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ZXM61N02F-56180.pdf
ZXM61N02F 20V N-CHANNEL ENHANCEMENT MODE MOSFET SUMMARY V (BR)DSS =20V; R DS(ON) =0.18V; I =1D7A DESCRIPTION This new generation of high density MOSFETs from Zetex utilises a unique structure that combines the benefits
in „Check Transistorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZXM61N02F-56180.pdf
ZXM61N02F 20V N-CHANNEL ENHANCEMENT MODE MOSFET SUMMARY V (BR)DSS =20V; R DS(ON) =0.18V; I =1D7A DESCRIPTION This new generation of high density MOSFETs from Zetex utilises a unique structure that combines the benefits
in „NPN zur Negierung von Reed (N/O) ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZXM61N02F-56180.pdf
ZXM61N02F 20V N-CHANNEL ENHANCEMENT MODE MOSFET SUMMARY V (BR)DSS =20V; R DS(ON) =0.18V; I =1D7A DESCRIPTION This new generation of high density MOSFETs from Zetex utilises a unique structure that combines the benefits
in „Mosfet mit Arduino Nano ansteuern (3,3V)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6206.pdf
0 10 20 30 40 50 60 0 5 10 15 20 25 30 VS [V] V [V] S Figure 26. Normalized typical quiescent current Figure 27. Normalized R DS(ON) vs.junction vs. switching frequency temperature (typical value) Iq / (Iq @ 1 kHz) RDS(ON)/ (DS(ON) 25 °C) 1.7 1.8 1.6 1.6 1.5 1.4 1.4 1.3 1.2 1.2 1.1 1.0 1.0 0.8 0.9 0 20 40 60 80 100 120 140 0 20 40 60 80 100 f [kHz] Tj [°C] SW Figure 28. Typical low-side R DS(ON) vs. supply Figure 29. Typical
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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DIODES_INC_BCR420UW6_ENG_TDS.pdf
Dissipation BCR420UW6 / BCR421UW6 4 of 13 November 2015 Document number: DS37667 Rev. 3 - 2 www.diodes.com © Diodes Incorporated BCR420UW6 / BCR421UW6 Typical Electrical Characteristics BCR421U (Continued) (@A = +25°C, unless otherwise specified.) 0.20 VEN3.3V Rext Ohms R =8
in „BCR420W67 zu wenig strom“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
_current_old; s16_current_new = bq20z80_read_byte(VOLTAGE); char str_current[128]; if(s16_current_new!=s16_current_old){ dip204_set_cursor_position(1,4); dip204_write_string("Strom: "); dip204_set_cursor_position(12,4); dip204_write_string(my_itoa(s16_current_new,5)); dip204_set_cursor_position(18,4); dip204_write_string("mA"); strcpy(str_current, my_itoa(s16_current_new,5)); s16_current_old=s16_current_new; } return str_current; } char* get_actual_time
in „AVR32 Timer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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8020_8021_Users_Manual.pdf
REF DESCRIPTION PART# REF DESCRIPTION PART# C1 CAPELEC47016V 1532-04770 DS23 LEDREDMV57124-18G.I 1000-00700 C2 CAPCER.1-20%+80%50V 1500-01040 DS24 LEDREDMV57124-18G.I 1000-00700 DS25 LEDREDMV57124-18G.I 1000-00700 CR1 DIODE1N4151 0300-00400 DS26 LEDREDMV57124-18G.I 1000-00700
in „Handbuch für Funktionsgenerator Kontron 8021 gesucht“ · Offtopic ·
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nRF24L01P_Product_Specification_1_0.pdf
LNA Filter Demodulator m ANT2 t RX FIFOs g R XC1 RF SynthesiserPower Management Radio Control XC2 S D F D A S D E D P V V I D D D V Figure 1. nRF24L01+ block diagram Revision 1.0 Page 9 of 78 nRF24L01+ Product Specification 2 Pin Information 2.1 Pin assignment D F S V D S R V D V V I 20 19 18 17 16 CE 1 15 VDD CSN 2 14 VSS nRF24L01+ SCK 3 13 ANT2 QFN20 4X4 MOSI 4 12 ANT1 MISO 5 11 VDD_PA 6 7 8 9 10 Q D S 2 1 R D S C C I V V X X Figure 2. nRF24L01+ pin assignment (top view) for the QFN20 4x4 package Revision 1.0 Page 10 of 78 nRF24L01+ Product Specification
in „NRF24L01+ erkennen ob gesendet wird“ · Mikrocontroller und Digitale Elektronik ·
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lm317-1.pdf
Typical Applications (Continued) 1A Current Regulator 1.2V–20V Regulator with Minimum High Gain Amplifier Program Current DS009063-16 DS009063-17 *Minimum load current ) 4 mA DS009063-18 Low Cost 3A Switching Regulator DS009063-19 †Solid tantalum *Core — Arnold
in „Konstantstromquelle“ · Mikrocontroller und Digitale Elektronik ·
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LM317__NAT.pdf
Typical Applications (Continued) 1A Current Regulator 1.2V–20V Regulator with Minimum High Gain Amplifier Program Current DS009063-16 DS009063-17 *Minimum load current ) 4 mA DS009063-18 Low Cost 3A Switching Regulator DS009063-19 †Solid tantalum *Core — Arnold
in „Frage zu Spannungs/Stromregelschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLU2905.pdf
175°C 1 1 0.1 1 10 100 0.1 1 10 100 V , Drain-to-Source Voltage (V) V , Drain-to-Source Voltage (V) DS DS Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000.0 60 ) Α TJ= 25°C ( 50 T J 175°C ( e n n r t u100.0 T J 175°C u 40 C n r c u s 30 TJ= 25°C S r t T n 10.0 r a a 20
in „Batterieschutzschaltung. Murks oder möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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24LC256_32k_I2C-EEPROM.pdf
written approval by Microchip. No licenses are Incorporated in the U.S.A. conveyed, implicitly or otherwise, under any intellectual Analog-for-the-Digital Age, Application Maestro, dsPICDEM, property rights. dsPICDEM.net, dsPICworks, ECAN, ECONOMONITOR, FanSense, FlexROM
in „immer noch EEprom“ · Mikrocontroller und Digitale Elektronik ·
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MOSFET-irfiz34v.pdf
Technology D l Ultra Low On-Resistance V DSS = 60V l Dynamic dv/dt Rating l 175°C Operating Temperature R DS(on) = 28m l Fast Switching G l Fully Avalanche Rated I = 20A l Optimized for SMPS Applications S D Description AdvancedHEXFET ® PowerMOSFETsfromInternational Rectifierutilizeadvancedprocessingtechniquestoachieve
in „Frage zur Optokoppler“ · Mikrocontroller und Digitale Elektronik ·
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LiveDesign_Schematics.pdf
SRAM1_A13 _ SRAM0_D10 31 D9 A14 21 SRAM0_A14 _ SRAM1_D10 31 D9 A14 21 SRAM1_A14 0 SRAM0_D11 32 D10 A15 20 SRAM0_A15 1 SRAM1_D11 32 D10 A15 20 SRAM1_A15 A SRAM0_D12 35 D11 A16 19 SRAM0_A16 A SRAM1_D12 35 D11 A16 19 SRAM1_A16 R SRAM0_D13 36 D12 A17 18 SRAM0_A17 R SRAM1_D13 36 D12 A17 18 SRAM1_A17 S SRAM0_D14 37 D13 A18 S SRAM1_D14 37 D13 A18 D14 S S D14 S S SRAM0_D15 38 D15 V V VCC VCC SRAM1_D15 38 D15 V V VCC VCC SRAM0_D[15..0] 2 4 SRAM1_D[15..0] 2 4 1 3 C27 C25 1 3 C28 C26 10nF 220nF 10nF 220nF C C SRAM0_A[18..0]
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TB6560schv1.2.pdf
10µ 1µ O 1 2 1 M +12V 0 9 7 8 NAVIGATION_AM_LCD1 IC1_A 2 1 1 8 1 GND 0 3 5 +5V JOYSTICK R R R PIC 18F4x2 GND D T O B A 0 0 0 0 2 2 RA0/AN0 MCLR/(ICSP_VPP) 1 3 CLK D C M M M 6 6 6 6 1 3 RA1/AN1 V T V V 2 B 4B B B 4 RA2/AN2/VREF- 21 DIR R D DS DS DS S POTIS 5 RA3/AN3/VREF+ p P MOTOR1_A GND 6 6 5 7 4 16
in „Schrittmotorsteuerung TB6560 - Motor spinnt“ · Mikrocontroller und Digitale Elektronik ·
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BF1009SW_2001_INF.pdf
capacitance (self biased) C g1ss - 2.1 2.7 pF V = 9 V, V = 6 V, f = 1 MHz DS G2S Output capacitance (self biased) C dss - 0.9 - VDS = 9 V, VG2S = 6 V, f = 1 MHz Power gain (self biased) G ps 18 22 - dB VDS = 9 V, VG2S = 6 V, f = 800 MHz Noise figure (self biased) F800 - 1.4 -
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PIC16F8X_JP.pdf
çķčç͕ਪ Clock from OSC1 Ͱ͢ɻ ext. system PIC16FXX ༻ਫথ ā Open OSC2 32.768 kHz Epson C-001R32.768K-A ± 20 PPM 100 kHz Epson C-2 100.00 KC-P ± 20 PPM 200 kHz STD XTL 200.000 KHz ± 20 PPM 1.0 MHz ECS ECS-10-13-2 ± 50 PPM 2.0 MHz ECS ECS-20-S-2 ± 50 PPM 4.0 MHz ECS ECS-40-S-4 ± 50 PPM 10.0 MHz ECS ECS-100-S
in „Denglisch sprechender Kollege“ · Ausbildung, Studium & Beruf ·
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IRFR2307Z.pdf
Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000 80 S TJ= 25°C ) ( (t c e100 a 60 r TJ= 175°C c C d e o r s TJ= 175°C o 10 a 40 - T - d i a r TJ= 25°C r , 1 F 20 I , f V = 10V VDS = 20V G DS ≤60µs PULSE WIDTH 380µs PULSE WIDTH 0.1 0 2 4 6 8 10 0 10 20 30
in „MOSFET IRFR2307Z“ · Analoge Elektronik und Schaltungstechnik ·
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Fairchild_FDS9936A.pdf
250 µA,Referencedto 25 C o 32 mV/ Co DSS J I ZeroGateVoltage DrainCurrent V = 24 V, V = 0 V 1 µA DSS DS GS T J 55°C 10 µA IGSSF Gate-BodyLeakage,Forward VGS 20 V, V DS0 V 100 nA IGSSR Gate-BodyLeakage,Reverse VGS -20 V, V DS0 V -100 nA ON CHARACTERISTICS (Note2) VGS(th) GateThresholdVoltage VDS V ,GS =
in „CCFL-Inverter reparieren...“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IP113A_Datasheet.pdf
100BASE-FX PHY2 RAM IP113A LF Confidential. 3/22 January 24, 2005 Copyright © 2004, IC Plus Corp. IP113A LF-DS-R04 IP113A LF Preliminary Data Sheet PIN Diagram E D O _ E E A S / / X S F A X X / I F F C L A C D D C C D D V N S S V G G O X V L LC E E 48 47 464544 43 42 41 40 39 38 37 36 AVCC 1 LED_FX_LINK/ FX_FULL
in „Umsetzer Ethernet Glasfaser“ · Mikrocontroller und Digitale Elektronik ·
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33963.pdf
32 MUST FILL UNUSED BITS WITH 0’S TIMER TIMER VTRIP VALUE STATUS 052694 5/11 DS1633 DS1633 OPERATION FLOW CHART Figure 2 POWER DOWN NO CHARGING BATTERY BACKUP POWER UP FIRST PASS 1/SEC NO FORCE CHARGE 8 SECOND SETUP CHARGE ON, RTH TO
in „[V] 2St Dallas DS1633 Ladechip TO220 3 Pin für“ · Markt ·
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PDF
bts780gp_Quadswitch_Driver.pdf
R DS ON L – 15 20 m ISL = 2 A on-resistance V = 5 V GL T j= 25 °C Static drain-source R – – 35 m I = 2 A DS ON L SH on-resistance Leakage current I – < 1 100 A V = 0 V LKL GL V DS= 18 V Body-diodeforward-voltage
in „moderne H-Bridge gesucht“ · Mikrocontroller und Digitale Elektronik ·
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433MHz__odul_antenne_0900766b802fb241.pdf
Deviation +/- 15 KHz IF Bandwidth 65 85 KHz Harmonic Spurious Emissions -50 dBc Operating Temperature -20 +70 Deg C Dynamic Timing Power up to stable receiver data out 5 mS 2 Power up to full RF out 4 mS 2 Standby to RX mode 3 mS Standby to TX mode 2 mS Changing from TX to RX mode 3 mS Changing from RX to TX mode 1 uS Data Bit rate 20 20,000 bps Notes 1. Supply voltage should have <10mV ripple. DS0353-4 Sept ‘02 ©2002 Reg. No. 227 4001, ENGLAND Page 2 D UAL B AND FM W IRELESS T RANSCEIVER RXQ1 Mechanical Dimensions
in „Funkempfänger/sender gesucht“ · Mikrocontroller und Digitale Elektronik ·
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ds17287.pdf
0.300 MM 7.37 7.62 H IN 0.398 0.416 MM 10.11 10.57 L IN 0.016 0.040 MM 0.40 1.02 Θ 0° 8° 36 of 38 DS17285/DS17287 DS17285 28-PIN TSOP PKG 28-PIN DIM MIN MAX A — 1.20 A1 0.05 — A2 0.91 1.02 b 0.18 0.27 c 0.15 0.20 D 13.20 13.60 D1 11.70 11.90 E 7.90 8.10 e 0.55 BSC L 0.30 0.70 L1 0.80 BSC 56-G5003-000 37 of 38 DS17285/DS17287 DS17287 RTC PLUS RAM Note: Pins 2, 3, 16, and 20 are missing by design. PKG 24-PIN DIM MIN MAX A IN 1.320 1.335 MM 33.53 33.91 B IN 0.720 0.740 MM 18.29 18.80 C IN 0.345 0.370 MM 8.76 9.40
in „RTC-Baustein DS17287-5 von Dallas an ATMega16“ · Mikrocontroller und Digitale Elektronik ·
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704013.pdf
the analogue start point (ASP): 3.5 mA Distance value outside the analogue end point (AEP): 20.5 mA 26 Overview main menu (for programming see page 20) M= Mode/Enter S= Set M S Distance display 4261 M S Switch point 1 S 1000 S Enter value SP1 M 200...9999mm M Configuration for OU1 S Hno S Hno
in „Efector Pmd, Datenblatt??“ · Mikrocontroller und Digitale Elektronik ·
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DS1000Z_Firmware_Release_Notes-7.pdf
Instrument Firmware Release Notes Models DS1054Z, DS1074Z, DS1104Z, DS1054Z-S, DS1074Z-S, DS1104Z-S, MSO1074Z, MSO1104Z, MSO1074Z-S, MSO1104Z-S Version Information Released version: 00.04.03.02.03 Release Date: 10/20/2015 Compatibility Compatible
in „Rigol-DS1054Z“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2003161835_ZILLTEK-ZTP7192MS_C481285.pdf
the IC, as well common output voltages. as the step-down converter switches. Drive IN with a 4.5V to 18V power source. Bypass IN to GND with a VOUT(V) R1 (KΩ) R2 (KΩ) Rt(KΩ) C OUT(μF) suitably large capacitor to eliminate noise on the input 1.05 20.5 82 82 44 to the IC. 1.2 30.1 60.4 82 44 1.8 40.2 32.4
in „Ruhe-Stromaufnahme MP2315 Ali-Board zu hoch“ · Analoge Elektronik und Schaltungstechnik ·
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MBI5040_Datasheet_V1.00-English.pdf
With 16-Bit PWM Control and Dot-Correction Pin Configuration GND 1 24 VDD SDI 2 23 R-EXT 24 23 22 21 20 19 DCLK 3 22 SDO LE 1 18 OUT15 LE 4 21 GCLK OUT0 2 17 OUT14 OUT0 5 20 OUT15 OUT1 3 16 OUT13 OUT1 6 19 OUT14 OUT2 4 15 OUT12 OUT2 7 18 OUT13 OUT3 8 17 OUT12 OUT3 5 14 OUT11 OUT4 6 13 OUT10 OUT4 9 16 OUT11
in „TLC5940 (PWM driver) | Kauftip!“ · Mikrocontroller und Digitale Elektronik ·
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PIC16F1939.pdf
i i i N A S p L i C S S L e u a - - - 4 A a o R T E M I P B 4 4 4 4 C C S RA0 2 17 19 19 Y AN0 — C12IN0-/ SRNQ(1) — — — SS(1) SEG12 — — VCAP C2OUT(1) RA1 3 18 20 20 Y AN1 — C12IN1- — — — — — SEG7 — — — RA2 4 19
in „MPLAB delay und xtalfreq richtig benutzen“ · Mikrocontroller und Digitale Elektronik ·
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irfh4210d_pbf.pdf
= 0V, f = 1 MHZ I = 50A C = C + C , C SHORTED D iss gs gd ds ) 12.0 Crss = gd ( V DS= 20V Coss = ds + gd e V = 13V ) a 10.0 DS p0000 o ( C V c iss c 8.0 a C u c oss o p o 6.0 a - , 1000 a C Crss G 4.0 S G V 2.0 100 0.0 1 10 100 0 10 20 30 40 50 60 70 80 90 100
in „Akkubohrschrauber 10,8V von Makita und Metabo“ · Mechanik, Gehäuse, Werkzeug ·
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12f1840_programming_41439A.pdf
in Table 1-1 and shown in bold lettering in the pin diagrams. A A A A A R R R R R N N FIGURE 2-1: 18-PIN DIAGRAM FOR PIC16F1847 AND 2 2 2 2 2 2 2 RA 5/MCLR/PP 1 1 RA7 PIC16LF1847 NC 2 20 RA6 VSS 3 19 V DD PDIP, SOIC NC 4 PIC16F1847 18 NC V SS 5 PIC16LF1847 17 VDD 6 RA2 1 18 RA1 NC 16 RB7/ICSPDAT RA0
in „PIC16LF1847 flashen mit ATmega / USBasp / Arduino Nano / ponyser?“ · Mikrocontroller und Digitale Elektronik ·
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LM124.pdf
Oscillator Pulse Generator 2 3 L 4 2 2 L 4 1 M L DS009299-16 DS009299-17 High Compliance Current Sink DS009299-18 IO= 1 amp/INlt V (IncreaEe o for I small) www.national.com 12 L M Typical Single-Supply Applications (V = 5.0 DC (Continued) 2 / M Low Drift Peak Detector 2 2 / M 3 2 / M 2 0 2 DS009299-19 Comparator with Hysteresis Ground Referencing a Differential Input Signal DS009299-20 DS009299-21 VO= R 13 www.national.com 0 9 Typical Single-Supply Applications (V = 5.0 V ) (Continued) 2
in „positiver Addierer“ · Mikrocontroller und Digitale Elektronik ·
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Tiny15L.pdf
Timer/Counter1. The nominal frequency of this peripheral clock, PCK, is 25.6 MHz. 4 ATtiny15L 1187DS–12/01 ATtiny15L ATtiny15L Register Summary Address Name Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 Page $3F SREG I T H S V N Z C page 11 $3E Reserved $3C Reserved $3B GIMSK - INT0 PCIE - - - - -
in „Frequenzschalter“ · Mikrocontroller und Digitale Elektronik ·
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MRF150.pdf
— Vdc Zero Gate Voltage Drain CurrDSt= 50 V,GS = 0) DSS — — 5.0 mAdc Gate–Body Leakage CurrentGSV= 20 V, DS = 0) GSS — — 1.0 Adc ON CHARACTERISTICS Gate Threshold Voltage (= 10 V, I = 100 mA) V 1.0 3.0 5.0 Vdc DS D GS(th) Drain–Source On–Voltage (V= 10 V, I = 10 A) V 1.0 3.0 5.0 Vdc GS D DS(on) Forward
in „Wärmeleitpad gesucht für POWER FET MRF150“ · Analoge Elektronik und Schaltungstechnik ·
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si4946ey.pdf
Si4946EY Vishay Siliconix Dual N-Channel 60-V (D-S), 175_C MOSFET FEATURES PRODUCT SUMMARY D TrenchFETr Power MOSFET V (V) r (W) I (A) DS DS(on) D D 175_C Maximum Junction Temperature D 100% R Tested 0.055 @ VGS = 10 V 4.5 g Pb-free 60 Available 0.075
in „Frage zu Ic SI4948“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Display_-_NL10276BC30-04D.pdf
and 4) to avoid noise issue. Use 100 twisted-pair wires for the cable. CN1: Figure from socket view 20 19 · · · · · 2 1 CN1 20 1 ↑ Insert direction Data Sheet EN0488EJ1V0DS00 7 NL10276BC30-04D (2) Connector for Backlight Unit CN21 Part no.: BHR-03VS-1 Adaptable socket:SM02 (8.0)B-BHS-TB Supplier: J.S.T
in „VIA Nano Board LVDS Connector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_-_NL10276BC30-04D.pdf
and 4) to avoid noise issue. Use 100 twisted-pair wires for the cable. CN1: Figure from socket view 20 19 · · · · · 2 1 CN1 20 1 ↑ Insert direction Data Sheet EN0488EJ1V0DS00 7 NL10276BC30-04D (2) Connector for Backlight Unit CN21 Part no.: BHR-03VS-1 Adaptable socket:SM02 (8.0)B-BHS-TB Supplier: J.S.T
in „günstiges ITX Mainboard mit LVDS Connector“ · Mikrocontroller und Digitale Elektronik ·
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MCP2551.pdf
ensured to meet the ISO-11898 specification. FIGURE 1-1: SLEW RATE VS. SLOPE-CONTROL RESISTANCE VALUE 25 20 s / V e 15 t a R w 10 l S 5 0 10 20 30 40 49 60 70 76 90 100 110 120 Resistance (k ) DS21667F-page 4 © 2010 Microchip Technology Inc. MCP2551 1.5 TXD Permanent Dominant 1.7.1 TRANSMITTER DATA INPUT (
in „MCP2551 Standby Mode wenn AVR im Power down Modus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serieltest1.c
messwerte[14] = 140; messwerte[15] = 150; messwerte[16] = 160; //messwerte[17] = 170; //messwerte[18] = 180; //messwerte[19] = 190; //messwerte[20] = 200; timer = 65; //muss größer als 60 sein damit die ungleich Startbedinung erfüllt wird for(;;) { /* if (command[0] == 250){ int i; for(i = 0; i < 10
in „UART Schleife MC stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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MBI5026.pdf
current SDI 2 23 R-EXT sink SDO CLK 3 22 SDI Serial-data input to the shift register LE 4 21 OE OUT0 5 20 OUT15 Clock input terminal for data shift on rising OUT1 6 19 OUT14 CLK edge OUT2 7 18 OUT13 OUT3 8 17 OUT12 Data strobe input terminal OUT4 9 16 OUT11 OUT5 10 15 OUT10 LE Serial data is transferred
in „Vorschläge für Led-Treiber?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBI5026.pdf
current SDI 2 23 R-EXT sink SDO CLK 3 22 SDI Serial-data input to the shift register LE 4 21 OE OUT0 5 20 OUT15 Clock input terminal for data shift on rising OUT1 6 19 OUT14 CLK edge OUT2 7 18 OUT13 OUT3 8 17 OUT12 Data strobe input terminal OUT4 9 16 OUT11 OUT5 10 15 OUT10 LE Serial data is transferred
in „TPIC6B595N Cascade Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Packages.txt
21 MA05-2 21 JP5Q 21 HDSP-M 21 B3F-31XX 20 WIDERSTAND_SMD_0,25W_3,2X2,6 20 QS 20 G6K-2F 20 C3216 20 2,54/1,0 20 1X05 19 P1-13 19 DIL14S 19 2X03 18 TP10SQ 18 SMB 18 MKDSN1,5/2-5,08 18 HC49U70 18 C0603R 18 AK500/2 18 085CS_1AR 17 SMD5 17 SIL8 17
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
miniboard.pdf
_LC_1 E15 FLASH_D11 49.9 H18 IO_L20N_VREF_5 IO_L4N_VREF_5 B17 SE_2_01 IO_L18N_6 IO_L2N_6 SE_2_15 FLASH_A03 IO_L5N_D22_LC_1 IO_L1N_D30_LC_1 FLASH_D08 DDR_D12 IO_L20P_5 IO_L4P_5 DDR_RAS_N PHY_RXER H1 IO_L18P_6 IO_L2P_6 A5 SE_2_14
in „Xinlinx Virtex-4 FX12 363 / Miniboard / Clock Pin“ · FPGA, VHDL & Co. ·
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PDF
app105.pdf
). 3 of 20 APPLICATION NOTE 105 8. Calculate high–resolution temperature using the high resolution temperature equation given in the previous section. ½ LSB = 0.25. DS1621, DS1624, and DS1820: The procedure to
in „DS18S20 hohe Auflösung berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1796.pdf
44.1 kHz 7 9 DD S = 96 kHz 13 mA f = 192 kHz 25 Supply current) S S = 44.1 kHz 18 23 CC S = 96 kHz 19 mA f = 192 kHz 20 S S = 44.1 kHz 115 150 (1) Power dissipation S = 96 kHz 140 mW S = 192 kHz 180 TEMPERATURE RANGE
in „Audio Signal verdoppeln“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
serieltest1.c
messwerte[14] = 140; messwerte[15] = 150; messwerte[16] = 160; //messwerte[17] = 170; //messwerte[18] = 180; //messwerte[19] = 190; //messwerte[20] = 200; timer = 65; //muss größer als 60 sein damit die ungleich Startbedinung erfüllt wird for(;;) //uart_puts("h"); { if (command[0] == 250){ int i; for
in „UART Schleife MC stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serieltest1.c
messwerte[14] = 140; messwerte[15] = 150; messwerte[16] = 160; //messwerte[17] = 170; //messwerte[18] = 180; //messwerte[19] = 190; //messwerte[20] = 200; timer = 65; //muss größer als 60 sein damit die ungleich Startbedinung erfüllt wird for(;;) { if (Daten_Vorhanden){ int i; for(i = 0; i < 10 ; i+
in „UART Schleife MC stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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ddm_hopt_schuler_862.pdf
decoder below Read clockk 2 (75 bpi) 17 GND locking 18 S3 Status locking Low = aktiv (locking) 19 Locking voltage Locking +4 bis +5 VDC 20 DS Magnetic read enable 21 nc Not connected 22 CLS Track 1+2+3 23 RDP See decoder below Read data track 1 (210 bpi)
in „[V] Kartenleser / Cardreader / Hybridkartenleser 862 und 866 von ddm hopt+schuler“ · Markt ·
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PDF
ACS_750ECA-100__644500_e.pdf
m ( ( 7 i –40 C I i –20 C 6.8 n10 6.6 S 25 C 85 C 6.4 5 6.2 6 0 -50 -25 0 25 50 75 100 125 150 -100 -75 -50 -25 25 50 75 100 Temperature (°C) Primary Current (A) V out vs Primary Current Symmetry Vcc = 5 V Vcc = 5 V 100.5 4.5 100.4 4 100.3 3.5 ) Ip = 100 A %00.2 3 y00.1 V t t2.5 e 100 o m V –40 C y99.9 2 –20 C S 99.8 1.5 25 C 99.7 85 C 1 99.6 0.5 99.5 -100 -75 -50 -25 0 25 50 75 100 -50 -25 0 25 50 75 100 Primary Current (A) Temperature (ºC) Non-Linearity Non-Linearity Vcc = 5 V Vcc = 5 V 5 5 4.5 4.5 4 )
in „Drehstromzähler“ · Projekte & Code ·
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ACS_750ECA-100__644500_e.pdf
m ( ( 7 i –40 C I i –20 C 6.8 n10 6.6 S 25 C 85 C 6.4 5 6.2 6 0 -50 -25 0 25 50 75 100 125 150 -100 -75 -50 -25 25 50 75 100 Temperature (°C) Primary Current (A) V out vs Primary Current Symmetry Vcc = 5 V Vcc = 5 V 100.5 4.5 100.4 4 100.3 3.5 ) Ip = 100 A %00.2 3 y00.1 V t t2.5 e 100 o m V –40 C y99.9 2 –20 C S 99.8 1.5 25 C 99.7 85 C 1 99.6 0.5 99.5 -100 -75 -50 -25 0 25 50 75 100 -50 -25 0 25 50 75 100 Primary Current (A) Temperature (ºC) Non-Linearity Non-Linearity Vcc = 5 V Vcc = 5 V 5 5 4.5 4.5 4 )
in „Op - Messbereich - Strom - ACS 750LCA-050“ · Mikrocontroller und Digitale Elektronik ·