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Datei
t.lst
r30 ; 143 push r31 0000ab 93ff push r31 ; 144 in r26,sreg 0000ac b7af in r26,sreg ; 145 push r26 0000ad 93af push r26 ; 146 #endasm ; 147 if (tx_counter) 0000ae 20bb TST R11 0000af f061 BREQ _0x30 ; 148 { ; 149 --tx_counter; 0000b0 94ba DEC R11 ; 150 UDR=tx_buffer[tx_rd_index]; 0000b1 2dea MOV R30,R10
in „Problem mit CodevisionAVR 1.23.8c Standard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t.lst
r30 ; 143 push r31 0000ab 93ff push r31 ; 144 in r26,sreg 0000ac b7af in r26,sreg ; 145 push r26 0000ad 93af push r26 ; 146 #endasm ; 147 if (tx_counter) 0000ae 20bb TST R11 0000af f061 BREQ _0x30 ; 148 { ; 149 --tx_counter; 0000b0 94ba DEC R11 ; 150 UDR=tx_buffer[tx_rd_index]; 0000b1 2dea MOV R30,R10
in „Problem mit CodevisionAVR 1.23.8c Standard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CoolTerm_Capture__FritzAVM_1V8.CoolTermSettings__2026-06-27_08-52-21-633.txt
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in „FRITZ!Box 7490 Bootloop“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cd-loader.dasm.html
href="#L0B01">L0B01</a></a> <a name="L0ACD"></a>L0ACD: call <a href="#L199A">L199A</a></a> <a name="L0AD0"></a> ld hl,0000h</a> <a name="L0AD3"></a> add hl,sp</a> <a name="L0AD4"></a> ld (hl),a</a> <a name="L0AD5"></a> jr <a href="#L0B01">L0B01</a></a> <a name="L0AD7"></a>L0AD7: ld a,l</a> <a name="L0AD8
in „Suche KL5C80A12 (Z80 Clone) Datenblatt / Register-Map“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S12XF512.pdf
. . . . . 718 16.3.73Port AD Reduced Drive Register 0 (RDR0AD) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 719 16.3.74Port AD Reduced Drive Register 1 (RDR1AD) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 720 16.3.75Port AD Pull Up Enable Register 0 (PER0AD) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 720 16.3.76Port AD Pull Up Enable Register 1 (PER1AD) . . . . . . . . . . . . . . . . . . . . . . . .
in „Wie oft kann ein µC programmiert werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S12XF512.pdf
. . . . . 718 16.3.73Port AD Reduced Drive Register 0 (RDR0AD) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 719 16.3.74Port AD Reduced Drive Register 1 (RDR1AD) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 720 16.3.75Port AD Pull Up Enable Register 0 (PER0AD) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 720 16.3.76Port AD Pull Up Enable Register 1 (PER1AD) . . . . . . . . . . . . . . . . . . . . . . . .
in „Probleme beim Ansteuern eines EEPROM über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
— ns tv(NADV_NE) EXMC_NEx low to EXMC_NADV low 0 — ns tw(NADV) EXMC_NADV low time 8.3 10.3 ns EXMC_AD(adress) valid hold time after Th(AD_NADV) 8.3 10.3 ns EXMC_NADV high (1).LC =30 pF. (2). Guaranteed by design, not tested in production. (3). Based on characterization, not tested in production. (4).
in „RISC-V: Wird das was?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
— ns tv(NADV_NE) EXMC_NEx low to EXMC_NADV low 0 — ns tw(NADV) EXMC_NADV low time 8.3 10.3 ns EXMC_AD(adress) valid hold time after Th(AD_NADV) 8.3 10.3 ns EXMC_NADV high (1).LC =30 pF. (2). Guaranteed by design, not tested in production. (3). Based on characterization, not tested in production. (4).
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BMA456.pdf
CSB stays active low. The principle of multiple write is shown in figure below: CSB SCX SDX X R/W AD6 AD5 AD4 AD3 AD2 AD1 AD0 DI7 DI6 DI5 DI4 DI3 DI2 DI1 DI0 DI7 DI6 DI5 DI4 DI3 DI2 DI1 DI0 X SDO X Z X logical R/W + register address n Data (address n) Data (address n+1) SPI multiple write The basic
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ms5561c.pdf
Low Voltage VOL Isink0.6 mA 0% VDD 20% VDD V Signal Rise Time tr 200 ns Signal Fall Time tf 200 ns AD-CONVERTER (T = -40°C .. 85°C, VDD = 2.2 V .. 3.6 V) Parameter Symbol Conditions Min Typ Max Unit Resolution 16 bit Linear Range 4’000 40’000 LSB Conversion Time MCLK = 32.768 kHz 35 ms INL Within linear
in „Baro- & Hygrometer ab 8.4. bei Lidl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at91sam.pdf
SPI1_NPCS3 SPI1 TCLK2 SPI1_MISO TC0 TIOA0 SPI1_MOSI TIOB0 SPI1_SPCK PDC TIOA1 ADTRG PDC TC1 TIOB1 AD0 TIOA2 AD1 TC2 TIOB2 AD2 TWD AD3 ADC TWI TWCK AD4 AD5 CANRX AD6 CAN CANTX AD7 ADVREF 4 SAM7X512/256/128 6120I–ATARM–06-Apr-11 SAM7X512/256/128 3. Signal Description Table 3-1. Signal Description List
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irfb3077pbf.pdf
250μA ΔV(BR)DSSΔTJ Breakdown Voltage Temp. Coefficient ––– 0.091 ––– V/°C Reference to 25°C, D= 5mAd RDS(on) Static Drain-to-Source On-Resistance ––– 2.8 3.3 mΩ V = 10V, I = 75A g GS D VGS(th) Gate Threshold Voltage 2.0 ––– 4.0 V V DS= VGS ID= 250μA DSS Drain-to-Source Leakage Current ––– ––– 20 μA
in „Suche nach Treiber für Power-Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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Thread
C-Code für Fahrtregler anpassen
timeout (49mS) sbis pind, 2 rjmp ge2 ;measure high pulse time, 1.25 uS = 1 count ldy 8000 ge3: adiw x, 1 ;2 sbiw y, 1 ;2 brcs ge5 ;1 ;exit with c=1 if timeout (10mS) nop ;1 nop ;1 sbic pind, 2 ;1 rjmp ge3 ;2 ;set to 1500uS if below 900uS or above 2100uS
/Counter0 .equ PUD = 2 ; Pull-up Disable .equ ADHSM = 4 ; ADC High Speed Mode ; ***** AD_CONVERTER ***************** ; ADMUX - The ADC multiplexer Selection Register .equ MUX0 = 0 ; Analog Channel and Gain Selection Bits .equ MUX1 = 1 ; Analog Channel and Gain Selection Bits .equ
Mikrocontroller und Digitale Elektronik ·Andre Meschke · ·24 Antworten
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PDF
intel_bas52man.pdf
4 GND 14 15 O 3 1 14 V CC EPROMS 2 13 3 12 T2 / P1.0 1 40 V PA3 1 40 PA4 4 11 CC T2EX / P1.1 2 39 AD0 PA2 2 39 PA5 5 10 PWM OUTPUT / P1.2 3 38 AD1 PA1 3 38 PA6 6 9 ALE DISABLE / P1.3 4 37 AD2 PA0 4 37 PA7 GND 7 8 PROGRAM PULSE / P1.4 5 36 AD3 RD 5 36 WR PROGRAM ENABLE / P1.5 6 35 AD4 CS 6 35 RESET 74LS08 NC 1 28 V CC DMA ACKNOLEDGE / P1.6 7 34 AD5 GND 7 34 D0 74LS00 INVERTING A12 2 27 WR LINE PRINTER OUTPUT / P1.7 8 33 AD6 A1 8 33 D1 A7 3 26 NC RESE T 9 32 AD7 A0 9 32 D2 A6 4 25 A 8 CONSOLE SERIAL INPUT 10 31 + 5 VOLTS PC7 10 31 D3 A5 5 24 A
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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PDF
intel_bas52man.pdf
4 GND 14 15 O 3 1 14 V CC EPROMS 2 13 3 12 T2 / P1.0 1 40 V PA3 1 40 PA4 4 11 CC T2EX / P1.1 2 39 AD0 PA2 2 39 PA5 5 10 PWM OUTPUT / P1.2 3 38 AD1 PA1 3 38 PA6 6 9 ALE DISABLE / P1.3 4 37 AD2 PA0 4 37 PA7 GND 7 8 PROGRAM PULSE / P1.4 5 36 AD3 RD 5 36 WR PROGRAM ENABLE / P1.5 6 35 AD4 CS 6 35 RESET 74LS08 NC 1 28 V CC DMA ACKNOLEDGE / P1.6 7 34 AD5 GND 7 34 D0 74LS00 INVERTING A12 2 27 WR LINE PRINTER OUTPUT / P1.7 8 33 AD6 A1 8 33 D1 A7 3 26 NC RESE T 9 32 AD7 A0 9 32 D2 A6 4 25 A 8 CONSOLE SERIAL INPUT 10 31 + 5 VOLTS PC7 10 31 D3 A5 5 24 A
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PDF
EKG_usw_Informationformedicalapplications_von_TI.pdf
of 0.1 Hz to 100 Hz and sequence, the AED provides voice prompts to instruct the user to • high common-mode rejection ratio (CMRR) (>100 dB). attach the patient electrodes and starts acquiring ECG data. If the AED Display Compact RS232/ Memoryh
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
CMD_bm002_bm201.lst
1473 0ACA 7E LD A,(HL) 1474 0ACB B7 OR A 1475 0ACC 20 DE JR NZ,L0246 1476 0ACE 18 CB JR L0247 1477 0AD0 05 DEC B 1478 0AD1 20 08 JR NZ,L0248 1479 0AD3 23 L0249: INC HL 1480 0AD4 23 INC HL 1481 0AD5 23 INC HL 1482 0AD6 04 INC B 1483 0AD7 7E LD A,(HL) 1484 0AD8 B7 OR A 1485 0AD9 20 F8 JR NZ,L0249 1486 0ADB
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP4261-DigitalPot-2Fach-50kDATASHEET.pdf
CMDERR bit SDO bit15 bit14 bit13 bit12 bit1bit10 bit9 bit8 bit7 bit6 bit5 bit4 bit3 bit2 bit1 bit0 AD3 AD2 AD1 AD0 X D8 D7 D6 D5 D4 D3 D2 D1 D0 SDI bit15 bit14 bit13 bit12 bit9 bit8 bit7 bit6 bit5 bit4 bit3 bit2 bit1 bit0 C1 C0 Input Sample FIGURE 6-4: 16-Bit Commands (Write, Read) - SPI Waveform (Mode
in „Step Down Regler zu heiss & Fragen zur Umsetzbarkeit einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EMMC-32GB-2.pdf
device that includes a Multi- MediaCard (MMC) interface, a NAND Flash component, and a controller on an ad- vanced 11-signal bus, which is compliant with the MMC system specification. Its low cost, small size, Flash technology independence, and high data throughput make e·MMC ideal for embedded applications
in „Pinout Flexansvhlusskabel 8-Pin an eMMC Flash-Card 32GB gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
panasonic_tx-50dx800e_tx-50dxw804_chassis_la67.pdf
1 PAVCCZ ZA0307 K4AD01D00012 TERMINAL 1 PAVCCZ ZA0308 K4AD01D00012 TERMINAL 1 PAVCCZ ZA0309 K4AD01D00012 TERMINAL 1 PAVCCZ ZA0311 K4AD01D00012 TERMINAL 1 PAVCCZ ZA0312 K4AD01D00012 TERMINAL 1 PAVCCZ ZA0313 K4AD01D00012 TERMINAL
in „Schaltregler SMD Marking“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samsung_242mp_chassis_po24fs.pdf
Tone (Factory mode: Noraml) - Warm2(4000K) , Warm1(5000K) , Normal(6500K) , Cool1(7000K) , Cool2(8000K), Cool3(9300K), Cool4(10000K) - Color tone range: Each color tone 700K 2-3 Gamma (Factory mode: +0.2) - -0.3 , -0.2 , -0.1 , +0 , +0.1 , +0.2 , +0.3 , +0.4 , +0.5 , +0.6 2-4 6-color (Each color setting
in „Defekt an Samsung 242MP TV/Monitor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20120224183241077.pdf
6) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 111-1ffh Setting disabled 200h GRAM address Set 0 0 0 0 0 0 0 0 AD7 AD6 AD5 AD4 AD3 AD2 AD1 AD0 (0) Horizontal Address (0) (0) (0) (0) (0) (0) (0) 201h GRAM address Set 0 0 0 0 0 0 0 AD16 AD15 AD14 AD13 AD12 AD11 AD10 (0) AD9 AD8 (0) Vertical Address (0) (0) (0) (0)
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Eeprom2.txt
ld e,d .data:00001acc 2e 62 ld l,0x62 .data:00001ace 5a ld e,d .data:00001acf 3c inc a .data:00001ad0 4d ld c,l .data:00001ad1 5a ld e,d .data:00001ad2 48 ld c,b .data:00001ad3 47 ld b,a .data:00001ad4 5a ld e,d .data:00001ad5 43 ld b,e .data:00001ad6 34 inc (hl) .data:00001ad7 5a ld e,d .data:00001ad8
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
USB Audio I/O Controller REG5 Address: 0x05 Reset State: 0x3000 15 14 13 12 11 10 9 8 Rsvd DA_RST AD_RST AD2SPD SPDO_SEL CODEM N N O 7 6 5 4 3 2 1 0 EN_HPF T_SEL_ T_SEL_ T_SEL_ T_SEL_ T_SEL_DSAD DSDA4 DSDA3 DSDA2 DSDA1 Bit Bit Read/ Function Number Mnemonic Write 15-14 Rsvd R Reserved 13 DA_RSTN R/W DAC delta-sigma reset signal 12 AD_RSTN R/W ADC delta-sigma reset signal 11 AD2SPDO R/W 1: enable ADC data to SPDIFOUT 10-9 SPDO_SEL R/W SPDIFOUT channel selector 00: Front; 01: Side_Sur; 10: CEN/LFE; 11: Rear_Sur 8 CODECM R/W 0: USB
in „USB Stereo Eingang Mikro oder line-in“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
USB Audio I/O Controller REG5 Address: 0x05 Reset State: 0x3000 15 14 13 12 11 10 9 8 Rsvd DA_RST AD_RST AD2SPD SPDO_SEL CODEM N N O 7 6 5 4 3 2 1 0 EN_HPF T_SEL_ T_SEL_ T_SEL_ T_SEL_ T_SEL_DSAD DSDA4 DSDA3 DSDA2 DSDA1 Bit Bit Read/ Function Number Mnemonic Write 15-14 Rsvd R Reserved 13 DA_RSTN R/W DAC delta-sigma reset signal 12 AD_RSTN R/W ADC delta-sigma reset signal 11 AD2SPDO R/W 1: enable ADC data to SPDIFOUT 10-9 SPDO_SEL R/W SPDIFOUT channel selector 00: Front; 01: Side_Sur; 10: CEN/LFE; 11: Rear_Sur 8 CODECM R/W 0: USB
in „PC Sound-Hardware: CD-Laufwerk“ · PC Hard- und Software ·
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PDF
CM6206_Datasheet__v2.3_1_.pdf
USB Audio I/O Controller REG5 Address: 0x05 Reset State: 0x3000 15 14 13 12 11 10 9 8 Rsvd DA_RST AD_RST AD2SPD SPDO_SEL CODEM N N O 7 6 5 4 3 2 1 0 EN_HPF T_SEL_ T_SEL_ T_SEL_ T_SEL_ T_SEL_DSAD DSDA4 DSDA3 DSDA2 DSDA1 Bit Bit Read/ Function Number Mnemonic Write 15-14 Rsvd R Reserved 13 DA_RSTN R/W DAC delta-sigma reset signal 12 AD_RSTN R/W ADC delta-sigma reset signal 11 AD2SPDO R/W 1: enable ADC data to SPDIFOUT 10-9 SPDO_SEL R/W SPDIFOUT channel selector 00: Front; 01: Side_Sur; 10: CEN/LFE; 11: Rear_Sur 8 CODECM R/W 0: USB
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6neds.pdf
AN20 to A27 input, = 5V, ANEX ,ANEX 1 input øAD ≤ 10MHz External op-amp connection mode ±7 LSB RLADDER Ladder resistance V REF= VCC =5V 10 40 kΩ tCONV Conversion time (10bit) f(XI)= 16MHz, øAD= 2AD/2 = 8MHz(Note 4)4.125 µs f(XI)= 10MHz, øAD= 2AD = 10MHz (Note 4) 3.3 CONV Conversion time (8bit) f(XI)= 16MHz, øAD= 2AD/2 = 8MHz(Note 4) 3.5 µs f(XI)= 10MHz, øAD= 2AD = 10MHz (Note 4) 2.8 tSAMP Sampling time f(XI)= 16MHz, øAD= 2AD/2 = 8MHz(Note 4)0.375 µs f(XI)= 10MHz, øAD= 2AD = 10MHz (Note 4) 0.3 VREF Reference
in „M16C- Key Input Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HeizgV20.c
pgm_read_byte(&disp_wert[i]); // hole nächste Dezimalstelle } } // end for } // -------------- Abfrage des AD-Wandlers ----------------------------------------------- unsigned int read_adc(unsigned char adc_nr) { ADMUX = adc_nr; // setze Wandler auf Kanal "adc_nr" ADCSRA |= (1<<ADSC); // starte Wandlung while
in „Heizungssteuerung mit ATMEGA 32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Eeprom_1.txt
LD (HL),L 3272 1ACB 5A LD E,D 3273 1ACC 2E 62 LD L,62H 3274 1ACE 5A LD E,D 3275 1ACF 3C INC A 3276 1AD0 4D LD C,L 3277 1AD1 5A LD E,D 3278 1AD2 48 LD C,B 3279 1AD3 47 LD B,A 3280 1AD4 5A LD E,D 3281 1AD5 43 LD B,E 3282 1AD6 34 INC (HL) 3283 1AD7 5A LD E,D 3284 1AD8 CD 02 03 CALL L0079 3285 1ADB C3 2B
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MS5540C_1_.pdf
Low Voltage VOL Isink 0.6 mA 0% VDD 20% VDD V Signal Rise Time r 200 ns Signal Fall Time f 200 ns AD-CONVERTER (T = -40°C .. 85°C, VDD = 2.2 V .. 3.6 V) Parameter Symbol Conditions Min Typ Max Unit Resolution 16 Bit Linear Range 4000 40000 LSB Conversion Time MCLK = 32.768 35 ms kHz Within linear INL
in „Vakuummeter für Grobvakuum selber bauen - welcher Sensor?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
VCCPRIM_1P0_AB17 L21 +VCCCLK3 1 VCCPRIM_1P0_Y18 VCCCLK3 R329 2 1 0_0402_5% +VCCPGPPD +VCC PDSW_3P3 AD17 N20 +VCCCLK4 L16 1 2 +VCCPRIM_1P0 AD18 VCCDSW_3P3_AD17 VCCCLK4 VCCDSW_3P3_AD18 BLM15PX121SN1D_2P AJ17 VCCDSW_3P3_AJ17 VCCCLK5 L19 +VCCCLK5 1 C54 +VCC PAZIO AJ19 A10 +VCCCLK6 1U_0201_1V6K VCCHDA VCCCLK6
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l9805e.pdf
Bit 1:0 = AD9-AD8 Analog Converted Value This register contains the high part of the converted analog value DATA REGISTER LOW (ADCDRL) Address: 0071h — Read Only Reset Value: 00000 0000 (00h) 7 0 AD7 AD6 AD5 AD4 AD3 AD2 AD1 AD0 Bit 7:0 = AD7-AD0 Analog Converted Value This register contains the low part of the converted analog value 73/125 On-chip peripherals L9805E 5.6 Controller area network (CAN) 5.6.1 Introduction
in „ST L9805-E Motortreiber mit H Brücke und ST7UD05 Kern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC18f6622.pdf
CCP2MX = 1, all other Program Memory modes: (1) (1) (1) (1) Compatible CCP 00xx 11xx RB3/INT3 ECCP2 AD15 AD10 AD9 AD8 Dual PWM 10xx 11xx RB3/INT3 P2A AD15 (1) AD10/P2B(1) AD9(1) AD8 (1) Quad PWM x1xx 11xx RB3/INT3 P2A AD15 (1) AD10/P2B(1) AD9/P2C(1) P2D/AD8 (1) PIC18F8527/8622/8627/8722 Devices, CCP2MX = 0, all other Program Memory modes: Compatible CCP 00xx 11xx ECCP2 RC1/T1OSI AD15 (1) AD10(1) AD9(1) AD8 (1) Dual PWM 10xx 11xx P2A RC1/T1OSI AD15 (1) AD10/P2B(1) AD9(1) AD8 (1) (1) (1) (1) (1) Quad PWM x1xx 11xx P2A RC1/T1OSI AD15 AD10/P2B AD9/P2C P2D/AD8 Legend: x = Don’t care
in „PIC 18F6622 Zeit um EEPROM zu schreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sed1335f.pdf
ters per line, 200/1 = 200 lines. Required • First layer: graphics display memory size = 40 × 200 = 8000 bytes. • Second layer: graphics display • Secondlayer(graphics):320/8=40char- acters per line, 200/1 = 200 lines. Re- quired memory size = 8000 bytes. 1F40H 2nd graphics layer (8000 bytes) 0000H 1st
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SED1330.pdf
ters per line, 200/1 = 200 lines. Required • First layer: graphics display memory size = 40 × 200 = 8000 bytes. • Second layer: graphics display • Secondlayer(graphics):320/8=40char- acters per line, 200/1 = 200 lines. Re- quired memory size = 8000 bytes. 1F40H 2nd graphics layer (8000 bytes) 0000H 1st
in „Hilfe ! Problem mit Minigrafikdisplay und AT90S8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SED1335F.pdf
ters per line, 200/1 = 200 lines. Required • First layer: graphics display memory size = 40 × 200 = 8000 bytes. • Second layer: graphics display • Secondlayer(graphics):320/8=40char- acters per line, 200/1 = 200 lines. Re- quired memory size = 8000 bytes. 1F40H 2nd graphics layer (8000 bytes) 0000H 1st
in „Hilfe beim Initialisieren des SED1335F gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Castillo19.c
0x5136, 0x0154, 0x592E, 0x98AA, 0x0212, 0x4136, 0xD298, 0x70A0, 0x3AC0, 0x1D60, 0x2603, 0x4BB8, 0xAD83, 0xD2B4, 0x6D0E, 0x14ED, 0x1AD8, 0xAD84, 0x16AE, 0x8856, 0x2536, 0x2A94, 0x2984, 0x14A4, 0x6C20, 0xB4E7, 0x1A96, 0x103D, 0x039E, 0x0253, 0x0109, 0x4F0A, 0xD53B, 0x7818, 0x3260, 0xC289, 0xDA16, 0xA769
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·
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PDF
RDA5851S.pdf
through even addresses only. ● Manage page mode SRAM or FLASH. ● Manage burst mode PseudoSRAM. ● Manage AD-Mux and AD-Mux burst mode PseudoSRAM. ● 1 Control Register Enable (M_CRE) Output pin in same power domain than other memory IO for PseudoSRAM register control. ● FIFO interface for address/data path
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PDF
PIC_18F8722_Data_Sheet.pdf
CCP2MX = 1, all other Program Memory modes: (1) (1) (1) (1) Compatible CCP 00xx 11xx RB3/INT3 ECCP2 AD15 AD10 AD9 AD8 10xx 11xx RB3/INT3 P2A AD15 (1) AD10/P2B(1) AD9(1) AD8(1) Dual PWM Quad PWM x1xx 11xx RB3/INT3 P2A AD15 (1) AD10/P2B(1) AD9/P2C(1) P2D/AD8(1) PIC18F8527/8622/8627/8722 Devices, CCP2MX = 0, all other Program Memory modes: 00xx 11xx ECCP2 RC1/T1OSI AD15 (1) AD10 (1) AD9(1) AD8(1) Compatible CCP Dual PWM 10xx 11xx P2A RC1/T1OSI AD15 (1) AD10/P2B(1) AD9(1) AD8(1) Quad PWM x1xx 11xx P2A RC1/T1OSI AD15 (1) AD10/P2B(1) AD9/P2C(1) P2D/AD8(1) Legend: x =
in „PIC 18F6527 mit 32MHz Takten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
haupt.pdf
PRN-Folge m˜t 0.8416 m, kann die Korrelationsspitze noch an der richtigen Stelle erkannt werden: 8000 ’Analoge Korrelation’ 6000 4000 t e 2000 w n t 0 l r K -2000 -4000 -6000 -8000 19 19.5 20 20.5 21 21.5 22 Entfernung in Meter Abb. F.3: Analoge Korr. bei reflektiertem Signal mit 20.8 m Distanz ohne
in „Verstaerker mit inverser charakteristik“ · Analoge Elektronik und Schaltungstechnik ·
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36ddedx.pdf
12.7) 122.0 AC 1.375 (35.0) 4.125 (105.0) 1.453 (36.9) 4.250 (108.0) 1.349 (110.5) 0.500 (12.7) 129.0 AD 1.375 (35.0) 4.625 (117.0) 1.453 (36.9) 4.750 (120.7) 1.849 (123.2) 0.500 (12.7) 162.0 AE 1.375 (35.0) 5.125 (130.0) 1.453 (36.9) 5.250 (133.4) 1.349 (125.9) 0.500 (12.7) 179.0 AF 1.375 (35.0) 5.625
in „Unterschied Bauform "kleiner Elko" "großer Elko"“ · Analoge Elektronik und Schaltungstechnik ·
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lbo-5880_LEADER_anleitung.pdf
shwnbeow - 39- (LOAD LBO)8 0 (AVELBO 5)80 O tlLOA t _ p SAVEae,LC60 6 ] Conncthcaeto/OPORT @OnbOhheLAD adSA E ilscpse 9.. TaSern hente g p gan t adis010dde 99 () CtOPERAING MO)E 1)tO S Tnbt the AO ad AVE sdosops,ndetheBEGN dds 0 0ndheEND drs 099_ ˛ åN f H L heLOADLB0580 E mode ‚o B y Þ m ~ N Ü& ltoG) (A
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lbo-5880_LEADER_anleitung.pdf
shwnbeow - 39- (LOAD LBO)8 0 (AVELBO 5)80 O tlLOA t _ p SAVEae,LC60 6 ] Conncthcaeto/OPORT @OnbOhheLAD adSA E ilscpse 9.. TaSern hente g p gan t adis010dde 99 () CtOPERAING MO)E 1)tO S Tnbt the AO ad AVE sdosops,ndetheBEGN dds 0 0ndheEND drs 099_ ˛ åN f H L heLOADLB0580 E mode ‚o B y Þ m ~ N Ü& ltoG) (A
in „Problem Oszilloskop-Bedienung“ · Analoge Elektronik und Schaltungstechnik ·
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Mabuchi_Motors_Complete.pdf
SPEED CURRENT FLUCTUATION(TYP) TORQUE(MIN) V V mN·m g·cm r/min mA(TYP) r/min / g·cm mN·m g·cm EG-530AD-6F (6B) 6 4.2 ~ 7.5 0.78 8.0 2400±2% 132 9.0 3.72at4.2V 38at4.2V EG-530AD-9F (9B) 9 6~ 11 0.78 8.0 2400±2% 92 9.0 4.90at6.0V 50at6.0V EG-530AD-2F (2B) 12 8.4 ~ 15.0 0.78 8.0 2400±2% 73 9.0 5.88at8.4V
in „12 V Motor aus der Al-ko Mover Einheit M20 Ams1“ · Fahrzeugelektronik ·
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M30201F6SP.pdf
5 (AD5) 038C16 03CC 16 038D16 Timer X2 (TX2) 03CD 16 A-D register 6 (AD6) 038E16 Clock divided counter (CDC) 03CE 16 038F16 03CF 16 A-D register 7 (AD7) 039016 03D0 16 Timer B0 (TB0) 039116 03D1 16 039216
in „Biete Mitsubishi / Renesas M30201F6SP aus der M16C60 Serie“ · Mikrocontroller und Digitale Elektronik ·
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pic33h_1_same_dac.s
mov #0b0001000000010101,w10 mov w10,CORCON clr TBLPAG goto main .org(0x600) sinus_table: .word 0x8000 , 0x8320 , 0x8640 , 0x8960 , 0x8C80 .word 0x8FA0 , 0x92C0 , 0x95E0 , 0x98F0 , 0x9C00 .word 0x9F10 , 0xA220 , 0xA520 , 0xA820 , 0xAB10 .word 0xAE00 , 0xB0F0 , 0xB3D0 , 0xB6B0 , 0xB980 .word 0xBC50 ,
in „Filter mit dpic33fj“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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ADUC7019_7020_7021_7022_7024_7025_7026_7027_7028.pdf
Reserved. P3.5 GPIO PWM2 L AD5 PLAI[13] 28 Pull-Up Disable Px.7. P3.6 GPIO PWM TRIP AD6 PLAI[14] 27:25 Reserved. P3.7 GPIO PWM SYNC AD7 PLAI[15] 24 Pull-Up Disable Px.6. 4 P4.0 GPIO AD8 PLAO[8] 23:21 Reserved. P4.1 GPIO AD9 PLAO[9] 20 Pull-Up Disable Px.5. P4.2 GPIO AD10 PLAO[10] 19:17 Reserved. P4.3 GPIO AD11 PLAO[11] 16 Pull-Up Disable Px.4. P4.4 GPIO AD12 PLAO[12] 15:13 Reserved. P4.5 GPIO AD13 PLAO[13] 12 Pull-Up Disable Px.3. P4.6 GPIO AD14 PLAO[14] 11:9 Reserved
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XBEE3_UserGuide.pdf
Rate) 213 ET (EndDevice Timeout) 213 SI (SleepImmediately) 214 I/O settings commands 214 D0 (DIO0/AD0/Commissioning Button Configuration) 214 D1 (AD1/DIO1/TH_SPI_ATTN Configuration) 215 D2 (DIO2/AD2/TH_SPI_CLK Configuration) 215 D3 (DIO3/AD3/TH_SPI_SSELConfiguration) 216 D4 (DIO4/TH_SPI_MOSI Configuration
in „XBEE3 Home Automation“ · Mikrocontroller und Digitale Elektronik ·
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Handbuch_SE4942_Eprom_Programmer_pdfa-2b_150dpi.pdf
Eytes von FA zu LA. Es erfolgt keine ärderung der Daten zwischen FA und LA.(/LA - FA/) > n, LA + n < 8000 SE4942 Handbuch 2. 14 EPROM Programmierer SEU942 SE Spezial Electronic X X X X LA+n LA+n bdo nWRbyte bdı LA A LA X X X X FA+n FA+n 1 bdo —=-Not chang9d n byte bdo FA A FA ——> After Bock Moving Before
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disassebled_minimal_change_crash.asm
0f 91 pop r16 1aca: 0c 94 42 05 jmp 0xa84 ; 0xa84 <attachInterrupt> 1ace: 24 30 cpi r18, 0x04 ; 4 1ad0: 11 f4 brne .+4 ; 0x1ad6 <_Z12register_pcihhPFvvEh.part.4+0x50> 1ad2: 44 e0 ldi r20, 0x04 ; 4 1ad4: f7 cf rjmp .-18 ; 0x1ac4 <_Z12register_pcihhPFvvEh.part.4+0x3e> 1ad6: c2 2f mov r28, r18 1ad8: 44
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·