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ATtiny261A_Complete.pdf
SOURCE CURRENT RESET PIN AS ICC, VV 5 4 85 °C 3 25 °C V -40 °C ( O V 2 1 0 0 0.2 0.4 0.6 0.8 1 IOH (mA) 215 8197C–AVR–05/11 Figure 20-35. V OH: Output Voltage vs. Source Current (Reset Pin as I/O, T = 25°C) OUTPUT VOLTAGE vs. SOURCE CURRENT RESET PIN AS I/O 5 4 3 ) 5.0 V ( O V 2 3.0 V 1 1.8 V 0 0 0.2 0.4
in „USI Interface als SPI Schnittstelle beim ATtiny261A“ · Mikrocontroller und Digitale Elektronik ·
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GD32F3x0_RM_v1.0.pdf
), FWDGT (Free Watchdog Timer), all pads except PC13/PC14/PC15, etc. V DDAdomain includes ADC/DAC (AD/DA Converter), IRC8M (Internal 8MHz RC oscillator), IRC48M (Internal 48MHz RC oscillator at 48MHz frequency), IRC28M (Internal 28MHz RC oscillator at 28MHz frequency), IRC40K (Internal 40KHz RC oscillator
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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GD32F3x0_RM_v1.0.pdf
), FWDGT (Free Watchdog Timer), all pads except PC13/PC14/PC15, etc. V DDAdomain includes ADC/DAC (AD/DA Converter), IRC8M (Internal 8MHz RC oscillator), IRC48M (Internal 48MHz RC oscillator at 48MHz frequency), IRC28M (Internal 28MHz RC oscillator at 28MHz frequency), IRC40K (Internal 40KHz RC oscillator
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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Atmel-8209-8-bit_AVR_ATmega16M1-32M1-64M1_Datasheet_1_.pdf
POCRnRB POCRnSB POCRnRA PSC counter POCRnSA 0 On-time A On-time B PSCOUTnA PSCOUTnB Dead-time A De ad-time B PSC cycle On-Time A = (POCRnRAH/L - POCRnSAH/L) × 1/Fclkpsc On-Time B = (POCRnRBH/L - POCRnSBH/L) × 1/Fclkpsc Dead-Time A = (POCRnSAH/L + 1) × 1/Fclkpsc Dead-Time B = (POCRnSBH/L - POCRnRAH/L)
in „Externer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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doc7707.pdf
For IN endpoint, it indicates the number of busy bank(s), filled by the user, ready for IN transfer. 215 7707F–AVR–11/10 For OUT endpoint, it indicates the number of busy bank(s) filled by OUT transaction from the host. 00b All banks are free 01b 1 busy bank 10b 2 busy banks 11b Reserved. Bit 7 6 5 4 3
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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ATM16_doc2466.pdf
Offset, Gain Error, Differential Error, Non-linearity, and Quantization Error. Ideal value: ±0.5 LSB. 215 2466P–AVR–08/07 ADC Conversion After the conversion is complete (ADIF is high), the conversion result can be found in the ADC Result Result Registers (ADCL, ADCH). For single ended conversion, the result
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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Ateme16.pdf
Offset, Gain Error, Differential Error, Non-linearity, and Quantization Error. Ideal value: ±0.5 LSB. 215 2466T–AVR–07/10 ATmega16(L) ADC Conversion After the conversion is complete (ADIF is high), the conversion result can be found in the ADC Result Result Registers (ADCL, ADCH). For single ended conversion
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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Ateme16.pdf
Offset, Gain Error, Differential Error, Non-linearity, and Quantization Error. Ideal value: ±0.5 LSB. 215 2466T–AVR–07/10 ATmega16(L) ADC Conversion After the conversion is complete (ADIF is high), the conversion result can be found in the ADC Result Result Registers (ADCL, ADCH). For single ended conversion
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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HBD855-D_Thyristor_Theory.pdf
the static (on-state) loss, dynamic (switching) loss through diode D be1ore commutating SCR . The di1ad- and leakage current (off-state) loss. The low saturation vantage of this circuit is in the high motor current that voltage of germanium transistors produces low static loss. flows through the transformer
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·