datasheet DS20005751A-page 29 |
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