| 전자부품 데이터시트 검색엔진 |
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EMC2303 데이터시트(PDF) 40 Page - Microchip Technology |
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EMC2303 데이터시트(HTML) 40 Page - Microchip Technology |
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40 / 70 page ![]() EMC2301/2/3/5 DS20006532A-page 40 2021 Microchip Technology Inc. 6.16 PID Gain Register See Section 4.3.3.2 “Setting the PID Gains”. bit 4-3 DPTx[1:0]: Derivative Options. Determines what form of derivative will be used in the Fan Speed Setting calculation (see Section 4.3.3.1 “Selecting the Derivative Options”). 11 = BOTH 10 = STEP 01 = BASIC 00 = NONE bit 2-1 ERGx[1:0]: Error Window. Determines the range of the error window. When the measured fan speed is within the programmed error window around the target speed, then the fan drive setting is not updated. The algorithm will continue to monitor the fan speed and calculate necessary drive set- ting changes base on the error; however, these changes are ignored (see Section 4.3.1 “Error Window”). “X” is 1 to 5, depending on device features. 11 = 200 RPM 10 = 100 RPM 01 = 50 RPM 00 = 0 RPM bit 0 Unimplemented bit, read as ‘0’. REGISTER 6-14: FAN CONFIG 2 - FAN CONFIGURATION 2 REGISTERS (ADDRESSES 33H, 43H, 53H, 63H, 73H) (CONTINUED) REGISTER 6-15: GAIN - PIDX GAIN REGISTER (ADDRESSES 35H, 45H, 55H, 65H, 75H) U-0 U-0 RW-0 RW-0 RW-0 RW-0 RW-0 RW-0 — — GDEx[1:0] GINx[1:0] GPRx[1:0] bit 7 bit 0 Legend: R = Readable bit W = Writable bit U = Unimplemented bit, read as ‘0’ -n = Value at POR ‘1’ = Bit is set ‘0’ = Bit is cleared x = Bit is unknown bit 7-6 Unimplemented bits, read as ‘0’. bit 5-4 GDEx[1:0]: Derivative Gain, where “x” is 1 to 5, depending on device features. The effective gain applied to the KD in the PID equation. 11 = 8x 10 = 4x 01 = 2x 00 = 1x bit 3-2 GINx[1:0]: Integral Gain, where “x” is 1 to 5, depending on device features. The effective gain applied to the KI in the PID equation. 11 = 8x 10 = 4x 01 = 2x 00 = 1x bit 1-0 GPRx[1:0]: Proportional Gain, where “x” is 1 to 5, depending on device features. The effective gain applied to the KP in the PID equation. 11 = 8x 10 = 4x 01 = 2x 00 = 1x |
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