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PDF
HD44780.pdf
clocks COM1 1 2 3 4 8 1 2 VCC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 8 = 11850 µs = 11.9 ms 1 Frame frequency = = 84.3 Hz 11.9 ms 1/11 duty cycle 400 clocks COM1 1 2 3 4 11 1 2 V CC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U
in „LCD Dotmatrix kaputt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u.pdf
clocks COM1 1 2 3 4 8 1 2 VCC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 8 = 11850 µs = 11.9 ms 1 Frame frequency = = 84.3 Hz 11.9 ms 1/11 duty cycle 400 clocks COM1 1 2 3 4 11 1 2 V CC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U
in „Falsche Zeichen bei LCD-Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u.pdf
clocks COM1 1 2 3 4 8 1 2 VCC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 8 = 11850 µs = 11.9 ms 1 Frame frequency = = 84.3 Hz 11.9 ms 1/11 duty cycle 400 clocks COM1 1 2 3 4 11 1 2 V CC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U
in „2. Zeile LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780U.pdf
clocks COM1 1 2 3 4 8 1 2 VCC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 8 = 11850 µs = 11.9 ms 1 Frame frequency = = 84.3 Hz 11.9 ms 1/11 duty cycle 400 clocks COM1 1 2 3 4 11 1 2 V CC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U
in „444780 LCD 5x10 klappt nicht richtig!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
clocks COM1 1 2 3 4 8 1 2 VCC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 8 = 11850 µs = 11.9 ms 1 Frame frequency = = 84.3 Hz 11.9 ms 1/11 duty cycle 400 clocks COM1 1 2 3 4 11 1 2 V CC V1 V2 (V3) V4 V5 1 frame 1 frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U
in „Ist der HD44780 nun 8 oder 16 Zeichen lang?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq2060a.pdf
time Transmit mode 300 ns SU:DAT Data setup time 250 ns TIMEOUT Error signal/detect See (1) 25 35 ms LOW Clock low period 4.7 µs HIGH Clock high period See (2) 4 50 µs LOW:SEXT Cumulative clock low slave extend time See (3) 25 ms (4) LOW:MEXT Cumulative clock low master extend time See 10 ms (1) The
in „Verstehe dieses Datenblatt nicht (BQ2060A)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
decoder.pdf
commands per channel 64 Funktion Taster 4 EVV 1EVV Function key 4 EVV 1EVV Einschaltverzögerung <550ms <70ms Cut-in delay <550ms <70ms Nachlaufzeit b. Funkt. "Taste" <550ms <110ms Cut-off delay <550ms <110ms Betriebspannung 230V+6%-10%,50-60Hz Operating voltage 230V+6%-10%,50-60Hz Betriebsstrom max.75
in „Siemens IR-64K > IR - Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S8200A_E.pdf
Range Remark Overcharge detection delay time CU 256 ms 512 ms 1.0 s*1 Select a value from the left. *1 Overdischarge detection delay time DL 32 ms 64 ms 128 ms Select a value from the left. Discharge overcurrent detection delay time DIOV 4 ms 8 ms *1 16 ms Select a value from the left. *1 Load short-circuiting detection delay Time SHORT 250 μs 500 μs 1 ms Select a value from the left. Charge overcurrent detection delay time CIOV 4 ms 8 ms *1 16 ms Select
in „Li-Ion Ladeschutzschaltung mit S-8200“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WTV020SD.pdf
SDA EQU P3.3 ;DATA PIN RST EQU P3.4 ;RESET PIN DAIFAZHI EQU 50H ;SEND CODE VALUE TEMP VOICENUM EQU 51H ;VOLUME CLKNUM EQU 52H ;CLK MOV DAIFAZHI,#0H ;INITIAL SEND VALUE 0 MOV VOICENUM,#0F0H ; VOLUME INITIAL VALUE F0H MOV CLKNUM,#2 ; DEFAULT SEND CODE 1MS MOV R5,#8 ; LOOP EIGHT TIMES SETB SCL SETB SDA
in „Anfängerfrage 16 Bit seriell übertragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irsnd-main-avr.c
define GIGASET_EPG 0x2C #define GIGASET_PAGEUP 0x4D #define GIGASET_PAGEDN 0x4F #define GIGASET_MENU 0x51 // PVR Section #define GIGASET_REC 0x53 #define GIGASET_REW 0x54 #define GIGASET_PLAY 0x55 #define GIGASET_FWD 0x56 #define GIGASET_ARCH 0x46 #define GIGASET_EDIT 0x47 #define GIGASET_STOP 0x35 #define
in „Konzeption einer IR Fernbedienung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Global Interrupts aktivieren //sei(); */ uint16_t schlampe; uint8_t ux; uint8_t count = 0; _delay_ms(1000); for(count = 0; count < 100; count ++) { show(); _delay_us(200); show(); _delay_us(200); show(); _delay_us(200); show(); } _delay_ms(1000); for(schlampe = 0; schlampe < 5000; schlampe ++) { animateGraph(); makeGraph(); show(); } _delay_ms(1000); setup_spi(SPI_MODE_1, SPI_MSB, SPI_NO_INTERRUPT, SPI_SLAVE); while(1) { LED1ON(); makeGraph(); show(); LED1OFF(); ux = 0; while(ux != 250) { ux = received_from_spi(count); _delay_us(5); } count
in „AVR Controller Spinnt Probleme mit 16Bit Variabeln!?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp1482.pdf
protects the device from. Output Voltage VIOUT.....................0.923VEto 15V84) Measured on JESD51-7, 4-layer board.tion outside of its OpOrating Junct. Temp (T )J.......-40°C toF+125°C N E R MP1482 Rev. 1.31 www.MonolithicPower.com 2 7/9/2012 MPS Proprietary Informat© 2012 MPS. All Rights Reserved.zed
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MBR10100CT.pdf
Flammability 1 2 3 Classification Rating 94V-0 E G 12.70 14.73 G H 2.29 2.79 Mechanical Data J N J 0.51 1.14 · Case: Molded Plastic K 3.53Æ 4.09Æ · Terminals: Plated Leads Solderable per H H P L 3.56 4.83 MIL-STD-202, Method 208 M 1.14 1.40 Pin 1 · Polarity: As Marked on Body Pin 2 Case N 0.30 0.64 · Weight
in „Dual High-Voltage Schottky Rectifiers 10A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GTR_Neu_III.c
; // Nicht mehr! } void Transmit0(int Senden) { //Sende Rutine UART0 //WARTESCHLEIFE!!!!!!! _delay_ms(4.35); //Warten bis gesendet werden kann while (!(UCSR0A & (1<<UDRE0))) { } //UDR0 senden UDR0 = Senden; } void Transmit1(int Senden) { //Sende Rutine UART1 //WARTESCHLEIFE!!!!!!! _delay_ms(4.35); //
in „UART Problem (Assembler zu C) II“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lsubl616.pdf
TABLETACTIVEAREA) ϡ . ʔ 8 ϧ ) E E L A A U R I T A C L I T A E L N ( ( A C 4 0 ( 4 1 9 . ) 1 8 5. ( 51 135 (TABLETOUTLINE) - 10 - A LCD Modules with CCFL Backlight 320ʷ240 dots ˙ϚεΫܗঢ়ɹMask Details Unitɿmm ˙ϒϩοΫμΠΞάϥϜɹBlock Diagram 115.17 CP 0.33 0.03 D0 L D2 C D3 D . IC1 IC2 M 0 d FRAME 160 160 l s .
in „LCD Module und Steuerung!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD.h
************************/ //#define DISP_HOR_PULSE_WIDTH 20 /* 20 */ //#define DISP_HOR_BACK_PORCH 51 /* 48 */ //#define DISP_HOR_FRONT_PORCH 20 /* 20 */ /********************************************************************* * Overview: Vertical synchronization timing in lines * (from the glass datasheet
in „STM32F4 mit TFT Codeverständnis“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD.h
************************/ //#define DISP_HOR_PULSE_WIDTH 20 /* 20 */ //#define DISP_HOR_BACK_PORCH 51 /* 48 */ //#define DISP_HOR_FRONT_PORCH 20 /* 20 */ /********************************************************************* * Overview: Vertical synchronization timing in lines * (from the glass datasheet
in „STM32F4 Discovery + TFT + FSMC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_INP_MOD.pdf
état bloqué / Off state leakage current 0,1 0,1 0,1 mA Temps de fermeture / Turn on time 20 20 20 ms Temps d'ouverture / Turn off time 20 20 20 ms Fréquence d'utilisation / operating frequency 25 à/to 65 (*) 25 à/to 65 (*) 25 à/to 65 (*) Hz (*) Fonctionnent aussi en continu / Works also with DC voltage
in „Eingangskarten/ -module für Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CSN-A2_User_Manual_commands.pdf
ASCII: FS t n Decimal: 28 116 n Hexadecimal: 1C 74 n [Description] Set Timeout for one byte, t= n×10 ms; so if There are 100 bytes needed for a command, the printer will wait 1000×n ms, when n=0, the printer will wait until all chars needed have received. 8.2.9 New commands DC2 E [Name] Feed paper to mark
in „Thermoducker - Density einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pic16f88.pdf
6 20.833 +8.51 2 NA — — NA — — 28.8 31.250 +8.51 3 31.250 +8.51 1 31.250 +8.51 0 NA — — 38.4 41.667 +8.51 2 NA — — NA — — NA — — 57.6 62.500 +8.51 1 62.500 8.51 0 NA — — NA — — TABLE 11-6: INTRC BAUD RATES FOR ASYNCHRONOUS
in „auftrennen einer 2stelligen Dezimalzahl in asm (pic 16f88)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q256JW_SPI_RevJ_03102021_Plus.pdf
µs /RESET pin Low period to reset the device tRESET (2) 1(3) µs Write Status Register Time tW 2 30 ms Page Program Time tPP 0.8 5 ms Sector Erase Time (4KB) tSE 50 400 ms Block Erase Time (32KB) BE 1 120 1,600 ms Block Erase Time (64KB) BE 2 200 2,000 ms Chip Erase Time tCE 90 400 s Notes: 1. Clock high
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d1u86-d-1600-12-hxxdc.pdf
from loss of AC to main output being out of regulation 1 ms Tsb_Hold-up Delay from loss of AC to standby output being out of regulation 20 2000 ms TPWR_GOOD_OFF Delay from de-assertion of PWR_GOOD to output falling out of regulatio1 ms TPSON_On_Delay Delay from PSON assertion to output being within regulation 300 500 ms OUTPUT AND SIGNAL SPECIFICATION Pin# Function Pin Type Description 14-26, 39-51 RTN Power Ground Power and Standby Return 1-13, 52-64 12V Power 12V Output 37 12VSB Power 12V Standby Output Active low
in „4N25 kompatibler Optokoppler mit weniger Stromaufnahme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
– INTEGRATED CIRCUITS P80C31X2/32X2 P80C51X2/52X2/54X2/58X2 P87C51X2/52X2/54X2/58X2 80C51 8-bit microcontroller family 4K/8K/16K/32K ROM/OTP 128B/256B RAM low voltage (2.7 to 5.5 V), low power, high speed (30/33 MHz) Product data 2003 Jan 24
in „Info zum SAB80C382 gesucht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F233TPM.pdf
value 25°C 3 V 11.88 12 12.12 MHz Gating time: 5 ms BCSCTL1= CALBC1_16MHZ, fCAL(16MHz) 16-MHz calibration value DCOCTL = CALDCO_16MHZ, 25°C 3 V 15.84 16 16.16 MHz Gating time: 2 ms calibrated DCO frequencies - tolerance over temperature 0°C to 85°C PARAMETER
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr910.asm
************************** healthcheck: ; for dual color LED clr_LED ; LED red ldi temp1,200 ; 200 ms rcall delay ldi temp1,200 ; again 200 ms rcall delay ldi s_data,200 ; counter Register LEDloop: ; Pulse for yellow LED set_LED ; LED green ldi temp1,2 ; 2 ms rcall delay clr_LED ; LED red ldi temp1,1
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Datei
avr910.asm
************************** healthcheck: ; for dual color LED clr_LED ; LED red ldi temp1,200 ; 200 ms rcall delay ldi temp1,200 ; again 200 ms rcall delay ldi s_data,200 ; counter Register LEDloop: ; Pulse for yellow LED set_LED ; LED green ldi temp1,2 ; 2 ms rcall delay clr_LED ; LED red ldi temp1,1
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Datei
test.ino.asm
81 05 cpc r24, r1 508: 91 05 cpc r25, r1 50a: a8 f3 brcs .-22 ; 0x4f6 <__LOCK_REGION_LENGTH__+0xf6> ms--; 50c: 21 e0 ldi r18, 0x01 ; 1 50e: c2 1a sub r12, r18 510: d1 08 sbc r13, r1 512: e1 08 sbc r14, r1 514: f1 08 sbc r15, r1 start += 1000; 516: 88 ee ldi r24, 0xE8 ; 232 518: 88 0e add r8, r24 51a: 83 e0 ldi r24, 0x03 ; 3 51c: 98 1e adc r9, r24 51e: a1 1c adc r10, r1 520: b1 1c adc r11, r1 { uint32_t start = micros(); while (ms > 0) { yield(); while ( ms > 0 && (micros() - start) >= 1000) { 522: c1 14 cp r12, r1 524: d1
in „Atmega328 1-Wire mit Timer CTC/PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADF4360-4.pdf
capacitance on the band. The lock time depends on the value of capacitance on the C Npin, which is <5 ms for 10 µF capacitance. The smaller ca- C N pin, which is <5 ms for 10 µF capacitance. The smaller ca- pacitance of 440 nF on this pin enables lock times of <600 µs. pacitance of 440 nF on this pin enables
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QEagleBeta.pdf
...................................................................................................51 3.1.27 ZDIODE.............................................................................................................................................51 3.2 Vorgaben von QSpice - QSpice specifications
in „QSPICE von Mike Engelhardt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
44a_sinus_entchen_5.c
0x21,0x23, 0x25,0x27,0x2a,0x2c,0x2e,0x31,0x33,0x36,0x38,0x3b,0x3e,0x40,0x43,0x46,0x49,0x4c, 0x4f,0x51,0x54,0x57,0x5a,0x5d,0x60,0x63,0x67,0x6a,0x6d,0x70,0x73,0x76,0x79,0x7c } }; uint16_t i=0; uint8_t tone=0; volatile uint16_t scale=523; // Interrupt-Funktion, die den "Zeiger" hochzählt // je nach gewünschter
in „Sinus sehr seltsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mega2_08.pdf
Deditor enables you to create and edit MEGATEXT and MEGATEXT PLUS display pages and can be installed in MS-Windows 3.xx and Windows 95. It supports all the display modes in the MEGATEXT and MEGATEXT PLUS hardware: character display, graphics, DRCS characters, color lookup table, and row and screen attributes
in „Vollständiges Datenblatt über SDA 5273 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JASA2003XiangSchroeder.pdf
played at the same time on the n stage. Moreover, some impulse response-related system S it!^ R j ! k51 f ik~t!*h kj~t!; identification tasks with multiple sources have to be accom- plished in a limited time period. 30,31A simultaneous source i51,...,n; j51,...,p, ~23! measurement technique is especially
in „Simulation mit Audiosignale“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
6N139.pdf
= 2.2kΩ T A 25˚C - L L P P t t 0.1 TA= 25˚C 0.01 0.1 1 10 0.0.01 0.1 1 10 T - INPUT PULSE PERIOD - ms T - INPUT PULSE PERIOD - ms Fig. 20 Propagation Delay vs.Temperature Fig. 21 Propagation Delay vs.Temperature (6N138 / 6N139 Only) (HCPL-2730 / HCPL-2731 Only) 50 50 HCPL-2730 : F = 1.6 mA,LR = 2.2 k
in „Wechselrichter mit MOSFET Endstufe“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TFT3.2.c
********************************** void init_LCD(void) { // set LCD Reset and CS SET_RESET; _delay_ms(10); CLR_RESET; _delay_ms(30); SET_RESET; _delay_ms(30); // write command and data write_com_data(0x0000, 0x0001); // OSCEN _delay_us(1); write_com_data(0x0003, 0xA8A4); // Powercontrol _delay_us(1);
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PDF
MPQ4420H.pdf
device from permanen t Operating Junction Temp. (T ). -40°C to +125°C damage. J 4) Measured on JESD51-7, 4-layer PCB. MPQ4420H Rev.1.1 www.MonolithicPower.com 3 9/16/2014 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2014 MPS. All Rights Reserved.
in „DC-DC buck converter: Bauteile Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MP3_FINAL_1.1.txt
temp1 ldi temp1, 0xF0 out DDRD, temp1 ldi temp1, 0x00 out PORTD, temp1 cbi PORTD, 4 ;RESET rcall wait_5ms sbi PORTD, 4 rcall wait_5ms cbi PORTD, 4 rcall wait_5ms rcall wait_5ms rcall wait_5ms rcall wait_5ms rcall wait_5ms rcall wait_5ms sbi PORTD, 4 rcall wait_5ms rcall wait_5ms rcall wait_5ms rcall wait_5ms rcall wait_5ms sbi PORTD, 6 sbi PORTD, 7 nop nop nop nop ldi ZL, LOW(text_command1*2) ldi ZH, HIGH(text_command1*2) lpm temp1, Z+ rcall lcd_command_left rcall wait_5ms rcall wait_5ms rcall wait_5ms ldi
in „Atmega32, AVRstudio und SRAM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD1600_1.bas
--------------------------------------------------------------- ' Zurücktaste in die beiden Zeilen 51 und 61 eintragen > 51 + 5 =56 '------------------------------------------------------------------------------- Locate_zeile = 51 Locate_spalte = 0 'Muster = "01234567890123456789012" Lcd_string = "5
in „Pollin 16080 Touch mit ATMEGA32 und BASCOM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5729md.pdf
898 ms (1) – – – – 0 1 1 1 Set back-end reset period to 1047 ms – – – – 1 0 0 0 Set back-end reset period to 1197 ms – – – – 1 0 0 1 Set back-end reset period to 1346 ms – – – – 1 0 1 X Set back-end reset period
in „Leistung und Bitanzahl für Musik via BT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CEPT-Laenderliste_2014.pdf
10 MHz: 750 Rogaland, Vest-Agder), 70,2625–70,3125, 70,3625–70,3875, 70,4125–70,4625; W; 50–50,5, 51–52 MHz: 300 W; 50,5–51 MHz: 25 W ERP; 70 MHz: 100 W ERP; 144–146; 432–438 MHz; 1,24–1,3; 2,3–2,45; 3,4–3,41; 5,65–5,85; 10,25–10,5; 144, 430 MHz, 1,27–1,3, 10–10,37, 10,45–10,5 GHz: 300 W EIRP; 1,24–
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PDF
Infineon-IPA50R190CE-DS-v02_04-EN.pdf
voltage V (BR)DSS 500 - - V V GSV, I =DmA Gate threshold voltage V (GS)th 2.50 3 3.50 V V DS , GS=0D51mA - - 1 V DS00V, V =0GS T=25°Cj Zero gate voltage drain current IDSS - 10 - A V =500V, V =0V, T=150°C DS GS j Gate-source leakage curent IGSS - - 100 nA V GS0V, V =0DS - 0.17 0.19 V GS3V, I =D.2A, T=
in „Mosfet 5R190CE“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MP205.pdf
Vh 3.6 5.0 7.2 V Power consumption Po 0.07 0.123 0.24 W/dot 64 dots Print cycle S.L.T 2.5 5.0 1.25 ms/line fired at the Energy consumption Eo 0.17 0.36 0.16 mJ/dot 5° same (on time) (Ton) (2.28) (2.96) (0.67) ms C time 0.15 0.31 0.13 mJ/dot 25° (2.01) (2.53) (0.54) ms C 0.13 0.28 0.11 mJ/dot 45° (1.74
in „Flexprint to USB - LTP1245(Drucker) - Platinendesign“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P6KE13CA.pdf
Suppressors 6 E 4 4 ( Features ) • Glass passivated junction. A • 600W Peak Pulse Power capability at 1.0ms. — • Excellent clamping capability. 6 0 • Low incremental surge resistance. 0 • Fast response time; typically less W than 1.0ps from 0 volts to BV for t unidirectional and 5.0ns for bidirectional. T
in „Fühleranschlussdose“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
test1.c
tx_count=0; //adresse = adresse-128; eeprom_block_read(adresse); UDR=tx_buffer[0]; UCSRB |= 0x40; delay_ms(100); } } } //******************************************************************** //* TX interrupt handler * //* The bytes, that have to be transmitted are holded * //* in a 32 byte buffer. there is
in „Fehler bei AD-Wandlung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tda8444.pdf
UNIT max. min. max. b b1 c D E e e1 L ME M H w max. 1.40 0.53 0.32 21.8 6.48 3.9 8.25 9.5 mm 4.7 0.51 3.7 1.14 0.38 0.23 21.4 6.20 2.54 7.62 3.4 7.80 8.3 0.254 2.2 inches 0.055 0.021 0.013 0.86 0.26 0.15 0.32 0.37 0.19 0.020 0.15 0.045 0.015 0.009 0.84 0.24 0.10 0.30 0.13 0.31 0.33 0.01 0.087 Note 1.
in „Verzweifle an TWI Code Mega8-TDA 8444“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8444_TDA8444.pdf
UNIT max. min. max. b b1 c D E e e1 L ME M H w max. 1.40 0.53 0.32 21.8 6.48 3.9 8.25 9.5 mm 4.7 0.51 3.7 1.14 0.38 0.23 21.4 6.20 2.54 7.62 3.4 7.80 8.3 0.254 2.2 inches 0.055 0.021 0.013 0.86 0.26 0.15 0.32 0.37 0.19 0.020 0.15 0.045 0.015 0.009 0.84 0.24 0.10 0.30 0.13 0.31 0.33 0.01 0.087 Note 1.
in „TDA8444 kurze Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UA741CP_datasheet.pdf
21,8) 1.141 1.165 1.047 1.063 84 (28,99) (29,59) (26,6) (27,0) 26 27 28 1 2 3 4 0.080 (2,03) 0.020 (0,51) 0.010 (0,25) 0.064 (1,63) 0.020 (0,51) 0.010 (0,25) 0.055 (1,40) 0.045 (1,14) 0.045 (1,14) 0.035 (0,89) 0.028 (0,71) 0.045 (1,14) 0.022 (0,54) 0.035 (0,89) 0.050 (1,27) 4040140/D 10/96 NOTES: A. All
in „OP Spannung 1,82V bei Min.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SU1278.pdf
tuning range 950 — 2150 MHz V PSM surge protection voltage 5.0 — — kV IL implementation loss Fs < 2 Ms/s: (see note 1) PR = 1/2 — 0.3 0.8 PR = 2/3 — 0.3 0.8 PR = 3/4 — 0.3 0.8 PR = 5/6 — 0.5 1.0 PR = 7/8 — 0.6 1.2 dB Fs = 2 to 35 Ms/s: PR = 1/2, 2/3, 3/4, 5/6, 7/8 — 0.3 0.8 Fs > 35 Ms/s: PR = 1/2, 2/3
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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MD_NMRA_DCC.c
1<<PC3); } inline void DIS_DCC_OUT_TO_DCC(uint8_t _wait) { PORTD &= ~(1<<PD1); if (_wait) { _delay_ms(1); //wait to be sure to avoid shorts -> FTR-B4CA needs max. 3ms as descripted, we make 4 wdt_reset(); } } inline void BRAKE_RIGHT(void) { PORTC &= ~(1<<PC4); PORTC |= (1<<PC5); } inline void BRAKE_LEFT
in „FULL NMRA DCC Library, Encoder, Generator, Bremsmodul“ · Projekte & Code ·
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Sensirion_Humidity_SHT21_Datasheet_V4.pdf
14 15 16 17 18 Data (MSB) Data (LSB) Stat. K K S 1 0 0 0 0 0 0 0 A1 1 1 0 0 1 0 1 A 46 47 48 49 50 51 52 53 54 2 K I C address + write Command (see Table 6) 0 1 1 0 0 1 0 0 N P 19 20 21 22 23 24 25 26 27 Checksum S 1 0 0 0 0 0 0 1 C Measurement A Figure 16 No Hold master communication sequence – grey
in „Rechnung mit dem PIC16F“ · Mikrocontroller und Digitale Elektronik ·
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Sensirion_Humidity_Sensors_SHT25_Datasheet.pdf
70% supply voltage VDD (between 2.1V and 3.6V). After SCL 30% power-up, the sensor needs at most 15ms, while SCL is high, for reaching idle state, i.e. to be ready accepting SU SDA valid writetHD commands from the master (MCU). Current consumption DATA IN during start up is 350µA maximum. Whenever the
in „SHT25 Feuchteanzeige über 100%“ · Mikrocontroller und Digitale Elektronik ·