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PDF
RealSimGear.pdf
ad ?? ADh code:0037.1 01 ?? 01h code:0038 0c ?? 0Ch code:0038.1 94 ?? 94h code:0039 ad ?? ADh code:0039.1 01 ?? 01h code:003a 0c ?? 0Ch code:003a.1 94 ?? 94h code:003b ad ?? ADh code:003b.1 01 ?? 01h code:003c 0c ?? 0Ch code:003c.1 94 ?? 94h code:003d ad ?? ADh code:003d.1 01 ?? 01h code:003e 0c ?? 0Ch code:003e.1 94 ?? 94h code:003f ad ?? ADh code:003f.1 01 ?? 01h code:0040 0c ?? 0Ch code:0040.1 94 ?? 94h code:0041 ad ?? ADh code:0041.1 01 ?? 01h code:0042 0c ?? 0Ch
in „ATmega2560 hex File disassemblieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD_DRV.LST
C51 COMPILER V5.02, LCD_DRV 12/04/06 21:38:10 PAGE 1 DOS C51 COMPILER V5.02, COMPILATION OF MODULE LCD_DRV OBJECT MODULE PLACED IN LCD_DRV.OBJ COMPILER INVOKED BY: C:\8051\KEIL_C51\BIN\C51.EXE LCD_DRV.C51 stmt level
in „Display Ansteuerung mit ISR auf 8051“ · Projekte & Code ·
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PDF
Panasonic_AG-7350-7150_Service_Manual.pdf
C. CAPACITOR CH 50V 56P 1 C3100 ECUM1H103ZFN C.CAPACITOR CH 50V O.OlU 1 VR300L02 EVN32CAOOB13 V.RESISTOR lK 2 C3102 ECUM1H391JCN C.CAPACITOR CH 50V 390P 1 VR3003-05 EVN32CAOOB52 V.RESISTOR 500 3 C3103 ECUM1H103ZFN C.CAPACITOR CH 50V O.OlU 1 VR3006 EVMF6SAOOB14 V.RESISTOR 10K 1 C3104 ECEA1HU3R3 E. CAPACITOR 50V 3.3U 1 VR3007 EVN32CAOOB54 V.RESISTOR 50K 1 C3105-07 ECUM1H103ZFN C. CAPACITOR CH 50V O.OlU 3 VR300B EVN32CAOOB24 VARIABLE
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
msp430fr5969.pdf
16 ch. 2, 2(8) 7 2 1 yes UART V 12 ext, 31 38 DA E 2 int ch. DCO 14 ext, 3, 3(7) R MSP430FR59471 32 1 LFXT 2 int ch. 16 ch. 2, 2(8) 7 2 1 yes I2C 33 40 RHA P 14 ext, T (7) 33 40 RHA MSP430FR5959 64 2 DCO 2
in „Probleme mit Konfiguration der SPI-Schnittstelle am MSP430“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TFT3.2.c
write_com_data(0x0036, 0x0204); _delay_us(1); write_com_data(0x0037, 0x0502); _delay_us(1); write_com_data(0x003A, 0x0302); _delay_us(1); write_com_data(0x003B, 0x0302); _delay_us(1); write_com_data(0x0023, 0x0000); _delay_us(1); write_com_data(0x0024, 0x0000); _delay_us(1); write_com_data(0x004F, 0x0000); //
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Datei
irmp.c
(unsigned char ch) { #ifndef UNIX_OR_WINDOWS #if defined(ARM_STM32F4XX) || defined(ARM_STM32F10X) // warten bis altes Byte gesendet wurde while (USART_GetFlagStatus(STM32_UART_COM, USART_FLAG_TXE) == RESET) { ; } USART_SendData(STM32_UART_COM, ch); if (ch == '\n') { while (USART_GetFlagStatus(STM32_UART_COM, USART_FLAG_TXE) == RESET); USART_SendData(STM32_UART_COM, '\r'); } #else #if (IRMP_EXT_LOGGING == 0) # if defined (__AVR_XMEGA
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
STM32_Init.c
/*---------------------------------------------------------------------------- * Name: STM32_Init.c * Purpose: STM32 peripherals initialisation * Version: V1.27 * Note(s): *---------------------------------------------------------------------------- * This file is part of the uVision/ARM development
in „Frage zu ST-Mikrocontrollern mit eMios“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marantz-sr8200-9200-service-manual.pdf
0.1 560p 0.1 QA06 COAXO 3 D 2.2K RH36 RH40 JA03 0.1 74HC00AF B RH32 10k 120k RH52 CH40 1 CA06 CA10 V 13 _SMUTE CH08 RH24 5 8 100K 100K 470p 47uF/25V + 11 RK71 E 1 820p 2.2K DIG-1 DIG-1 2 RA21 SELD 12 10K 5 8 10K CH04 OP-AMP2/2 RH48 CH36 3 OPT1 SELD +5VA DFS 820p 7 RH28
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel-M90E32AS-ApplicationNote.pdf
pins in application. The M90E32AS provides ADC sampling on three voltage channels (V1, V2 and V3) and three current channels (I1, I2 and I3). These 6 ADC channels can be flexibly mapped in different PCB design. The M90E32AS provides
in „Wahl eines passenden Mikrocontrollers zur Ansteuerung des M90E32AS Energy Metering IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5729md.pdf
Crosstalk vs Frequency in BTL Figure 24. 4-Ohm Load Crosstalk vs Frequency in BTL Mode With PVDD = 12 V Mode With PVDD = 24 V 7.16.2 Headphone Amplifier 10 10 DRV = 3.3V RL = 16 DRV = 3.3V DD DD PO= 10mW RL = 32 f = 1kHz TA= 25°C TA= 25°C 1 1 ) 0.1 ) ( ( N N 0.1 D D H H T 0.01 T 0.01 0.001 RL = 32 RL =
in „Leistung und Bitanzahl für Musik via BT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S08DZ60.pdf
/ H L / / / / / A I A I A E E A I A I A / / / / / / /R / / / / / A B A B A D S A B A B A P P P P P V V P P P P PT T 4 4 4 4 4 4 4 4 4 3 3 3 PTB6/PIB6/ADP14 1 36 PTB1/PIB1/ADP9 PTA7/PIA7/ADP7/IRQ2 35 PTA0/PIA0/ADP0/MCLK PTB7/PIB7/ADP15 3 34 PTB0/PIB0/ADP8 V 4 33 BKGD/MS DD PTD7/PID7/TPM1CH5 VSS 5 32
in „Delay Funktion für Freescale“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XBee_Datasheet.pdf
because of being held off by hardware or software flow control. Refer to the D6 (DIO6 Configuration) [p32] command description for more information. © 2006 MaxStream, Inc., Confidential & Proprietary ‐ All Rights Reserved 9 XBee™/XBee‐PRO™ OEM RF Module – 802.15.4 ‐ Product Manual v1.x8x [2006.07.12] 2.1.3
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PDF
SST39VF1602.pdf
0000H z = 16 x 256 Bytes = 4 KBytes/sector (0010H = 16) 31H 003FH Block Information (y + 1 = Number of blocks; z x 256B = block size) 32H 0000H y = 63 + 1 = 64 blocks (003FH = 63) 33H 0000H 34H 0001H z = 256 x 256 Bytes = 64 KBytes/block (0100H = 256) T10.2 25028
in „Pinout TSSOP“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
erase) 1Ch 38h 0036h D7–D4: volt, D3–D0: 100 millivolt 1Dh 3Ah 0000h V Min. voltage (00h = no pin present) PP PP 1Eh 3Ch 0000h V PPMax. voltage (00h = nPPpin present) 1Fh 3Eh 0007h Reserved for future use N 20h
in „S29GL064A Flash Speicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q256JW_SPI_RevJ_03102021_Plus.pdf
to access the entire 256Mb memory. The Fast Read with 4-Byte Address (0Ch) instruction is only supported in Standard SPI mode. /CS Mode 3 0 1 2 3 4 5 6 7 8 9 10 36 37 38 39 CLK Mode 0 Instruction (0Ch) 32-Bit Address DI 31 30 29 3 2 1 0 (IO0) * DO High Impedance (IO ) 1 =
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PDF
reference_manual.pdf
digital V DD (Wakeup logic, IWDG) peripherals Voltage Regulator Low voltage detector Backup domain LSE crystal 32K osc VBAT BKP registers RCC BDCR register RTC Note: 1 V DDA and V SSA must be connected to V DD
in „I2S zwischen STM32F103RET6 und PCM3168A möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-Board_User_Manual_XMC4700_XMC4800_Relax_Kit_Series-UM-v01_02-EN.pdf
RESET# 3 3 P3.10 SPI_CS: U2C0.SELO0 PWM4: CCU41.OUT0 3V3 4 5V 5 2 P1.11 PWM3: CCU81.OUT11 GND 1 P1.10 IO2: P1.10 6 P O GND 7 W R N.C. 8 8 P1.9 IO1: P1.9 7 P2.11 PWM2: CCU80.OUT22 ADC0: VADC.G0CH0 P14.0 1 6 P2.12 PWM1: CCU81.OUT33 ADC1: VADC.G1CH1 P14.1 2
in „XMC4700: vom µC aus, eine feste Spannung an Pin anlegen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7190.pdf
±1 ppm typical, gain = 1. ±15 ppm of FSR max ±5 ppm typical, gain > 1. 4, 5 Offset Error ±75/gain μV typ Chop disabled. ±0.5 μV typ Chop enabled. 5 Offset Error Drift vs.Temperature ±100/gain nV/°C typ Gain = 1 to 16. chop disabled. ±5 nV/°C typ Gain = 32 to 128. chop disabled. ±5 nV/°C typ Chop enabled
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
R8C22-23_Group_Hardware_Manual.pdf
RegisVW1C 39 0075h 0037h Voltage Monitor 2 Circuit Control RegisVW2C 40 0076h 0038h 0077h 0039h 0078h 003Ah 0079h 003Bh 007Ah 003Ch 007Bh 003Dh 007Ch 003Eh 007Dh 003Fh 007Eh NOTE: 007Fh 1. Blank columns are all reserved space. No access is allowed. B - 1 Address Register Symbol Page Address Register Symbol
in „Fragen zu Renesas µC (R5F2122CKFP)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R32C-152_Users_Manual.pdf
+44 to +47 (002Ch to 002Fh) 11 Timer A0 +48 to +51 (0030h to 0033h) 12 15.1 “Timer A” Timer A1 +52 to +55 (0034h to 0037h) 13 Timer A2 +56 to +59 (0038h to 003Bh) 14 +60 to +63 (003Ch to 003Fh) Timer A3 15 Timer A4 +64
in „Keine UART Programmierung bei R32C möglich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1864.pdf
13 100k 1 V+ 5 5V 5 12 5 12 2 OUT DIG 6 P2 Q2 11 6 P2 Q2 11 3 GND 4 74AC74 7 P3 Q3 10 7 P3 Q3 10 SET DIV ENP ENT ENP ENT PRE Q 8 GND LO 9 8 GND LO 9 D U13C vCLK 74AC32 CLR Q CLK 18645 AI2 U13B 74AC32 Figure 6. LTC1864
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PDF
ADC_LTC1865.pdf
13 100k 1 V+ 5 5V 5 12 5 12 2 OUT DIG 6 P2 Q2 11 6 P2 Q2 11 3 GND 4 74AC74 7 P3 Q3 10 7 P3 Q3 10 SET DIV ENP ENT ENP ENT PRE Q 8 GND LO 9 8 GND LO 9 D U13C vCLK 74AC32 CLR Q CLK 18645 AI2 U13B 74AC32 Figure 6. LTC1864
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM117.pdf
Limit (VIN− VOUT ) = 40V K Package 0.3 0.4 A H, E Package 0.15 0.20 RMS Output Noise, % of V OUT 10 Hz ≤ f ≤ 10 kHz 0.003 % VOUT = 10V, f = 120 Hz, 65 dB CADJ = 0 µF Ripple Rejection Ratio V = 10V, f = 120 Hz, OUT 66 80 dB CADJ
in „Maximale Verlustleistung TO-263“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
9001540000_AM_25_de.pdf
Co. KG rashad.mahmudov@ 2300 Annaba Südafrika. wmi@weidmueller.in weidmueller.com info@weidmueller.ch Telefonnummer www.weidmueller.com www.weidmueller.ch Faxnummer GR Griechenland BA Bosnien und Herzegowina contact@inter-electric.com IS Island Bitte kontaktieren Sie CL Chile G.A. Solutions Samey Automation
in „Kabel mittig abisolieren“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
EN_UM_N32G45x_Series_User_Manual_V3.pdf
N32G45x series ® ® 32-bitARM Cortex -M4 microcontroller User manual V3.1.0 Contents ABBREVIATIONS IN THE TEXT..............................................................................................
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5504.pdf
0x00 U (31:28), ipmix24 (27:24), ipmix24 (23:16), ipmix24 (15:8), ipmix24 (7:0) 0x4B 4 ipmix_3_to_ch12 Input Mixer 3 to Ch 1 and Ch 2 Mixer coefficient (default = 0)0x00, 0x00, 0x00, 0x00 U (31:28), ipmix32 (27:24), ipmix32 (23:16), ipmix32 (15:8), ipmix32 (7:0) 0x4C 4 Ch3_bp_bq2 Ch 3 Biquad-2 By-pass
in „[V] diverse Bauteile (Fets, BMS-ICs, Motor-Treiber“ · Markt ·
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PDF
040398_asm.pdf
interrupts? decf cntintb0,F ; indicate permanent 22kHz signal goto int_rest ; TIMER0 interrupt (at 32*3 + 11 micro−sec) / prescaler=32/TIMER0=−3 int_tim0 btfss INTCON,T0IF ;T0IF−overflow flag? goto int_rest bcf INTCON,T0IF ;clear timer0 int−flag movlw 0xFD ; TIMER0 = −3 movwf TMR0 ; set TIMER0 and reset
in „DiseqC (22kHz) messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST24C32_ST24C64_STM.pdf
M24C64 M24C32 64/32 Kbit Serial I²C Bus EEPROM ■ Compatible with I C Extended Addressing ■ Two Wire I C Serial Interface Supports 400 kHz Protocol ■ Single Supply Voltage: 14 – 4.5V to 5.5V for M24Cxx 8 – 2.5V to
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9325DS_V0.35.pdf
VGH - GND = 10V ~ 20V VGL – GND = -5V ~ -15V VGH – VGL ≦ 32V ¾ VCOM driver output voltage VCOMH = 3.0V ~ (DDVDH-0.5)V VCOML = (VCL+0.5)V ~ 0V VCOMH-VCOML ≦ 6.0V a-TFT LCD storage capacitor: Cst only The information
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PDF
AT28BV16.pdf
AT28BV16-30 Operating Com. 0°C - 70°C 0°C - 70°C Temperature (Case) Ind. -40°C - 85°C -40°C - 85°C V CCPower Supply 2.7V to 3.6V 2.7V to 3.6V Operating Modes Mode CE OE WE I/O Read V V V D IL IL IH OUT Write(2) V V V D IL IH IL IN Standby/Write Inhibit V X(1) X High Z IH Write Inhibit X X V IH Write
in „Benötige Hilfe beim Auslesen eines NVRAM DS1742w-120 (Batronix BX48 Batego II)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7718B.pdf
DV DD = 5 V, 32.768 kHz Osc. Running 8 µA max DV = 5 V, Oscillator Powered Down DD AIDD (Power-Down Mode) 1 µA max AV DD= 3 V or 5 V Power Supply Rejection (PSR) Input Range = ±2.56 V, AIN = 1 V Chop Disabled 70
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PDF
AD7718_16Bit_SPI_AD-Wandler.pdf
DV DD = 5 V, 32.768 kHz Osc. Running 8 µA max DV = 5 V, Oscillator Powered Down DD AIDD (Power-Down Mode) 1 µA max AV DD= 3 V or 5 V Power Supply Rejection (PSR) Input Range = ±2.56 V, AIN = 1 V Chop Disabled 70
in „[V] Verschiedene SMD-IC's“ · Markt ·
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Datei
hardware_t.cpp
printf("*****************************************************************************\n"); printf("* CH 1 V 0 : %3d CH 2 V 0 : %3d CH 3 V 0 : %3d CH 4 V 0 : %3d *\n",ADC_Offset[0][0],ADC_Offset[1][0],ADC_Offset[2][0],ADC_Offset[3][0]); printf("* CH 1 V 1 : %3d CH 2 V 1 : %3d CH 3 V 1 : %3d CH 4 V 1 : %3d *\n",ADC_Offset[0][1],ADC_Offset[1][1],ADC_Offset[2][1],ADC_Offset[3][1]); printf("* CH 1 V 2 : %3d CH 2 V 2 : %3d CH 3 V 2 : %3d CH 4 V 2 : %3d *\n",ADC_Offset[0][2],ADC_Offset[1][2],ADC_Offset[2][2],ADC_Offset[3][2]); printf("* CH 1 V 3 : %3d CH 2 V 3 : %3d CH 3 V 3 : %3d CH 4 V 3 : %
in „Wittig(welec) DSO W20xxA Open Source Firmware“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmp.c
(unsigned char ch) { #ifndef UNIX_OR_WINDOWS #if defined(ARM_STM32F4XX) || defined(ARM_STM32F10X) // warten bis altes Byte gesendet wurde while (USART_GetFlagStatus(STM32_UART_COM, USART_FLAG_TXE) == RESET) { ; } USART_SendData(STM32_UART_COM, ch); if (ch == '\n') { while (USART_GetFlagStatus(STM32_UART_COM, USART_FLAG_TXE) == RESET); USART_SendData(STM32_UART_COM, '\r'); } #elif defined(ARDUINO) // we use the Arduino Serial Imlementation
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
(unsigned char ch) { #ifndef UNIX_OR_WINDOWS #if defined(ARM_STM32F4XX) || defined(ARM_STM32F10X) // warten bis altes Byte gesendet wurde while (USART_GetFlagStatus(STM32_UART_COM, USART_FLAG_TXE) == RESET) { ; } USART_SendData(STM32_UART_COM, ch); if (ch == '\n') { while (USART_GetFlagStatus(STM32_UART_COM, USART_FLAG_TXE) == RESET); USART_SendData(STM32_UART_COM, '\r'); } #elif defined(ARDUINO) // we use the Arduino Serial Imlementation
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
10134fd.pdf
Output Voltage Swing RL= 2k l ±12.5 ±13.9 ±12.5 ±13.9 ±12.0 ±13.9 V VS= 5V, 0V; L = 600Ω Output Low l 6 13 6 13 6 13 mV Output High l 3.3 3.9 3.3 3.9 3.2 3.9 V IS Supply Current per Amplifier l 0.36 0.55 0.36 0.55 0.37 0.60 mA VS= 5V, 0V; O = 1.4V l 0.32 0.50 0.32 0.50
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
wt8871.pdf
for Analog Small Size LCD Display System Display H size 31h R/W 1:0 crtc2_h_size [9:8] 7:2 Reserved 32h 0Ch R/W 7:0 grep_width [7:0] For test pattern 03: define H grep width 33h 00h R/W 7:0 pat_v_width [7:0]For test pattern 07: define color & gray bar V width 34h R/W 1:0 pat_v_width [9:8] 7:2 Reserved
in „LCD Display HT070I36-E00“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80eaef6e.pdf
3-1393812-6 24 10.5 39 914 630 V23054C20B104 1-1393812-0 24 13 39 914 630 V23054C20C104 1-1393812-1 32 14.5 50 975 1050 V23054C21B104 1-1393812-2 32 17.5 50 975 1050 V23054C21C104 1-1393812-3 32 17.5 50 975 1050 V23054C21C404 1-1393812
in „Suche Daten zu Kammrelais von Siemens“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dcc_lok.lst
: 0F8F ADD R24,R31 ; add to capture value 367/ BB : 368/ BB : ; Acceleration/deceleration is by CV003/CV004 times 2ms AS V1.42 Beta [Bld 20] - source file dcc_lok.asm - page 5 - 4/23/2002 0:20:28 369/ BB : ; per speed step based on 128 steps 370/ BB : 2FC2 ACCDEC: MOV R28,R18 ; get desired speed 371
in „DCC Singal auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Forum.PDF
3 3 3 C C N N I S O K IPtde VBAT 1 1 1 1 3 3 3 3 A A U T T T T T GPIO0-27_VREF PImede9 IPtde8VBAT V V R R C C C C GPIO0-27_VREF PImede0 +3.3 P1_0 +3.3 IPtde7VBAT _ V V V V GPIO28-45_VREF PImede1 PIP006 6 3 PIP003 V GPIO28-45_VREF CIPode PIP004 4 2 PIP002 SH1 COC2 6 PIP005 5 1 PIP001 COC2 6 SH2 2HS0eludoMetupmoCIP
in „Raspberry Pi Compute Module 3 (Carrier Board)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TB67S109AFTG_datasheet_en_20190228-1272643.pdf
(TB67S109A) (Top View) B B C B B T T N C V N V N S S N U U N N R R O O 36 3534 33 32 3130 29 2827 26 25 NC 37 24 NC 23 NC LO 38 DMODE0 39 22 GND GND 40 21 OUTB- VREFB 41 20 OUTB- VREFA 42 FTG 19 GND OSCM 43 18 GND CW/CCW 44 17 OUTA- MO 45 16
in „Fragen zu schrittmotor Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TB67S109AFTG_datasheet_en_20190228-1.pdf
(TB67S109A) (Top View) B B C B B T T N C V N V N S S N U U N N R R O O 36 3534 33 32 3130 29 2827 26 25 NC 37 24 NC 23 NC LO 38 DMODE0 39 22 GND GND 40 21 OUTB- VREFB 41 20 OUTB- VREFA 42 FTG 19 GND OSCM 43 18 GND CW/CCW 44 17 OUTA- MO 45 16
in „TB6600 - Halb- und Vollschritt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ne25139.pdf
0.9 18 1.9 0.9 1.2 16.0 0.82 28 1.2 V G2S Gate 2 to Source Voltage V -4.5 1.5 1.5 14.6 0.71 45 0.9 ID Drain Current mA IDSS 2.0 1.9 12.5 0.55 75 0.67 PT Total Power Dissipation mW 200 3.0 2.5 11.0 0.34 116 0.5 T CH Channel Temperature °C
in „GaAs NE25139 ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
irmp.c
of 800 msec { next_tick (); } } first_pulse = TRUE; first_pause = TRUE; } else if (ch == '#') { if (analyze) { while ((ch = getchar()) != '\n' && ch != EOF) { ; } } else { puts ("-------------------------------------------------------------------"); putchar (ch); while ((ch = getchar()) != '\n' && ch != EOF) { if (ch != '\r') // ignore CR in DOS/Windows files { putchar (ch); } } putchar ('\n'); } } last_ch = ch; next_tick (); } if (analyze) { print_spectrum ("START PULSES", start_pulses, TRUE); print_spectrum
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
MC34161-D_1_.pdf
to Threshold Difference ref− Vin1, (ref− Vin2 VRTD 1.20 1.27 1.32 V Input Bias Current (Vin 1.0 V) IIB − 40 200 nA (V = 1.5 V) − 85 400 in MODE SELECT INPUT Mode Select Threshold Voltage (Figure 6) Channel 1 V V +0.15 V +0.23 V +0.30 V Channel 2 Vth(CH 1) r0.3 r0.63
in „Brauche Hilfe zur Berechnung den MC34161“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MS5611-01BA01.pdf
… 3.6 V -0.5 +0.5 °C voltage OSR 4096 0.002 2048 0.003 Resolution RMS 1024 0.005 °C 512 0.008 256 0.012 DA5611-01BA01_006 www.meas-spec.com Jul. 19, 2011 000056111624 ECN1530 3/20 MS5611-01BA01 Variometer Module
in „16 oder 24 bit mit SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9325.pdf
≦ 6.0V ¾ Gate driver output voltage VGH - GND = 10V ~ 20V VGL – GND = -5V ~ -15V VGH – VGL ≦ 32V ¾ VCOM driver output voltage VCOMH = 3.0V ~ (DDVDH-0.5)V VCOML = (VCL+0.5)V ~ 0V VCOMH-VCOML ≦ 6.0V a-TFT LCD
in „Programmierung von ILI9325 TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9325DS_V0.28.pdf
≦ 6.0V ¾ Gate driver output voltage VGH - GND = 10V ~ 20V VGL – GND = -5V ~ -15V VGH – VGL ≦ 32V ¾ VCOM driver output voltage VCOMH = 3.0V ~ (DDVDH-0.5)V VCOML = (VCL+0.5)V ~ 0V VCOMH-VCOML ≦ 6.0V a-TFT LCD
in „Chinesisches TFT LCD zum Schnäppchenpreis“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RXV667.pdf
l Crossbar Switch 32 e h 32 I2C1 r 32 32 32 32 P 32 RTI 32 PLL 64 M SDRAM 16 M FLASH ROM I/O Interrupts MAX0 CONTROL MAX1 Events Out In EMIF dMAX Peripheral Interrupt and DMA Events DIGITAL (1) IC950: V54C365164VEI6 Column
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Sketch9.ino
LCD_DrawVerticalLine(x2, y1+2, y2-y1-4,color); } } void LCD_PaintScreen(uint16_t color) { unsigned int i, f; uint8_t ch,cl; ch=color>>8; cl=color; LCD_BusPinsAsOutput(); LCD_CS_LOW(); LCD_RS_HIGH(); for(i=0; i<320; i++) { for(f=0; f<240; f++) { //LCD_WriteData(color); LCD_BusData8(ch); LCD_WR_LOW(); LCD_WR_HIGH(); LCD_BusData8
in „2.4" Display-Shield (SPFD5408) an Aduino DUE“ · Mikrocontroller und Digitale Elektronik ·