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intel_bas52man.pdf
9 12 O 4 6 9 7 O 7 O 5 10 GND 10 11 E GND 7 8 8 GND O 6 9 GND 10 11 B7 74LS373 74LS32 74LS138 74LS245 P27128A 27256 2764A 2732A VPP 1 28 VCC 2732A 2764A 27256 A 12 2 27 PGM VPP V PP VCC VCC A A A 3 26 A A 12 12 7 13 PGM 14 A7 A7 A7 A 4 25 A VCC N.C. A13 A6 A6 A6 6 8 A8 A 8 A8 A A A A 5 24 A A A 5 5
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156346062-STi7105.pdf
) 14 VDP AUX AUX_VDP_END_PROCESSING_IRQ 15 ) AUX_VDP_FIFO_EMPTY_IRQ 16 n t Compo Capture COMPO_CAP_BF 17 i Compo Capture COMPO_CAP_TF 18 b r FDMA1 requests lines SELECTED FDMA_REQ AMONG 32 FDMA DREQ 19 f LINES g Reserved RESERVED 20 p s l ClockGen A IRQ_CLKOBS 21 l a e t DeltaMu DELPHI_MBE_INTERRUPT
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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drm001.pdf
---------- Passive Infrared (PIR) Unit Designer Reference Manual MOTOROLA REMOTE Source Code Files 245 REMOTE Source Code Files [REMOTE:interrup.h] //////////////////////////////////////////////////////////////////////////////// // AA TTTTTTTTTTTT EEEEEEEEEEE EEEEEEEEEEE CCCCCCCCC CCCCCCCCC // // AAAA
in „AVR ATTiny84A mit C++ Werte an bestimmte Speicherstelle schreiben“ · Mikrocontroller und Digitale Elektronik ·
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bluenrg-2.pdf
0xD898C296) • PY = (0x4FE342E2, 0xFE1A7F9B, 0x8EE7EB4A, 0x7C0F9E16, 0x2BCE3357, 0x6B315ECE, 0xCBB64068, 0x37BF51F5) 3.19.2 PKA registers PKA peripheral base address (PKA_BASE_ADDR) 0xC0000000 DS12166 - Rev 5 page 127/175 BlueNRG-2 Public key accelerator (PKA) Table 201. PKA registers Address offset Name RW Reset
in „DC/DC-Wandler im ST BlueNRG-2 - Wofür?“ · Mikrocontroller und Digitale Elektronik ·
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atmel-8393-mcu_wireless-atmega256rfr2-atmega128rfr2-atmega64rfr2_datasheet.pdf
Lock Interrupt Status 9.12.22 IRQ_STATUS1 – Transceiver Interrupt Status Register 1 Bit 7 6 5 4 NA ($BF) Res2 Res1 Res0 MAF_3_AMI IRQ_STATUS1 Read/Write R R R RW Initial Value 0 0 0 0 Bit 3 2 1 0 NA ($BF) MAF_2_AMI MAF_1_AMI MAF_0_AMI TX_START IRQ_STATUS1 Read/Write RW RW RW RW Initial Value 0 0 0 0 127
in „AVR-Verlustleistung maximieren“ · Mikrocontroller und Digitale Elektronik ·
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Exp_Meth_In_RF_Des--Wes_Hayward.pdf
quency when the circuit returned to room T30-6, Output can be extracted from the rise would produce a 245-11/ frequency source or directly from the resonator increase, a very stable VFO. The stability temperature. However, a second excursion with a capacltive tap and appropriate results from the use of
in „Literatur zum Selbstbau von Sendern und Empfängern“ · HF, Funk und Felder ·
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PIC16F18344.pdf
0000 0000 m n 213h SSP1MSK SSP1MSK<7:0> 1111 1111 1111 1111 P a 214h SSP1STAT SMP CKE D/A P S R/W UA BF 0000 0000 0000 0000 I y 215h SSP1CON1 WCOL SSPOV SSPEN CKP SSPM<3:0> 0000 0000 0000 0000 C 216h SSP1CON2 GCEN ACKSTAT ACKDT ACKEN RCEN PEN RSEN SEN 0000 0000 0000 0000 1 217h SSP1CON3 ACKTIM PCIE SCIE
in „EEPROM Verständnisproblem beim PIC 16F18344“ · Mikrocontroller und Digitale Elektronik ·
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Atmel-42005-8-and-16-bit-AVR-Microcontrollers-XMEGA-E_Manual.pdf
Std-Ch0 bede Per-Ch1 do mo Per-Ch1 doumo DBUFMODE=01 Per-Ch2 Per-Ch2no fr no fe (BUF01) Per-Ch3 Per-Ch3 bf Std-Ch2 Std-Ch2 buf Per-Ch0 Per-Ch0 Per-Ch1 Std-Ch0 blde Std-Ch0 bede Per-Ch1 du mo doumo DBUFMODE=10 Per-Ch2 Per-Ch2 n fer no fe (BUF23) Per-Ch3 Per-Ch3 Std-Ch2 buf Std-Ch2 buf Per-Ch0 Per-Ch0 Per-Ch1
in „ATxmega8E5 - ADC Gain Korrektur“ · Mikrocontroller und Digitale Elektronik ·
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STM8_Programming_Manual.pdf
DTG[7:0] = 0 x 0 to 0 x 7F from 0 to 15875 ns in 125 ns steps (refer to f1) DTG[7:0] = 0 x 80 to 0 x BF from 16 µs to 31750 ns in 250 ns steps (refer to f2) DTG[7:0] = 0 x C0 to 0 x DF from 32 µs to 63 µs in 1µs steps (refer to f3) DTG[7:0] = 0 x E0 to 0 x FF from 64 µs to 126 µs in 2 µs steps (refer to
in „STLINK V2 und China Boards“ · Mikrocontroller und Digitale Elektronik ·