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Datei
ESP32_BMP280_espNowDeepSleep4.ino
USE_BMP280 BMP280 bmp; #endif #define LEDPIN 2 // Receiver MAC address uint8_t receiverMAC[] = {0xCC, 0x7B, 0x5C, 0x1E, 0xAC, 0x5C}; #define ADC_PIN 35 // GPIO35 (ADC1_CH7) VCC measurement #define R1 10000.0 // 10kΩ #define R2 47000.0 // 27kΩ #define POWERPIN 33 // Structure MUST match receiver structure
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cf_stat_2803_5.pdf
91D fehlt FFh 28 29 0980 44 4D CD C0 09 01 6F 02 CD B1 04 2A 97 15 44 4D DM....o....*..DM 30 31 0A00 CC 05 CD C3 08 0E 01 21 9D 15 CD C3 14 EB 2B 73 .......!......+s 32 0A80 C2 2D 0A 3E 00 C9 21 AA 15 36 00 CD 39 06 1E 08 .-.>..!..6..9... 33 34 0B00 15 3A A9 15 E6 FE 1F 1F 32 A9 15 CD A0 04 21 A7 .:...
in „Suche MOPPEL Projekt in Heft oder .PDF“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PCM_master.vhd
", 1089 => x"E879C76D", 1090 => x"E84E50CA", 1091 => x"E822EAC7", 1092 => x"E7F79584", 1093 => x"E7CC511F", 1094 => x"E7A11DB7", 1095 => x"E775FB69", 1096 => x"E74AEA54", 1097 => x"E71FEA96", 1098 => x"E6F4FC4E", 1099 => x"E6CA1F99", 1100 => x"E69F5495", 1101 => x"E6749B62", 1102 => x"E649F41C", 1103
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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PDF
Lichtsensor_I2C_bh1750fvi-e.pdf
for operating above Ta=25℃. ●Operating Conditions Ratings Parameter Symbol Units Min. Typ. Max. V CC Voltage Vcc 2.4 3.0 3.6 V I C Reference Voltage VDVI 1.65 - V CC V www.rohm.com 1/17 2011.11 - Rev.D © 2011 ROHM Co., Ltd. All rights reserved. BH1750FVI Technical Note ●Electrical Characteristics (CC
in „BH1750 per I²C an ATmega32 - low Byte immer nur 255“ · Mikrocontroller und Digitale Elektronik ·
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LT1498.pdf
CM OUT SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS VOS Input Offset Voltage V CM= V – 0.5V l 300 1100 μV V = V + 0.5V l 300 1100 μV CM VOS TC Input Offset Voltage Drift (Note 3) l 0.5 μV/°C V CM= V – 0.5V l 1.5 μV/°C ΔV OS Input Offset Voltage Shift V CM= V + 0.5V to V – 0.5V l 250 2300 μV – + Input
in „KSQ für LED mit OPV“ · Analoge Elektronik und Schaltungstechnik ·
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ad7328.pdf
1 μA V SS−16.5V I and I 1 μA V /V = 5.25V CC DRIVE CC DRIVE Full Shutdown Mode SCLK on or off DD 1 μA V DD= 16.5V SS 1 μA V SS−16.5V CCand IDRIVE 1 μA V CC DRIVE 5.25V POWER DISSIPATION Normal Mode 30 mW V DD= 16.5V,V SS−16.5V,V = CC25V 21 mW V
in „was bringt ADC mit Sequencer (AD7328)?“ · Mikrocontroller und Digitale Elektronik ·
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SSD1353_0.11.pdf
pre-charge voltage. [RESET =3Eh] A[5:1] Hex code pre-charge voltage Set Pre-charge level 00000 00h 0.20 x CC : : : 11111 3Eh 0.60 x CC 0 BE 1 0 1 1 1 1 1 0 Set COM deselect voltage level [reset =3Ch] 1 A[5:2] 0 0 A 5 A 4 A 3 A 2 0 0 A[5:2] = A[5:2] Hex code V COMH 0000 00h 0.51 x CC 0001 04h 0.53 x CC Set COMH
in „RitDisplay RTS18160128FHC04 P16885 1,8" OLED Touch STM8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Helvetica_12.C
ab 1082*/ 4, 67, 6, 12, /* CH_36 "six" cnt= 9 ab 1091*/ 4, 76, 6, 12, /* CH_37 "seven" cnt= 9 ab 1100*/ 4, 85, 6, 12, /* CH_38 "eight" cnt= 9 ab 1109*/ 4, 94, 6, 12, /* CH_39 "nine" cnt= 9 ab 1118*/ 4, 103, 4, 12, /* CH_3A "colon" cnt= 6 ab 1127*/ 4, 109, 4, 12, /* CH_3B "semicolon" cnt= 6 ab 1133*/
in „C -> Zeichen aus Font suchen / rechnen?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMC4671-EVAL_Schematic.pdf
5% GND GND GND GND ADC Filter CR50 1[3B] ADC_I0_U PI02 P50 POADC_I0_LP0 04[3C] 100R VM ADC Filter P2CC 1 C 50 +5V C P 100pF/50V/5% P5 D503 BAT54S R510+VM GND P4[3C]ADC_VM_LPP PD3 P51 PR02 CR50 P5 P 100k 1[3B] ADC_I1_V PI02 P50 POADC_I1_LP1 04[3C] P5 CO5 5 100R C50n R 1 P C 1 P C502 P1100pF/50V/5% GND
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OSRAM_SFH9202.pdf
Test Circuit for Switching and Response Time Testschaltkreis für Schalt- und Reaktionszeit R L V F CC ΙC Output OHM02258 2012-08-17 5 Version 1.0 (not for new design) SFH 9202 Collector Current Permissible Power Dissipation Kollektorstrom Verlustleistung IC/ Cmax = f(d), A = 25°C P tot f(TA) OHO02255
in „kleiner Barcode Scanner bei variabler Geschwindigkeit“ · Mikrocontroller und Digitale Elektronik ·
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en.DM00091010.pdf
_SR) Address offset: 0x10 Reset value: 0x0000 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Res. Res. Res. CC4OF CC3OF CC2OF CC1OF Res. BIF TIF COMIF CC4IF CC3IF CC2IF CC1IF UIF rc_w0 rc_w0 rc_w0 rc_w0 rc_w0 rc_w0 rc_w0 rc_w0 rc_w0 rc_w0 rc_w0 rc_w0 Bits 15:13 Reserved, must be kept at reset value. Bit 12 CC4OF
in „EFM32F030 und Standby“ · Mikrocontroller und Digitale Elektronik ·
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6614C_ProgrammingGuide.pdf
Status, Astatus, Fault, & Mask Registers Bit Position 11 10 9 8 7 6 5 4 3 2 1 0 Bit Name NORM FAST -CC INH ERR OC not OT OV UNR +CC CV used Bit Weight 2048 1024 512 256 128 64 32 16 8 4 2 1 CV = The unit is operating in constant voltage mode. CC+ = The unit is operating in constant current mode. UNR =
in „GPIB - Queries (?-Befehle: *IDN? z.B.) gehen nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet_Video_Decoder_TVP5150AM.pdf
FF FF A7 2E 20 A3 63 93 0D 0 7 0 10 0 NABTS, NTSC-J 0B0 AA AA FF FF A7 2E 20 A3 63 93 0D 0 7 0 10 0 CC, PAL/SECAM 0C0 AA 2A FF 3F 04 51 6E 02 A4 7B 09 0 0 0 27 0 CC, PAL/SECAM 0D0 AA 2A FF 3F 04 51 6E 02 A4 7B 09 0 0 0 27 0 CC, NTSC 0E0 AA 2A FF 3F 04 51 6E 02 63 8C 09 0 0 0 27 0 CC, NTSC 0F0 AA 2A FF
in „TVP5150AM - Datenblatt gibt keine Auskunft über Datenausgabe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DCC_Monitor_V1.4_Stummi.ino
] < 128)) { /* Service Mode.Prog: [preamble] 0 [0111CCVV] 0 [VVVVVVVV] 0 [DDDDDDDD] 0 [EEEEEEEE] 1 CC = Command VV VVVVVVVV = 10 bit CV Number DDDDDDDD = New Value (8 bit) EEEEEEEE = Checksum Lesen/Schreiben auf dem Prg.gleis geht ohne Dekoderadresse ! Schreiben: z.B. CV 6, Wert 20 (--> 4 Bytes ohne
in „DCC Singal auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TX06D57VM0AAA-01A1.pdf
level 0.85 V CCIO - VCC IO Input Voltage for Logic Circuits V i V (1), (2) "L" level -0.3 - 0.15xV CC IO "H" level 0.75 V CCIO - - Output Voltage for Logic Circuits VO V (1), (2) "L" level - - 0.2xVCC IO Input/Output Leak current ILi - -1.0 - 1.0 μA All white - 7.0 11.0 mA (3) Power Supply CC + ICi Partial
in „Hitachi Display TX06“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TX06D57VM0AAA-01A1.pdf
level 0.85 V CCIO - VCC IO Input Voltage for Logic Circuits V i V (1), (2) "L" level -0.3 - 0.15xV CC IO "H" level 0.75 V CCIO - - Output Voltage for Logic Circuits VO V (1), (2) "L" level - - 0.2xVCC IO Input/Output Leak current ILi - -1.0 - 1.0 μA All white - 7.0 11.0 mA (3) Power Supply CC + ICi Partial
in „SPI Interface dirket an TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C63813-SXC-Cypress-Semiconductor-datasheet-11779157.pdf
Document 38-08035 Rev. *P Page 37 of 86 CY7C63310, CY7C638xx Figure 14-1. Block Diagram of a GPIO VREG V CC 3.3V Drive Pull-Up Enable Output Enable VREG V CC R UP Data Out Open Drain Port Data GPIO PIN High Sink VREGGND V CC GND Data In TTL Threshold Table 14-1. P0.0/CLKIN Configuration (P00CR) [0x05] [R/W
in „Welche Relais und Controller zum Schalten von USB?“ · Mikrocontroller und Digitale Elektronik ·
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AD7609.pdf
DynamicRangevs.OversamplingRatio Figure29.SupplyCurrentvs.OversamplingRate 140 2.5010 B ( 130 O 2.5005 AV = 5.25V T AV = 5V CC A 120 CC R ±10V RANGE V N (2.5000 I 110 E C A E ±5V RANGE T E 100 O2.4995 R V Y T AV CC= 4.75V L 90 U P F U E2.4990 S 80 AV , V = 5V R E CC DRIVE W INTERNAL REFERENCE O 70 AD7609 RECOMMENDED DECOUPLING
in „Unterschiedliches Verhalten innerhalb der gleichen IC-Reihe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7609.pdf
DynamicRangevs.OversamplingRatio Figure29.SupplyCurrentvs.OversamplingRate 140 2.5010 B ( 130 O 2.5005 AV = 5.25V T AV = 5V CC A 120 CC R ±10V RANGE V N (2.5000 I 110 E C A E ±5V RANGE T E 100 O2.4995 R V Y T AV CC= 4.75V L 90 U P F U E2.4990 S 80 AV , V = 5V R E CC DRIVE W INTERNAL REFERENCE O 70 AD7609 RECOMMENDED DECOUPLING
in „SPI-Kommunikation von AD-Wandler zu Raspberry Pi“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Reflexlichtschranke_SFH9201.pdf
card) OHM02257 Data Sheet 4 1999-05-18 Opto Semiconductors SFH 9201 Schaltzeiten ( T A = 25 °C, V CC = 5 V, I C = 1 mA , 1) R L = 1 k) Switching times R L VCC F C Output OHM02258 Bezeichnung Symbol Wert Einheit Description Symbol Value Unit Einschaltzeit tein 65 s Turn-on time ton Anstiegzeit tr 50
in „günstige Lichtschranke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc8209.pdf
clock (2) V IH1 Input High Voltage selected 0.7V CC VCC +0.5 V Input Low Voltage RESET pin -0.5 0.2V (1) IL2 CC (2) V IH2 Input High Voltage RESET pin 0.9V CC VCC +0.5 (1) V IL3 Input Low Voltage RESET pin as I/O -0.5 0.2V CC (2) V V IH3 Input High Voltage
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ST_M25P64_data.pdf
Leakage Current ± 2 µA LI LO Output Leakage Current ± 2 µA ICC1 Standby Current S = V CCV INV SS orV CC 50 µA C = 0.1V CC/ 0.9.CC at 50MHz, 8 mA Q = open ICC3 Operating Current (READ) C = 0.1V CC/ 0.9.CC at 20MHz, Q = open 4 mA ICC4 Operating Current (PP) S = V CC 15 mA ICC5 Operating Current (WRSR) S = V CC 20 mA ICC6 Operating Current (SE) S = V CC 20 mA ICC7 Operating Current (BE) S = V CC 20 mA VIL Input Low Voltage – 0.5 0.3VCC V VIH Input High Voltage 0.7VCC V CC+0.2 V V OL Output Low Voltage IOL =
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AD7606_7606-6_7606-4.pdf
) 41AGND DIGITAL INPUT REFERENCE INPUT/OUTPUT CONVST A 9 40AGND CONVST B 10 39REGCAP RESET 11 38AV CC RD/SCLK 12 37AV CC CS 13 36REGCAP BUSY 14 35AGND FRSTDATA 15 34REF SELECT DB0 16 33DB15/BYTE SEL 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 1 2 3 4 5 6 E 9 0 1 2 3 B B B B B B I T BT N B 1 1 1 1
in „STM32 Parallel Bus ADC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
minirv32ima.cpp
Copyright 2022 Charles Lohr, you may use this file or any portions herein under any of the BSD, MIT, or CC0 licenses. // 23.01.15 converted to Arduino by mchris //#include "Arduino.h" #include <stdint.h> #include "minirv32ima.h" MINIRV32_DECORATE int32_t RiscV_execute( struct MiniRV32IMAState * state, uint8
in „RISC/V kommt in Schwung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bild_left.h
-> Monochrome mode - Horizontal orientation 1001 --> Reserved 1010 --> Reserved 1011 --> Reserved 1100 --> Reserved 1101 --> Reserved 1110 --> Reserved 1111 --> Reserved Bit 5 - 7: Reserved Bit 8 - 10: 000 --> 256 colors or no palette 001 --> 128 colors 010 --> 64 colors 011 --> 32 colors 100 --> 16
in „ATmega2560, Speicher voll bei Program: 30% Data 8%“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootloader_v2.asm
asld ;$0CB8 $59 eorb L054A,Y ;$0CB9 $E8 $EA $05 $4A eora L0549,Y ;$0CBD $A8 $EA $05 $49 std 4,SP ;$0CC1 $6C $84 ldy 8,SP ;$0CC3 $ED $88 iny ;$0CC5 $02 sty 8,SP ;$0CC6 $6D $88 L0CC8 cpy 10,SP ;$0CC8 $AD $8A blo L0C74 ;$0CCA $25 $A8 ldd 4,SP ;$0CCC $EC $84 leas 6,SP ;$0CCE $1B $86 rts ;$0CD0 $3D L0CD1 pshd
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC866_ds_v12.pdf
FF H CCU6_CC62SRH Reset: 0H Bit Field CC62SH Capture/Compare Shadow Register for Channel CC62 High Type rwh RMAP = 0, Page 1 9A H CCU6_CC63RL Reset: 0H Bit Field CC63VL Capture/CompareRegisterforChannel CC63 Low
in „Wie schnell ist der Counter eines 8-Bir µC's“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eforth_328.ino
*/ 0x0A6A, /* 0CB2 */ 0x09D6, /* 0CB4 */ 0x0A58, /* 0CB6 */ 0x0B18, /* 0CB8 */ 0x09CC, /* 0CBA */ 0xFFFF, /* 0CBC */ 0x0A60, /* 0CBE */ 0x09D6, /* 0CC0 */ 0x0C56, /* 0CC2 */ 0x4D05, /* 0CC4 */ 0x4D2F, /* 0CC6 */ 0x444F, /* 0CC8 */ 0x0006, /* 0CCA */ 0x0A60, /* 0CCC */ 0x0A7C, /* 0CCE
in „eFORTH as Arduino Sketch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eforth_328.ino
*/ 0x0A6A, /* 0CB2 */ 0x09D6, /* 0CB4 */ 0x0A58, /* 0CB6 */ 0x0B18, /* 0CB8 */ 0x09CC, /* 0CBA */ 0xFFFF, /* 0CBC */ 0x0A60, /* 0CBE */ 0x09D6, /* 0CC0 */ 0x0C56, /* 0CC2 */ 0x4D05, /* 0CC4 */ 0x4D2F, /* 0CC6 */ 0x444F, /* 0CC8 */ 0x0006, /* 0CCA */ 0x0A60, /* 0CCC */ 0x0A7C, /* 0CCE
in „eFORTH as Arduino Sketch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7707.pdf
V Standard IOs V Input High Voltage, V = 2.7V - 5.5V 0.7V (2) V + 0.5 V IH1 XTAL1 pin CC CC CC Input High Voltage, (2) V IH2 RESET pin VCC = 2.7V - 5.5V 0.9V CC V CC+ 0.5 V Input High Voltage, V IH3 VCC = 2.7V - 5.5V 2 V CC+ 0.5 V MOSI/MISO pins V Input High Voltage, PS2 V = 4.5V - 5.5V 2.4 V + 0.5 V IH4 pins CC CC Output Low Voltage ,) V Standard IOs(8, OL = 10mA, V CC = 5V 0.7 V OL OL = 5mA, V CC= 3V 0.5 MOSI/MISO pins 262 AT90USB82/162 7707F–AVR–11/10 AT90USB82/162 TA= -40°C to 85°C, V CC = 2.7V to 5.5V (
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xe166_um_v2.1_2008_08_vol2per.pdf
match. DataRegisters Control Registers Interrupt Control T7, T7REL E T78CON T7IC T8, T8REL E T8IC CC16-CC19 CC2_M4 CC16IC-CC19IC E CC20-CC23 CC2_M5 CC20IC-CC23IC E CC24-CC27 CC2_M6 CC24IC-CC27IC E CC28-CC31 CC2_M7 CC28IC-CC31IC E CC2_SEE CC2_OUT CC2_SEM CC2_DRM CC2_ID CC2_IOC KSCCFG CC2_SEE CAPCOM SingleEvent
in „Kernel State Configuration Register KSCCFG xe164 xe166 xe164f xe16x“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xc2200_um_v2.1_2008_08_vol2per.pdf
match. DataRegisters Control Registers Interrupt Control T7, T7REL E T78CON T7IC T8, T8REL E T8IC CC16-CC19 CC2_M4 CC16IC-CC19IC E CC20-CC23 CC2_M5 CC20IC-CC23IC E CC24-CC27 CC2_M6 CC24IC-CC27IC E CC28-CC31 CC2_M7 CC28IC-CC31IC E CC2_SEE CC2_OUT CC2_SEM CC2_DRM CC2_ID CC2_IOC KSCCFG CC2_SEE CAPCOM SingleEvent
in „Schlechte Datenblätter von Infineon (CAN)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1307.pdf
HIGH (logic high). 3. After set RES# pin LOW (logic low), wait for at least 3us (t2). Then Power ON V CC.(1) 4. After V become stable, send command AFh for display ON. SEG/COM will be ON after 100ms CC (tAF. Figure 7-15 : The Power ON sequence ON V DD RES# ON V CC Send AFh command for Display VDD OFF t1
in „STM32 F103 - I2C Probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fpga_version_tests.c
1D7A8; loc_1D4A8: var_1C = 0; goto loc_1D7A8; loc_1D4B4: Cond = var_14; if (Cond == 0) goto loc_1D4CC; var_1C = 0; goto loc_1D7A8; loc_1D4CC: var_1C = 0; goto loc_1D7A8; loc_1D4D8: Cond = var_18; if (Cond == 0) goto loc_1D4F0; var_1C = 0; goto loc_1D7A8; loc_1D4F0: var_1C = 0; goto loc_1D7A8; loc_1D4FC
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Datei
disaess.txt
0x9e090000 0cb0 .word 0x07800000 0cb4 .word 0x07800000 0cb8 .word 0x9e0d0500 0cbc .word 0x9d040508 0cc0 jmp 0x0d40 0cc4 .word 0x9d040008 0cc8 .word 0x9e090000 0ccc .word 0x07800000 0cd0 .word 0x9d040008 0cd4 .word 0x9e0d0500 0cd8 jmp 0x0d40 0cdc .word 0x9d040008 0ce0 .word 0x9e090000 0ce4 .word 0x07800000
in „Vermutliches TMS320C6xx-Binary disassemblieren“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
ATMega_48_88_168.pdf
-0.5 0.3V CC V IL1 Input Low Voltage, VCC = 1.8V - 5.5V -0.5 0.1V CC(1) V XTAL1 pin Input Low Voltage, (1) V IL2 RESET pin VCC = 1.8V - 5.5V -0.5 0.1V CC V Input High Voltage, (2) VCC = 1.8V - 2.4V 0.7VCC VCC + 0.5
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dx10_v0.77.c
short has bit 7 set. // // mode| bit. ..98 7654 3210 // ----+--------------------- // 0 | 0000 0000 0?cc cccc 0: always 0 // 1 | 0000 0000 0ccc cccc 1: always 1 // 2 | 0000 0000 0ccc cccc c: counter (total 22 bit) for laser // 3 | 0000 0000 0p0i iiii i: intensity: 00-1F (00=0%, 1A=100%) // 4 | 0000 0000
in „Schreiben eines USB-Treibers mit libusb-win32“ · Softwareentwicklung ·
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PDF
VHDL-Cookbook.pdf
The VHDL Cookbook case op is when op_add => add(reg(r3), bits_to_int(reg(r1)), bits_to_int(reg(r2)), cc_V, cc_N, cc_Z); when op_addq => add(reg(r3), bits_to_int(reg(r1)), i8, cc_V, cc_N, cc_Z); when op_sub => subtract(reg(r3), bits_to_int(reg(r1)), bits_to_int(reg(r2)), cc_V, cc_N, cc_Z); when op_subq => subtract(reg(r3), bits_to_int(reg(r1)), i8, cc_V, cc_N, cc_Z); when op_mul => multiply(reg(r3), bits_to_int(reg(r1)), bits_to_int(reg(r2)), cc_V, cc_N, cc_Z); when op_mulq => multiply(reg(r3), bits_to_int(reg(r1)), i8, cc_V, cc_N, cc_Z); when op_div
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PDF
xc164_um_v2.1_2004_03_per.pdf
Control Port Registers T0, T0REL T01CON T0IC T1, T1REL T1IC T7, T7REL E T78CON T7IC T8, T8REL E T8IC CC0-CC3 CC1_M0 CC0IC-CC3IC CC4-CC7 CC1_M1 CC4IC-CC7IC CC8-CC11 CC1_M2 CC8IC-CC11IC P9, DP9 CC12-CC15 CC1_M3 CC12IC-CC15IC ODP9 CC16-CC19 CC2_M4 CC16IC-CC19IC E ALTSEL0/1P9 E CC20-CC23 CC2_M5 CC20IC-CC23IC
in „Unterschied Compare match und Period Match“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11000.pdf
Read / Write Read / Write Reset Value: 0000 0000 (00h) Reset Value: 0000 0000 (00h) 7 0 7 0 FM/SM CC6 CC5 CC4 CC3 CC2 CC1 CC0 D7 D6 D5 D4 D3 D2 D1 D0 2 Bit 7 = FM/SM Fast/Standard I C mode. This bit is set and cleared by software. It is not Bit 7:0 = D[7:0] 8-bit Data Register. cleared when the interface
in „Programmierung von ST72F321Bj9“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
16 and Figure 17. (2) DD CC CC V CC should be kept float when it is OFF. Solomon Systech Oct 2007 P 29/60 Rev 1.9 SSD1325 9 COMMAND TABLE Table 18: Command Table (D/C# = 0, R/W# (WR#) = 0, E (RD#) = 1) unless specific setting is
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
16 and Figure 17. (2) DD CC CC V CC should be kept float when it is OFF. Solomon Systech Oct 2007 P 29/60 Rev 1.9 SSD1325 9 COMMAND TABLE Table 18: Command Table (D/C# = 0, R/W# (WR#) = 0, E (RD#) = 1) unless specific setting is
in „Densitron OLED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
111COMX_Communication_Module_DG_16_EN.pdf
Input / Output 20 Don’t use - needed for isolation 21 Don’t use - needed for isolation 22 23 24 25 26 CC-Link, Data A DA 1 27 CC-Link, Data B DB 2 28 CC-Link, Data Ground DG 3 29 CC-Link, Function Ground FG 5 30 CC-Link, Shield SLD 4 Table 25: Fieldbus Connector X2 for CC-Link Slave Note Information 1 LVTTL
in „Externes SRAM + Atmel AT91SAM7SE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr-gdb_verbose.txt
="push\tr28"},{address="0x000000ca",func-name="main",offset="4",inst="push\tr0"},{address="0x000000cc",func-name="main",offset="6",inst="in\tr28, 0x3d\t; 61"},{address="0x000000ce",func-name="main",offset="8",inst="in\tr29, 0x3e\t; 62"}]},src_and_asm_line={line="14",file="../main.c",line_asm_insn=[{address
in „XP Eclipse AVR Debugging sehr langsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_Type-C_Spec_R2.1_-_May_2021.pdf
CC3G1-5E USB4 Gen2 5 A Supported Required (SPR & EPR) CC3G2-3 3 A Supported USB 3.2 Gen2 Required CC3G2-5 1 5 A (SPR only) C C and ≤ 1 m CC3G2-5E USB4 Gen2 5 A Supported Required (SPR & EPR) CC4G3-3 3 A
in „USB-C Dual-Role-Device DRD mit integriertem OTG FS PHY“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TS-iP59_V05_FKA_240160A.c
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in „Display DEM240160A mit UC1698u einzelne Bildpunkte setzen“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „Kleine 8051 Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51rd2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·