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ND-LA.MV9.P-2.pdf
10,000 ft. (max) Store : 20,000 ft. (max) 8.4 High Temperature & Storage Test method &condition Please Refer to GB2423.2” Test BD & BB” 8.5 Low Temperature & Storage Test method &condition Please Refer to GB2423.1”Test Ad & AB” 8.6 Humidity &Temperature Test Test method &condition Please Refer to GB2423.3” Test CA”& GB2423.22”Test NB” 。 8.7 Vibration Test Test method &condition Please Refer to GB2423.10”Test F” 8.8 Drop Test Test method &condition Please refer to GB4857.5 Item 3.5.2 A After ALL the test from item 8.4 to 8.8, the Product must be meet ALL The Requirements on this Specification
in „Display CLAA154WB05AN an Pollinboard PI-MDV6822“ · Mikrocontroller und Digitale Elektronik ·
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208_945-15.pdf
einer Signalperiode ST 1200/3000 20 µm ca. 0,2 µm MT 60/101 10 µm ca. 0,1 µm MT 1200/2500 2 µm ca. 0,02 µm n u CT 2500/6000 2 µm ca. 0,02 µm i e b s o i o P 12 Alle HEIDENHAIN-Messtaster werden vor der Auslieferung auf ihre Funktion geprüft und die Genauigkeit vermessen. Die Genauigkeit der Messtaster
in „Welchen Mikrocontroller Quadrature Decoder Kanäle ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
208_945-15.pdf
einer Signalperiode ST 1200/3000 20 µm ca. 0,2 µm MT 60/101 10 µm ca. 0,1 µm MT 1200/2500 2 µm ca. 0,02 µm n u CT 2500/6000 2 µm ca. 0,02 µm i e b s o i o P 12 Alle HEIDENHAIN-Messtaster werden vor der Auslieferung auf ihre Funktion geprüft und die Genauigkeit vermessen. Die Genauigkeit der Messtaster
in „Wie entsteht das Sinusförmige Signal eines Drehgebers/ Vermutung“ · Offtopic ·
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208_945-15.pdf
einer Signalperiode ST 1200/3000 20 µm ca. 0,2 µm MT 60/101 10 µm ca. 0,1 µm MT 1200/2500 2 µm ca. 0,02 µm n u CT 2500/6000 2 µm ca. 0,02 µm i e b s o i o P 12 Alle HEIDENHAIN-Messtaster werden vor der Auslieferung auf ihre Funktion geprüft und die Genauigkeit vermessen. Die Genauigkeit der Messtaster
in „SIN/COS Encoder“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
lichtschranke_2); PORTB &= ~(1<<lichtschranke_2); // // Setup ADC // //PRR &= ~(1<<PRADC) ; //ADMUX = (!(1<<REFS1 )) | (1<<REFS0) | ((1<<MUX0)); // ADC0 und Int.Ref. //ADCSRA = ((1<<ADPS0)) | (1<<ADPS1) | (1<<ADPS2); // Vorteiler 64 //ADCSRA = (1<<ADPS0) | (1<<ADPS1) | (1<<ADPS2) ; //ADCSRA = (1<<ADEN) | (1<<ADSC
in „PWM steuert Helligkeit & Farbe bei LED-Module“ · Projekte & Code ·
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q8025n.pdf
1 50 40 3 0.41 20 0.02 0.5 1 1.6 2.5 25 1 10 0.2 10/8.3 1 45 35 3 0.41 20 0.02 0.5 1 1.6 2.5 25 1 10 0.2 10/8.3 1 35 25 3 0.41 20 0.02 0.5 1 1.6 2 15 1 10 0.2 20/16.7 1 40 30 2.5 1.6 30 0.02 0.5 1 1.6 2 15 1 10 0.2 20/16.7 1 40 30 2.5 1.6 30 0.02 0.5 1 1.6 2 15 1 10 0.2 20/16.7 1 30 20 2.5 1.6 30 0.02 0.5 1 1.6 2.5 25 1 10 0.2 20/16.7 1 50 40 3 1.6 30 0.02 0.5 1 1.6 2.5 25 1 10 0.2 20/16.7 1 50 40 3 1.6 30 0.02 0.5 1 1.6 2.5 25 1 10 0.2 20/16.7
in „Leister Zündgerät Triac S Economy“ · Analoge Elektronik und Schaltungstechnik ·
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AVR506.pdf
minor modifications in the application when migrating from ATmega169 to ATmega169P. Rev. 8028C-AVR-02/07 2 General Porting Considerations To make the porting process as easy as possible, we recommend to always refer to registers and bit positions using their defined names, as absolute addresses and values
in „Bascom atmega169P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
attiny84.pdf
Alternate Functions in PA1..PA0 Signal Name PA1/ADC1/AIN0/PCINT1 PA0/ADC0/AREF/PCINT0 RESET PUOE 0 (REFS1 REFS0 + REFS1 REFS0) PUOV 0 0 DDOE 0 RESET (REFS1 REFS0 + REFS1 REFS0) DDOV 0 0 PVOE 0 RESET (REFS1 REFS0 + REFS1 REFS0) PVOV 0 0 PTOE 0 0 DIEOE PCINT1 PCIE0 + ADC1D PCINT0 PCIE0 + ADC0D DIEOV PCINT1
in „Attiny 84 ISP?!“ · Mikrocontroller und Digitale Elektronik ·
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fes8jt.pdf
MAX. 0.384 (9.75) 0.190 (4.83) 0.170 (4.32) 0.370 (9.40) 0.154 (3.91) DIA. 0.185 (4.70) 0.076 (1.93) REF. 0.110 (2.79) 0.360 (9.14) 0.148 (3.74) DIA. 0.175 (4.44) 0.100 (2.54) 0.055 (1.39) 0.113 (2.87) 0.045 (1.14) 0.076 (1.93) REF. 7° REF. 0.103 (2.62) 0.140 (3.56) DIA. 0.135 (3.43) DIA. 45° REF. 0.125
in „Ersatz für Schottky SB 3200?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
01__.c
case SETUP: PORTD = 0; if (Flanke & T2){ Zustand = RUN; update_LCD = 1;} if (Flanke & T1){ Zustand = REF_MIN; Zustand1 = REF_MIN1; update_LCD = 1;} if (Flanke & T3){ Zustand = REF_MAX; Zustand1 = REF_MAX1; update_LCD = 1;} break; case REF_MIN: PORTD = 0; if (Taste1){ Zustand = CW; update_LCD = 1;} if (
in „Welcher Schrittmotor an ATmega8?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Main.asm
OCR1AH, temp ldi temp, $ff out OCR1AL, temp ldi temp, (0<<WGM01) | (0<<WGM00) | (1<<CS00) | (1<<CS02) ; CS00 setzen: Teiler 1024 out TCCR0, temp ldi temp, (0<<CS00) | (0<<CS02) ; CS00 setzen: Teiler 1024 out TCCR1B, temp ldi temp, (1<<OCIE2) | (1<<OCIE1A) | (1<<TOIE0) ; TOIE0: Interrupt bei Timer match
in „Atmega stürtzt nach ca. 15 min ab“ · Mikrocontroller und Digitale Elektronik ·
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tlv571.pdf
0.10 r a 0.08 i 0.06 n o 0.04 l 0.02 r e 0.00 AVDD = DDD = 3 V, I –0.02 External Ref = 3 V, – CLK = 10 MHz, L –0.04 T = 25⋅C I –0.06 A 0 64 128 192 256 Digital Output Code Figure 15 POST OFFICE BOX 655DALLAS, TEXAS 75265 21 TLV571 2.7 V
in „EEPROM beschreiben ohne MC“ · Mikrocontroller und Digitale Elektronik ·
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MX25L12805D__3V__128Mb__v1.2.pdf
050000h 050FFFh 79 04F000h 04FFFFh 4 … 64 040000h 040FFFh 63 03F000h 03FFFFh 3 … 48 030000h 030FFFh 47 02F000h 02FFFFh 2 … 32 020000h 020FFFh 31 01F000h 01FFFFh 1 … 16 010000h 010FFFh 15 00F000h 00FFFFh 0 … 0 000000h 000FFFh P/N: PM1310 REV. 1.2, JUL. 29, 2009 10 M X 2 5 L 1 2 8 0 5 D DEVICE OPERATION 1.
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PCA8574-rev02.pdf
quasi-bidirectional I/O 7 PCA8574_PCA8574A_2 © NXP B.V. 2007. All rights reserved. Product data sheet Rev. 02 Ñ 14 May 2007 5 of 27 NXP Semiconductors PCA8574/74A 2 Remote 8-bit I/O expander for I C-bus with interrupt 7. Functional description Refer to Figure 1 ÒBlk diagram of PCA8574/74AÓ . 7.1 Device address
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
89C51CC01C-SLSUM.pdf
in idealized form and do not provide precise timing information. For bus cycle timing parameters refer to the Section “AC Characteristics” of the T89C51CC01 datasheet. 23 4129E–8051–03/02 Figure 11. External Data Read Waveforms CPU Clock ALE RD#1 P0 DPL or Ri D7:0 P2 P2 DPH or P22 Notes: 1. RD# signal
in „Bit Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL494.pdf
Negative Output Voltage R1 Vref - 2 R 1 VO = Vref R2 Positive Output Voltage R 2 VO R 1 To Output VO= V ref+ R Voltage of 2 System Figure 14. Error–Amplifier Sensing Techniques Output Control Vref R 1 Output 4 Q DT R C T T R 2 6 5 V CS ref Output 4 Q DT 30k 0.001 R S 80 Max. % on Time, each output ⌠45 - R1
in „Problem mit TL494“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina128.pdf
12.4k 12.35k 12.4k RG A3 10 5.556k 5.62k 5489 5.49k + 20 2.632k 2.61k 2600 2.61k 8 25kΩ(1) Load V 50 1.02k 1.02k 1008 1k O 100 505.1 511 499 499 5 − 200 251.3 249 248 249 + A 2 500 100.2 100 99 100 VIN 3 Over−Voltage 40kΩ 40kΩ Ref 1000 50.05 49.9 49.5 49.9 Protection 2000 25.01 24.9 24.7 24.9 5000 10.00
in „Probleme Spannungsmessung mit INA 128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc8209.pdf
at a compare match (see “Compare Match Output Unit” on page 84). For detailed timing information refer to “Timer/Counter timing diagrams” on page 89. 14.7.1 Normal mode The simplest mode of operation is the Normal mode (WGM02:0 = 0). In this mode the counting direction is always up (incrementing), and
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PDF
msp430g2452.pdf
frequency control DCOCTL 056h Port P2 Port P2 selection 2 P2SEL2 042h Port P2 resistor enable P2REN 02Fh Port P2 selection P2SEL 02Eh Port P2 interrupt enable P2IE 02Dh Port P2 interrupt edge select P2IES 02Ch Port P2 interrupt flag P2IFG 02Bh Port P2 direction P2DIR 02Ah Port P2 output P2OUT 029h Port
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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A100_IRF7413_IR.pdf
( 6+2:1 ,1 0,//,0(7(56 >,1&+(6@ 287/,1( &21)2506 72 -('(& 287/,1( 06 $$ ',0(16,21 '2(6 127 ,1&/8'( 02/' 3527586,216 02/' 3527586,216 127 72 (;&((' > @ > @ ',0(16,21 '2(6 127 ,1&/8'( 02/' 3527586,216 02/' 3527586,216 127 72 (;&((' > @ ',0(16,21 ,6 7+( /(1*7+ 2) /($' )25 62/'(5,1* 72 $ 68%675$7( ; > @
in „MOSFET - Verständnisfrage“ · Analoge Elektronik und Schaltungstechnik ·
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TL494-D.PDF
Voltage of System 1 + R1 Error R2 Amp 1 − + 2 Error Amp 3 R1 Vref − Negative Output Voltage 2 R 1 VO= V ref R2 Positive Output Voltage R 2 VO R 1 To Output VO= V ref 1 + R Voltage of 2 System Figure 14. Error−Amplifier Sensing Techniques Output Control V R 1 Output ref 4 Q D T R C T T R 2 6 5 V C S ref Output
in „Schaltnetzteil m. TL494 - Frage zu Mosfet (und Treiber)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
138720_DS.pdf
Digital-to-Analog Glitch Energy 10 10 nV sec typ 1 LSB Change at Major Carry REFERENCE INPUT/OUTPUT REF INInput Voltage Range 2.3/DD 2.3/VDD V min/max Input Impedance 150 150 kΩ typ REF OUT Output Voltage 2.45/2.55 V min/max 2.5 2.5 V typ REF Tempco 40 40 ppm/°C typ OUT FLASH/EE MEMORY PERFORMANCE CHARACTERISTICS
in „aduc812bs Wie programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Polarity of the expected zero crossing. * * The polarity of the expected zero crossing. * Could be eiter \ref EDGE_FALLING or \ref EDGE_RISING. */ __regvar __no_init volatile unsigned char zcPolarity @ 12; /*! \brief The commutation step that starts at next commutation. * * The commutation step that starts
in „Funktionen vs Interrupts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2080-um001_-en-e.pdf
-DC12 I-00 I-02 -DC12 I-05 I-07 45057 Output Terminal Block CM0 CM1 CM2 CM3 1 2 3 4 5 6 7 8 O-00 O-01 O-02 O-03 45059 2080-LC10-12QBB Input Terminal Block (1) +DC24 COM0 I-01 I-03 I-04 I-06 1 2 3 4 5 6 7 8 9 10 11 12 -DC24 I-00 I-02 -DC24 I-05 I-07 45056 Output Terminal Block +CM0 O-00 O-02 -CM0 1 2 3 4 5 6 7 8 +CM0 O-01 O-03 -CM0 45058 1 I-04,I-05,I-06,I-07applyasbothdigitalinputs4,5,6,7andanalogi nputs0,1,2,3forthe2080-LC10-QWB
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PDF
GD32F3x0_RM_v1.0.pdf
14:12 SPT14[2:0] refer to SPT10[2:0] description 11:9 SPT13[2:0] refer to SPT10[2:0] description 8:6 SPT12[2:0] refer to SPT10[2:0] description 5:3 SPT11[2:0] refer to SPT10[2:0] description 2:0 SPT10[2:0] Channel sampling
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F3x0_RM_v1.0.pdf
14:12 SPT14[2:0] refer to SPT10[2:0] description 11:9 SPT13[2:0] refer to SPT10[2:0] description 8:6 SPT12[2:0] refer to SPT10[2:0] description 5:3 SPT11[2:0] refer to SPT10[2:0] description 2:0 SPT10[2:0] Channel sampling
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Dsuti.pdf
to calculate M , the value of s dqcreases T off= NKC 1 0 Toff= NKV 2 0 1/2 with a factor of P . T ref= NK (1 ref+ C 0 Tref= NK (2 ref+ V 0 Besides quantization noise, another limitation of the T x NK (C1+C x 0 Tx= NK (V2+Vx) 0 resolution is due to the thermal noise of the oscillator itself. In the fast
in „Periodenmessung mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8221-Datenblatt.pdf
EVAL Rev.C | Page 18of 24 AD8221 REFERENCETERMINAL +VS As shown in Figure 43, the reference terminal, REF, is at one end of a 10 kΩ resistor. The output of the instrumentation amplifier is referenced to the voltage on the REF terminal; this AD8221 REF is useful when the output signal needs to be offset
in „InAmp mit single supply möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
infineon-ug-202311-pl52-2312-121012-solid-state-circuit-breaker-reference-design-user-guide-usermanual-en.pdf
Thisuserguidedescribesthesetupandevaluationofthe solid-statecircuitbreaker(SSCB) referencedesigns basedonCoolMOS™S7TandCoolSiC™powerMOSFETs:REF_SSCB_AC_DC_1PH_16A and REF_SSCB_AC_DC_1PH_SiC.Itprovidesabrief overviewof theSSCBreference designconcept, functions,and protectionanddiagnosisimplementations. Intendedaudience Thisdocumentis intendedforengineers
in „Leitungsschutzschalter 24VAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADC0804_NSC.pdf
CC, TA=25˚C 9.0 16 mA DC POWER SUPPLY CC Supply Current (Includes fCLK= 640 kHz, Ladder Current) V REF/2 NC, T A=25˚C = and CS 5V ADC0801/02/03/04LCJ/05 1.1 1.8 mA ADC0804LCN/LCWM 1.9 2.5 mA Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. DC and AC electrical
in „Probleme Verständnis ADC 0804-1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADC0801_05.pdf
CC, TA=25˚C 9.0 16 mA DC POWER SUPPLY CC Supply Current (Includes fCLK= 640 kHz, Ladder Current) V REF/2 NC, T A=25˚C = and CS 5V ADC0801/02/03/04LCJ/05 1.1 1.8 mA ADC0804LCN/LCWM 1.9 2.5 mA Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. DC and AC electrical
in „Verständnisfrage zum ADC080x (VIN-MIN/DC-Offset)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DCL9G_ds300.pdf
operating system until an appropriate Xilinx ISE, ChipScope™ Pro or Platform Studio (EDK) software ds300_02_081006 installation has been completed. Figure 2: Plastic Case Physical Dimensions Refer to UG344, USB Cable Installation Guide, for a complete guide to installation of the Platform Cable USB and its
in „USBprog CPLD Starterkit Wie bauen?“ · FPGA, VHDL & Co. ·
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PDF
SP8630.pdf
temperature 1175°C Max. clock input voltage 2·5V p-p VCC (0V) 14 4 10 D Q D Q D Q OUTPUT CLOCKINPUT 42 REF REF Q Q Q CK CK CK CK CK CK 12 7 INTERNALBIAS VEE DECOUPLING Fig. 2 Functional diagram SP8630 ELECTRICAL CHARACTERISTICS Unlessotherwisestated,theElectricalCharacteristicsareguaranteedoverspecifiedsupply
in „was ist das für ein IC?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mbrs340.pdf
Typical Forward Voltage Figure 2. Maximum Forward Voltage ) 1.E−01 P.E−01 M S ( P T TJ= 125⋅C A1.E−02 TJ= 125⋅C E.E−02 ( R N R E1.E−03 1.E−03 R E TJ= 100⋅C U TJ= 100⋅C S C E E1.E−04 1.E−04 R R E M T = 25⋅C E U J R1.E−05 TJ= 25⋅C I.E−05 R X I A 1.E−06 1.E−06 0 5 10 15 20 25 30 35 40 I 0 5 10 15 20 25
in „Diode common anode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DM_D110_Steuerkommandos.pdf
unit .....1 2) Ferrite core: 1 1.9 Options 1) Power supply unit: PS-170 / PS-180 (separately sold) Refer to the PS-170 / PS-180 specification for detail. 2) Pole unit: DP-105 (separately sold) Refer to the DP-105 specification for detail. 3) Stand: DP-110 (-1x1, -1x2) 4) Installation metal: DP-502 5)
in „VFD "Kundendisplay"-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3105fb.pdf
0.7mA 0.1 OUTPUT CURRENT 5mA/DIV 0 –45 –30 –15 0 15 30 45 60 75 90 25µs/DIV TEMPERATURE (°C) 3105 TA02a 3105 TA02b 3105fb 12 Formoreinformationwww.linear.com/LTC3105 LTC3105 TYPICAL APPLICATIONS 3.3V fromMultiple Stacked-Cell Photovoltaic with Source Temperature Tracking L1** 6.8µH + – + VIN SW CIN V
in „Low power DC-DC Converter (step up)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_LM317SG.pdf
characteristics for LM117/LM217 Symbol Parameter Test conditions Min. Typ. Max. Unit TJ= 25°C 0.01 0.02 ΔVO Line regulation VI- O = 3 to 40 V %/V 0.02 0.05 VO ≤5 V TJ= 25°C 5 15 O = 10 mA to MAX mV 20 50 ΔVO Load regulation VO ≥5 V, TJ= 25°C 0.1 0.3 O = 10 mA to MAX % 0.3 1 I Adjustment pin current 50
in „Symmetrische Spannungsversorgung für Audiovorstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0s922lq6p7gwsc2hhzx6z4e3pl3y.pdf
0.2 5.0 ▯A 10 mA IL max, PD Pmax Reference Voltage, 3.0 V V −V 40 V, 3 V 1.2 1.25 1.3 V I O ref 10 mA IO Imax, D Pmax Line Regulation (Note 3), 3.0 VI O −V 40 V 1 Reg line − 0.02 0.07 % V Load Regulation (Note 3), 10 mA O I max 2 Regload VO 5.0 V − 20 70 mV V ↓ 5.0 V − 0.3 1.5 % V O O
in „LM317 Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD2500_Macro_Assembler_V402_Manual_Linker.pdf
section with the SECTION Assembler directive, and make it reference only. If that section was named Ref_only, this would appear as follows: Input Filename : filename Enter Offset for 'DATA' :1000 Enter Offset for 'Ref_only : 4000 Input Filename Output Filename : <CR> Library Filename: <CR> Options (D,
in „2500 A.D. Z80 Macro Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Technical-Information-Interfacing-with-VE-Bus-products-MK2-Protocol-3-14.pdf
02.195 INF.winmon: ram info scale=4 offset=-32768 02.195 INF.init: 10 is a bit field, bit 3 02.382 INF.: > 05 FF W 36 0B 00 02.460 INF.: < 08 FF W 8E 01 00 8F 00 80 02.460 INF.winmon: ram info scale=1 offset
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PDF
irlml6402pbf.pdf
= 25°C, L = 1.65mH J R G 25Ω, IAS = -3.7A. ** For recommended footprint and soldering techniques refer to application note #AN-994. 2 www.irf.com © 2014 International RectifierSubmit Datasheet Feedback April 28, 2014 IRLML6402PbF 100 VGS 100 VGS TOP -5.00V TOP -5.00V ) -4.50V ) -4.50V ( -3.50V ( -3.50V
in „TP4056 Polarity protection“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM10.PDF
2.0 5.0 pA/˚C Bias current drift 60 90 pA/˚C Line regulation 1.2V (1.3V) SV ≤6.5V 0.001 0.01 0.001 0.02 % /V 0≤REF≤0.5 mA, VREF=200 mV 0.02 0.03 % /V Load regulation 0≤I ≤0.5 mA 0.01 0.1 0.01 0.15 % REF V −VREF≥1.0V (1.1V) 0.15 0.2 % 3 www.national.com Electrical Characteristics (Continued) TJ= 25˚C, TMIN
in „Suche Batteriewächter“ · Analoge Elektronik und Schaltungstechnik ·
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ssd1803a.pdf
of DDRAM is 00H-4FH (Refer to Figure 7-2). Figure 7-2: 1-line x 20ch. Display (5-dot Font Width) Display position 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 COM1 COM8 00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 10
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
of DDRAM is 00H-4FH (Refer to Figure 7-2). Figure 7-2: 1-line x 20ch. Display (5-dot Font Width) Display position 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 COM1 COM8 00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 10
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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Datei
adc.c
volatile uint8_t adcrdy = 0; volatile uint8_t k = 7; void ADC_Init(void) { uint16_t result; ADMUX = (1<<REFS1)|(1<<REFS0); //AVcc als Referenz ((0<<REFS1)|(1<<REFS0)) .. interne Referenzspannung((1<<REFS1)|(1<<REFS0)) ADCSRA = (1<<ADPS2)|(1<<ADPS1)|(1<<ADPS0); //Frequenzvorteiler 128((1<<ADPS2)|(1<<ADPS1)|
in „ADC Ausgabe oder Auslese Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
019h Port P3 input P3IN 018h Port P2 Port P2 selection 2 P2SEL2 042h Port P2 resistor enable P2REN 02Fh Port P2 selection P2SEL 02Eh Port P2 interrupt enable P2IE 02Dh Port P2 interrupt edge select P2IES 02Ch Port P2 interrupt flag P2IFG 02Bh Port P2 direction P2DIR 02Ah Port P2 output P2OUT 029h Port
in „Signalverzögerung im Minutenbereich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ET050000DH6.pdf
------- 13. INSPECTION CRITERION -----------------------------------------------2 ~ 31 02101300-01-02 E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE TECHNOLOGIES CORPORATION E T 0 5 0 0 0 0 D H 6 5 1 1. GENERAL SPECIFICATIONS 1 . 1 APPLICATION NOTES FOR CONTROLLER/DRIVER PLEASE REFER TO : H I M
in „AP7000 und ICnova ADB1000: Bisschen wenig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EVI-370-series-command-list-v1-2-eng.pdf
04 0E 02 FF Down 8x 01 04 0E 03 FF Direct 8x 01 04 4E 0Z 0Z 0Z 0Z FF ZZZZ = FFF9 to 0007, +/– 7 steps CAM_Shutter Reset 8x 01 04 0A 00 FF Electronic Shutter Setting. Up 8x 01 04 0A 02 FF Enable on AE_Manual,
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PDF
AEAT_6010_6012.pdf
AlignmentToolSet-PartnumberHEDS-8934 This optional alignment tool set consists of a gap setting plate and a centering jig. Refer to Application Note 5317 for the assembly guide. ▯6.02 +0.01 11.0 0 ▯11.98 0 -0.01 CenteringJig 0.500.01 R 1 ± . 1 R GapSettingPlate 5 31.5 Figure6.Alignmenttoolsetandrecommendeddimensions 6 OrderingInformation
in „10bit Resolver spuckt über SPI 16 bits aus!“ · Mikrocontroller und Digitale Elektronik ·
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ks0066u.pdf
13 14 15 16 17 18 19 20 21 22 23 24 COM1 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 10 11 12 13 14 15 16 17 18 COM8 SEG1 KS0066U SEG40 SEG1 Extension Driver (40SEG) SEG40 SEG1 Extension Driver (40SEG) SEG40 (After Shift Left) 1 2 3 4 5 6 7 8 9
in „4x40 LCD Display ohne HD Controller ansteuern.“ · Mikrocontroller und Digitale Elektronik ·