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504928-da-01-de-PIR_BEWEGUNGSSENS_WEISS_5M_AMN31112J.pdf
2008 Spottyp Draufsicht Steitenansicht X-Y-Darstellung (kartesisch) X Y Y 2,5 2,5 1m 19° 1,25 1,25 11° 0,5 m a . 0 2,5 5m 0° 0 2,5 5m 0° X , 1m 0,5 0,5 1m m ) 1,25 1,25 11° 0,5 19° 2,5m 2,5m 1m 2m 5m 2m 5m (max. 2m) Hinweise: • Das x-y-Diagramm zeigt die Messbereiche (projiziert auf x-y-Ebene) • Die
in „Lichtschranken Unterschiede?“ · Mikrocontroller und Digitale Elektronik ·
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504928-da-01-de-PIR_BEWEGUNGSSENS_WEISS_5M_AMN31112J.pdf
2008 Spottyp Draufsicht Steitenansicht X-Y-Darstellung (kartesisch) X Y Y 2,5 2,5 1m 19° 1,25 1,25 11° 0,5 m a . 0 2,5 5m 0° 0 2,5 5m 0° X , 1m 0,5 0,5 1m m ) 1,25 1,25 11° 0,5 19° 2,5m 2,5m 1m 2m 5m 2m 5m (max. 2m) Hinweise: • Das x-y-Diagramm zeigt die Messbereiche (projiziert auf x-y-Ebene) • Die
in „Stromsparende Bewegungsmelder LED Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
504928-da-01-de-PIR_BEWEGUNGSSENS_WEISS_5M_AMN31112J.pdf
2008 Spottyp Draufsicht Steitenansicht X-Y-Darstellung (kartesisch) X Y Y 2,5 2,5 1m 19° 1,25 1,25 11° 0,5 m a . 0 2,5 5m 0° 0 2,5 5m 0° X , 1m 0,5 0,5 1m m ) 1,25 1,25 11° 0,5 19° 2,5m 2,5m 1m 2m 5m 2m 5m (max. 2m) Hinweise: • Das x-y-Diagramm zeigt die Messbereiche (projiziert auf x-y-Ebene) • Die
in „Welcher Sensor kann das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
504928-da-01-de-PIR_BEWEGUNGSSENS_WEISS_5M_AMN31112J.pdf
2008 Spottyp Draufsicht Steitenansicht X-Y-Darstellung (kartesisch) X Y Y 2,5 2,5 1m 19° 1,25 1,25 11° 0,5 m a . 0 2,5 5m 0° 0 2,5 5m 0° X , 1m 0,5 0,5 1m m ) 1,25 1,25 11° 0,5 19° 2,5m 2,5m 1m 2m 5m 2m 5m (max. 2m) Hinweise: • Das x-y-Diagramm zeigt die Messbereiche (projiziert auf x-y-Ebene) • Die
in „PIR / Bewegungsmelder IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematic_OpAmp_tester_V1.1_2023-08-28_PCBWay_Community.pdf
LED4 100k LED6 4 R8 1 R16 100k 100k V+ V+ GND R10 GND R18 GND R25 R26 V- 220 V- 220 100k 220 R9 R17 C11 C9 6 100k 100k B 0.1u 0.1u 7 GND GND GND GND B 5 U1.2 C12 GND C10 GND GND GND 0.1u 0.1u GND V- V- R11 R19 R27 1M 1M 1M 6 6 13 U3.2 7 U4.2 7 U4.4 14 C4 5 C6 5 C8 12 R3 0.47u R12 LED2 0.47u R20 LED7 0.47u
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Avalon_A3255Q48-131113-V05-EN.pdf
10 Ps Input HIGH leakage -- -- -- ±10 uA current Input LOW leakage current -- -- -- -- ±10 uA 2013-11-13 Page 13 of 14 A3255Q48-131113-V05-EN 7. PACKAGE INFORMATION 7.1 A3255Q48 Package Specifications 2013-11-13 Page 14 of 14 A3255Q48-131113-V05-EN 8. REVISION HISTORY Version No. Remarks Release Date
in „Chips für SHA256 Berechnungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_Guide_Timer.pdf
@68-"▯$. 7 X$! /$&!"--!C$+▯$'#YO R&▯$ /Z[[\)$^#'▯--!",▯$$!> ▯$'$D#+)▯&▯#"!!'0$- $$!0▯0▯$!-$&!". 7 /11%\-! /$&!"-!1)0C$+▯$'$YO R &▯$Z[[\8)$^-#-!C$+$ '$#▯▯R&▯$Z[[\7)$. X$\$$! /$&!"--!C$+▯$'#YO R&▯$ /Z[[\)$^-#-!C$+▯$'# ▯O R&$/Z[[\▯". 77 /11$ /$&!"-!1)0C$+▯$'$YO R &▯$Z[[\8)$/$&"!!$&0- 0")$$,'#$&0. 7 \$$! /$&!"-#-!C$+▯$'#YO R& ▯$Z[[\8"$!$',-$$!+) ▯&▯#"!!'0$-$$!0▯0▯$!- ▯$"!!. 7 /11%X! /$&!"-!1)0C$+▯$'$YO R &▯$Z[[\8)$^--!C$+▯$'# ▯O R&$/Z[[\▯". \$$X$! /$&!"-#-!C$+▯$'#YO R& ▯$Z[[\8"$!--!C$+$!'# ▯O R&$/Z[[\▯". ▯▯▯▯ ▯▯ ▯▯▯▯▯▯▯ ▯▯ ▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯ ▯!"#▯ %&'($),-/*0.-&12&-%&4&5▯7 8:3;&
in „Interrupts / Timer/ MSP430F449“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mmc_avr.c
* Definitions for MMC/SDC command */ #define CMD0 (0) /* GO_IDLE_STATE */ #define CMD1 (1) /* SEND_OP_COND (MMC) */ #define ACMD41 (0x80+41) /* SEND_OP_COND (SDC) */ #define CMD8 (8) /* SEND_IF_COND */ #define CMD9 (9) /* SEND_CSD */ #define CMD10 (10) /* SEND_CID */ #define CMD12 (12) /* STOP_TRANSMISSION
in „SD-SPI keine Antwort auf CMD0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Powermodule_XY-SK60_Mosbus_protocol_english.pdf
Note 4: Protection status register: 0:Normal operation,1:OVP,2:OCP,3:OPP,4:LVP,5:OAH,6:OHP,7:OTP,8:OEP,9:OWH,10:ICP 11:ETP 0: Alarm code 1: OVP over voltage protection 2: OCP over current protection 3: OPP over power protection 4: LVP input undervoltage p5: OAH maximum output capac6: OHP maximum output 7: OTP over temperature protection protect quantity between 8: OEP no output protection 9: OWH maximum energy outp10: ICP maximum input power11: ETP external temperature protection out stream protection protect Note 5: The reading values of constant voltage and constant
in „Serielle Steuerung für China Buck-Power-Module“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM8203.pdf
.................................................................................................. 11 5.1 P2 MII / RMII / Reverse MII Interfaces....................................................................................................................... 11 5.1.1 MII Interfaces..............
in „2 Port Switch IC wie in IP telefonen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM8203.pdf
.................................................................................................. 11 5.1 P2 MII / RMII / Reverse MII Interfaces....................................................................................................................... 11 5.1.1 MII Interfaces..............
in „[V] DM8203 & DM8603“ · Markt ·
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PDF
________________KENT-128x32_ILV.pdf
Sleep Mode Current IDDS - - 2.5 µA * Specifications are subject to change without prior notice. 25105a 11/12/2007 © 2007, Kent Displays, Inc. Page 6 128x32 ILV 5.4 Power Profile Note: Power measurements based on VDD = 3.3V. 25105a 11/12/2007 © 2007, Kent Displays, Inc. Page 7 128x32 ILV 5.5 Optical 35 The
in „Low Power Grafik Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
72204di.pdf
standard biquad filter circuit produces lowpass and bandpass responses, and the addition of a fourth op amp produces a highpass response. Remov10g R and adjusting various component values produce a notch or bandstop response or an allpass response. whereR ,R ,andR aretheinputre- IC1 IC2 IC3 sistances of
in „7812 parallel schalten“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
diskio.c
* Definitions for MMC/SDC command */ #define CMD0 (0) /* GO_IDLE_STATE */ #define CMD1 (1) /* SEND_OP_COND (MMC) */ #define ACMD41 (0x80+41) /* SEND_OP_COND (SDC) */ #define CMD8 (8) /* SEND_IF_COND */ #define CMD9 (9) /* SEND_CSD */ #define CMD10 (10) /* SEND_CID */ #define CMD12 (12) /* STOP_TRANSMISSION
in „Problem mit VS1053“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IO_subproc.asm
.DEF unused_r8 =r8 ; unused .DEF unused_r9 =r9 ; unused .DEF unused_r10 =r10 ; unused .DEF unused_r11 =r11 ; unused ; 0x0c .DEF valtregadr =r12 ; (V) alternate IO register address & function .DEF valtregradr =r13 ; (V) alternate IO register read address .DEF vregadr =r14 ; (V) current IO register address
in „ATMEGA16 Revision & USART receive buffer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3990fa.pdf
°C/W θJA= 45°C/W,JC = 10°C/W EXPOSED PAD (PIN 17) IS GND, MUST BE SOLDERED TO PCB EXPOSED PAD (PIN 11) IS GND, MUST BE SOLDERED TO PCB *FB FOR LT3990OUTFOR LT3990-3.3, LT3990-5 ORDER INFORMATION LEAD FREE FINISH TAPE AND REEL PART MARKING* PACKAGE DESCRIPTION TEMPERATURE RANGE LT3990EDD#PBF LT3990EDD
in „LT3990 Layout“ · Platinen ·
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Datei
gcc_spectre_v1_rev3.patch
ahead of each opcode... This way speculative execution sits each one out, waiting on some prior ALU? op finalizing its "load-from-memory". "No later instruction begins execution until lfence finishes." [Intel 64 and IA-32 Architectures Software Developers Manual December 2017] Also the original spectre-paper page 11 chap. 7 discusses "lfence" as possible mitigation. It also hints out (footnote 1), the op really might block speculative execution at all. Intels Analysis ("of Speculative Execution Side Channels") points
in „Feedback GCC Spectre LFENCE patch“ · Softwareentwicklung ·
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PDF
psload_pic.pdf
is only used occasionally, battery life is not a problem. The schematic is shown in Figure 1. The op amp, U1, compares the voltage drop across R13 to the voltage set by the pot, R10, and controls the drive to the power FET to keep a constant current through R13. The voltage reference, U2, provides a
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PDF
psload_pic.pdf
is only used occasionally, battery life is not a problem. The schematic is shown in Figure 1. The op amp, U1, compares the voltage drop across R13 to the voltage set by the pot, R10, and controls the drive to the power FET to keep a constant current through R13. The voltage reference, U2, provides a
in „Der richtige Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Filter_mit5_-.pdf
15 - 7 V- 2 V- 14 R23 28k R24 26.1k 8 V2 A V2 D 13 RQ3 237k RQ4 261k 9 V1 A V1 D 12 10 INV A INV D 11 Rin5 154k Rin4 294k To Vin 2 1 Filter2:Schematic Rin6 249k Rin7 182k Vin 2 1 INV B INV C 20 RQ5 287k RQ6 226k 2 V1 B V1 C 19 R25 28.7k R26 26.7k 3 V2 B V2 C 18 4 V- 1 V- 17 To V+ 5 V+ 5 V- 16 To V- 0.1µF
in „Aktiver Filter - Verständnisproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8052AH-BASIC_Users_Manual.pdf
of this option are covered in Chapter 12 of this manual. • A number of new assembly language user OP bytes have been added. These permit the user to make better use of the statement/command expansion option previously described. Details of these new OP bytes are presented in Chapter 9.6 of this manual
in „Was ist das für eine Platine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
a26361-d1171-Z180-us.pdf
...................................................................................................11 Power requirement ..........................................................................................................11 Power loadability..............................................................................................................11 Documentation ................................................................................................................................11 Installing drivers ...................................
in „Kingmax PC133 manipulieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
101N2100.pdf
27 4000 Maintain current value. Can be changed via Modbus -12 2670 22 30 4000 10.9 9.6 22.6 21.3 -11 3000 20 33 4000 11.4 10.1 23.6 22.3 -10 3330 18 36 4000 12.4 11.1 24.6 23.3 -9 3670 15 39 4000 13.4 12.1 25.6 24.3 -8 4000 13 42 3500 Maintain current value. Can be changed via Modbus -7 4330 12 45 3500 10.9 9.6 22.6 21.3 -6 4670 11 48 3500 11.4 10.1 23.6 22.3 9.1 51 3500 12.4 11.1 24.6 23.3 -5 5000 -4 5330 8.2 54 3500 13.4 12.1 25.6 24.3 7.5 57 3000 Maintain current value. Can be changed via Modbus -3 5670 -2 6000 6.2 60 3000 10.9
in „12/24V Kühlboxen mit 20V betreiben“ · Fahrzeugelektronik ·
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PDF
2019-02-22_SCH_ATMega_Eval_DEVEL_v0_2_.PDF
X15 B Vin 5V 3V3 X10 PE0 1 1 2 2 PB0 PD0 1 1 2 2 EXT_PC0 1 AREF PE1 3 3 4 4 PB1 PD1 3 3 4 4 EXT_PC1 X11 5 6 5 6 2 PE2 7 5 6 8 PB2 PD2 7 5 6 8 EXT_PC2 RESET 1 3 PB1 PE3 9 7 8 10 PB3 PD3 9 7 8 10 EXT_PC3 2 4 PB3 PE4 11 9 10 12 PB4 PD4 11 9 10 12 EXT_PC4 3 5 PB2 PE5 13 11 12 14 PB5 PD5 13 11 12 14 EXT_PC5
in „AD.wandler und FFT auf Atmega 128A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT_G6SP.pdf
Ordering Code 1) Seite 21 Typ: Lichtstärke Bestellnummer IF= 140 mA IV[cd] LT G6SP-CBEB-25-1 3.55 ... 11.2 Q65110A5874 LT G6SP-CBEB-36-1 3.55 ... 11.2 Q65110A4673 Note: The above Type Numbers represent the order groups which include only a few brightness groups (see page 5). Only one group will be shipped
in „[KiCad] Wie kann ich einen Footprint mit mehr Pads zuweisen?“ · Platinen ·
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PDF
OSRAM_LSG_T676.pdf
Bezeichnung Symbol Werte Einheit Parameter Symbol Values Unit super red green Betriebstemperatur T op – 40 … + 100 °C Operating temperature range Lagertemperatur T stg – 40 … + 100 °C Storage temperature range Sperrschichttemperatur T j + 125 °C Junction temperature Durchlassstrom I 30 mA F Forward current
in „Farberkennung mit Fototransistor (oder doch nicht?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A501_LA_LR_LY_W5AM.pdf
Thermal resistance K/W Sperrschicht/Lötpad (typ.) Rth JS 6.5 6.5 6.5 Junction/solder point (max.) Rth JS 11** 11** 11** K/W * Einzelgruppen siehe Seite 5 Individual groups on page 5 **R (max) basiert auf statistischen Werten R (max) is based on statistic values th 2010-06-02 4 Released LR W5AM, LA W5AM, LY
in „2 x LED und Lüfterschaltung 12V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMP2015-16.pdf
much both sums and differences, between the chopping frequency faster than most chopper-stabilized op amps. Recovery from and the incoming signal frequency. This mixing causes a driving the amplifier to 2X the full scale output, only requires large amount of distortion, particularly when the signal fre
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_ADC_LTC2287.pdf
100Ω LTC2286 INPUT 50Ω 1k LTC2286 NC7SVU04 228876 F11 228876 F12 FOR PECL, USE AZ1000ELT21 OR SIMILAR Figure 11. Sinusoidal Single-Ended CLK Drive ThenoiseperformanceoftheLTC2288/LTC2287/LTC2286 Figure 12. CLK Drive Using an LVDS or PECL to CMOS Converter
in „Programmieren des LTC2287 Dual 10-Bit ADCs“ · FPGA, VHDL & Co. ·
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PDF
N79A8211.pdf
2 2 8 24 3 ORL C, /bit A0 2 2 6 24 3 MOV C, bit A2 2 2 8 12 1.5 MOV bit, C 92 2 2 8 24 3 ACALL addr11 71, 91, B1, 2 3 12 24 2 11, 31, 51, D1, F1 LCALL addr16 12 3 4 16 24 1.5 RET 22 1 2 8 24 3 RETI 32 1 2 8 24 3 AJMP ADDR11 01, 21, 41, 2 3 12 24 2 61, 81, A1, C1, E1 LJMP addr16 02 3 4 16 24 1.5 JMP @
in „Induktionskochfeld hacken / optimieren“ · Haus & Smart Home ·
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PDF
LM10.PDF
reference buffer and anange of voltage- and current-regulator applicatmons, independent, high quality op amp. from low voltages to several hundred volts, providingpgreater The unit can operate from a total supply voltage as low asion than existing ICs. l 1.1V or as high as 40V, drawing only 270µA. A complemen
in „Suche Batteriewächter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD64128A_DIS.pdf
W×H) 0.52 × 0.52 (0.020″ × 0.020″) mm EXTERNAL DIMENSIONS BLOCK DIAGRAM 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 BLK BLA VOUT RSTB CS2 CS1 DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 E R/W RS VO VDD VSS DB0 ~ DB7 8 3 RS, R/W, E RSTB SEGMENT SEGMENT CS2 DRIVER IC DRIVER IC KS0108B KS0108B CS1 5 SEG64 SEG64
in „Grafikdisplay 64x128 reagiert nicht? brauche hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Chess-PCB-Full.PDF
R0 R2 A02 A0 P42 P42 CORL5 PS2 PS02 A02 A02 A12 A60 P602 PS02 L0PD0 COLED9 L0 D0 COLED10 A10E0 COLED11 P10L0 COLED12 PD0L0 COLED57 D0P80 COLED58 E0P50 COLED59 L0 D0 COLED60 COLED75 A0PE0 A1 A01A01 P01 01A01 P10 10A10 11 S1P11 L1 S1P401 R1 R1 S01 R1 A0 S10 A01 21A21 P51 CO9 COS10 COS1 COS12 COS49 COS50
in „Projekt: Schachcomputer mit OLED-Display, Gehäuse aus Holz (open source)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm3916.pdf
in Figure 1. As long as the input signal voltage is below the threshold of the second driver, LED #11 is off. Pin 9 of driver #1 thus sees effectively an open circuit so the chip is in dot mode.As soon as the input voltage reaches the threshold of LED #11, pin 9 of driver #1 is pulled an LED drop (1.5V
in „Eingangstufe LCD Stereo VU Meter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD5241_5242-1501681.pdf
...........................8 Changes to Readback RDAC Value Section................................11 Changes to Additional Programmable Logic Output Section..11 Added Self-Contained Shutdown Section...................................12 Added Figure 8..................................................
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Datei
MainActivity.java
to end blocks [0[TRYBLOCK]], but top level block is 4[WHILELOOP] // org.benf.cfr.reader.b.a.a.j.a(Op04StructuredStatement.java:432) // org.benf.cfr.reader.b.a.a.j.d(Op04StructuredStatement.java:484) // org.benf.cfr.reader.b.a.a.i.a(Op03SimpleStatement.java:607) // org.benf.cfr.reader.b.f.a(CodeAnalyser.java
in „Bluetooth LE BLE Daten von Powermeter entschlüsseln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
174505-da-01-en-adc_08041.pdf
–) DB4 A GND 8 13 D5 16 D2 DB5 15 D3 8–BIT 56pF VREF /2 9 12 D6 BUFFER DATA DB6 14 D4 BUS D GND 10 11 D7 DB7 A/D 13 D5 N74LS241 N74LS244 ADDRESS 12 D6 N74LS541 DECODE 11 D7 LOGIC Figure 7. Interfacing to 8080A Microprocessor OE Figure 9. Buffering the A/D Output to Drive High Capacitance Loads and for
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADC0803_4.pdf
–) DB4 A GND 8 13 D5 16 D2 DB5 15 D3 8–BIT 56pF VREF /2 9 12 D6 BUFFER DATA DB6 14 D4 BUS D GND 10 11 D7 DB7 A/D 13 D5 N74LS241 N74LS244 ADDRESS 12 D6 N74LS541 DECODE 11 D7 LOGIC Figure 7. Interfacing to 8080A Microprocessor OE Figure 9. Buffering the A/D Output to Drive High Capacitance Loads and for
in „Verständnisfrage zum ADC080x (VIN-MIN/DC-Offset)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Samsung_64MB_K4M51323PC_1_8V.pdf
Output Power/Ground S 5 U [Unit::mm] 1 3 N Symbol Min Typ Max 2 G 3 A - - 1.00 A1 0.25 - - P C E 10.9 11.0 11.1 - X E1 - 6.40 - D 12.9 13.0 13.1 X W X e D1 - 11.2 - X e e - 0.80 - k b 0.45 0.50 0.55 z - - 0.10 February 2006 K4M51323PC-S(D)E/G/C/F Mobile-SDRAM ABSOLUTE MAXIMUM RATINGS Parameter Symbol Value
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
C4 C8 15k L2 R19 C9 R14 5k6 10µ 1k2 L C U6 10µ L1 100µ U1 L3 C5 8 VREF VDD 7 L C D3 M1 380V- R9 D C11 R4 4 RTCT OUT 6 NMOS 6k2 1 10µ R2 2 FB CS 3 C3 1k .op C 1 COMP GND 5 X1 UCC28C42 C7 Q2 R3 R10 R1 NPN 100n 6k2 30k9 0.04 R12 200k R25 Q1 R=50k Val=50 NPN 2k C2 C1 R5 D4 R11 30k9 C 1µ 5k76 BAT54 Function
in „40-390V HV DC-DC-Wandler vom Chinamann“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
epcos-inrush-overcurrent.pdf
cycles Switching cycles maxV (failure mode) N f > 100 cycles Operating temperature range (V = 0) T op ▯40/+125 °C Operating temperature range (V = max T op ▯20/+85 °C Electrical specifications and ordering codes for inrush current limiters Type Vmax V link,mRx RR Tref Cth τth Circuit Approvals Ordering
in „Schaltzyklen bei PTC-Sicherungen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
epcos-inrush-overcurrent.pdf
cycles Switching cycles maxV (failure mode) N f > 100 cycles Operating temperature range (V = 0) T op ▯40/+125 °C Operating temperature range (V = max T op ▯20/+85 °C Electrical specifications and ordering codes for inrush current limiters Type Vmax V link,mRx RR Tref Cth τth Circuit Approvals Ordering
in „Einschaltstrombegrenzung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Panasonic_AG-7350-7150_Service_Manual.pdf
TO POWER DETECTION> NOR CH2 GP4001-1 OA P4001-1 OB P4501-1 OANOR CH1 OUT P1204-REG 12.3V 14 NOR CH2 OP4001-11 A P4001-11 B P4501-12A CH2 MIC2B P1203-GND 5.4V P4001-13A PAL(LJ13B 15 GND P4501-13A CH1 MIC3B P1204-UNREG -30V P4001-14A DOLBY(LJB PA(LJ P4501-14A GND01-14B P1204-HEATER <+l P4001-15A LIMIT(LJB
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT90CAN128.pdf
AT90CAN32/64/128 Figure 13-12. Timer/Counter Timing Diagram, no Prescaling ?lk 1/O ?lk 6n ?lk / 1/O 6+N6n 6OP - 6OP *O66O2 *O66O2 + +6+ =n@ .P92 6+N6n 6OP - 6OP 6OP - 6OP - P+ =n@ P.+ P92 6O8n .P92 =n@ 1+.n EB KIA@ =I 6OP O+4nN NAM O+4nN 8=lKA 7F@=JA =J 6OP Ol@ O+4nN 8=lKA Figure 13-13 shows the same timing
in „Umrechnen von analog to digital“ · Mikrocontroller und Digitale Elektronik ·
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PDF
obC16x.pdf
. . . . . . . . . . 10 1.2.6 Kommentare . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 1.3 SFRs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 1.4 Prozeduren . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12 1.4.1 Kurze Proceduren .
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
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PDF
lm1117.pdf
....................22 8 Detailed Description......................................................11 10.6 Glossary..................................................................22 8.1 Overview.................................................................11 Mechanical, Packaging, and Orderable
in „LM1117-5.0 Ausgangsspannung mit R in GND erhöhen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BEdienungsanleitung_f_r_FAT-Filesystem.pdf
mjcsbsz nvtu lopx uif dvssfou ujnf boe ebuf bu bmm ujnft/ Tjodf ju ibt up svo fwfszxifsf- uifsf jt op tuboebse nfdibojtn up hfu uif ebuf0ujnf- boe tpnf tztufnt ep opu ibwf b dmpdl/ Xjui efgbvmu dpofihvsbujpo uifsf jt op ebuf ps ujnf tvqqpsu- zpv ibwf up uvso ju po nbovbmmz jo uif dpofihvsbujpo fimf dpofih
in „Wie erzeugt mal eine *.a Datei?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm258.pdf
GAIN : 100dB WIDE BANDWIDTH (unity gain) : 1.1MHz (temperature compensated) . VERY LOW SUPPLY CURRENT/OP (500 A) - ESSENTIALLY INDEPENDENT OF SUPPLY VOLTAGE N D . LOW INPUT BIAS CURRENT : 20nA DIP8 SO8 (temperature compensated) (Plastic Package) (Plastic Micropackage) . LOW INPUT OFFSET VOLTAGE : 2mV LOW
in „Audio-Signal-Erkennung“ · Analoge Elektronik und Schaltungstechnik ·
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lf444.pdf
© 2004 National Semiconductor CorpoDS009156 www.national.com 4 4 F Absolute Maximum Ratings (Note 11) LF444A/LF444 L If Military/Aerospace specified devices are required, Operating Temperature Range (Note 4) please contact the National Semiconductor Sales Office/ Storage Temperature Range −65˚C ≤ A
in „PH Elektrode Filterung“ · Analoge Elektronik und Schaltungstechnik ·
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TA7358AP_Mixer_RFAmp_Osc.pdf
5.2 8.0 mA dBµV 3dB limiting sensitivity V in(Iim) 2 ― ― 3.0 7.0 EMF Quiescent sensitivity Q 2 ― ― 11.0 ― dBµV S EMF Conversion gain G ― ― ― 31 ― dB C Local OSC voltage VOSC 1 fOSC = 60MHz 90 165 220 mVrms Parallel input Pin (1) resistance ip1 3 ― 57 ― Ω impedance Parallel output resistance op3 ― 25