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ST7LITE1XB 数据表(PDF) 76 Page - STMicroelectronics |
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ST7LITE1XB 数据表(HTML) 76 Page - STMicroelectronics |
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76 / 157 page ![]() ST7LITE1xB 76/157 DUAL 12-BIT AUTORELOAD TIMER 4 (Cont’d) Bit 1= TRAN2 Transfer enable2 This bit is read/write by software, cleared by hard- ware after each completed transfer and set by hardware after reset. It controls the transfers on CNTR2. It allows the value of the Preload DCRx registers to be transferred to the Active DCRx registers after the next overflow event. The OPx bits are transferred to the shadow OPx bits in the same way. Notes: 1. DCR2/3 transfer will be controlled using this bit if ENCNTR2 bit is set. 2. This bit must not be reset by software Bit 0 = TRAN1 Transfer enable 1 This bit is read/write by software, cleared by hard- ware after each completed transfer and set by hardware after reset. It controls the transfers on CNTR1. It allows the value of the Preload DCRx registers to be transferred to the Active DCRx reg- isters after the next overflow event. The OPx bits are transferred to the shadow OPx bits in the same way. Notes: 1. DCR0,1 transfers are always controlled using this bit. 2. DCR2/3 transfer will be controlled using this bit if ENCNTR2 is reset. 3.This bit must not be reset by software AUTORELOAD REGISTER2 (ATR2H) Read / Write Reset Value: 0000 0000 (00h) AUTORELOAD REGISTER (ATR2L) Read / Write Reset Value: 0000 0000 (00h) Bits 11:0 = ATR2[11:0] Autoreload Register 2. This is a 12-bit register which is written by soft- ware. The ATR2 register value is automatically loaded into the upcounter CNTR2 when an over- flow of CNTR2 occurs. The register value is used to set the PWM2/PWM3 frequency when ENCNTR2 is set. DEAD TIME GENERATOR REGISTER (DTGR) Read/Write Reset Value: 0000 0000 (00h) Bit 7 = DTE Dead Time Enable This bit is read/write by software. It enables a dead time generation on PWM0/PWM1. 0: No Dead time insertion. 1: Dead time insertion enabled. Bits 6:0 = DT[6:0] Dead Time Value These bits are read/write by software. They define the dead time inserted between PWM0/PWM1. Dead time is calculated as follows: Dead Time = DT[6:0] x Tcounter1 Note: 1. If DTE is set and DT[6:0]=0, PWM output sig- nals will be at their reset state. 15 8 0 0 0 0 ATR11 ATR10 ATR9 ATR8 70 ATR7 ATR6 ATR5 ATR4 ATR3 ATR2 ATR1 ATR0 70 DTE DT6 DT5 DT4 DT3 DT2 DT1 DT0 1 |
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