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PDF
AVR-Instuction-Set_doc0856.pdf
addressing, not I/O addressing. Data Direct Figure 4. Direct Data Addressing Data Space 0x0000 31 20 19 16 OP Rr/Rd Data Address 15 0 RAMEND A 16-bit Data Address is contained in the 16 LSBs of a two-word instruction. Rd/Rr specify the destination or source register. 4 AVR Instruction Set 0856E–AVR–11/05 AVR
in „AVR Studio Prgrammadressen merkwürdig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DOC0856_INSTRUCTIONSET.PDF
addressing, not I/O addressing. Data Direct Figure 4. Direct Data Addressing Data Space 0x0000 31 20 19 16 OP Rr/Rd Data Address 15 0 RAMEND A 16-bit Data Address is contained in the 16 LSBs of a two-word instruction. Rd/Rr specify the destination or source register. 4 AVR Instruction Set 0856E–AVR–11/05 AVR
in „erstes ASM Programm.wo ist der Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Instruction_Set.pdf
addressing, not I/O addressing. Data Direct Figure 4. Direct Data Addressing Data Space 0x0000 31 20 19 16 OP Rr/Rd Data Address 15 0 RAMEND A 16-bit Data Address is contained in the 16 LSBs of a two-word instruction. Rd/Rr specify the destination or source register. 4 AVR Instruction Set 0856E–AVR–11/05 AVR
in „AVR, Assemblerbefehle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Instruction_Set_doc0856.pdf
addressing, not I/O addressing. Data Direct Figure 4. Direct Data Addressing Data Space 0x0000 31 20 19 16 OP Rr/Rd Data Address 15 0 RAMEND A 16-bit Data Address is contained in the 16 LSBs of a two-word instruction. Rd/Rr specify the destination or source register. 4 AVR Instruction Set 0856E–AVR–11/05 AVR
in „rechnen in Assembler mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm7800.pdf
Updates 20 O I 6.8 LM340 / LM7815 Electrical Characteristics, 11.4 Community Resources.......................................... 20 V O 15 V, V = I3 V.......................................................... 8 11.5 Trademarks......................................
in „Netzteil für Röhrenvorstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Luftfeuchtesensor_20VALVO.pdf
Sie unterscheidet sich von Für den Frequenzbereich von 10 kHz bis 1000 kHz gilt der Schaltung Bild 11 u. a. dadurch, daß die Speise- folgende Skalierungstabelle. spannung stabilisiert wird. BC5580 -+J"El 4.5v 0 1 B 1,lOM 90k9/1% 5 % 19k6/2% L H - F4-0 - 1 - - J 1 L Botterle- :;L : : ‘J.lOpF kontrolle
in „Hygrometer: Einkaufsliste“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Luftfeuchtesensor_VALVO.pdf
Sie unterscheidet sich von Für den Frequenzbereich von 10 kHz bis 1000 kHz gilt der Schaltung Bild 11 u. a. dadurch, daß die Speise- folgende Skalierungstabelle. spannung stabilisiert wird. BC5580 -+J"El 4.5v 0 1 B 1,lOM 90k9/1% 5 % 19k6/2% L H - F4-0 - 1 - - J 1 L Botterle- :;L : : ‘J.lOpF kontrolle
in „Luftfeuchte messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Luftfeuchtesensor_VALVO.pdf
Sie unterscheidet sich von Für den Frequenzbereich von 10 kHz bis 1000 kHz gilt der Schaltung Bild 11 u. a. dadurch, daß die Speise- folgende Skalierungstabelle. spannung stabilisiert wird. BC5580 -+J"El 4.5v 0 1 B 1,lOM 90k9/1% 5 % 19k6/2% L H - F4-0 - 1 - - J 1 L Botterle- :;L : : ‘J.lOpF kontrolle
in „Auswertung eines kapazitiven Feuchtesensors“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Luftfeuchtesensor_VALVO.pdf
Sie unterscheidet sich von Für den Frequenzbereich von 10 kHz bis 1000 kHz gilt der Schaltung Bild 11 u. a. dadurch, daß die Speise- folgende Skalierungstabelle. spannung stabilisiert wird. BC5580 -+J"El 4.5v 0 1 B 1,lOM 90k9/1% 5 % 19k6/2% L H - F4-0 - 1 - - J 1 L Botterle- :;L : : ‘J.lOpF kontrolle
in „resistiven Feuchtesensor auswerten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
obC16x.pdf
x,y); ausf hrt. Der in epression auszuwertende Ausdruck y und das hierbei im Generator aufgerufene op2 wissen also nichts von x und konnen dieses Zielregister nicht zur Berechnung ver- wenden. Die einzige oglichkeit das Andern von y zu vermeiden ware, in op2 ein neues Register anzufordern, die Rechnung
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
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Datei
mmc_stm32f1.c
include "diskio.h" /* MMC/SD 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 „STM32Fxxx: Frage zur Initialisierung mit der StdPeriphLib“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3033M__5mA__250_V__ON.pdf
3.0 V n TM Either Direction TM F D Critical Rate of Rise of P dv/dt Off-State Voltage F = 0 (Figure 11) All 1000 2000 V/μs Z e o C Transfer Characteristics o Symbol DC Characteristics Test Conditions Device Min. Typ. Max. Unit s s MOC3031M 15 T MOC3041M a c I LED Trigger Current Main Terminal MOC3032M
in „MOIC ---> Triac, 115V, 400 Hz, 4A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
61WV102416ALL_ISSI_1M_x_16_SRAM_.pdf
A1 4 45 A8 A0 5 44 OE NC 6 43 UB CE 7 42 LB 41 I/O15 I/O0 8 I/O1 9 40 I/O14 I/O2 10 39 I/O13 I/O3 11 38 I/O12 VDD 12 37 GND GND 13 36 VDD I/O4 14 35 I/O11 I/O5 15 34 I/O10 I/O6 16 33 I/O9 I/O7 17 32 I/O8 WE 18 31 NC NC 19 30 A9 A19 20 29 A10 A18 21 28 A11 A17 22 27 A12 A16 23 26 A13 A15 24 25 A14 PIN
in „Beschreibung eines Srams Fehler in VHDL-Code?“ · FPGA, VHDL & Co. ·
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PDF
H83003H.PDF
7D 7 D 7 35 VSS V SS VSS V SS 36 D D D D 8 8 8 8 37 D 9 D 9 D9 D 9 38 D 10 D 10 D10 D 10 39 D D D D 11 11 11 11 40 D 12 D 12 D12 D 12 41 D 13 D 13 D13 D 13 42 D 14 D 14 D14 D 14 43 D D D D 15 15 15 15 44 VCC V CC VCC V CC 45 A0 A 0 A0 A 0 46 A A A A 1 1 1 1 47 A2 A 2 A2 A 2 48 A3 A 3 A3 A 3 49 A A A A
in „H8/300 Frage (genauer H8/3003)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC1408.pdf
Power Supply EE 4/8 Io Output Current 5/9 A1 Output 1, Most Significant Bit (MSB) 6/10 A2 Output 2 7/11 A3 Output 3 8/12 A4 Output 4 9/13 A5 Output 5 10/14 A6 Output 6 11/15 A7 Output 7 12/16 A8 Output 8, Least Significant Bit (LSB) 13/1 V CC Positive Power Supply 14/2 VREF(+) Positive Reference Voltage
in „Positive Spannungen mit einem Strom aus Dac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Glyn_2_83_C0280QGMA-T_Tentative_Spec_V0_1_-_GLYN.pdf
). Connect to a stabilizing capacitor 51 C11B I/O Connect to the step-up capacitors according to the step-up factor. Leave this pinopen if the internal step-up circuit is not used. 52 C11A I/O 53 VREF - Reference voltage. Connect to a stabilizing
in „[V] AM OLED 2,8inch Display C0280QGMA-T von CMEL“ · Markt ·
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PDF
CAN_v3_0.pdf
for standard 11-bit identifier and to 0x1FBFFFFF for extended 29-bit identifier (IDE). RTR The message is a Return Transmission Request Message. DLC The number of bytes the message contains. Document Number: 001-96130
in „Dev-Board mit mind. 4 x Delta-Sigma-ADC & CAN-BUS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430fr2532.pdf
channel CAP3.3 28 32 I/O CapTIvate channel CapTIvate synchronous trigger input for processing and SYNC 11 15 11 I conversion ACLK 11 15 11 I/O ACLK output MCLK 10 14 10 O MCLK output Clock SMCLK 6 10 6 O SMCLK output XIN 30 2 22 I Input terminal for crystal oscillator XOUT 29 1 21 O Output terminal for crystal
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS7822.pdf
25 25 pF Leakage current ±1 ±1 ±1 μA SYSTEM PERFORMANCE Resolution 12 12 12 Bits No missing codes 11 12 11 Bits Integral linearity error –2 ±0.5 +2 –1 ±0.5 +1 –0.75 ±0.25 +0.75 LSB (1) Differential linearity error –2 ±0.5 +2 –1 ±0.5 +1 –0.75 ±0.25 +0.75 LSB Offset error –3 +3 –3 +3 –1 +1 LSB Gain error
in „SPI Kommunikation - ADS7822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTHQ_128064AVE.pdf
. ELECTRICAL SPECIFICATIONS 10 5.1 TYPICAL ELECTRICAL CHARACTERISTICS 10 5.2 TIMING SPECIFICATIONS 11 5.3 INSTRUCTION SET 14 6. REFERENCEAPPLICATION CIRCUIT (8080) EXAMPLE 15 Data Modul AG - www.data-modul.com 3 BATRON Specification of LCD Module Type Model No.: COG-BTHQ12864-05 1.General Description
in „Frage Graphik-LCD BTHQ128064“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2841.pdf
........................... 3 6.1 Absolute Maximum Ratings ..................................... 3 11 Device and Documentation Support................. 17 6.2 ESD Ratings.............................................................. 3 11.1 Custom Design With WEBENCH® Tools ............. 17 11.2 Device
in „LM2841 stirbt bei steilem Anstieg der Eingangsspannung auf 26V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM3570.pdf
Maximum ambient temperature (A-MAX) is dependent on the maximum operating junction temperaturJ-MAX-OP= 125 C), the maximum power dissipation of the device in the application), and the junction-to ambient thermal resistance of the part/package in the application (θ ), as given by the following equation: T = T – (θD-x P ). JA A-MAX J-MAX-OP JA D-MAX Note 7: Junction-to-ambient thermal resistance is highly application and board-layout dependent. In applications where high maximum power dissipation exists, special care must be paid to thermal
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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INA137.pdf
DESCRIPTION TheINA137andINA2137aredifferentiallinereceivers 6 Output consisting of high performance op amps with on-chip precision resistors. They are fully specified for high 12k 6k +In 3 1 Ref performance audio applications and have excellent ac specifications, including low distortion (0.0005% at INA137
in „Differenzverstärker IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA7293.pdf
made possible by connecting Multiwatt15 package, intended for use as audio more device through of pin11. High output power class AB amplifier in Hi-Fi field applications can be delivered to very low impedance loads, so (Home Stereo, self powered loudspeakers, Top- optimizingthe thermaldissipation of the
in „Kann mir jemand helfen. Wer ist der Hersteller der Audio Boards "YUANJING"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
reste_halbleiter_3.pdf
3,00 BTS130 TO220() TEMP-FET 27A 50V 10 2,00 BZV55-C12 SOD80 PHILLIPS Zdiode 100 2,00 CA3240 E DIL8 OP AMP DUAL MOS IP/BIPOLAR OPAMP 25 5,00 CCURA2989IM2.5 SO8 Micropower 2.5V Regulator 500mA 25 5,00 CNY17-3 DIL8 Optocoupler 10 1,50 HFBR1532 - Fiberoptics 5 15,00 HFBR2522 - Fiberoptics 5 15,00 L4940V5
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PDF
resteliste_1.pdf
iCoupler 5,00 € BSP373 50 SOT223-4 Infineon Small-Signal MOSFET, 100V, SOT-223 5,00 € CA3240 E 50 DIL8 OP AMP DUAL MOS IP/BIPOLAR OPAMP 8,00 € ICL7660SCPA 20 DIL8 Ladungspumpenkonverter 10,00 € K6F8016U6D-XF55 20 SMD SAMSUNG 512K x16 bit Super Low Power and Low Voltage Full CMOS Static RAM 20,00 € MAX4066
in „Aufräumen und Reste“ · Markt ·
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Datei
440_Hz.asm
Datenregister 8 0307 8d STA ABS ; 1A80 PAD 9 0308 80 ; LB 10 0309 1A ; HB PAD: "FF" (später "00") 11 030A 20 JSR ABS ; JumpToSubRoutine Zeitverzögerung DELAY. 12 030b 18 13 030C 03 14 030d A9 LDA IM ; 00 als DATEN, für das 15 030E 00 ; Datenregister 16 030F 8d STA ABS ; 1A80 PAD 17 0310 80 ; LB 18 0311
in „Einfache CPU, einfacher Rechner, nur zum Lernen, Erfahrung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2576.pdf
Note 3) Test Circuit Figure 2 V Output Voltage V = 25V, I = 0.5A 12 V OUT IN LOAD Circuit of Figure 2 11.76 V(Min) 12.24 V(Max) VOUT Output Voltage 0.5A ≤ LOAD ≤ 3A, 12 V LM2576 15V ≤ VIN ≤ 40V 11.52/11.40 V(Min) Circuit of Figure 2 12.48/12.60 V(Max) VOUT Output Voltage 0.5A ≤ LOAD ≤ 3A, 12 V LM2576HV 15V ≤ VIN ≤ 60V 11.52/11.40 V(Min) Circuit of Figure 2 12.54/12.66 V(Max) η Efficiency VIN = 15V, LOAD = 3A 88 % LM2576-15, LM2576HV-15 Electrical Characteristics Specifications with standard type face are Jor T = 25˚C
in „Schaltnetzteilverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM393.pdf
and Functions......................... 3 9 Application and Implementation ........................ 11 9.1 Application Information............................................ 11 7 Specifications......................................................... 4 7.1 Absolute Maximum Ratings ..................................... 4 9.2 Typical Applications ................................................ 11 10 Power Supply Recommendations..................... 18 7.2 ESD Ratings ............................................................ 4 7.3 Recommended Operating Conditions....................... 4 11
in „Schaltung angucka“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM393.pdf
and Functions......................... 3 9 Application and Implementation ........................ 11 9.1 Application Information............................................ 11 7 Specifications......................................................... 4 7.1 Absolute Maximum Ratings ..................................... 4 9.2 Typical Applications ................................................ 11 10 Power Supply Recommendations..................... 18 7.2 ESD Ratings ............................................................ 4 7.3 Recommended Operating Conditions....................... 4 11
in „Acc-Sensor -> Filter/OPV -> ADC(µC) -> PC -> Filter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM393-N.pdf
and Functions......................... 3 9 Application and Implementation ........................ 11 9.1 Application Information............................................ 11 7 Specifications......................................................... 4 7.1 Absolute Maximum Ratings ..................................... 4 9.2 Typical Applications ................................................ 11 10 Power Supply Recommendations..................... 18 7.2 ESD Ratings ............................................................ 4 7.3 Recommended Operating Conditions....................... 4 11
in „LM393 Komparatorschaltung gescheitert“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
xtreme_2.pdf
LTW-C191DC-B XTREME2 4 LED6 LED7,LE D8,LED9, LED10,L T575012040204 LED WHT 1.6*0. LTW-C191DC-B XTREME2 5 ED11 PJ1 T690300096600 PHONE JACK 3.5MM 5P XTREME2 1 Q10,Q11 T5860032204A1 NMOS 30V GP3400A XTREME2 2 Q13,Q14 T586001860437 NMOS 60V L2N7002LT1G XTREME2 2 Q15 T586002162004 NMOS FDMC0310AS XTREME2 1 Q16 T586002602738
in „JBL Xtreme 2 keine Reaktion“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CPU12RM.pdf
16-bit processing unit that has a programming model identical to that of the industry standard M68HC11 central processor unit (CPU). The CPU12 instruction set is a proper superset of the M68HC11 instruction set, and M68HC11 source code is accepted by CPU12 assemblers with no changes. Full 16-bit data
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina169.pdf
shunt measurement effective RLif its input can be modeled as a resistor to ground. Alternatively, an op amp can be used to buffer the A/D circuits (see Figure 1), but its basic function is useful in a wide range of circuitry. A creative engineer will find many converter input, as shown in Figure 2, see
in „Stromaufnahme von Digitaleservo mit ADC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheetTD310.pdf
gate Enable 5 12 GND drive andshort-circuit protectionas shownin appli- cation note n⋅ AN461. Alarm 6 11 Sense - On Figure 2, TD310 is implemented as a low side OA output7 10 OAinput - driver in a typical 3 phase motor drive. Figure 3 presentsa generalpurposelow side gate OA input + 9 Sense + drive. In
in „Mosfet Treiber (low side) mit current sense Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheetTD310.pdf
gate Enable 5 12 GND drive andshort-circuit protectionas shownin appli- cation note n⋅ AN461. Alarm 6 11 Sense - On Figure 2, TD310 is implemented as a low side OA output7 10 OAinput - driver in a typical 3 phase motor drive. Figure 3 presentsa generalpurposelow side gate OA input + 9 Sense + drive. In
in „Geteilte Spannungsversorgung von Arduino, IC und Power-LEDs blockiert Funktionsfaehigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
o r m a t i o n Connection Diagrams A15 1 48 A16 1 A14 2 47 BYTE# A13 3 46 VSS A12 4 45 DQ15/A-1 A11 5 44 DQ7 A10 6 43 DQ14 A9 7 42 DQ6 A1 8 48-PinStandardTSOP 41 DQ13 A19 9 40 DQ5 A20 10 39 DQ12 WE# 11 38 DQ4 RESET# 12 37 VCC A211,2 13 36 DQ11 WP#/ACC 1 14 35 DQ3 RY/BY#1 15 34 DQ10 A18 16 33 DQ2 A17
in „S29GL064A Flash Speicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1407fa.pdf
Negative CONV Pulse Width (Note 6) 4 ns t5 SCK to Sample Mode (Note 6) 4 ns t CONV to Hold Mode (Notes 6, 11) 1.2 ns 6 t7 32nd SCK↑to CONV↑ Interval (Affects Acquisition Period) (Notes 6, 7, 13) 45 ns t MinimumDelay fromSCKto Valid Bits 0 Through 11 (Notes 6, 12) 8 ns 8 t9 SCK to Hi-Z at SDO (Notes 6, 12) 6
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PDF
intel_bas52man.pdf
A4 6 15 B3 2 13 A 5 4 17 D 6 2 A 1 O 0 15 3 12 O 1 5 16 O 6 3 A 2 O 1 14 A5 7 14 B4 O 2 6 15 O 5 4 11 4 E 1 O 2 13 A6 8 13 B5 A 7 7 14 D 5 5 E 2 O 3 12 5 10 A 4 8 13 D 4 6 E 3 O 4 11 A 9 12 B 7 6 A 3 9 12 O 4 6 9 7 O 7 O 5 10 GND 10 11 E GND 7 8 8 GND O 6 9 GND 10 11 B7 74LS373 74LS32 74LS138 74LS245
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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PDF
intel_bas52man.pdf
A4 6 15 B3 2 13 A 5 4 17 D 6 2 A 1 O 0 15 3 12 O 1 5 16 O 6 3 A 2 O 1 14 A5 7 14 B4 O 2 6 15 O 5 4 11 4 E 1 O 2 13 A6 8 13 B5 A 7 7 14 D 5 5 E 2 O 3 12 5 10 A 4 8 13 D 4 6 E 3 O 4 11 A 9 12 B 7 6 A 3 9 12 O 4 6 9 7 O 7 O 5 10 GND 10 11 E GND 7 8 8 GND O 6 9 GND 10 11 B7 74LS373 74LS32 74LS138 74LS245
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PDF
TSL1406.pdf
Requirements (see Figure 1 and Figure 2) MIN NOM MAX UNIT tsu(SI) Setup time, serial input (see Note 11) 20 ns th(SI) Hold time, serial input (see Note 11 and Note 12) 0 ns tpd(SO) Propagation delay time, SO 50 ns t Pulse duration, clock high or low 50 ns w tr ft Input transition (rise and fall) time 0
in „CMOS Zeile Auslesen und weitergabe an RS232/USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4465-MAX4469.pdf
Preamplifiers with Complete Shutdown M General Description Features A The MAX4465–MAX4469 are micropower op amps opti- +2.4V to +5.5V Supply Voltage Operation mized for use as microphone preamplifiers. They pro- X vide the ideal combination of an optimized gain Versions with 5nA Complete Shutdown Available
in „Funktioniert denn kein Mikrofon-Vorverstärker?!?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74LS193.pdf
CLOCK WITH CLEAR) SDLS074 − DECEMBER 1972 − REVISED MARCH 1988 POST OFFICE BOX 65•DALLAS, TEXAS 75265 11 SN54192, SN54193, SN54LS192, SN54LS193, SN74192, SN74193, SN74LS192, SN74LS193 SYNCHRONOUS 4-BIT UP/DOWN COUNTERS (DUAL CLOCK WITH CLEAR) SDLS074 − DECEMBER 1972 − REVISED MARCH 1988 12 POST OFFICE BOX
in „SN74LS193 Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Bestückte Leiterplatte mit elektronischen Bauteilen
D11 R51 R53 D5 D4 D6 R47 R22 OP3 R107 R108 R45 R44 R46 R48 R49 R50 R52 R54 R55 R56 R57 R58 R59 R60 R61 R62 R63 R64 R65 R66 R67 R68 R69 R70 R71 R72 R73 R74 R75 R76 R77 R78 R79 R80 R81 R82 R83 R84 R85 R86
in „VICTORIA eClassic 3.1 Ladeelektronik“ · Platinen · · Platinenfotos
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Datei
LTspice_Error_Log.txt
ERROR: Node U1:11 is floating and connected to current source G:U1:U2:R1 ERROR: Node U1:U_TF:VP1 is floating and connected to current source G:U1:U_TF:P1 ERROR: Node U1:U_TF:VP2 is floating and connected to current source
in „LM3886 LTspice Error“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tda7375.pdf
FL 4 1 C1 0.22 F C10 2200 F OUT FL IN FR 5 2 C2 0.22 F C9 2200 F OUT FR IN RL 12 C4 0.22 F 15 IN RR 11 C11 2200 F OUT RL Note: C9, C10, C11, C12 could be C3 0.22 F 14 6 reduced if the operation is not 8 9 10 C12 2200 F OUT RR required. C8 47 F DIAGNOSTICS D94AU063A Figure 2: Double Bridge 10K R1 ST-BY VS C5 C4 C3 10 F 100nF 1000 F IN L 4 7 13 3 1 C1 0.47 F 5 OUT L 2 IN R 12 15 C2 0.47 F 11 OUT R 6 14 C8 47 F 8 9 10 DIAGNOSTICS D94AU064A Figure 3: Stereo/Bridge 10K ST-BY VS 10 F 100nF 1000 F 7 13 3 IN L 4 1 OUT L 0.22 F 2200 F IN L 5 2 0.22 F 2200 F OUT R IN BRIDGE 12 15 0.47 F 11 OUT BRIDGE
in „SCHALTUNGS-problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tda7375.pdf
FL 4 1 C1 0.22 F C10 2200 F OUT FL IN FR 5 2 C2 0.22 F C9 2200 F OUT FR IN RL 12 C4 0.22 F 15 IN RR 11 C11 2200 F OUT RL Note: C9, C10, C11, C12 could be C3 0.22 F 14 6 reduced if the operation is not 8 9 10 C12 2200 F OUT RR required. C8 47 F DIAGNOSTICS D94AU063A Figure 2: Double Bridge 10K R1 ST-BY VS C5 C4 C3 10 F 100nF 1000 F IN L 4 7 13 3 1 C1 0.47 F 5 OUT L 2 IN R 12 15 C2 0.47 F 11 OUT R 6 14 C8 47 F 8 9 10 DIAGNOSTICS D94AU064A Figure 3: Stereo/Bridge 10K ST-BY VS 10 F 100nF 1000 F 7 13 3 IN L 4 1 OUT L 0.22 F 2200 F IN L 5 2 0.22 F 2200 F OUT R IN BRIDGE 12 15 0.47 F 11 OUT BRIDGE
in „END-VERSTÄRKER probs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vierzeiliges_Display_DEM20488.pdf
DESCRIPTION DATE 0 ORIGINALVERSION 08/03/2005 1 ADD PCB DRAWINGAND 14/03/2005 DESCRIPTION 2 CHANGED SERIES 11/04/2005 CHANGED PCB DRAWING 3 AND DESCRIPTION 20/04/2005 PREPARED BY: CHJ DATE: 20/04/2005 APPROVED BY: MH DATE: 27/07/2005 DEM 20488 SYH-PY Product Specification / CONTENTS 1. FUNCTIONS & FEATURES--
in „Probleme mit LCD-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DEM20488SYH-PY.PDF
DESCRIPTION DATE 0 ORIGINALVERSION 08/03/2005 1 ADD PCB DRAWINGAND 14/03/2005 DESCRIPTION 2 CHANGED SERIES 11/04/2005 CHANGED PCB DRAWING 3 AND DESCRIPTION 20/04/2005 PREPARED BY: CHJ DATE: 20/04/2005 APPROVED BY: MH DATE: 27/07/2005 DEM 20488 SYH-PY Product Specification / CONTENTS 1. FUNCTIONS & FEATURES--
in „LCD Problem im 4-Bit Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BBK-29LEM-5093T2C_MSD308C-1.pdf
C198 1 AGND 10K R184 4.7K PWM0 0.1uF AGND Title AGND 309BT Size Document Number Rev A 1.0 Date: 2009/11/25 Sheet 1 of 6 5 4 3 2 1 5 4 3 2 1 HEADPHONE 12V_SW 3904 Q6 MSD39BT Power interface +5V_STANDBY 12V_OP R12 6.8K R169 10K 7F K Cu . 0 0 7 D 6 Q17 1 2 1 1 R N D 8 / EARPHONE OUTL 3904 8 0 9 6 AGND VDDC
in „Datenblatt zu MSH9010-lf gesucht“ · Mikrocontroller und Digitale Elektronik ·