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PDF
AN581.pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „Problem mit Ref-Spannung am INA326“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN581.pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „Frage zur symmetrischen Spannungserzeugung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN581.pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „OP mit Single-Supply“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN581.pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „Problem mit Übersprechen auf OPV-Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN-581_AD_Biasing_and_Decoupling_Op_Amps_in_Single_Supply_Appl..pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „Rauscharme Spannungsversorgung für OP“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN581.pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „OpAmp mit größer verstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN581.pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „Widerstände am OP für die 1/2 Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN-581.pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „Hilfe bei OP-AMP Auswahl gesucht !“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN581_AD_Biasing_and_Decoupling_Op_Amps_in_Single_Supply_Appl.__2_.pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „OpAmp (Spannungsfolger) schwingt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN581_AD_Biasing_and_Decoupling_Op_Amps_in_Single_Supply_Appl..pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „rauschärmerer OPA als LM833“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN581_AD_Biasing_and_Decoupling_Op_Amps_in_Single_Supply_Appl..pdf
R Values and Motorola Zener R V COUT Z Z Z VOUT Diode Part Numbers for Use with Figures 4 and 5 Z + Supply Zener Zener R Z ZENER C2 10 F RLOAD Voltage Voltage Zener Current Value (V) (V) Type (Z ) ( ) * * R2 +15 7.5 1N4100 500 µA 15 k 100k VIN +15 7.5 1N4693 5 mA 1.5 k R1 +12 6.2 1N4627 500 µA 11.5 k C1 +12 6.2 1N4691 5 mA 1.15 k STAR GROUND +9 4.3 1N4623 500 µA 9.31 k +9 4.3 1N4687 5 mA 931 SELECT Z TO PROVIDETHE SEETEXT. +5 2.4 1N4617 500 µA 5.23 k ZENER OPERATING CURRENZ, I +5 2.7 1N4682 5 mA 464
in „OP Rauschen messen - rail2rail Begrenzung?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
zfe_alpha10-test3.asm
Variable Definition ;========================================================================== ;INPUTS SW1 EQU H'00' ;SW1 is triggering RA0 SW2 EQU H'01' ;SW2 is triggering RA1 SW3 EQU H'02' ;SW3 is triggering RA2 SW4 EQU H'03' ;SW4 is triggering RA3 TIMER1 EQU H'20' ;Used in delay routine TIMER2 EQU H'21
in „PIC Taster abfrage“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DAQ_Parameterzuordnung.txt
bit='7' name='HKP1' /> <CHANNEL id='0' bit='8' name='M1A' /> <CHANNEL id='0' bit='9' name='M1Z' /> <CHANNEL id='0' bit='10' name='HKP2' /> <CHANNEL id='0' bit='11' name='M2A' /> <CHANNEL id='0' bit='12' name='M2Z' /> <
in „Hargassner Pelletheizung Betriebsdatenerfassung“ · Haus & Smart Home ·
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PDF
NE567.pdf
ns General V Operating voltage range 4.75 9.0 4.75 9.0 V CC Supply current quiescent 6 8 7 10 mA Supply current—activated R L 20 k 11 13 12 15 mA PD Quiescent power dissipation 30 35 mW NOTES: 1. Frequency determining resist1r R should be
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PDF
NE567_SE567_2.pdf
ns General V Operating voltage range 4.75 9.0 4.75 9.0 V CC Supply current quiescent 6 8 7 10 mA Supply current—activated R L 20 k 11 13 12 15 mA PD Quiescent power dissipation 30 35 mW NOTES: 1. Frequency determining resist1r R should be
in „30cm kabellos, ganz langsame Datenübertragung“ · Mikrocontroller und Digitale Elektronik ·
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M5Stack Stamp C6LoRa Modul mit technischen Daten
STAMP C6LORA M5STACK LoRa IPEX-4 Stamp C6LoRa LoRa FCC ID: 2AWMSMSSTAMPC6LORA WIFI R219-259578 CE Wi-Fi IPEX-4 SX1262 2.4GHz Wi-Fi 6 LoRa 850 ~ 960 MHz LoRa TX: +22dBm / LNA 16 x GPIO / 5 x EXT_IO 18x15x1.8mm ESP32
in „Neue Bauteile: Steckverbinder, Sensoren, Oszillatoren und mehr“ · Mikrocontroller und Digitale Elektronik · · Fotos
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S1D15605.pdf
. 136~273 47 m × 85 m PAD No. 274 73 m × 85 m PAD No. 275 86 m × 73 m PAD No. 276~308 85 m × 47 m PAD No. 309 85 m × 73 m Bump Height 17 m (Typ.) 8–4 EPSON Rev. 2.4a S1D15605 Series S1D15605 ***** Pad Center Coordinates
in „Pollin Grafik LCD-Modul OPTREX F-51320AE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
frq_intrc.asm
(default ein) des PIC16F628a ausschalten MOVLW B'00000111' ; alle Comparatoreingaenge aus MOVWF 0X1f ; bei PIC16F62X bsf STATUS, RP0 ; Bank 1 movlw Ini_opt ; pull-up on movwf OPTION_REG movlw B'11111000' ; RA0 .. RA2 outputs, RA3, RA4 input movwf TRISA ; movlw B'00000000' ; PortB alle outputs movwf
in „Frequenzzähler 1Hz-100khZ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMS470.pdf
all the signals for the TMS470R1x. 2.1.1 Transistor sizes For a 0.6 m TMS470R1x: INV4 driver has transistor sizes of p = 22.32 m/0.6 m N = 12.6 m/0.6 m INV8 driver has transistor sizes of p = 44.64 m/0.6 m N = 25.2 m/0.6 m 2.1.1.1 Key
in „Vergleiche mit (2^n)-1 und -(2^n) schneller?“ · Mikrocontroller und Digitale Elektronik ·
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LDS517_Displaycontroller.pdf
Version 1.2 BLOCKDIAGRAM 3 RPRE 4 GPRE C BPRE o m n C0-383 1 D M 8 i RSTB U n r 1 e A0 I s U m 8 r RDB/E e u X 1 e f t 8 WRB/RW c c o CSB d e R 1 r n e 8 C80 r i R PS c e o o i r C t w R0-127 n o a r D[17:0] t
in „Verkaufe OLED Displays FullColor 128*128 bzw. 96*64“ · Markt ·
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PDF
Smartcard-Kode-Schloss_-_Zweites_leben_fuer_Chipkarten.pdf
RB1 R2 symbol h = B5 15 OSC2 RB2 8 3k9 17 RA0 RB3 9 BC547 DIRS = %11100110 18 10 PINS = %00000010 RA1 PIC16 RB4 1 RA2 F84 RB5 11 high 7 2 12 3 RA3 RB6 13 high 6 RA4 RB7 low 6 D3 low 7 5 JP2 R9 JP1 R1 high
in „Smartcard-Kode-Schloss mit PIC16F84“ · Mikrocontroller und Digitale Elektronik ·
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AVR450_BattCharger.pdf
2 A A R 3 H 5 R z 0 3 H L 1 M k D L 1 4 D 2 n 1 G 7 C 0 r 5 Y 1 D t 6 5 G e 7 4 A v 8 4 I n Q S o 3 4 C - 2 4 k 1 R 2 8 u 3 8 Q B B R 6 D G 1 k R 1 D N G 0 R 1 2 2 2 5 M 7 A 8 T P W P B P B T P T V T I I V 2 T 2 M A A P V I F F
in „Pb-Akku Ladegerät mit µP Selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kon.html
" bgcolor="f1f1f1"><td bgcolor="#ffff00"><font color="#000000">Yellow</font></td><td>4</td> <td>4</td><td>x10k</td><td>+100%,-0%</td><td> </td><td>-220x10<sup>-6</sup></td> <td>400v</td></tr> <tr align="center
in „Interrupts und der tägliche Wahnsinn“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HWP_EX16_MRF24WB_C30.h
; TRISCbits.TRISC13 = 0; TRISD &= 0xCF3F; TRISGbits.TRISG0 = 0; TRISGbits.TRISG1 = 0;}while(0) // #define ENC100_GET_AD_IOH() (PORTGbits.RG0 | (PORTGbits.RG1<<1) | (PORTCbits.RC13<<2) | (PORTAbits.RA15<<3) | (PORTDbits.RD12<<4) | (PORTDbits.RD13<<5) | (PORTDbits.RD6<<6) | (PORTDbits.RD7
in „Microchip Wifi Demo APP portieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC16F1503.pdf
5 12 RA1/ICSPCLK 3 1 MCLR/V PP/RA3 4 L 11 RA2 RC5 6 5 1 10 RC0 RC4 6 I 9 RC1 P RC3 7 8 RC2 Note: See Table 1 for location of all peripheral functions. DS41607A-page 4 Preliminary 2011 Microchip Technology
in „Versorgungsspannung vom PIC mit PIC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top2008.pdf
针进口万能锁紧插座; �在 32bit WINDOWS7/ XP/VISTA 下运行; �塑料机壳,体积小,重量轻,功耗低; �可自动探测厂家和型号; �单片机定时,编程速度与计算机无关; 2 性能和规格: 1.软件:TopWin6(for 32bit WINDOWS7/ XP/VISTA) 2.体积: 142 x 103 x 23 3.重量: 250g 4.功率: < 2.5w (5v/500mA) 5.锁紧座: 40 Pin 进口优质插座(可更换) TOP2008 成套: 1. TOP2008 主机一件; 2. 标准 USB 1.1(兼容 USB2.0)连接电缆线一根; 3.《TOP2008 通用编程器
in „[V] Top 853 Universal Programmer + 74er Tester“ · Markt ·
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Datei
sunset2.pas
MJD := MJD0 + HOUR/24.0; T := (MJD-51544.5)/36525.0; IF (IOBJ=1) THEN MINI_MOON(T,RA,DEC) ELSE MINI_SUN (T,RA,DEC); TAU := 15.0 * (LMST(MJD,LAMBDA) - RA); SIN_ALT := SPHI*SN(DEC) + CPHI*CS(DEC)*CS(TAU); END; (*---------------------------------------------------------------------------*) PROCEDURE WHM(UT:REAL); VAR H,M:INTEGER; BEGIN UT := TRUNC(UT*60.0+0.5)/60.0; (* Rundung auf 1 min *) H:=TRUNC(UT); M:=TRUNC(60.0*(UT-H)+0.5); WRITE(H:5,':',M:2,' '); END; (*---------------------------------------------------------
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PDF
1.pdf
C83 10 R69 R70 1 22K 3 W 9 10 3 5 8 1 3 5 7 9 1 1 A _B M A W M GNDA 220p 9 10/ 5W 1K C91 10 R75 D 1 W 1 _ W 2 SV6/I D11 4 7 3 5 1 C _ S 2 2 _ S GNDA R67 220p 9 10/ 5W V W E 1 W C 1 LM3886 D12 4 7 S S E S E E 6 22K 2
in „Hilfe beim Programmieren vom Verstärker“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_Type-C_Specification_Release_1.2.pdf
Examples for USB SuperSpeed with Twisted Pair Construction Frequency 34AWG 32AWG 30AWG 28AWG 0.625 GHz −1.8 dB/m −1.4 dB/m −1.2 dB/m −1.0 dB/m 1.25 GHz −2.5 dB/m −2.0 dB/m −1.7 dB/m −1.4 dB/m 2.50 GHz −3.7 dB/m −2.9 dB/m −2.5 dB/m −2.1 dB/m 5.00 GHz −5.5 dB/m −4.5 dB/m −3.9 dB/m −3.1 dB/m 7.50 GHz −7.0 dB
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PDF
velleman_hps5_oscilloscope.pdf
sensitivity range (at x1) 5mV, 10mV, 20mV, 50mV, 0.1V, 0.2V, 0.4V, 1V, 2V, 4V, 8V, 20V /div. Probe calibration output Approx. 1KHz / 5Vtt Supply voltage 9VDC/ min 300mA adapter (unregulated) 12VDC if regulated Batteries (option
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
UV7 SIDE +1.35VGS K K M M M M For RF 8 K K M M M M For RF 8 0 1 4 0 1 4 5 1 4 5 1 4 5 1 4 5 1 4 0 1 5 0 1 5 0 1 5 5 1 5 5 1 5 5 1 5 5 1 5 0 1 6 _ V _ V _ V _ V _ V _ V 2 V _ V _ V _ V _ V _ V _ V 2 V 4 C 4 C 6 C
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E3634ser.pdf
Aw 3 mAw0f ( ▯!v▯ A O/ongfv $ -ebtmcbatc▯+Vc2teyclewcPtbcbatcbm rcTtitT* V▯V 2▯ ▯▯▯2E56A66)4 V▯V 2▯ ▯▯▯2E▯6A6▯)4 90RAClnnAP A3e ApS0) Aw PPpi A0tA3e AflPcnp8ACe tA80RA t3 mA3e A7>qAw tR(A gf6RP3A3e As0t3m0nA1t0SA20mA3e
in „0-30V 25A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CLC_Configurable_Logic_Cell_Tips__n_Tricks.pdf
one of the CLC output pins. TABLE 2: EXAMPLE ALLOCATION TABLE P O S / N I F c s p p S Q D e G O C e M u - s I I i A e W C C i W e u a D - e C N T P I P B P 2 R i - 2 RA0 19 16 AN0 — — — — — — IOC Y ICSPDAT RA1 18 15 AN1 VREF+ — — — — — IOC Y ICSPCLK RA2 17 14 AN2 — CWG1FLT — CLC1(1) T0CKI PWM3 INT/ Y — IOC RA3 4 1 — — — — CLC1IN0 — — IOC Y MCLR VPP RA4 3 20 AN3 — — — — T1G — IOC Y CLKOUT RA5 2 19 — — — NCO1CLK — T1CKI — IOC Y CLKIN RB4 13 10 AN10 — — — — — — IOC Y — RB5 12 9 AN11 — — — — — — IOC Y — RB6 11
in „Funktionsgenerator, NCO, PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display.pdf
selection cannot duty ratio selection and boosted voltage be accessed. level selection can be accessed. 4.16. Address Set for Internal Register Read D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB RDB RE 1 1 0 0 RA3 RA2 RA1 RA0 0 1 0 1 0 (At the time of reseRA:3,RA 2,RA1, RA0) = CH) When data set up in the internal
in „LC-Display Sharp M078CKA ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
selection cannot duty ratio selection and boosted voltage be accessed. level selection can be accessed. 4.16. Address Set for Internal Register Read D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB RDB RE 1 1 0 0 RA3 RA2 RA1 RA0 0 1 0 1 0 (At the time of reseRA:3,RA 2,RA1, RA0) = CH) When data set up in the internal
in „Suche sehr dünnes Grafikdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
selection cannot duty ratio selection and boosted voltage be accessed. level selection can be accessed. 4.16. Address Set for Internal Register Read D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB RDB RE 1 1 0 0 RA3 RA2 RA1 RA0 0 1 0 1 0 (At the time of reseRA:3,RA 2,RA1, RA0) = CH) When data set up in the internal
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Datei
frq_TM1637.asm
Wait movlw 0 ; ¨0¨ aus TubeTab call TM_out call Wait call Wait call Wait call Wait ;goto again ; timer1 vorbereiten bsf STATUS, RP0 ; Bank 1 bsf OPTION_REG, T0CS; RA4-Takt zum Timer0 bsf OPTION_REG, PSA ; noch ohne Vorteiler bcf STATUS, RP0 ; Bank 0 movlw 1 movwf PreSC ; 4:1 ;**************************
in „Frequenzzähler 1Hz-100khZ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AP3708N_P2.1_100221.pdf
transferring from the input to the output The current rises up linearly at a rate of: is given by: 1 2 dip(t) = vg(t) .....(1) P= ×L ×IMk × f SW .....(4) dt L 2 M where f SW is the switching frequency. When the peak See equation 2 current Ipk is constant, the output power depends on the switching frequency
in „Probleme durch Plastikspray?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ps42p3sx_ch._d58a.pdf
;22ohm,5%,63mW,L,CHIP,8P,TP 4 R952 2007-000084 R-CHIP;4.7Kohm,5%,1/16W,DA,TP,1608 4 RA808 2011-000002 R-NETWORK;22ohm,5%,63mW,L,CHIP,8P,TP 4 R953 2007-000084 R-CHIP;4.7Kohm,5%,1/16W,DA,TP,1608 4 RA809 2011-000002
in „Netzteil prüfen wie stelle ich das richtig an?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
cube.c.txt
-------*/ /* ---------------------------------------------------------------------------*/ #define mLED1_ON () LED1 = 1 #define mLED2_ON () LED2 = 1 #define mLED3_ON () LED3 = 1 #define mLED4_ON () LED4 = 1 #define mLED5_ON () LED5 = 1 #define mLED6_ON () LED6 = 1 #define mLED7_ON () LED7 = 1 #define
in „Propleme bei der Config vom PIC16F690“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn2864.pdf
0.05 - 0.05 - %/V Voltage Range OUTPUT CHARACTERISTICS Square Wave Leakage Current IOLK V9= 30V - - 1 - - 1 - - 1 μA Saturation Voltage VSAT SINK = 2mA - 0.2 0.5 - 0.2 0.4 - 0.2 0.4 V Rise Time t R = 4.7kΩ - 180 - - 180 - - 180 - ns R L Fall Time t R = 4.7kΩ - 40 - - 40 - - 40 - ns F L Typical Duty Cycle
in „Rechteck -> Sinus, Dreieck, Sägezahn(!)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL8038.pdf
0.05 - 0.05 - %/V Voltage Range OUTPUT CHARACTERISTICS Square Wave Leakage Current IOLK V9= 30V - - 1 - - 1 - - 1 μA Saturation Voltage VSAT SINK = 2mA - 0.2 0.5 - 0.2 0.4 - 0.2 0.4 V Rise Time t R = 4.7kΩ - 180 - - 180 - - 180 - ns R L Fall Time t R = 4.7kΩ - 40 - - 40 - - 40 - ns F L Typical Duty Cycle
in „8038 IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Boonton_Measurements_Corp_Model_59_Army.pdf
oscillator. section, but not tuned to resonance with an ex ternal circuit, point A of figure 5 is at -1 .8 POWER SUPPLY lJA METER volts dc. This voltage is a direct result of RA PO 236885 oscillator grid current through point C to two parallel paths, resistor R7 and meter M1 in Figure4.Grid dip meter,
in „Was ist das für ein Röhren- Dipper ?“ · HF, Funk und Felder ·
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TX-H2560SW21C-2770V36-03H95_WKF-DB0002.pdf
to Case J-C W — 0.12 — S — -13.2 — Temperature CoefficientV△ F/T If=1800mA mV/℃ of Voltage W — -13.2 — S — 95 — — Color Rendering Index Ra W — 95 — Notes: 1.Luminous intensity is measured with a light sensor and filter combination that approximates the CIE eye-response curve. 2.θ1/2s the off-axis angle at which the luminous intensity is half the axial luminous intensity. 3.Luminous flux measurement tolerance:±15%. 4.Forward voltage measurement tolerance:±3%. 5.Ra measurement tolerance
in „Implementierung einer CCT LED mit ELG-100-36-3Y Netzteil und PWM-Dimmung über Arduino“ · Mikrocontroller und Digitale Elektronik ·
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KS0093.pdf
C O M 1 7 C O M 2 2 C O M 8 C O M 2 1 . C O M 1 6 C O M 7 . C O M 1 5 C O M 6 C O M 1 4 C O M 5 C O M 1 3 T O P V IE W C O M 4 C O M 1 2 C O M 3 C O M 1 1 C O M 2 C O M 1 0 C O M 1 C O M 9 C O M I1 Chip Top & Upper View (S bit = "1", DIRS = "0") C O M I 1 C O M I 2 C O M 1 C O M 2 4 . . C O M 2 C O M 2 3 C O M 3 C O M 2 2 C O M 4 T O P V IE W C O M 2 1 C O M 5 C O M 1 6 C O M 6 C O M 1 5 C O M 7 C O M 1 4 C O M 8 S S S S S S S
in „LCD seriell ansteuern ST7093/KS0093“ · Mikrocontroller und Digitale Elektronik ·
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f_2320312311226304479081.pdf
. 136~273 47 m × 85 m PAD No. 274 73 m × 85 m PAD No. 275 86 m × 73 m PAD No. 276~308 85 m × 47 m PAD No. 309 85 m × 73 m Bump Height 17 m (Typ.) 8–4 EPSON Rev. 2.4a S1D15605 Series S1D15605 ***** Pad Center Coordinates
in „Philips GLCD Modul“ · Mikrocontroller und Digitale Elektronik ·
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VFD_Schaltung_Auszug.pdf
5 4 3 2 1 +5VDD +5VDD 3U4 2 4 1 4 1 4 1 3R16 3CB2 VCC 3 4.7K 104 3D6 3R1 3 2 3 2 3 2 GND 2 1N4148 10K 1 3K7 3K3 3K9 IR 1 Standy_by Open/Close Dimmer DGND IR D 3R25 D 4 1 4 1 4 1 4.7K 3U1 CF745-04/P 3R4 3 2 3 2 3 2 470R 3Y1 IR_IN IR_IN 1 RA2 RA1 18 4.000M 3K4 3K5 3K8 +5VDD IR_OUT 2 17 Pause Play Stop 3 RA3 RA0 16 3CB3 4 T0CKI OSC1/CLKIN 15 3R8 DGND 104 5 MCLK/VPP OSC2/CLKOUT 14 MCU_CLK DGND VSS VDD 3C10 3C8 1K 6 RB0 RB7
in „BCD-7Segment Treiber für VFD Röhren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
CAPTURE.TXT
state 1 -j port_forwarbr0: topology change detected, propagating d 1>/dev/null 2>br0: port 1(ra0) entering forwarding state &1 iptables -t nat -N DMZ 1>/dev/null 2>&1; iptables -t nat -I PREROUTING 2 -j DMZ 1>/dev/null 2>&1 ntp.sh ddns.sh kill -9 `cat /var/run/wscd.pid.ra0` cat: can't open '/var/run/wscd.pid.ra0': No such file or directory kill: you need to specify whom to kill iwpriv ra0 set WscConfMode=
in „Plunder von Pollin:WMDR-143N“ · Mikrocontroller und Digitale Elektronik ·
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ka-user-manual.pdf
i i NO 10mV/1m A •Donot dischargestaticelectricity. KA6 002D 4dig t 4di i NO 10mV/1mA •Donot disassembleunlessyouare qualifiedas servicepersonnel. KA 3003P 4digt 4digit Y s 10mV /mA KA 3005P 4d gt 4 i it Y s 10m
in „RND Labornetzteil“ · Mikrocontroller und Digitale Elektronik ·
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RF-GPS-GPS10DSeries.pdf
4:4.0±1.0V 5:5.0±1.0V (5) Connector styles and Cable Length (Varies connector and cable length is available) Specifications Connector styles Cable Length 1. Environmental SMA Plug 2m, 3m, 5m Item 10D MCX
in „Platinen mit GPS - Empfänger bei ebay“ · Mikrocontroller und Digitale Elektronik ·