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vestel_17mb170-idtv_sm.pdf
...................................................................................................22 6. MICROCONTROLLER APL5910 ......................................................................................................................24 MTK G22 (U139).....................................
in „LCD TV Mainboard oder T-CON defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
positionsregelung.pdf
erdcnnug.Mü.thäh enn ioleendeZnusmenhang -=;L \-;'L .8^tu\ (4t8l wobd Mr dß Reibdom.nt b€<tculct.bildung4.3rciß ds SinulalionsFodell Abbrldune4 t:SrnLlaronsmodel'o.rtrnvheib..modell SrF l' *urde neh ein {enig '.dcn die Rcibung nichl als Deses s'mulalionsnodell 8eend.n, Reibnomen!sondem alsReibshm bedlcksichtigludc
in „Kaskaden Regelung Gleichstrommotor“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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MGLS_240128T-FF-HT-LEDWHITE_FPC_6MountingHoles.pdf
Specification was updated. 2.) (Page 11, Point 7) Appendix – LED Specifications were added. B C 2004.03.22 Item 1 to 3 were updated: HELEN HE HE ZUO 1.) (Page 6, Point 3.2) BING Table 3 was updated. 2.) (Page 8, Point 4.2) Table 5 was updated. 3.) (Page 9, Point 4.3) Ta (Operating Temperature) was updated
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CH340DS2_E.PDF
to USB bus directly. More detail about USB convert serial please consulting the first manual CH340DS1. UART/RS232/RS485/IrDA infrared SIR Computer USB CH340 or other convert chip USB host convert parallel printer to USB printer 2. Features ● Full speed USB device interface, conforms to USB Specification
in „Chip aus USB-Parallel-Adapter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3488.pdf
SL can be used to provide an additional method for setting the current limit. 2. On-resistance, R DS(ON) 3. Total gate charge, Qg POWER DIODE SELECTION Observation of the boost converter circuit shows that the av- 4. Reverse transfer capacitance, C RSS 5. Maximum drain to source voltage, V DS(MAX) erage
in „SEPIC LM3488“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX1776.pdf
6.3V Sumida CDRH6D28-100NC, Sanyo POSCAP 6TPC100M or 10µH, 1.63A, 55mΩ Toko D75C 646CY-100M 0.055 22µH, 1.17A, 120mΩ Toko D75F 646FY-220M, 2 10 to 24 300 0.60 22µH, 1.09A, 115mΩ 47µF, 6.3V Toko D75C 646CY-220M, Sanyo POSCAP 6TPA47M or 22µH, 1.20A, 95mΩ Sumida CDRH6D28-220NC 3 10 to 24 150 0.30 47µH,
in „Suche Lösung für mein Spannungsregler Problem(Strom sparen“ · Analoge Elektronik und Schaltungstechnik ·
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ax_2.200_40.pdf
16 0.11 1.1 0.47 − 27151 37151 − 220 10 × 18 330 22 0.11 0.8 0.32 − 27221 37221 − 330 10 × 25 430 30 0.11 0.53 0.21 − 27331 37331 − 470 10 × 25 520 42 0.11 0.37 0.18 − 90514 90515 − 470 10 × 30 590 42 0.12 0.404 0.175 17471 27471 − − 680 12.5× 30 800
in „H-Brücke DC Motor Strom oszilliert schwingt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IS25LP128.pdf
3-byte Address IO0 Instruction = EBh 20 16 12 8 4 0 4 0 High Impedance IO1 21 17 13 9 5 1 5 1 IO2 22 18 14 10 6 2 6 2 IO3 23 19 15 11 7 3 7 3 Mode Bits CE# 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 ... SCK 6 Dummy Cycles tV Data Out 1 Data Out 2 Data Out 3 Data Out 4 Data Out 5 Data Out 6 IO0
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Design_Considerations_For_Class-D_Audio_Power_Amps__TI.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 List of Tables 1 Second-Order Butterworth LC Values . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 L 2 Audio Power Amplifier
in „Class-D Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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LiIonCharger_BQ2057C_extMOSFETorPNP.pdf
.................................................................................................. 22 • Added design requirements..............................................................................................................................22 • Added application curves.................
in „LiIon Charger BQ2057 - wozu dieser Widerstand?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
_IC2__001183650-da-01-en-IC_SWITCH_HISIDE_8C_ISO1H801G_DSO_36_INF.pdf
input bit5 D7 13 24 OUT6 reserved 14 23 OUT6 12 D6 Data input bit6 13 D7 Data input bit7 GNDCC 15 22 OUT7 N.C. 16 21 OUT7 14 reserved - 15 GNDCC Input logic ground N.C. 17 TAB 20 N.C. N.C. 18 19 GNDbb 16 N.C. Not connected 17 N.C. Not connected Vbb . 18 N.C. Not connected 19 GNDbb Output driver ground 20 N.C Not connected 21 OUT7 High-side output of channel 7 22 OUT7 High-side output of channel 7 23 OUT6 High-side output of channel 6 24 OUT6 High-side output of channel 6 25 OUT5 High-side output of channel 5 26 OUT5 High-side output of channel 5 27 OUT4 High-side
in „ISO1H811G Anteuerung mit Atmega 32“ · Mikrocontroller und Digitale Elektronik ·
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nokia_6085_rm-198_service_schematics_v2.pdf
19 21 GENIO21 MESSI5 5 3.7V 1.8V 2.8V C2 LatchClk B3 D2 C1 C3 MMCCLK 5 3 RXRESET P3 GENIO52 GENIO19 22 GENIO22 MESSI6 6 VMMC D1 R3 D3 MMCGND 6 GENIO20 Y5 20 23 7 1.8V VBAT VIO A1 R4 MMCDA 7 R2806 GENIO21 W5 21 GENIO23 MESSI7 { VBAT R3204 { 68k 0 K4 TxIP GENIO22 V6 22 24 GENIO24 DIFWRX Gabes/ SDA Rebun
in „H179IT01 1,7" TFT aus Nokia Handy - Daten?“ · Mikrocontroller und Digitale Elektronik ·
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rd70hvf1c.pdf
Zero gate voltage drain current Vds=17VGS=0V - - 300 uA GSS Gate to source leak current Vgs=10V, V DS=0V - - 5 uA VTH Gate threshold voltage Vds=12V, IDS=1mA 1.6 2.0 2.4 V Pout Output power f=175MHz ,Vds=12.5V 70 75 - W D Drain efficiency Pin=4W, Idq=2.0A 55 60 - % Pout Output power f=520MHz ,Vds=12.5V
in „HF Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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BMP085_DataSheet_Rev.1.0_01July2008.pdf
BOARD (PCB) DESIGN .............................................................................. 22 5.6 M OISTURE SENSITIVITY LEVEL AND SOLDERING .................................................................... 22 5.7 RO HS COMPLIANCY ............................................................................................................ 22 5.8 M OUNTING AND ASSEMBLY RECOMMENDATIONS ................................................................... 23 Rev. 1.0 Page 4 01 July 2008 © Bosch Sensortec GmbH reserves all rights even in the event
in „TWI i2c adresse“ · Mikrocontroller und Digitale Elektronik ·
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MCF51QE128-1.pdf
15 13 PTB6 SDA1 XTAL 16 — PTH3 17 — PTH2 18 14 PTH1 19 15 PTH0 20 16 PTE6 RGPIO6 21 17 PTE5 RGPIO5 22 18 PTB5 TPM1CH1 SS1 23 19 PTB4 TPM2CH1 MISO1 24 20 PTC3 RGPIO11 TPM3CH3 25 21 PTC2 RGPIO10 TPM3CH2 26 22 PTD7 KBI2P7 27 23 PTD6 KBI2P6 28 24 PTD5 KBI2P5 29 — PTJ7 30 — PTJ6 31 — PTJ5 32 — PTJ4 33 25
in „Eingangsspannungsbereich ADC Coldfire“ · Mikrocontroller und Digitale Elektronik ·
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Datei
smsdev.ASM
all bit addressable BSEG AT 020h Any_Bit: DBIT 1 ; Remember Servo status DSEG AT 021h Alarm_Port: DS 1 ;::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::: ; Data RAM DSEG AT 030h Text_Start: DS 1 CSEG ;******************************************************* ;***** Reset Here
in „Simens S 35; AT-Befehle“ · Mikrocontroller und Digitale Elektronik ·
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ICmega8-x.pdf
N w _ E U B _ e M L _ A / I o S r C D I E 1 k D e S S C _ M R 1 D L s 3 3 ² S C n U 3 D 3 4 D 3 I 2DS U V r U S U S g G B G B 1 S 1 S 1DS 5 k 2 4 k 2 5 C R 3 C R 3 X 5 V V 1 A - + N L A J V D D G S S C 2 2 7 0 1 4 E o C 1 E O I 0 3 4 5 6 7 8 9 0 1 2 P 4 E 17 C E CI O N 8 4 5 1 1 1 1 1 1 1 1 2 2 2 C 1
in „Welcher Prozessor für Anfänger und Aquariumsteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS18B20.c
************************************************************************************************ * DS18B20.c * * * * *WinAVR Vers.: 2007 05 25 * *AVR-Studio Version: 4.13 * *Autor: Erik M. * *Getestet: nein * *Letzte Änderung: * * * * ***************************************************************************************************************************/ #include "DS18B20.h" /************************************************************************************************************************** * *Funktionsname: delay_us * *Rückgabe: -- * *Parameter: Wartezeit
in „Umstieg ATmega32 auf AT90CAN128 WinAVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
2013.03.25_Testboard.bas
14745600 $include "MyTWI.bas" $hwstack = 150 $swstack = 150 $framesize = 150 Const Release = "2013.03.22-Testboard" '-------------------------------------------------------------------------------------------------------------- 'Config Watchdog = 1024 '---------------------------------------------------
in „siemens tc35i und rs232 Kommunikationsprobleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZN425E.pdf
THIS DOCUMENT IS FOR MAINTENANCE PURPOSES ONLY AND IS NOT RECOMMENDED FOR NEW DESIGNS MAY 1994 DS3005-2.0 ZN425E8 8-BIT D-A/A-D CONVERTER The ZN425 is a monolithic 8-bit D-A converter containing an R-2R ladder network of diffused resistors with precision bipolar switches, and in addition a counter
in „Digital Analog Converter“ · Mikrocontroller und Digitale Elektronik ·
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BT-WiFi-52rf5541.pdf
asserts the TX_DS IRQ. In order to enable DPL the EN_DPL bit The receiver automatically validates and in the FEATURE register must be set. In disassembles received packet, if there is RX mode the DYNPD register has to
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DA-Converter.pdf
Corporation. Z80 is a registered trademark of Zilog Corporation. © 2002 National Semiconductor CorDS005608 www.national.com 2 3 0 Connection Diagrams (Top Views) C A Dual-In-Line and 0 Small-Outline Packages 3 0 C A D 00560821 Molded Chip Carrier Package 00560822 www.national.com 2 D A C Absolute Maximum
in „Problem mit DA-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC75710NE.pdf
level clock pulse width tøL CL 0.5 µs High level clock pulse width tøH CL 0.5 µs Data setup time tDS DI, CL 0.5 µs Data hold time t DI, CL 0.5 µs DH CE wait time tCP CE, CL 0.5 µs CE setup time tCS CE, CL 0.5 µs CE hold time t CE, CL 0.5 µs CH No. 4907-3/21 LC75710NE, 75711NE, 75712E Electrical Characteristics
in „Help on communications protocol with Sanyo LC75710NE“ · Projekte & Code ·
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I2C_EEPROM_-_ST24C04.pdf
Cycles ■ More than 40 Year Data Retention 1 SO8 (MN) 150 mil width TSSOP8 (DW) 169 mil width TSSOP8 (DS) 3x3mm² body size (MSOP) July 2002 1/27 M24C16, M24C08, M24C04, M24C02, M24C01 SUMMARY DESCRIPTION 2 These IC-compatible electrically erasable Select Code and RW bit (as described in Table 2), programmable
in „I²C - EEPROM's (24C04 ...)“ · Mikrocontroller und Digitale Elektronik ·
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spansion_inc_am29f040b_eol_21445e8-3004346.pdf
30 A7 5 29 A14 A6 6 28 A13 A5 7 27 A8 A4 8 26 A9 A3 9 25 A11 PLCC A2 10 24 OE# A1 11 23 A10 A0 12 22 CE# DQ0 13 21 DQ7 14 15 16 17 18 19 20 Q Q2 S Q Q Q Q 6 D D V D D D D A11 1 32 OE# A9 2 31 A10 A8 3 30 CE# A13 4 29 DQ7 A14 5 28 DQ6 A17 6 27 DQ5 WE# 7 26 DQ4 VCC 8 32-Pin Standard TSOP 25 DQ3 A18 9 24 VSS A16 10 23 DQ2 A15 11 22 DQ1 A12 12 21 DQ0 A7 13 20 A0 A6 14 19 A1 A5 15 18 A2 A4 16 17 A3 PIN CONFIGURATION LOGIC SYMBOL A0–A18 = Address Inputs DQ0–DQ7 = Data Input/Output 19 CE# = Chip Enable A0–A18 8 WE# = Write Enable DQ0
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MC39I_AT_COMMANDS.pdf
[0] network subscribed value Mean Throughput Class Mean Throughput (in octets per hour) 1 100 (~0.22 bit/s) 2 200 (~0.44 bit/s) 3 500 (~1.11 bit/s) 4 1 000 (~2.2 bit/s) 5 2 000 (~4.4 bit/s) 6 5 000 (~11.1 bit/s) 7 10 000 (~22 bit/s) 8 20 000 (~44 bit/s) 9 50 000 (~111 bit/s) 10 100 000 (~0.22 kbit/s
in „DTMF mit GSM Modem auswerten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Inverter_NC7SZ05.pdf
MicroPak are trademarks of Fairchild Semiconductor Corporation. © 2004 Fairchild Semiconductor CorporatioDS012174 www.fairchildsemi.com 5 0 Z Absolute Maximum Ratings (Note 1) Recommended Operating S 7 Supply Voltage (V CC ) − 0.5V to+ 6V Conditions (Note 2) C DC Input Voltage (V IN − 0.5V to+ 6V Supply Voltage
in „Schlatung mit qt1081“ · Mikrocontroller und Digitale Elektronik ·
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Datei
1-Wire-Slave_SHT11.bas
entsprechen gesetzt." Sendbyte: Bytedatbuffer = Bytedat For I = 0 To 7 L21: sbis pinD, DqPin rjmp L21 L22: sbic pinD, DqPin rjmp L22 Timer_t0 = 256 - T1reset Start Timer0 If Bytedat.0 = 0 Then Ddrd.dqpin = Opin Waitus Owdata Ddrd.dqpin = Ipin Rotate Bytedat , Right Next I Bytedat = Bytedatbuffer Stop Timer0
in „1-Wire OW-wire slave device <=4MHz low current AVR assembler ATmega8“ · Projekte & Code ·
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PDF
LM9022.pdf
View Order Number LM9022M or LM9022N See NS Package Number M08A or N08E © 2005 National SemiconductoDS200215ation www.national.com 2 2 9 Absolute Maximum Ratings (Note 1) Vapor Phase (60 sec.) 215˚C L If Military/Aerospace specified devices are required, Infrared (15 sec.) 220˚C please contact the National
in „LM9022 verstärken?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PH128128C-024-LY1Q.pdf
Y θX, Θy = 0° 0.29 0.34 0.39 - - Coordinate Green X 0.25 0.30 0.35 Y 0.43 0.48 0.53 X 0.12 0.17 0.22 Blue Y 0.10 0.15 0.20 Top θY+ 40 - - Bottom θY- 40 - - Viewing angle CR ≥ 2.0 deg Note1 Left θX- 45 - - Right θX+ 45 - - Ta = 25°C Contrast ratio CR 8 12 - - Note3 θX = 0°, θY = 5° PH128128C-024-LY1Q
in „[V]Color LCD CSTN 2.4" 128xR'G'B'x128 Typ PH128128C-024-L“ · Markt ·
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Datei
8080int-jmp.asm
ret do_fetch_msp: movw x,z_spl mem_read_d opl adiw x,1 mem_read_d oph ret do_fetch_dir8: mem_read_ds opl, z_pc adiw z_pcl,1 ret do_fetch_dir16: mem_read_ds opl, z_pc adiw z_pcl,1 mem_read_ds oph, z_pc adiw z_pcl,1 ret do_fetch_rst: movw x,z_pcl sbiw x,1 mem_read_d opl andi opl,0x38 ldi oph,0 ret ; -
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Atmel-M90E32AS-ApplicationNote.pdf
I I r C C C C M A D R 10 a 1 3 ( D SC W 2 XZ X 6 i D 73 KLCS 1 XZ 42 1 h 83 ODS 0 XZ 32 C 2 0 93 I DS OCSO 22 E 5 R 1 04 TESER I CSO 12 F F 5 14 81 DDV DNGD 02 1 8 A F 24 81 DDV N3 V 91 C 1 D g 1 . 34 DNGD P3 V 81 N n C 0 u u 44 71 PCV G r C 1 C 0 54 CN N2 V 61 4 t 64 CN P2 V 51 PBV R 1 e 74 DNGD N1
in „Wahl eines passenden Mikrocontrollers zur Ansteuerung des M90E32AS Energy Metering IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM340.pdf
VIN≤ V MAX (7.5 ≤ VIN≤ 20) (14.8 ≤ VIN≤ 27) (17.9 ≤ VIN≤ 30) V ∆V Line Regulation I = 500 mA 10 18 22 mV O O ∆VIN (7.5 ≤ VIN≤ 20) (14.8 ≤ VIN≤ 27) (17.9 ≤ VIN≤ 30) V TJ= 25˚C 3 10 4 18 4 22 mV ∆V (7.5 ≤ V ≤ 20) (14.5 ≤ V ≤ 27) (17.5 ≤ V ≤ 30) V IN IN IN IN TJ= 25˚C 4 9 10 mV Over Temperature 12 30 30 mV ∆V (8 ≤ V ≤ 12) (16 ≤ V ≤ 22) (20 ≤ V ≤ 26) V IN IN IN IN ∆V O Load Regulation TJ= 25˚C 5 mA ≤ I O 1.5A 10 25 12 32 12 35 mV 250 mA ≤ I O 750 15 19 21 mV mA Over Temperature, 25 60 75 mV 5 mA ≤ IO≤ 1A IQ Quiescent TJ= 25˚C 6 6 6
in „Suche Schaltung für Spannungsverdoppler von 12V auf 24V“ · Analoge Elektronik und Schaltungstechnik ·
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Arduino_Mega_Shield_V1R11.PDF
1062R1071103RA1037106R1025RA10341043RAPR10521061RAP 1041RAP 201CAP 1COC2ROC2RAP202RAP 205CAP 5COC11ROCRAP201RAP 208CAP 8COC22ROC2RAP20RAP 201CAP 11CO13ROCRAP2013RAP P1P P204RAP41COC 04ROC 2071CAP71COC 94ROC94RAP2094RAP P1P P2085RAP02COC 85ROC P1P P2076RAP 32COC 76ROC P1P P2056RAP 22COC 56ROC C0O 5UOC P1P P2074RAP 61COC 74ROC
in „Arduino Mega 2560, schaltschranktauglich“ · Projekte & Code ·
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PDF
LM78xx_LM340.pdf
VIN≤ VMAX (7.5 ≤ IN ≤ 20) (14.8 ≤ IN ≤ 27) (17.9 ≤ VIN≤ 30) V VO Line Regulation IO= 500 mA 10 18 22 mV VIN (7.5 ≤ IN ≤ 20) (14.8 ≤ IN ≤ 27) (17.9 ≤ VIN≤ 30) V T J 25˚C 3 10 4 18 4 22 mV VIN (7.5 ≤ IN ≤ 20) (14.5 ≤ IN ≤ 27) (17.5 ≤ VIN≤ 30) V T = 25˚C 4 9 10 mV J Over Temperature 12 30 30 mV VIN (8 ≤ IN ≤ 12) (16 ≤ VIN≤ 22) (20 ≤ VIN≤ 26) V V Load Regulation T = 25˚C 5 mA ≤ I ≤ 1.5A 10 25 12 32 12 35 mV O J O 250 mA ≤ I O 750 15 19 21 mV mA Over Temperature, 25 60 75 mV 5 mA ≤ I O 1A Q Quiescent T J 25˚C 6 6 6 mA Current
in „LM340T5 defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TR03109-1.pdf
des SMGW aus bisherigem Abschnitt 3.2.4 verscho ben Literaturver - Referenzen aktualisiert zeichnis DS Kapitel 2 - Detaillierung des bisherigen Anhang A (Wake-Up-Datenstruktur) DS Kapitel 3 - Detaillierung des bisherigen Anhang B (LMN-Zertifikate) DS Kapitel 4 - Detaillierung des bisherigen Anhang C (HAN-Zertifikate) DS Kapitel 5 - Verweis auf Anlage I CMS, die künftig in dieses Kapitel integriert wird DS Kapitel 6 - RESTful Webservice Protokoll (ersetzt bisherige Anlage II) DS Kapitel 7 - Protokoll zur (HAN-)Authentifizierung
in „Meinungen zu Stromanbietern wie Tibber?“ · Haus & Smart Home ·
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PDF
Gath_-_Triacs_und_Diacs_in_Theorie_und_Praxis.pdf
261-600 o.ä. (Tabelle IV) W D, =T=C2 Di, Diac A9903 o.ä. (Tabelle V) D, Siliziumdiode 1N 4007 o.ä. (DS 2-07, DS 1,2-07) C, Elektrolytkondensator 250 nF/70 V C2 Erofolkondensator 0,1nF/630V «7 L°/ R, Hochlastwiderstand 2,7 kQ/3 W/5% V - <8> R2 Potentiometer 100 kQ lin/1 W R3 Kohleschichtwiderstand 100Q
in „hysteresefreie Phasenanschnittsteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps61202.pdf
............................ 22 8.6 Typical Characteristics.............................................. 7 14.2 Trademarks........................................................... 22 14.3 Electrostatic Discharge Caution............................ 22 9 Parameter Measurement Information ................ 10 14.4 Glossary................................................................ 22 10 Detailed Description ......................................
in „Schaltplan überprüfen gerne auch Verbesserungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mc33151u.pdf
with Common Switching Regulator WW, W = Work Week Control ICs PIN CONNECTIONS Pin Out Equivalent to DS0026 and MMH0026 N.C. 1 8 N.C. Representative Block Diagram Logic Input A 7 Drive Output A VCC 6 Gnd 3 6 VCC Logic Input B 5 Drive Output B + + – + + (Top View) 5.7V + Drive Output A Logic Input A ORDERING
in „Mosfett-Driver Art-Kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PG24064LRU-ETA-H_OK_.pdf
, RD, WR Pulse Width t ,t ,t 80 - ns CE RD WR Data Set UpTime tDS 80 - ns Data Hold Time DH 40 - ns AccessTime tACC - 150 ns Output Hold Time OH 10 50 ns POWERTIPTECHNOLOGY CORPORATION DISPLAY DEVICES FOR BETTER ELECTRONIC DESIGN NO.PG24064LRU -ETA-H 2.4 Display command 1.Register Set Code Hex. Function D1 D2 00100001 21H Cursor pointer set XADRS YADRS 00100010 22H Offset register set Data 00H 00100100 24H Address pointer set LowADRS HighADRS (1) Cursor pointer set The position of cursor is specified by X ADRS, Y ADRS. The cursor position is moved only by this
in „Informationen gesucht: LCD-Display HG24501“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle 4.0 5.8 A Lower Switch Current Limit
in „Spannungsregelung mit MP1584 und MP2307“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle 4.0 5.8 A Lower Switch Current Limit
in „Step Down - Stabil 5V 3A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mp2307.pdf
V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle 4.0 5.8 A Lower Switch Current Limit
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT28BV16.pdf
2 27 CE A9 3 26 I/O7 OE Output Enable A8 4 25 I/O6 NC 5 24 I/O5 WE Write Enable WE 6 23 I/O4 VCC 7 22 I/O3 I/O0 - I/O7 Data Inputs/Outputs RDY/BUSY 8 21 GND NC 9 20 I/O2 RDY/BUSY Ready/Busy Output A7 10 19 I/O1 A6 11 18 I/O0 NC No Connect A5 12 17 A0 A4 13 16 A1 DC Don’t Connect A3 14 15 A2 PDIP, SOIC PLCC Top View Top View C 7 C C C C E C A7 1 24 VCC A N N D V W N A6 2 23 A8 4 3 2 1 2 1 0 A5 3 22 A9 A6 5 3 3 29 A8 A4 4 21 WE A3 5 20 OE A5 6 28 A9 A4 7 27 NC A2 6 19 A10 A3 8 26 NC A1 7 18 CE A2 9 25 OE A0 8 17 I/O7 A1 10 24 A10 I/O0 9 16 I/O6 I/O1 10 15 I/O5 A0 11 23 CE NC 12 22 I/O7 I/O2 11 14
in „Benötige Hilfe beim Auslesen eines NVRAM DS1742w-120 (Batronix BX48 Batego II)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Relais K11_Ein = { 20, 21, 20 }; struct Relais K11_Aus = { 21, 20, 21 }; struct Relais K12_Ein = { 22, 23, 22 }; struct Relais K12_Aus = { 23, 22, 23 }; struct Relais K13_Ein = { 24, 25, 24 }; struct Relais K13_Aus = { 25, 24, 25 }; struct Relais K14_Ein = { 26, 27, 26 }; struct Relais K14_Aus = { 27
in „Interrupt Variable übergeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Relais K11_Ein = { 20, 21, 20 }; struct Relais K11_Aus = { 21, 20, 21 }; struct Relais K12_Ein = { 22, 23, 22 }; struct Relais K12_Aus = { 23, 22, 23 }; struct Relais K13_Ein = { 24, 25, 24 }; struct Relais K13_Aus = { 25, 24, 25 }; struct Relais K14_Ein = { 26, 27, 26 }; struct Relais K14_Aus = { 27
in „Parsen klappt nur bis zur ersten Stelle.“ · Mikrocontroller und Digitale Elektronik ·
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MX29F040PC-70.pdf
A5 7 4 26 A9 A4 8 0 25 A11 A4 A9 A3 9 9 24 OE 2 A3 9 MX29F040 25 A11 A2 10 X 23 A10 A2 OE A1 11 M 22 CE A0 12 21 Q7 A1 A10 Q0 13 20 Q6 A0 CE Q1 14 19 Q5 Q0 13 21 Q7 Q2 15 18 Q4 14 17 20 GND 16 17 Q3 1 2 D 3 4 5 6 Q Q G Q Q Q Q 32 TSOP (Standard Type) (8mm x 20mm) A11 1 32 OE A9 2 31 A10 A8 3 30 CE A13 4 29 Q7 A14 5 28 Q6 A17 6 27 Q5 WE 7 26 Q4 VCC 8 25 Q3 A18 9 MX29F040 24 GND A16 10 23 Q2 A15 11 22 Q1 A12 12 21 Q0 A7 13 20 A0 A6 14 19 A1 A5 15 18 A2 A4 16 17 A3 PIN DESCRIPTION SECTOR STRUCTURE MX29F040 SECTOR ADDRESS TABLE SYMBOL PIN NAME A0~A18 Address Input Sector A18 A17 A16 Address Range Q0
in „MX29F040PC-70 EEPROM Ersatz“ · Mikrocontroller und Digitale Elektronik ·
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MX29F040PC-70.pdf
A5 7 4 26 A9 A4 8 0 25 A11 A4 A9 A3 9 9 24 OE 2 A3 9 MX29F040 25 A11 A2 10 X 23 A10 A2 OE A1 11 M 22 CE A0 12 21 Q7 A1 A10 Q0 13 20 Q6 A0 CE Q1 14 19 Q5 Q0 13 21 Q7 Q2 15 18 Q4 14 17 20 GND 16 17 Q3 1 2 D 3 4 5 6 Q Q G Q Q Q Q 32 TSOP (Standard Type) (8mm x 20mm) A11 1 32 OE A9 2 31 A10 A8 3 30 CE A13 4 29 Q7 A14 5 28 Q6 A17 6 27 Q5 WE 7 26 Q4 VCC 8 25 Q3 A18 9 MX29F040 24 GND A16 10 23 Q2 A15 11 22 Q1 A12 12 21 Q0 A7 13 20 A0 A6 14 19 A1 A5 15 18 A2 A4 16 17 A3 PIN DESCRIPTION SECTOR STRUCTURE MX29F040 SECTOR ADDRESS TABLE SYMBOL PIN NAME A0~A18 Address Input Sector A18 A17 A16 Address Range Q0
in „MX29F040PC-70 EEPROM Ersatz“ · Mikrocontroller und Digitale Elektronik ·
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LCD_Dislpay_Treiber_NT7534_132_x_65_Pixel.pdf
step-up voltage 46 ~ 49 VDD2 Supply circuit for the LCD. These pads must be connected to each other. 16, 22, VDD O Power supply output for pad option 97,103,107 50 ~ 52 VSS Supply Ground. These pads must be connected to each other. 53 VSS3 54 ~ 57 VSS2 Supply Ground. These pads must be connected to each other
in „LCD Display TG12864R-04 Ansteuern!“ · Mikrocontroller und Digitale Elektronik ·
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SFH551-1-1_040319-1429.pdf
Rangeλ 600 780 nm (S= 80% S ) max SFH551/1-1 Optical Φ INth ≥ 6 µW Threshold Power (λ = 660 nm) ≥ –22 dBm for Output Low Maximum Optical Power Φ INL 1000 µW (λ = 660 nm) Maximum Value of tPLHat 0 dBm Maximum Power Optical Power for Output High Φ INH ≤ 0.1 µW without Errors (λ = 660 nm) ≤ –40 dBm Propagation
in „Lichtschranke an ATmega8“ · Mikrocontroller und Digitale Elektronik ·