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PDF
STK500_Schematics.pdf
31 GND AVTG PDT5 11 18 PBT4 GND 11 30 AVTG 20 PIN DIP SOCKET PDT6 12 17 PBT3 XT2 12 29 PCT7 PDT7 13 16 PBT2 XT1 13 28 PCT6 PBT0 14 15 PBT1 PDT0 14 27 PCT5 PDT1 15 26 PCT4 28 PIN DIP SOCKET PDT2 16 25 PCT3 VTG AVTG PDT3 17 24 PCT2 L400 VTG PDT4 18 23 PCT1 BLM-21A102S PDT5 19 22 PCT0 + PDT6 20 21 PDT7 B
in „Schema STK 500 ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
31 GND AVTG PDT5 11 18 PBT4 GND 11 30 AVTG 20 PIN DIP SOCKET PDT6 12 17 PBT3 XT2 12 29 PCT7 PDT7 13 16 PBT2 XT1 13 28 PCT6 PBT0 14 15 PBT1 PDT0 14 27 PCT5 PDT1 15 26 PCT4 28 PIN DIP SOCKET PDT2 16 25 PCT3 VTG AVTG PDT3 17 24 PCT2 L400 VTG PDT4 18 23 PCT1 BLM-21A102S PDT5 19 22 PCT0 + PDT6 20 21 PDT7 B
in „STK500 kein VTARGET mehr?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_1_.pdf
31 GND AVTG PDT5 11 18 PBT4 GND 11 30 AVTG 20 PIN DIP SOCKET PDT6 12 17 PBT3 XT2 12 29 PCT7 PDT7 13 16 PBT2 XT1 13 28 PCT6 PBT0 14 15 PBT1 PDT0 14 27 PCT5 PDT1 15 26 PCT4 28 PIN DIP SOCKET PDT2 16 25 PCT3 VTG AVTG PDT3 17 24 PCT2 L400 VTG PDT4 18 23 PCT1 BLM-21A102S PDT5 19 22 PCT0 + PDT6 20 21 PDT7 B
in „STK500 - Analog-Setup für Line-In-Adapter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
31 GND AVTG PDT5 11 18 PBT4 GND 11 30 AVTG 20 PIN DIP SOCKET PDT6 12 17 PBT3 XT2 12 29 PCT7 PDT7 13 16 PBT2 XT1 13 28 PCT6 PBT0 14 15 PBT1 PDT0 14 27 PCT5 PDT1 15 26 PCT4 28 PIN DIP SOCKET PDT2 16 25 PCT3 VTG AVTG PDT3 17 24 PCT2 L400 VTG PDT4 18 23 PCT1 BLM-21A102S PDT5 19 22 PCT0 + PDT6 20 21 PDT7 B
in „Roter Bereich auf STK500 defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500.pdf
31 GND AVTG PDT5 11 18 PBT4 GND 11 30 AVTG 20 PIN DIP SOCKET PDT6 12 17 PBT3 XT2 12 29 PCT7 PDT7 13 16 PBT2 XT1 13 28 PCT6 PBT0 14 15 PBT1 PDT0 14 27 PCT5 PDT1 15 26 PCT4 28 PIN DIP SOCKET PDT2 16 25 PCT3 VTG AVTG PDT3 17 24 PCT2 L400 VTG PDT4 18 23 PCT1 BLM-21A102S PDT5 19 22 PCT0 + PDT6 20 21 PDT7 B
in „STK500 Transistoren defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
31 GND AVTG PDT5 11 18 PBT4 GND 11 30 AVTG 20 PIN DIP SOCKET PDT6 12 17 PBT3 XT2 12 29 PCT7 PDT7 13 16 PBT2 XT1 13 28 PCT6 PBT0 14 15 PBT1 PDT0 14 27 PCT5 PDT1 15 26 PCT4 28 PIN DIP SOCKET PDT2 16 25 PCT3 VTG AVTG PDT3 17 24 PCT2 L400 VTG PDT4 18 23 PCT1 BLM-21A102S PDT5 19 22 PCT0 + PDT6 20 21 PDT7 B
in „STK500 getötet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
31 GND AVTG PDT5 11 18 PBT4 GND 11 30 AVTG 20 PIN DIP SOCKET PDT6 12 17 PBT3 XT2 12 29 PCT7 PDT7 13 16 PBT2 XT1 13 28 PCT6 PBT0 14 15 PBT1 PDT0 14 27 PCT5 PDT1 15 26 PCT4 28 PIN DIP SOCKET PDT2 16 25 PCT3 VTG AVTG PDT3 17 24 PCT2 L400 VTG PDT4 18 23 PCT1 BLM-21A102S PDT5 19 22 PCT0 + PDT6 20 21 PDT7 B
in „STK500 reparieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
wecker.txt
Sekunden im LC-Display angezeigt ******************* ;********** Timer2 dient als Zeitbasis, da echter 16-Bit-Timer mit Reload ist die Zeit hochpräzise ;********** In der Interrupt-Service-Routine ist ein Zähler realisiert, der eigene Speicherstellen ;********** für Sekunden-Einer, Sekundenzehner, Minuteneiner
in „Wecker in Assembler auf 8051“ · Mikrocontroller und Digitale Elektronik ·
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Datei
work.asm
Baud Rate InitSerialPort: mov scon,#05ah mov tmod,#00100001b ;Timer1 auf 8-bit-autoreload, Timer0 auf 16-bit anl ckcon,#11110100b ;t1m = 0 (ckcon.3) 9600 Bd orl ckcon,#00000000b ;sca = 00 (ckcon.1,ckcon.0) 9600 Bd mov th1,#098h ;Baudrate 9600 mov tl1,#00h setb tr1 ;Start Timer1 ret ;--------------------
in „problem mit 8051er“ · Mikrocontroller und Digitale Elektronik ·
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Datei
work.asm
Baud Rate InitSerialPort: mov scon,#05ah mov tmod,#00100001b ;Timer1 auf 8-bit-autoreload, Timer0 auf 16-bit anl ckcon,#11110100b ;t1m = 0 (ckcon.3) 9600 Bd orl ckcon,#00000000b ;sca = 00 (ckcon.1,ckcon.0) 9600 Bd mov th1,#098h ;Baudrate 9600 mov tl1,#00h setb tr1 ;Start Timer1 ret ;--------------------
in „Realisierung von Timer mit 8051“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIC263_BOU.pdf
°C Storage temperature range T -40 to +125 °C stg Lead temperature 1.6 mm from case for 10 seconds TL 230 °C NOTES: 1. These values apply bidirectionally for any value of resistance between the gate and Main Terminal 1. 2. This value applies for 50-Hz full-sine-wave operation with resistive load. Above
in „Mit welchen Bauteil 230V / 16A über µC regeln?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIC263_BOU.pdf
°C Storage temperature range T -40 to +125 °C stg Lead temperature 1.6 mm from case for 10 seconds TL 230 °C NOTES: 1. These values apply bidirectionally for any value of resistance between the gate and Main Terminal 1. 2. This value applies for 50-Hz full-sine-wave operation with resistive load. Above
in „Hilfe zum Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds.pdf
Dissipation @C = 100 °C 42 12.8 W TJ,stg Operating Junction and Storage Temperature Range -55 to +150 ℃ TL Maximum Temperature for Soldering 260 ℃ Short circuit withstand timGEV =15.0VCCV≤ 400V, tsc Allowed number of short circuits<1000Time between 10 us short circuits:≥1.js,T≤150℃ 1 HMG15N60D/HMG15N60/HMG15N60F
in „Datenblatt Cypress cca7001“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MapCom.pdf
U_RESETE A1A11 4 A12 OE 5 WRLWR VCC_U13 U9U 12 COU7D A1414 P11804 A13 WE PIU805 RVCC 1 5 Q0 PIU7012 11 P_A16 A1212 PI78011A14 8 RVCRVCC VCC PI2901 VOUT PFO PI6 WDI COQ NLPAGE0 13 HC00 PIU7011 NLA13 P10807 A15 VCC PI24 GNNLGND PIU902 VCC WDI PIU906 PIU7013 PIU8010A16 VSS PIU8024 GND PIU903 GND RESET PIU907SET
in „[V] Weiterer M8, GPS, GSM Siemens M20, ATmega128“ · Markt ·
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Datei
PS2_509.A51
.DEF SoftUART_INP: bit 91h; P1.1 SoftUART_OUT: bit 93h; P1.3 SCL: bit 95h; P1.5 SDA: bit 97h; P1.7 TL0PRE: EQU 255; Nachladewert f r Timer0 TH0PRE: EQU 15 LCD_ENABLE2: bit 0f8h; P5.0 LCD_RS: bit 0f9h; P5.1 LCD_RW: bit 0fah; P5.2 LCD_ENABLE: bit 0fbh; P5.3 LCD_D4: bit 0fch; P5.4 LCD_D5: bit 0fdh; P5.5 LCD_D6: bit 0feh; P5.6 LCD_D7: bit 0ffh; P5.7 LCDcharanz: equ 16 LCDmask: equ 15 LCDmaskcpl: equ 11110000b alphabarre: equ 11111000b alphabarli: equ 8 p1.0: bit 090h p1.2: bit 092h p1.4: bit 094h p1.6: bit 096h Tasten: bit 090h P.SpurA: bit 092h P.SpurB: bit 094h
in „PS2 Tastatur mit 8051 core auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PS2_509.A51
.DEF SoftUART_INP: bit 91h; P1.1 SoftUART_OUT: bit 93h; P1.3 SCL: bit 95h; P1.5 SDA: bit 97h; P1.7 TL0PRE: EQU 255; Nachladewert f r Timer0 TH0PRE: EQU 15 LCD_ENABLE2: bit 0f8h; P5.0 LCD_RS: bit 0f9h; P5.1 LCD_RW: bit 0fah; P5.2 LCD_ENABLE: bit 0fbh; P5.3 LCD_D4: bit 0fch; P5.4 LCD_D5: bit 0fdh; P5.5 LCD_D6: bit 0feh; P5.6 LCD_D7: bit 0ffh; P5.7 LCDcharanz: equ 16 LCDmask: equ 15 LCDmaskcpl: equ 11110000b alphabarre: equ 11111000b alphabarli: equ 8 p1.0: bit 090h p1.2: bit 092h p1.4: bit 094h p1.6: bit 096h Tasten: bit 090h P.SpurA: bit 092h P.SpurB: bit 094h
in „PS2 Tastatur mit 8051 core auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PS2_509.A51
.DEF SoftUART_INP: bit 91h; P1.1 SoftUART_OUT: bit 93h; P1.3 SCL: bit 95h; P1.5 SDA: bit 97h; P1.7 TL0PRE: EQU 255; Nachladewert f r Timer0 TH0PRE: EQU 15 LCD_ENABLE2: bit 0f8h; P5.0 LCD_RS: bit 0f9h; P5.1 LCD_RW: bit 0fah; P5.2 LCD_ENABLE: bit 0fbh; P5.3 LCD_D4: bit 0fch; P5.4 LCD_D5: bit 0fdh; P5.5 LCD_D6: bit 0feh; P5.6 LCD_D7: bit 0ffh; P5.7 LCDcharanz: equ 16 LCDmask: equ 15 LCDmaskcpl: equ 11110000b alphabarre: equ 11111000b alphabarli: equ 8 p1.0: bit 090h p1.2: bit 092h p1.4: bit 094h p1.6: bit 096h Tasten: bit 090h P.SpurA: bit 092h P.SpurB: bit 094h
in „PS2 Tastatur mit 8051 core auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
usblc6-2.pdf
Storage temperature range -55 to +150 °C stg Tj Operating junction temperature range -40 to +150 °C TL Maximum lead temperature for soldering during 10 s at 5 mm 260 °C Table 2. Electrical characteristics (amb = 25 °C) Value Symbol Parameter Test conditions Unit Min. Typ. Max. IRM Leakage current VRM
in „STM32 und USB A mit Schutz-ICs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL7800.pdf
mV Nonlinearity NL 200 0.2 0.35 % 5, 9 15 200 mV Nonlinearity Drift dNL 200dT -0.001 % pts/°C 5, 10 16 vs. Temperature 200 mV Nonlinearity Drift dNL 200dVDD1 -0.005 % pts/V 5, 11 17 vs. VDD1 200 mV Nonlinearity Drift dNL /dV -0.007 % pts/V 5, 12 18 200 DD2 vs. VDD2 100 mV Nonlinearity NL 100 0.1 0.25
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800.pdf
mV Nonlinearity NL 200 0.2 0.35 % 5, 9 15 200 mV Nonlinearity Drift dNL 200dT -0.001 % pts/°C 5, 10 16 vs. Temperature 200 mV Nonlinearity Drift dNL 200dVDD1 -0.005 % pts/V 5, 11 17 vs. VDD1 200 mV Nonlinearity Drift dNL /dV -0.007 % pts/V 5, 12 18 200 DD2 vs. VDD2 100 mV Nonlinearity NL 100 0.1 0.25
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Haier_LT26M1CA__LT26M1C_LCD_TV.pdf
C435 C448 C434 C437 C438 C951 0.01uF/25V C443 C444 C445 C457 C458 C459 C460 C461 C462 C952 C463 100uF/16V 100uF/16V 4.7uF/10V 0.1UF16V 0.01uF/25V 0.1UF16V 0.1UF16V 0.1UF16V 0.1UF16V 0.1UF16V 0.1UF16V 4.7uF/10V 0.1UF16V 0.1UF16V 0.1UF16V 0.1UF16V 0.1UF16V 0.1UF16V 0.1UF16V 4.7uF/10V DDRV_BEAD2 FB417 VTT
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
NTD4963N-D.PDF
Free, Halogen Free/BFR Free and are RoHS V(BR)DSS R DS(ON)MAX IDMAX Compliant 9.6 mW @ 10 V 30 V 44 A 16 mW @ 4.5 V Applications • CPU Power Delivery D • DC−DC Converters • Recommended for High Side (Control) MAXIMUM RATINGS (TJ= 25°C unless otherwise stated) G Parameter Symbol Value Unit S Drain−to−Source
in „Vergleichsmosfet NTD 4963N“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
93LC56B.pdf
ADDRESS - 1 A standby current (maximum) ARRAY DECODER • 256 x 8 bit organization (93LC56A) • 128 x 16 bit organization (93LC56B) • Self-timed ERASE and WRITE cycles ADDRESS (including auto-erase) COUNTER • Automatic ERAL before WRAL DATA • Power on/off data protection circuitry REGISTER BUFFER DO • Industry
in „Primo EEPROM umprogrammieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UserManualForTTL-WiFi.pdf
...................................................................................................16 Restart.................................................................................................................................................................16 Restore the factory setting
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PDF
mirkonet_tmp.pdf
I2C 400kHz EEPROM, 16Kx8 N/A -40/+85 N/A N/A 2,5 5,5 3,3 / 5 N/A 9757937 10 EEPROM 93LC86BT-I/OT MICROCHIP SERIAL EEPROM 1Kx16 YES YES 0,440 0,528 5,280 Farnell SOT-23-6 N/A MicroWire 3MHz EEPROM, 1Kx16 N/A -40/+85 N/A N/
in „Komplettverkauf Bauteile, was wert? - Tabelle“ · Markt ·
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PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
R4449 III 19ÜK T4422 1C4422R TBB'nDJ C4484 1C4421B 3 TLC272CD R571K5 .mv 1.- .ıECB6Bc 553/1C4s25.2 1Øu 16V TLC272CD R4424 2 R444B 2 122R 1 |lH'X III 4oK9 5 3 III 1C44B2B R4444 T4413 5 C4421 TI2fl2CD 3 Tl2B2CD 51R1 MMaFJ312μT1 5 122 15V I-ıíı-<› aañí „ ^ ^ 012V ||[|' 3 51R1 \/ T4431 m R4427 RBTR143E 4 3 454
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PDF
HCPL-0872.pdf
Temperature Range Interface IC, HCPL-0872 is to allow measurements with a available a 300-mil wide SO-16 second isolated modulator Applications surface-mount package. without additional hardware. • Motor Phase and Rail Current Sensing • Data Acquisition Systems VDD1 VDD2 1 CCLK VDD 16 • Industrial Process
in „HCPL-0872 digital Interface für ISO-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B156XW03_V.2.pdf
OPTRONICS CORPORATION ( ) Preliminary Specifications ( V ) Final Specifications Module 15.6”(15.55”) HD 16:9 Color TFT-LCD with LED Backlight design Model Name B156XW03 V2 (H/W:0A) Note ( ) LED Backlight with driving circuit design Customer Date Approved by Date Bonnie Chen 09/16/2009 Checked & Approved by
in „Pollin LVDS-Board an B156XW03 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LRTB_GVTG_15_.pdf
point Donotusebelow5mA Donotusebelow5mA 0 0 20 40 60 80 ˚C 120 00 20 40 60 80 ˚C 120 T T 2018-03-29 16 LRTB GVTG Zulässige Impulsbelastbarkeit Zulässige Impulsbelastbarkeit Permissible Pulse Handling Capability Permissible Pulse Handling Capability Duty cycle D = parameter, TS= 25 °C...85°C Duty cycle
in „LRTBGVT erstellen(LTspice)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
limestone_arm_pda_pxa320_datasheet.pdf
........................................16 3.3.15 RESET_EXT#......................................................................................................16 3.3.16 RESET_OUT#............................................................
in „[V] Toradex Limestone Marvell PXA320 Processor Board (8€)“ · Markt ·
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PDF
VHF-COMM.1984.3.pdf
. of GerlTl<l"Y r;~'tao""" 8'''''''''WI"~ ""'17-00.'",,; TRI"poonHs (9' 33)8~5, 8~6 f'~ hKlo" '''',",1.'4~ A".lr~i. _.''''mO [l(1~. r(X)""K YlC.3' 42T~I)'·&6S2 Publish..r: 7OO(JMONS. 1<'1Ollii'>.;o~7 J..", ,..;.
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PDF
VHF-COMM.1984.3.pdf
. of GerlTl<l"Y r;~'tao""" 8'''''''''WI"~ ""'17-00.'",,; TRI"poonHs (9' 33)8~5, 8~6 f'~ hKlo" '''',",1.'4~ A".lr~i. _.''''mO [l(1~. r(X)""K YlC.3' 42T~I)'·&6S2 Publish..r: 7OO(JMONS. 1<'1Ollii'>.;o~7 J..", ,..;.
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Datei
ds1820.c
0x8b, 0x57, 0x09, 0xeb, 0xb5, 0x36, 0x68, 0x8a, 0xd4, 0x95, 0xcb, 0x29, 0x77, 0xf4, 0xaa, 0x48, 0x16, 0xe9, 0xb7, 0x55, 0x0b, 0x88, 0xd6, 0x34, 0x6a, 0x2b, 0x75, 0x97, 0xc9, 0x4a, 0x14, 0xf6, 0xa8, 0x74, 0x2a, 0xc8, 0x96, 0x15, 0x4b, 0xa9, 0xf7, 0xb6, 0xe8, 0x0a, 0x54, 0xd7, 0x89, 0x6b, 0x35, }; void
in „DS18S20 in C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
work.asm
Baud Rate InitSerialPort: mov scon,#05ah mov tmod,#00100001b ;Timer1 auf 8-bit-autoreload, Timer0 auf 16-bit anl ckcon,#11110100b ;t1m = 0 (ckcon.3) 9600 Bd orl ckcon,#00000000b ;sca = 00 (ckcon.1,ckcon.0) 9600 Bd mov th1,#098h ;Baudrate 9600 mov tl1,#00h setb tr1 ;Start Timer1 ret ;--------------------
in „Display HD44780 mit 8051er“ · Mikrocontroller und Digitale Elektronik ·
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Datei
work.asm
Baud Rate InitSerialPort: mov scon,#05ah mov tmod,#00100001b ;Timer1 auf 8-bit-autoreload, Timer0 auf 16-bit anl ckcon,#11110100b ;t1m = 0 (ckcon.3) 9600 Bd orl ckcon,#00000000b ;sca = 00 (ckcon.1,ckcon.0) 9600 Bd mov th1,#098h ;Baudrate 9600 mov tl1,#00h setb tr1 ;Start Timer1 ret ;--------------------
in „Display HD44780 mit 8051er“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pyroelectronics.pdf
distance, with a frequency range from Vin 4 1 out Again, the frequency range is set by the 0.02 to 16 Hz, as discussed in 1/02 RC included, the amplification of the Close-Up. This signal has to be above circuit is calculated as amplified prior further processing . In some cases of wireless units where
in „Bewegungsmelder, kostengünstig, mobil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pyroelectronics.pdf
distance, with a frequency range from Vin 4 1 out Again, the frequency range is set by the 0.02 to 16 Hz, as discussed in 1/02 RC included, the amplification of the Close-Up. This signal has to be above circuit is calculated as amplified prior further processing . In some cases of wireless units where
in „PIR Sensor an AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pyroelectronics.pdf
distance, with a frequency range from Vin 4 1 out Again, the frequency range is set by the 0.02 to 16 Hz, as discussed in 1/02 RC included, the amplification of the Close-Up. This signal has to be above circuit is calculated as amplified prior further processing . In some cases of wireless units where
in „PIR-Sensor über MCU auswerten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
readme.pdf
Der Discharger benötigt eine Zeitbasis und einenADC zur Spannungsmessung. Die Zeitbasis liefert der 16-Bit Timer1, der jeweils nachAblauf einer Sekunde ein Flag setzt. Zur Messung derAkkuspannung durch denADC ist eine bekannte Referenzspannung erforderlich. Das kann sein: - die internen 1.1V Referenzspannung
in „Messung von AKKU-(Entlade-)Kapazitäten mit ATTINY24 in C“ · Projekte & Code ·
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PDF
Leistungsverstaerker.pdf
100mA ua741 12 +/-10V 150mA ua741 13 +/-10V 200mA ua741 14 +/-10V 250mA ua741 15 +/-10V 300mA ua741 16 +/-12V 100mA ua741 17 +/-12V 150mA ua741 18 +/-12V 200mA ua741 19 +/-12V 250mA ua741 20 +/-12V 300mA ua741 21 +/-15V 100mA OP07 22 +/-15V 150mA OP07 23 +/-15V 200mA OP07 24 +/-15V 250mA OP07 25 +/-15V
in „Leistungsverstärker: Wie kann man diese Schaltung noch weiter verbessern/erweitern?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HD44780u_lcd2.pdf
to AC D 1 O Extension driver Character pattern data corresponding to each segment signal COM1 to COM16 16 O LCD Common signals that are not used are changed to non-selection waveforms. COM9 to COM16 are non-selection waveforms at 1/8 duty factor and COM12 to COM16 are non-selection waveforms at 1/11 duty
in „LCD - Displaycode 4 Bitmodus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
to AC D 1 O Extension driver Character pattern data corresponding to each segment signal COM1 to COM16 16 O LCD Common signals that are not used are changed to non-selection waveforms. COM9 to COM16 are non-selection waveforms at 1/8 duty factor and COM12 to COM16 are non-selection waveforms at 1/11 duty
in „LCD-Anzeige-Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
to AC D 1 O Extension driver Character pattern data corresponding to each segment signal COM1 to COM16 16 O LCD Common signals that are not used are changed to non-selection waveforms. COM9 to COM16 are non-selection waveforms at 1/8 duty factor and COM12 to COM16 are non-selection waveforms at 1/11 duty
in „Reziproker Frequenzzähler+ Optimierte 64bit uint Routinen“ · Projekte & Code ·
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PDF
88E1111_DS.pdf
Max nsits 1 RCLK m N 0 RCLK TBI _ RCLK to OutSue R 1.5 ns A TH_ TBI _LK High ll DE 7.0 8.0 9.0 ns N TL_ TBI _LK Low r U N 7.0 8.0 9.0 ns E RCLK a L, N RCLKBI _CLK Per*od I 16.0 ns * L TDIFF_TBI _0/geLN1 Offset 7.5 8.0 8.5 ns c. n T TR_TBI _CLK Rise Time 2.0 ns In r E RCLK 681 FI or, 03 c F RCLKBI e4LKNFall
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PDF
KS0093.pdf
- Segment outputs: 80 segment Applicable Panel Size Font Display Duty Contents of outputs 2-line x 16 characters 1 / 17 2 x 16 characters + 80 icons 5 x 8 3-line x 16 characters 1 / 25 3 x 16 characters + 80 icons Internal Memory - Character Generator ROM (CGROM): 10,240 bits (256 characters x 5 x 8
in „LCD seriell ansteuern ST7093/KS0093“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INN3977CQ.pdf
Package Identifier C InSOP-24D • Features Code • Tape & Reel and Other Options INN 3977 CQ - H607 - TL TL Tape & Reel, 1 k pcs per reel. 28 Rev. B 04/20 www.power.com InnoSwitch3-AQ Notes 29 www.power.com Rev. B 04/20 Revision Notes Date B Code A release. 04/20 For the latest updates, visit our website
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
715G7312_PSU.pdf
10K 1/8W 1% C9305 C9306 C9307 C9308 9 5 9 A 1 9 u 9 K + 3 2 NC C9301 10ohm +/-1% 1/8W 100pF 50V 10uF 16V 10uF 16V 470UF 25V HEAT SINK D Z U 3 9 1 C . R 3 R9156 5 H 470UF 25V FB Z B S R K 0 3 1.8K 1/4W 1 O 1 A . 4 % 8 K R 5 1 1 1 1 0 FB R W 2 Q 7 C9309 R9301 R9303 V / N C9304 C9311 1.96KOHM +-1% 1/8W 6 5 1 ZD9109 2 V 0 8 1uF 1 F + 0 7 0 1 1 5.1KR 1% 100NF 50V 220PF 9 U 2 BZT52-B16 4 5 9 % C 2 1 9 u R 1 C 0 0 5 2015-11-26 Flyback with SSC3S121 715G7312 20030_557.eps back to 2016-Jun-24 div.table Circuit Diagrams and PWB Layouts QM16.3E LA 10. EN 96 10-4-4 LLC with TPV101 LLC with
in „Phillips 55PUS6561/12 keine Hintergrundbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mispav.htm
Wenn mispav auf einem PC kompiliert wird, dann ist angeschlossen <p>PC --> S/PCPAR --> S/PARLCD16 --> TL2004 </p> <h3><a name="pc"></a>Test der Software am PC</h3> MISPAV.CPP kann auch auf einem PC laufen: <ul> <li>Kompiliert mit TurboC++ für DOS6.22</li> <li>Kompiliert mit MSVC97 fü
in „Implementierung von Menüs auf alphanumerischen Displays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp_wroom_32_datasheet_en.pdf
EMAC_RXD1 IO27 12 GPIO27, ADC2_CH7, TOUCH7, RTC_GPIO17, EMAC_RX_DV GPIO14, ADC2_CH6, TOUCH6, RTC_GPIO16, MTMS, HSPICLK, HS2_CLK, IO14 13 SD_CLK, EMAC_TXD2 GPIO12, ADC2_CH5, TOUCH5, RTC_GPIO15, MTDI, HSPIQ, HS2_DATA2, IO12 14 SD_DATA2, EMAC_TXD3 GND 15 Ground IO13 16 GPIO13, ADC2_CH4, TOUCH4, RTC_GPIO14
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lpc2468board.pdf
FPGA_STATUS P0.22 / RTS1 / MCIDAT0 / TD1 P3.15 / D15 ADC0 18 P0.23 / AD0.0 / I2SRX_CLK / CAP3.0 P3.16 / D16 / PWM0.1 / TXD1 137 D16 16 143 D17 MC_IO_0 ADC1 P0.24 / AD0.1 / I2SRX_WS / CAP3.1 P3.17 / D17 / PWM0.2 / RXD1 C30 MC_IO_1 ADC2 14 P0.25 / AD0.2 / I2SRX_SDA / TXD3 P3.18 / D18 / PWM0.3 / CTS1 151
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·