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PDF
BTS7810K_11-03-2003.pdf
Heat-Slug 3 IL2 13 16 DL2 SL2 14 NC 15 Figure 1 Data Sheet 2 2003-03-11 BTS 7810 K 1.4 Pin Definitions and Functions Pin No. Symbol Function 1 NC Not connected 2 SL1 Source of low-side switch 1 3 IL1 Analog input of low-side
in „Ansteuerung eines Magnetventils --> Frage zu Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irf4905.pdf
Max. Unit V (BR)DSS Drain-source ID= 250 µA, GS = 0 100 V Breakdown Voltage IDSS Zero Gate Voltage V DS= Max Rating 1 µA Drain Current GS = 0) V DS= Max Rating TC= 125°C 10 µA Gate-body Leakage V = ± 20V ±100 nA IGSS GS Current (DS = 0) ON (1) Symbol Parameter Test Conditions Min. Typ. Max. Unit V GS(th
in „Schaltungsfrage zu OpAmp und Stromsenke“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Tabelle mit Oszilloskop-Produktspezifikationen
per page Search table Product Name Image Channels Bandwidth Sample Rate Memory Waveform Stock Price DS9202 2 2 GHz 10 GSa/s 10 Mpts 1000000 wfms/s On Backorder £6,086.00 DS9204 4 2.5 GHz 20 GSa/s 500 Mpts 1000000 wfms/s On Backorder £8,347.00 DS9404 4 4 GHz 20 GSa/s 500 Mpts 1000000 wfms/s On Backorder £10,695.00 DS9604 4 6 GHz 20 GSa/s 500 Mpts 1000000 wfms/s On Backorder £13,043.00 MSO9402 4 + 16 Digital 4 GHz 20 GSa/s 500 Mpts 1000000 wfms/s On Backorder £8,347.00 Showing 1 to 5 of 5 entries
in „AI-VNA, 6GHz-Oszilloskop von Rigol, NEC-Frontend uvam“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
DC-DC-Wandler-Berechnungen.pdf
3. Boost Converter Components Voltage Divider for Output Voltage Setting See http://www.mouser.com/ds/2/761/down-766913.pdf (http://www.mouser.com/ds/2/761/down- 766913.pdf) In [20]: V_out = 12 R2 = 50 * 10**3 # 50k for v in [12, 9, 6]: R1 = R2*(v/1.25 -1) print 'R1 for %i V_out: %.2f kOhm' % (v, R1/
in „DC/DC-Wandler mit Filtern am Ein- und Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Programmierkurs.pdf
haben eine Vorlage Datenspeicher (Unsere Klasse Datenspeicher) und generieren ein neues Objekt namens „ds“. Nach dieser Zeile gibt es also eine Variable bzw. ein Feld namens ds, das sämtliche Felder (zahl) und Methoden (SetZahl, GetZahl, ...) der Vorlage Datenspeicher kennt. 'ds' ist also dann ein konkretes
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PDF
PA100D.pdf
4 5 6 C C V V Q4 BC856ASMD 32,768 kHz Q3 3k3 C12 LED1_RT A 1 2 8 R9 A 7 100n 150 1 2 C R 4 X X V R13 6 DS1307 7 GND SCL SCL D SQW/OUT SQW/OUT BC856ASMD 5 G 3 SDA SDA VBAT 2 3k3 IC4 DS1307Z+ + 0 LED1_GN 4 1 R R10 G C 150 - R14 JP7 C13 Q6 1 BC856ASMD 2 GND 100n 3k3 3 B 4k7 LED2_RT 4 B R11 5 IC9 R7 GND
in „Schutzbeschaltung Analog-Eingänge / Durchsicht Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Capacitive_Touch_Sensor_Design_Guide_AN2934.pdf
mm Electrode Separation (S) 0.25 mm 0.5 mm 1 mm © 2020 Microchip Technology Inc. Application Note DS00002934B-page 13 AN2934 Self-Capacitance Sensors The sensor is characterized by its pitch and separation: • Horizontal and vertical sensor pitch is the distance between column and electrode centers,
in „Wie realisiert man Sensortasten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPCA8048-H_Toshiba.pdf
2.5 2.6 VGS = 2.4 V V GS = 2.5 V 0 0 0 0.2 0.4 0.6 0.8 1 0 0.4 0.8 1.2 1.6 2 Drain-source voltage V DS (V) Drain-source voltage V DS (V) ID – V GS V DS – VGS 80 0.5 Common source Common source V = 10 V ) Ta = 25°C DS ( Pulse test Pulse test 0.4 A 60 S ( D V I e 0.3 t g n 40 l r v c e 0.2 n r ID= 35 A
in „WER KENNT DIESES 10S BMS von 36V Lion Akku vom Hersteller GW.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1307.pdf
32.768kHz Crystal Connection V - +3V Battery Input BAT GND - Ground ORDERING INFORMATION SDA - Serial Data DS1307 8-Pin DIP (300-mil) SCL - Serial Clock DS1307Z 8-Pin SOIC (150-mil) SQW/OUT - Square Wave/Output Driver DS1307N 8-Pin DIP (Industrial) DS1307ZN 8-Pin SOIC (Industrial) DESCRIPTION The DS1307 Serial
in „Real-Time Clock (ds1307)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cy3210_7_miniprog1.pdf
R13 42 P30 G G P20 34 Spare1 U_SDATAx 19 P1[0] P3[0] 25 Spare1 V3.3 470 TGT_VCC V3.3 2 18 VSS 3 3 CY8C27643 R14 VBUS R15 1.8K PTC1 2.7K R16 200mA VBUS XRES 1.1K V3.3 U_SDATA Q1 U_SCLK FMMT597 R17 3 2 1 JP1
in „PSOC Programmer Eigenbau Free“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds89_controll.pdf
9 B 9 C1 - 10k C16 +5V 10 S 5 11 14 1 2 U6 100n D 10 T1 IN T1 OUT 7 1 14 GND 10PIN 12 T2 IN T2 OUT 13 2 1OE Vcc 3 +5V +5V 9 R1 OUT R1 IN 4 1A 1Y 6 B R2 OUT 8 5 2OE 2Y 8 K13 B 4 R2 IN 9 2A 3Y 11 4 P2.0 1 GND C2+ C22 10 3A 4Y 12 P2.1 2 C20 10u/25V C15 7 3OE 4A 13 P2.2 3 10u/25V 100n GND 4OE c GND 15 U8
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Bild
Schaltplan eines Dual Slim FDD Adapters
Dual Slim FDD Adapter v1.1 (C) RBSC 2022 CN3 1 +5V 2 INDEX 3 DCHG 4 DS1 5 +5V 6 NC1 7 INDEX 8 READY 9 DS0 10 MOTON 11 DS1 12 DIR 13 DS2 14 STEP 15 MOTON 16 UD 17 DIR 18 UGATE 18 STEP 19 STEP 20 STEP 20 WD 21 UGATE 21 PIN20 22 WD 22 APBOT 23 WD 23 PIN21 24 WGATE 24 PIN22
in „Pinbelegung 3,5" Floppy mit FPC26“ · PC Hard- und Software · · Schaltpläne
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PDF
e1529_k8v.pdf
.................... 1-10 1.7.3 InstallingaDIMM................................................. 1-13 1.8 Expansionslots ................................................................ 1-13 1.8.1 Standardinterrupt assignments........................... 1-13 1.8.2 IRQassignmentsfor thismotherboard...
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PDF
at91rm9200-ek.pdf
COLLED/OP0 12 OP1 DISPLAY SPEED STATUS 270R R234 DGND SPEEDLED/OP1 GREEN = 100 Mb R9 0R LINK/ACTLED/OP2 13 DS3 DNP R211 NOT INSTALLED 10 PWRDWN CABLESTS/LINKSTS 14 OP2 NRST 40 RESET SD 45 ACT LED 270R R232 GREEN B 3V3 DS5 DNP R208 NOT INSTALLED B R3 DNP DNP DNP 47K R242 10K 3V3 L202 VCCA C230 VCCA VCCA 742792093
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2117592.pdf
Description WLAN Standards IEEE 802.11b IEEE 802.11g Frequency Band 2.412 – 2.472 GHz (2.4GHz ISM Band, 13 Channels) Channel 1 - Channel 13 North America FCC, Japan Telec, Europe ETSI **FCC only for 2.412-2.462 GHz; Channel 1 – Channel 11 Modulation 802.11b mode (DS-SS: IEEE 802.11b) 802.11g mode (OFDM: IEEE
in „CX870-31B Jukeblox SMCS Microchip Firmware Update“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSN10.pdf
drain-source leakage current VDS = 40 V; GS = 0 − − 1 A ±GSS gate-source leakage current ±VGS = 20 V; DS = 0 − − 100 nA VGS(th) gate-source threshold voltage D = 1 mA; VGS = VDS 0.4 − 1.8 V R drain-source on-resistance I = 100 mA; V = 10 V − 8 15 DS(on) D GS D = 100 mA; VGS = 5 V − 12 20 D = 10 mA; VGS
in „Pegelwandler lässt TWI erfrieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F5438IPZ.pdf
Logic To ADC12 INCHx = y P7REN.x DV SS 0 DVCC 1 1 P7DIR.x 0 1 P7OUT.x 0 Module X OUT 1 P7.4/A12 P7DS.x P7SEL.x 0: Low drive P7.5/A13 1: High drive P7.6/A14 P7.7/A15 P7IN.x EN Bus Keeper Module X IN D Table 52. Port P7 (P7.4 to P7.7) Pin Functions CONTROL BITS/SIGNALS (1) PIN NAME (P7.x) x FUNCTION P7DIR.x P7SEL.x INCHx P7.4/A12 4 P7.4 (I/O) I: 0; O: 1 0 X A12(2) (3) X X 12 P7.5/A13 5 P7.5 (I/O) I: 0; O: 1 0 X (4) (5) A13 X X 13 P7.6/A14 6 P7.6 (I/O) I: 0; O: 1 0 X A14(4) (5) X X 14 P7.7/A15 7 P7.7 (I/O) I: 0; O: 1 0 X A15(4) (5) X X 15 (1) X = Don't care (2) Setting the P7SEL.x
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IPP120P04.pdf
IPB120P04P4L-03 IPI120P04P4L-03, IPP120P04P4L-03 ® OptiMOS -P2 Power-Transistor Product Summary V -40 V DS R DS(on)SMD Version) 3.1 mW ID -120 A Features • P-channel - Logic Level - Enhancement mode • AEC qualified PG-TO263-3-2 PG-TO262-3-1 PG-TO220-3-1 • MSL1 up to 260°C peak reflow • 175°C operating temperature
in „Highside, FET wird heiß“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nrf24l01.c
rf_status_reg); if (!to--) { CE_LOW; RF_PowerUpRx(); return RF_TIMEOUT; } } while ((rf_status_reg.tx_ds == false) && (rf_status_reg.max_rt == false)); CE_LOW; /* Modul ist jetzt im Standby-II Mode, zurückschalten in RX Mode */ RF_PowerUpRx(); /* Keine Antwort? */ if (!rf_status_reg.tx_ds) return RF_NO_ACK
in „NRF24L01+ auf STM32F103: Ich weiss nicht mehr weiter :-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
APM2601.pdf
Symbol Parameter Test Condition Unit Min. Typ. Max. Static Drain-Source Breakdown BV DSS V GSV , I DS250µA -20 V Voltage Zero Gate Voltage Drain DSS Current V DS-16V , VGS0V -1 µA VGS(th) Gate Threshold Voltage V DSV GS ,DS =-250µA -0.45 -1.2 V I Gate Leakage Current V =±8V , V =0V ±100 nA GSS GS DS Drain-Source On-state V GS4.5V , IDS-3A 80 100 RDS(ON) mΩ Resistance V GS-2.5V , DS=-2A 110 135 V SD Diode Forward Voltage ISD-1.25A , VGS0V -0.7 -1.3 V b Dynamic Q Total Gate Charge V =-10V , I =-1A g DS DS 6.4 8 Qgs Gate-Source Charge V GS=-4.5V 1 nC Qgd Gate-Drain Charge 1.8 t Turn-on
in „SMD-Bauteilbestimmung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STP3NB90FP.pdf
th) Gate Threshold V DS= VGS D = 250 A 3 4 5 V Voltage R DS(on) Static Drain-source On V GS= 10V ID= 1.7 A 4 4.2 Resistance ID(on) On State Drain Current V DS> ID(on) R DS(on)max 3.5 A V GS= 10 V DYNAMIC Symbol Parameter Test Conditions Min. Typ. Max. Unit gfs(∗) Forward V DS> ID(on) R DS(on)max D = 1.7 A 1.6 S Transconductance Ciss Input Capacitance V DS= 25 V f = 1 MHz VGS = 0 700 pF Coss Output Capacitance 90 pF C Reverse Transfer 7 pF rss Capacitance 2/6 STP3NB90/FP ELECTRICAL
in „unbek. TO220 Bauteil in einem Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM61.pdf
Thermal Resistance Thermal Time Constant Thermal Response in Junction to Air Still Air with Heat Sink DS012897-3 DS012897-4 DS012897-5 Thermal Response Thermal Response in Still in Stirred Oil Bath Quiescent Current with Heat Sink Air without a Heat Sink vs. Temperature DS012897-6 DS012897-8 DS012897-9
in „R8C/13 Software-Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FQPF9N25C-1120274.pdf
Current and Gate Voltage Variation with Source Current and Temperature 2000 12 CissgsC gd dshorted) C =C ds gd V =50V rss gd 10 DS V V =125V 1500 [ DS ] g VDS200V F l 8 [ o c Ciss e a1000 r 6 c Coss o a - a t 4 C 500 Crss a , ※ Notes: G 2 1.GS=0V V 2.f =1MHz ※ Note:DI =8.8A 0 0 10-1 100 101 0 5 10 15 20 25
in „Mosfet defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Therm.txt
1 ...poke to PSW to use DSEG ; This is internal data memory ORG 20H ; Bit adressable memory SENP: DS 1 SENP1 BIT SENP.0 MINUS BIT SENP.1 MIN1 BIT SENP.2 COUNT: DS 1 SPEED: DS 1 VALUE_1: DS 1 VALUE_2: DS 1 VALUE_3: DS 1 TEMP1: DS 1 TEMP1D: DS 1 RAM: DS 9 TEP1: DS 1 TEP2: DS 1 STACK: DS 1 ; Stack begins
in „Programm(A51) DS1820 auf DS18b20 Umstellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Therm.txt
1 ...poke to PSW to use DSEG ; This is internal data memory ORG 20H ; Bit adressable memory SENP: DS 1 SENP1 BIT SENP.0 MINUS BIT SENP.1 MIN1 BIT SENP.2 COUNT: DS 1 SPEED: DS 1 VALUE_1: DS 1 VALUE_2: DS 1 VALUE_3: DS 1 TEMP1: DS 1 TEMP1D: DS 1 RAM: DS 9 TEP1: DS 1 TEP2: DS 1 STACK: DS 1 ; Stack begins
in „Programm(A51) DS1820 auf DS18b20 Umstellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
plotclock.c
right servos // - added code to support DS1307, DS1337 and DS3231 real time clock chips // - see http://www.pjrc.com/teensy/td_libs_DS1307RTC.html for how to hook up the real time clock // delete or mark the next line as comment if you don't
in „Plotclock zusammenbauen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
smsdev.ASM
; 091779501 Guy Kirsch Tel_Num_1E: Tel_Msg_1: DB Tel_Msg_1E-Tel_Msg_1B Tel_Msg_1B: DB "SMS Alarm!",13,"Status:",13 DB "S1-1",13,"S2-1",13,"S3-1",13,"S4-1",13 DB "S5-1",13,"S6-1",13,"S7-1",13,"S8-1",13 Tel_Msg_1E: Stxt_AT: DB "AT",13,0 STxt_ATE0: DB "ATE0",13,0 STxt_AT_CGMI: DB "AT+CGMI",13,0 STxt_AT_CGMM: DB "AT+CGMM",13,0 STxt_AT_COPS?: DB "AT+COPS?",13,0 STxt_AT_CPIN?: DB "AT+CPIN?",13,0 ;STxt_AT_CPIN: DB "AT+CPIN=8429",13,0 ; Pin Edward Cardew STxt_AT_CPIN: DB "AT+CPIN=3366",13,0 ; Pin Guy Kirsch STxt_AT_CMGS: DB
in „Simens S 35; AT-Befehle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq24725.pdf
Deglitch for watchdog reset signal 10 ms Watchdog timeout period, ChargeOption() 35 44 53 s bit [14:13] = 013) t Watchdog timeout period, ChargeOption() 70 88 105 s WDI bit [14:13] = 10) Watchdog timeout period, ChargeOption() 140 175 210 s bit [14:13] = 11)(Default) (2) Devices participating in a transfer
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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Datei
bios.asm
buff: equ $0080 ;default buffer address retry: equ 3 ;max retries on disk i/o before error cr: equ 13 lf: equ 10 org bios nsects: equ ($-ccp)/128 ;warm start sector count jp boot wboote: jp wboot jp const jp conin jp conout jp list jp punch jp reader jp home jp seldsk jp settrk jp setsec jp setdma jp
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
93c66.asm
********************************************************* #include equates.inc ORG $0800 ;RAM adr: DS $01 byte2: DS $01 byte3: DS $01 ORG $0D00 ;EEPROM HC912B32 MAIN: lds #$C00 CLR COPCTL BSR INIT ;Subroutine to initialize SPI+SCI registers ldx #Hello ;Text an RS232 JSR outstr jsr delay ldaa #0 staa
in „Motorola HC12 und Eeprom 93C66“ · Mikrocontroller und Digitale Elektronik ·
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Datei
I2CBus2.txt
/* * IZweiBus.c * * Created: 13.01.2012 11:30:23 * Author: */ #define F_CPU 8000000 // CPU-Geschwindigkeit #define DS1621 0x90 // Adresse Temperaturbaustein DS1621 #define DS1338 0xD0 // Adresse Realtime-Clock DS1338 #include <avr/
in „Tasterabfrage (3 Taster sollen 3 unterschiedliche Funktionen auslösen)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2003161835_ZILLTEK-ZTP7192MS_C481285.pdf
. For simplification, the output voltage ripple DS-11 - 6 - 4F-3, No.5, Technology Rd., Science-Based Industrial Park, Hsinchu 30078, Taiwan Copyright © ZillTek Technology Corp. Tel: (886) 3577 7509; Fax: (886) 3577 7390 Email: sales@zilltek.com ZTP7192MS
in „Ruhe-Stromaufnahme MP2315 Ali-Board zu hoch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HRP_200_XX.pdf
HRP-200-36 HRP-200-48 DC VOLTAGE 3.3V 5V 7.5V 12V 15V 24V 36V 48V RATED CURRENT 40A 35A 26.7A 16.7A 13.4A 8.4A 5.7A 4.3A CURRENT RANGE 0 ~ 40A 0 ~ 35A 0 ~ 26.7A 0 ~ 16.7A 0 ~ 13.4A 0 ~ 8.4A 0 ~ 5.7A 0 ~ 4.3A RATED POWER 132W 175W 200.3W 200.4W 201W 201.6W 205.2W 206.4W RIPPLE& NOISE (max.) Note.20mVp-p
in „Auslegung Positionierung Schrittmotor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STD60N55F3.pdf
= 10V, I = 32A DS(on) resistance GS D 6.5 8.5 mΩ Table 4. Dynamic Symbol Parameter Test conditions Min Typ. Max. Unit (1) Forward transconductance V =25V, I =32A 50 S gfs DS D Ciss Input capacitance 2200 pF C Output capacitance V = 25V, f = 1MHz, V=0 500 pF oss DS GS Crss Reverse transfer capacitance 25 pF Q g Total gate charge VDD= 27V, D = 65A 33.5 45 nC Q gs Gate-source charge VGS=10V 12.5 nC Q Gate-drain charge 9.5 nC gd (see Figure 15) 1. Pulsed: pulse duration
in „Frage zu MOSFET STF60N55F3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
176141-da-01-en-DS_1621_1621S.pdf
a START condition. TX RX <address,0> Bus Master sends DS1621 address; R/W = 0. RX TX ACK DS1621 generates acknowledge bit. TX RX ACh Bus Master sends Access Config command protocol. RX TX ACK DS1621 generates acknowledge bit. TX RX 02h Bus Master sets up DS1621
in „Temperatursensor DS1621 über I²C ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1775R.pdf
Piece Tape-and-Reel DS1775R2+U 010 7752 (See note) DS1775R2 in Lead-Free 5-Pin SOT-23 DS1775R2/T&R 010 7752 DS1775R2 in 5-Pin SOT-23, 3000 Piece Tape-and-Reel DS1775R2-U 010 7752 DS1775R2 in Lead-Free 5-Pin SOT-23 DS1775R3
in „AkkuPack mit 12 Volt 2100mAh wie laden ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY3272_Schematic.pdf
www.cypress.com File: 1-Top.SchDoc * 1 2 3 4 5 6 1 2 3 4 5 6 A A VDD R5 402 C1 C2 VDD VDD 0.1uF 1.0nF C7 C8 DS5 22pF 22pF BLUE GND GND PWR R2 P2 2 U1 2.10k C3 2 28 20 0.01uF VDD 1 Y2 GND VCC RXCOMP+ 21 Y1 MOUNTING HOLES B 32.768kHz RXCOMP- 4 B 1 15 XTAL_OUT RSVD 25 3 VCC 1 C4 13 XTAL_IN RSVD 24 GND OUT EN 2 0.01uF
in „Power Line bzw. Power LAN im Selbstbau“ · Haus & Smart Home ·
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PDF
Micrel.pdf
: MIC2915x Ground Current FIGURE 2-12: MIC2915x Ground Current vs. Input Voltage. vs. Temperature. DS20005685B-page 10 2016-2019 Microchip Technology Inc. MIC2915X/30X/50X/75X FIGURE 2-13: MIC29151-xx/2 Enable FIGURE 2-16: MIC29152/3 Adjust Pin Current vs. Temperature. Current vs. Temperature. FIGURE
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Datei
X2L-OSTB-PC1-MW-Infos.txt
Default string *-firmware description: BIOS vendor: American Megatrends Inc. physical id: 0 version: 5.13 date: 11/17/2023 size: 64KiB capacity: 4928KiB capabilities: pci upgrade shadowing cdboot bootselect socketedrom edd int13floppy1200 int13floppy720 int13floppy2880 int5printscreen int9keyboard int14serial
in „Preiswerter X86-Einplatinenrechner, STM-Softwareupdates und anderes mehr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2937.pdf
Transient Response Ripple Rejection DS011280-13 DS011280-14 DS011280-15 Output Impedance Maximum Power Maximum Power Dissipation Dissipation (TO-220) (TO-263) (Note 2) DS011280-16 DS011280-17 DS011280-18 5 www.national.com 7 3 9 Typical Performance Characteristics (Continued) 2 M L Low Voltage Behavior Low Voltage Behavior Low Voltage Behavior DS011280-19 DS011280-20 DS011280-21 Output at Voltage Output at Voltage Extremes Output Capacitor ESR Extremes DS011280-24 DS011280-22 DS011280-23 Peak Output Current DS011280-25 Typical Application DS011280
in „Minimale Hardware zum Auto CAN-Bus abhören“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOSFET_TK6A60W_Toshiba_LIN.pdf
specified) Characteristics Symbol Test Condition Min Typ. Max Unit Gate leakage current IGSS V GS= ±30 V, DS = 0 V ±1 µA Drain cut-off current IDSS V DS= 600 V, GS = 0 V 10 Drain-source breakdown voltage V I = 10 mA, V = 0 V 600 V (BR)DSS D GS Gate threshold voltage Vth V DS= 10 V,DI = 0.31 mA 2.7
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOSFET_TK6A60W_Toshiba_LIN.pdf
specified) Characteristics Symbol Test Condition Min Typ. Max Unit Gate leakage current IGSS V GS= ±30 V, DS = 0 V ±1 µA Drain cut-off current IDSS V DS= 600 V, GS = 0 V 10 Drain-source breakdown voltage V I = 10 mA, V = 0 V 600 V (BR)DSS D GS Gate threshold voltage Vth V DS= 10 V,DI = 0.31 mA 2.7
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tk18a60v_en_datasheet_110131.pdf
V, f = 1 MHz 1600 pF iss DS GS Reverse transfer capacitance Crss 5 Output capacitance Coss 40 Effective output capacitance C o(er) VDS = 0 to 400 VGSV= 0 V 64 Gate resistance r V = OPEN, f = 1 MHz 10 Ω g DS Switching
in „Mosfet defekt - kann der Ersatztyp verwendet werden?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PSU.pdf
/RXD)PD0 30 StatusLEDMCU DS18B20 l S N i 2 D DAC_Spannung d R d d R R R 31 S H r 6 O e C-3 NPN S Resistors_SMD:R_0805_HandSolderinr S D i (PCINT17/TXD)PD1 a S e 7 C R O r a a l Spannung_st n S d 32 r _ U a T B gi _ _ d Housings_SOIC
in „Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dokserv.pdf
Delay-Line dargestellt. dUDS,1/31t in V/s 1 2 t in s Legende: 1: d UDS,0dt 2: dUDS,31dt Abb. D-5: dU DS/dt, normale Pulsbreite am Eingang der DL, U DS,31urde gegenüber Abb. D-3 zeitlich verschoben, um die gleichzeitige Darstellung von d DS,0dt und dUDS,31dt zu ermöglichen Die dargestellten Ableitungen
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Datei
Clockplot_ino.ino
right servos // - added code to support DS1307, DS1337 and DS3231 real time clock chips // - see http://www.pjrc.com/teensy/td_libs_DS1307RTC.html for how to hook up the real time clock // delete or mark the next line as comment if you don't
in „Plotclock zusammenbauen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
plotclock.c
right servos // - added code to support DS1307, DS1337 and DS3231 real time clock chips // - see http://www.pjrc.com/teensy/td_libs_DS1307RTC.html for how to hook up the real time clock // delete or mark the next line as comment if you don't
in „Plotclock zusammenbauen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP2104-EK.pdf
interface J1 UART signal access connector J2, J3 GPIO access connector J4 Power connector DS0–DS3 Green GPIO LEDs DS4 Red SUSPEND indicator LED _________ SUSPEND LED J2 DS4 DS3 DS2 P1 P2 RS232 Transceiver CP2104 Pin 1 J3 DS1 Pin 2 J1 J4 DS0 Figure 3. CP2104 Evaluation Board with Default Shorting
in „[V] kleines Eval Kit Silabs CP2104-EK ( USB- RS232)“ · Markt ·
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038-05058-01-X-MLCC_REVB03_SKIT.pdf
[13] C8 C8 D8 D8 HPA01_N [13] A9 A9 HPA12_P [13] B9 B9 C9 C9 HPA08_P [13] D9 D9 A10 HPA12_N [13] B10 HPA11_P [13] C10 HPA08_N [13] D10 HPA09_P [13] A10 A11 B10 B11 HPA11_N [13] C10 C11 D10 D11 HPA09_N [13] A11 A12 HPA13_P_NC B11 B12 C11 C12 D11 D12 A12 A13 HPA13_N_NC B12 B13 PL_3V3 C12 C13 HPA10_CC_P [13] D12 D13 HPA14_P_NC A13 A14 B13 B14 C13 C14 HPA10_CC_N [13] D13 D14 A14 A15 B14 B15 C14 C15 D14 D15 HPA14_N_NC A15
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302911.pdf
V CCCurrent CC Note 2 - 27 32 mA Note 1 V DD= 2.8V, V CC= 13V, Software initial setting follow chapter 5.4, 50% Display area turned on. Note 2 V DD= 2.8V, V CC= 13V, Software initial setting follow chapter 5.4, 100% Display area turned on Note 3 Brightness (Lbr
in „oled spannungsversorgung“ · Mikrocontroller und Digitale Elektronik ·