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nFET_ZXM61N02FTA.pdf
Leakage IGSS 100 nA VGS=± 12V, VDS=0V Gate-Source Threshold Voltage V 0.7 V I =250 A, V = V GS(th) D DS GS Static Drain-Source On-State Resistance R 0.18 V =4.5V, I =0.93A DS(on) GS D (1) 0.24 VGS=2.7V, ID=0.47A Forward Transconductance (3) g fs 1.3 S VDS=10V,ID=0.47A DYNAMIC (3) Input Capacitance C iss
in „3.3V MOSFET ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nFET_ZXM61N02FTA-1.pdf
Leakage IGSS 100 nA VGS=± 12V, VDS=0V Gate-Source Threshold Voltage V 0.7 V I =250 A, V = V GS(th) D DS GS Static Drain-Source On-State Resistance R 0.18 V =4.5V, I =0.93A DS(on) GS D (1) 0.24 VGS=2.7V, ID=0.47A Forward Transconductance (3) g fs 1.3 S VDS=10V,ID=0.47A DYNAMIC (3) Input Capacitance C iss
in „ATtiny13A: ESP8266 ein- und ausschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nFET_ZXM61N02FTA.pdf
Leakage IGSS 100 nA VGS=± 12V, VDS=0V Gate-Source Threshold Voltage V 0.7 V I =250 A, V = V GS(th) D DS GS Static Drain-Source On-State Resistance R 0.18 V =4.5V, I =0.93A DS(on) GS D (1) 0.24 VGS=2.7V, ID=0.47A Forward Transconductance (3) g fs 1.3 S VDS=10V,ID=0.47A DYNAMIC (3) Input Capacitance C iss
in „richtiger n-Kanal MOSFET, 3,3V soll 5V und 100mA schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nFET_ZXM61N02FTA.pdf
Leakage IGSS 100 nA VGS=± 12V, VDS=0V Gate-Source Threshold Voltage V 0.7 V I =250 A, V = V GS(th) D DS GS Static Drain-Source On-State Resistance R 0.18 V =4.5V, I =0.93A DS(on) GS D (1) 0.24 VGS=2.7V, ID=0.47A Forward Transconductance (3) g fs 1.3 S VDS=10V,ID=0.47A DYNAMIC (3) Input Capacitance C iss
in „RaspiPi mit 3,3V einen 5V Kreis wie schalten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NUVOTON_M058_M0516.pdf
∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙22 7.3.1 External 4~24 MHz High Speed Crystal∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙22 7.3.2 External 4~24 MHz High Speed Oscillator∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙22 7.3.3 Typical Crystal Application Circuits ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙23 7.3.4 Internal 22.1184 MHz High Speed Oscillator∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙
in „ARM Cortex M0 NUVOTON M058ZBN auslesen / flashen“ · Mikrocontroller und Digitale Elektronik ·
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DS4E-M-DC1.5V-Panasonic.pdf
type 12 DS1E-M-DC12V DS2E-M-DC12V DS4E-M-DC12V 24 DS1E-M-DC24V DS2E-M-DC24V DS4E-M-DC24V 48 DS1E-M-DC48V DS2E-M-DC48V DS4E-M-DC48V 1.5 DS1E-S-DC1.5V DS2E-S-DC1.5V DS4E-S-DC1.5V 3 DS1E-S-DC3V DS2E-S-DC3V DS4E-S-DC3V 5 DS1E-S-DC5V DS2E-S-DC5V DS4E-S-DC5V S (200mW) 6 DS1E-S-DC6V DS2E-S-DC6V DS4E-S-DC6V type 9 DS1E-S-DC9V DS2E-S-DC9V DS4E-S-DC9V 12 DS1E-S-DC12V DS2E-S-DC12V DS4E-S-DC12V 24 DS1E-S-DC24V DS2E-S-DC24V DS4E-S-DC24V
in „"Merkwürdiges" Relais.“ · Analoge Elektronik und Schaltungstechnik ·
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DSxE.pdf
12 DS1E-M-DC12V DS2E-M-DC12V DS4E-M-DC12V 24 DS1E-M-DC24V DS2E-M-DC24V DS4E-M-DC24V 48 DS1E-M-DC48V DS2E-M-DC48V DS4E-M-DC48V 1.5 DS1E-S-DC1.5V DS2E-S-DC1.5V DS4E-S-DC1.5V 3 DS1E-S-DC3V DS2E-S-DC3V DS4E-S-DC3V S 5 DS1E-S-DC5V DS2E-S-DC5V DS4E-S-DC5V 6 DS1E-S-DC6V DS2E-S-DC6V DS4E-S-DC6V (200mW) 9 DS1E-S-DC9V DS2E-S-DC9V DS4E-S-DC9V type 12 DS1E-S-DC12V DS2E-S-DC12V DS4E-S-DC12V 24 DS1E-S-DC24V DS2E-S-DC24V DS4E-S-DC24V
in „Relais Polung“ · Mikrocontroller und Digitale Elektronik ·
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pic16f88.pdf
Unimplemented bit, read as ‘0’ -n = Value at POR ‘1’ = Bit is set ‘0’ = Bit is cleared x = Bit is unknown DS30487C-page 22 2005 Microchip Technology Inc. PIC16F87/88 2.2.2.7 PIR2 Register The PIR2 register contains the flag bit for the EEPROM write operation interrupt. . Note: Interrupt flag bits are set
in „auftrennen einer 2stelligen Dezimalzahl in asm (pic 16f88)“ · Mikrocontroller und Digitale Elektronik ·
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Bauteile.pdf
18 59 Bauteil Relais AZ8-1CH-12DEA Zettlert 67 60 Bauteil ROM DS2401 64BitROM 40 61 Bauteil SchottkyDiode USD 945 45V 16A 22 62 Bauteil SchottkyDiode UJD1210K2 10A 1200V Bedrahtet 4 63 Bauteil Shunt Widerstand R068 68mΩ 1% 82 64 Bauteil Spannungsregler LP2951ACM 42
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en.CD00002654.pdf
conditions Min. Typ. Max. Unit V Drain-source I = 1 mA, V = 0 100 V (BR)DSS Breakdown voltage D GS V DS= max rating 50 µA DSS Zero gate voltage V = max rating, Drain currentGSV= 0) T C=125°C 500 µA s ) GSS Gate-body leakage V GS= ± 20 V ±400 nA current DS = 0) u c VGS(th) Gate threshold voltage V DS= VGS, D = 250 µA 2 d3 4 V R Static drain-source on V = 10 V, I = 125 A r o 0.0045 0.0055 Ω DS(on) resistance GS D P te Table 6. Dynamic le o Symbol Parameter Tess conditions Min. Typ. Max. Unit gfs Forward transconductance VDS = 20 , D =70 A - 60 - S Ciss Input capacitance - O 31 nF ) Coss Output
in „STE250NS10 Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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1-SPP30N03L.pdf
BR)DSS 30 - - V V = 0 V, I = 0.25 mA, T = 25 °C GS D j Gate threshold voltage, V = V V 1.2 1.6 2 GS DS GS(th) ID= 50 µA Zero gate voltage drain current IDSS µA V = 30 V, V = 0 V, T = 25 °C DS GS j V DS = 30 V, GS = 0 V, j = 150 °C - - 100 Gate-source leakage current IGSS - 10 100 nA V = 20 V, V = 0 V
in „logic level MOSFET - falsche Gate threshold voltage?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Switch.pdf
-EMS22A50-B28-LS6 EMS22A50-B28-LS6 A B 7/8 5VDC 652-EMS22P50-D28-LT6 EMS22P50-D28-LT6 B D 7/8 5VDC 652-EMS22A50-C20-LS6 EMS22A50-C20-LS6 A C 7/8 5VDC 652-EMS22Q31-B28-LS3 EMS22Q31-B28-LS3 A B 7/8 3.3VDC 652
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMDB3.pdf
220 V C = 0.1 µF P 50 Hz Vo T410 R = 20 Ω DS2125 - Rev 3 page 3/11 DB3, DB4, SMDB3 Characteristics Figure 3. Rise time measurement p 90 % 10 % t r DS2125 - Rev 3 page 4/11 DB3, DB4, SMDB3 Characteristics (curves) 1.1 Characteristics curves Figure
in „Diac und Triac in einem Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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STEVAL-3DP001V1_Data.pdf
C V D D G C M c 1 2 3 4 56 7 8 9 0 e 1 n V n _ o D N c V 6 0 e V C 1 n _ o 4 F D l R 0 6 0 V 1TAD_DS n C 1 0TAD_DS O KLC_DS 3TAD_DS 2TAD_DS D D DC_DS _ _ T T R O O O T R R C 1 1 1 1 1 1 1 9 r 0 0 E t N C C EE E E E E c 5 6 N V V 23 D K 0 1 e R R O A AA M C A A n C A DD C D D o 6 5 4 D c 6 S 4 D R 1
in „3D-Drucker Board bzw CNC-Board mit STM32F401“ · Mechanik, Gehäuse, Werkzeug ·
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LT3757_Boost-Sepic-Flyback-Invert.pdf
3757f 27 LT3757 TYPICAL APPLICATIONS 3.3V Input, 5V/10A Output Boost Converter L1 0.5μH VIN 3.3V CIN 22μF VIN 6.3V 49.9k C s2 INTVCC VCC SHDN/UVLO 4.7μF D1 V 10V OUT 34k LT3757 X5R 5V 10A SYNC GATE M1 34k 1% FBX RT 22Ω C SENSE + OUT1 150μF SS VC GND 6.3V s4 41.2k 300kHz 0.004Ω 6.8k 1W COUT2 22μF 0.1μF
in „Datenblätter von Linear Technologies“ · Analoge Elektronik und Schaltungstechnik ·
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24LC256_32k_I2C-EEPROM.pdf
for 24FC256. 2004 Microchip Technology Inc. DS21203M-page 21 24AA256/24LC256/24FC256 NOTES: DS21203M-page 22 2004 Microchip Technology Inc. 24AA256/24LC256/24FC256 ON-LINE SUPPORT SYSTEMS INFORMATION AND Microchip provides on-line support on the
in „immer noch EEprom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest1808.pdf
- 39 DM PC04 GND 16 PA06 13 Shield_2 Shield_1 R2 23 VBUS PC03 34 TWCK_SCL PA23 17 6 5 33 TWD_SDA PA22 18 PA07 14 GND PC02 PA08 15 AVR-JTAG-10 C_Qn1 63 CAN1_TX PA21 19 GND 10 9 TDI C42 22pF PB01 PA20 20 SCK0 16 8 7 R22 1uF 32 PB31 PB00 62 CAN1_RX MISO0 17 nTRST NC k z MOSI0 18 nSRST 6 5 TMS 1 1 H PA23 22 PA23 VREF 4 3 TDO Y 6 21 PA22 5V 2 1 1 31 PA22 20 PA21 GND TCK PB30 PA21 T K O S D C_Qn2 PA20 19 PA20 S CON2 C D M T 22pF 16 CS_SCH1 R T T T C_Qn = 2*(CL-1,7pF) PA19 n 10k GND PA16 13 CS_RTC R29 12 CS_EEProm
in „Layout prüfen“ · Platinen ·
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oncilla_schaltplaene.pdf
100K / 2W 68R 2 3 2 1 C5208 C5210 C5211 R5215 D5203 D5204 100uF 250V 100uF 250V 1uF 250V 100K / 2W DS5201 1N5408 1N5408 LAMP NEON 1 R5203 R5204 1M5 1K C C V5202A EF80 7 R5208 10K 9 8 R5213 2 R5209 10R NB R5211 C5207 82K 0,22uF 1 C5209 + 100uF/400V P5201 3386P 10K B B R5212 39K 1 V5203 85A2 C5206 10nF
in „Unbekannter Geräteeinschub (Impulszähler)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
GND PD30 B SOT-23 SD_Card 9 74HC595 10k 1 BC856 D R20 Q1 P C 3 0 GND 1 P9 1 0 R19 2 N 10k 5V N R13 C DS1631 5V 10k C36 TWCK_SCL 1 8 100nF SDA VDD DS3234S# 25AA512 GND TWD_SDA 2 SCL A_0 7 CS_RTC 1 20 SCK0 CS_EEProm 1 8 P6 0 3 6 100nF1 0 1 CS SCLK CS Vcc 1 X T_OUT A_1 0 1 R 3 32_kHz DOUT 19 MISO0 MISO0 2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
- 39 DM PC04 GND 16 PA06 13 Shield_2 Shield_1 R2 23 VBUS PC03 34 TWCK_SCL PA23 17 6 5 33 TWD_SDA PA22 18 PA07 14 GND PC02 PA08 15 AVR-JTAG-10 C_Qn1 63 CAN1_TX PA21 19 GND 10 9 TDI 22pF PB01 PA20 20 SCK0 16 8 7 32 PB31 PB00 62 CAN1_RX MISO0 17 nTRST NC z MOSI0 18 nSRST 6 5 TMS 1 H PA23 22 PA23 VREF 4 3 TDO Y 6 21 PA22 5V 2 1 1 31 PA22 20 PA21 GND TCK PB30 PA21 T K O S D C_Qn2 PA20 19 PA20 S CON2 C D M T 22pF 16 CS_SCH1 R T T T C_Qn = 2*(CL-1,7pF) PA19 n 10k GND PA16 13 CS_RTC R29 12 CS_EEProm 30 PA09 11 PA08 GNDCORE
in „Layout prüfen“ · Platinen ·
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PDF
Littelfuse_Discrete_MOSFETs_N-Channel_Standard_IXT_1N450HV_Datasheet.PDF.pdf
Typ. Max. Easy to Mount J Space Savings V V = V , I = 250A 3.5 6.0 V High Power Density GS(th) DS GS D I V = 20V, V = 0V 100 nA GSS GS DS IDSS VDS = 3.6kV, VGS 0V 5 A Applications V DS= 4.5kV 25 μA V = 3.6kV T = 100C 15 μA DS J High Voltage Power Supplies R V = 10V, I = 50mA, Note 1 80 Capacitor Discharge Applications DS(on) GS D Pulse Circuits Laser and X-Ray Generation Systems © 2014 IXYS CORPORATION, All Rights Reserved DS100500D(04/14) IXTT1N450HV IXTH1N450HV Symbol Test Conditions Characteristic Values TO-268HV
in „SOA Diagramm richtig anwenden“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
attiny84_24ghz.ino
h> #include <RF24_config.h> #include <DallasTemperature.h> #include <OneWire.h> #define DHTTYPE DHT22 // DHT 22 (AM2302), AM2321 #define DHTPIN 2 // what digital pin we're connected to #define CE_PIN 8 // CE NRF24L01 #define CSN_PIN 7 // CSN NRF24L01 #define RF_CHANNEL 80 /* ACK Datensatz */ struct {
in „[STM32F4xx] NRF24L01+ Funkmodul Source Code“ · Projekte & Code ·
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Datei
arduino328.ino
h> #include <RF24_config.h> #include <DallasTemperature.h> #include <OneWire.h> #define DHTTYPE DHT22 // DHT 22 (AM2302), AM2321 #define DHTPIN 2 // what digital pin we're connected to #define CE_PIN 8 // CE NRF24L01 #define CSN_PIN 7 // CSN NRF24L01 #define RF_CHANNEL 75 /* ACK Datensatz */ struct {
in „Zeigt her eure Kunstwerke (2017-2019)“ · Projekte & Code ·
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Datei
ds1820.asm
; ; ds1820.asm ; ; dieses programm ist die software für eine temperaturanzeige mit mehreren temperatursensoren ; von dallas vom typ ds18(s)20 an einem avr-mikrocontroller vom typ at90s2313, wobei die ; ermittelten
in „mehere ds1820 an einem bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTD4963N-D.PDF
C ISS 1035 Output Capacitance COSS V = 0 V, f = 1.0 MHz, = 12 V 220 pF GS DS Reverse Transfer Capacitance CRSS 115 Total Gate Charge QG(TOT) 8.1 Threshold Gate Charge Q G(TH) 1.2 V = 4.5 V, V = 15 V, I = 30 A nC Gate−to−Source Charge Q GS GS DS D 3.5 Gate−to−Drain Charge Q GD 3.5 Total Gate Charge QG(TOT) V GS= 10 V, DS = 15 V,DI = 30 A 16.2 nC SWITCHING CHARACTERISTICS (Note 6) Turn−On Delay Time d(ON) 12 Rise Time r 20 VGS = 4.5 V,DS = 15 V, ns Turn−Off Delay Time td(OFF) ID = 15 A, G = 3.0 W 14 Fall Time f 3 5. Pulse
in „Vergleichsmosfet NTD 4963N“ · Analoge Elektronik und Schaltungstechnik ·
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emmc.pdf
R_RST_n 4.7 50 50 kΩ 2 CLK/CMD/DAT[7:0] impedance 45 55 50 Ω 3 Serial resistance on CLK SR_CLK 0 47 22 Ω Pull-down resistance: DS R_DS 10 100 – kΩ V CCQcapacitor C1 2.2 4.7 2.2 µF 4 C2 0.1 0.22 0.1 V CCcapacitor C3 2.2 4.7 2.2 µF 5 C4 0.1 0.22 0.1 V capacitor (C ) C5 1 4.7 1 µF 6 DDIM reg C6 0.1 0.1 0.1
in „Pin-Swap/Cross IC?“ · Mikrocontroller und Digitale Elektronik ·
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DS2431-A1.pdf
0 RC = 0 N RC = 1? DS2431-A1 Tx DS2431-A1 Tx BIT 0 FAMILY CODE MASTER Tx BIT 0 DS2431-A1 Tx BIT 0 Y (1 BYTE) MASTER Tx BIT 0 N N MASTER Tx Y BIT 0 MATCH? BIT 0 MATCH? RESET? Y Y N DS2431-A1 Tx DS2431-A1 Tx BIT 1 SERIAL NUMBER MASTER Tx BIT 1 DS2431-A1 Tx BIT 1 (6 BYTES) MASTER Tx BIT 1 BIT 1 MATCH? N N BIT 1 MATCH? Y Y DS2431-A1 Tx DS2431-A1 Tx BIT 63 CRC BYTE MASTER Tx BIT 63 DS2431-A1 Tx BIT 63 MASTER Tx BIT 63 BIT 63 MATCH? N N BIT 63 MATCH
in „Hardware Erkennung leicht gemacht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A4979-Datasheet.pdf
0.2(I [R +R ])+0.8(I ×2×R ) compared to the allowable power dissipation shown in figure 15. D(TOT)SS DS(on)H DS(on)L DS(on)L For critical applications, where the first order power estimate is • Non-synchronous slow decay mode close to the allowable dissipation, the power calculation should P D(TOT)NS =
in „Schrittmotor-Treiber-IC mit umfangreichen Programmiermöglichkeiten und Diagnose-Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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68332_test.pdf
BG/CS1 A19/CS6 6 1 A18 1 A18 TP[0..15] 143 BGACK/CS2 A20/CS7 7 A21/CS8 8 24 OE 24 OE TP0 34 TPUCH0 A22/CS9 9 29 WE C2 29 WE C TP1 33 TPUCH1 A23/CS10 10 22 CS 100n 22 CS C TP2 32 D D TP3 31 TPUCH2 3 CS3 32 N 32 N VCC VCC VCC TP4 30 TPUCH3 FC0/CS3 4 VCC G VCC G TP5 29 TPUCH4 FC1/CS4 5 TP6 TPUCH5 FC2/CS5
in „Motorola MC68332 und BD32“ · Mikrocontroller und Digitale Elektronik ·
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pcm1796.pdf
5 0.1 µF R 5 8200 pF C 150 Ω 15 C 17 0.1 µF 22 pF C 7 19 2 5 8 R3 R 8 R 10 7 22 pF IOUT − − 91 Ω 75 Ω 120 Ω 5 6 2 − 8 R 7 3 6 100 Ω + U 1 C3 C4 NE5534 22000 pF 27000 pF 3 + 4 U3 4 NE5534 R R R C 12 4 9 11 0.1 µF 91 Ω 75 Ω R 6 120 Ω C16 150 Ω 0.1
in „Audio Signal verdoppeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
20002019c.pdf
2006-2016 Microchip Technology Inc. DS20002019C-page 21 MCP1406/07 Note: For the most current package drawings, please see the Microchip Packaging Specification located at http://www.microchip.com/packaging DS20002019C-page 22 2006-2016 Microchip Technology Inc. MCP1406/07 2006-2016 Microchip Technology Inc. DS20002019C-page 23 MCP1406/07 NOTES: DS20002019C-page 24 2006-2016 Microchip Technology Inc. MCP1406/07 APPENDIX A: REVISION HISTORY Revision C (April 2016) The following is the list of modifications
in „Pulsschweisgerät mit Auto Batt Schaltungs Verbesserung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
FFT232b.asm
AH rjmp weiter2 ;AL=Max(AL,AH)=Max(1,2,3) make4p2: ld AH, Y+ cp AL, AH brlo tausche42 rjmp weitert22 tausche42: mov AL, AH weitert22: ;AL=Max(1,2) ld BL, Y+ ld BH, Y+ cp BL, BH brlo tausche52 rjmp weitert32 tausche52: mov BL, BH weitert32: ;BL=Max(3,4) cp AL, BL brlo tausche62 rjmp weiter2 ;AL=Max(AL,BL)=Max(1,2,3,4) tausche62: mov AL, BL rjmp weiter2 ;AL=Max(AL,BL)=Max(1,2,3,4) ds_hl2: ldiw Y, LvlBuf2+5 ldi CL, 15 ;58 Werte werden zu 15 zusammengefasst: 1731-20021Hz senl2: ld AL, Y+ ;1-4 4 cpi CL, 2 ;17-31 2 brlo make8p2 cpi CL, 4 ;17-31 2 brlo make6p2 cpi CL, 6 ;23-22 2 brlo
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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schiebereg.pdf
shift register clock input ST 12 storage register clock input CP OE 13 output enable (active LOW) DS 14 serial data input VCC 16 positive supply voltage handbook, halfpage 11 12 handbook, halfpage Q1 1 16 VCC SHCP STCP Q ' 9 Q2 2 15 Q0 7 Q0 15 Q3 3 14 DS 1 Q1 Q4 4 13 OE Q 2 595 2 Q5 5 12 STCP 14 D Q3
in „wie steuer ich nen sn7447 mit avr an??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT595_CNV_3.pdf
shift register clock input ST 12 storage register clock input CP OE 13 output enable (active LOW) DS 14 serial data input VCC 16 positive supply voltage handbook, halfpage 11 12 handbook, halfpage Q1 1 16 VCC SHCP STCP Q ' 9 Q2 2 15 Q0 7 Q0 15 Q3 3 14 DS 1 Q1 Q4 4 13 OE Q 2 595 2 Q5 5 12 STCP 14 D Q3
in „LCD DEM20485 in gerade Zeile springen (c't-Bot)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
488161_1_.pdf
) Edelstahl 493902 verzinkt 490675 24 6.8. Citroën 4-Zylinder Einspritzer Best.-Nr. 486977 Citroën DS21IE und DS23IE Statische Einstellung undTabelle siehe 6.7 Zwei Ausgänge für Einspritzanlage, von Zylinder 1 synchronisiert: Gelbes Kabel Nr. ‚21‘ Weißes Kabel Nr. ‚22‘ Abmaße: 123\DV-R Abmaße: 123\Peugeot
in „Funktionsweise von analogen elektronischen Drehzahlmessern?“ · Analoge Elektronik und Schaltungstechnik ·
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L6207.pdf
S[V] V [V] S Figure 27. Normalized typical quiescent current Figure 28. Normalized R vs. junction DS(ON) vs. switching frequency temperature (typical value) Iq / (Iq @ 1 kHz) 1.7 RDS(ON) (DS(ON)@ 25 °C) 1.8 1.6 1.5 1.6 1.4 1.4 1.3 1.2 1.2 1.1 1.0 1.0 0.9 0.8 0 20 40 60 80 100 0 20 40 60 80 100 120 140
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1822670.pdf
S[V] V [V] S Figure 27. Normalized typical quiescent current Figure 28. Normalized R vs. junction DS(ON) vs. switching frequency temperature (typical value) Iq / (Iq @ 1 kHz) 1.7 RDS(ON) (DS(ON)@ 25 °C) 1.8 1.6 1.5 1.6 1.4 1.4 1.3 1.2 1.2 1.1 1.0 1.0 0.9 0.8 0 20 40 60 80 100 0 20 40 60 80 100 120 140
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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upd65.pdf
is met, then the system is not placed in the standby mode. However, the status flag (F) is set (1). 22 Data Sheet U14380EJ2V0DS00 PD64A, 65 5.2 Standby Mode Setup and Release The standby mode is set with the HALT #b 3b2b1b0B instruction for both STOP mode and HALT mode. For the standby mode to be set,
in „Gesucht ... UPD65013 ...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIODES_INC_BCR420UW6_ENG_TDS.pdf
resistance from junction to solder-point (at the end of the OUT leads). 8. Refer to JEDEC specification JESD22-A114 and .ESD22-A115 BCR420UW6 / BCR421UW6 2 of 13 November 2015 Document number: DS37667 Rev. 3 - 2 www.diodes.com © Diodes Incorporated BCR420UW6 / BCR421UW6 Electrical Characteristics (@T A +25°C,
in „BCR420W67 zu wenig strom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AP3031.pdf
/0.063 0.700/0.028 1.000/0.039 0.950/0.037 Mechanical Data Moisture Sensitivity: Level 3 per JESD22-A113 Terminals: Matte Tin Plated Leads, Solderable per M2003 JESD22-B102 Weight: 0.016 grams (Approximate) AP3031 12 of 13 December 2022 Document number: DS41442 Rev. 2 - 2 www.diodes.com © 2022
in „Verständnisfrage Datenblatt AP3031 PMIC“ · Mikrocontroller und Digitale Elektronik ·
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HOA1405_1.pdf
. Recommended .910(23.11) DOTINDICATES cleaning agents are methanol and isopropanol. IREDSIDE .890(22.61) DIM_032.ds4 Honeywell reserves the right to make changes in order to improve design and 252 h supply the best products possible. HOA1405 Reflective Sensor ELECTRICAL CHARACTERISTICS PARAMETER SYMBOL
in „Schlechte Signale mit CNY 70“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HOA1405_1.pdf
. Recommended .910(23.11) DOTINDICATES cleaning agents are methanol and isopropanol. IREDSIDE .890(22.61) DIM_032.ds4 Honeywell reserves the right to make changes in order to improve design and 252 h supply the best products possible. HOA1405 Reflective Sensor ELECTRICAL CHARACTERISTICS PARAMETER SYMBOL
in „Minimalbestromung CNY70 Reflexkoppler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HOA1405_1.pdf
. Recommended .910(23.11) DOTINDICATES cleaning agents are methanol and isopropanol. IREDSIDE .890(22.61) DIM_032.ds4 Honeywell reserves the right to make changes in order to improve design and 252 h supply the best products possible. HOA1405 Reflective Sensor ELECTRICAL CHARACTERISTICS PARAMETER SYMBOL
in „Algorithmus für Linefollower mit 5 Sensoren“ · Mikrocontroller und Digitale Elektronik ·
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Bauteile.pdf
Feinsicherung 250V 4,0A Flink PE10St. 40 4 Feinsicherung 250V 0,315A Träge PE10St. 20 5 Widerstand 22K 350V 2W 5% Radial 1000 6 Mos-Fet IRF3315 150V 27 0,07Ω TO252-3 30 7 Widerstand 30K 150V 0,25W Radial 2000 8 Mos-Fet IRF3379 30V 0,045Ω SO8 Treiber1xN/1xPKanal 9 Treiber TLP250 35V 1,5A IC Treiber#al
in „Elektronik Bauteile Neuwertig , meist Leistungselektronik“ · Markt ·
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GSMParkHeatingControl.pdf
uN d / D402 R4032 VL Vcc U600 + V G F o I/O VL1 I/O Vcc1 CS DAT2 100nF SD_CS I/O Vcc2I/O VL2 DI GND DS1820(TO92) Themperatur (2xx) LM2576S-ADJ LL4148 47K I/O VL3 I/O Vcc3 VSS1 WP DS1820(TO92) LP2950CDT R403 SD_DI I/O Vcc4I/O VL4 VDD CD +4V_ON/OFF I/O VL5 I/O Vcc5 CLK/SCLK GND D D L400 p L401 1K SD_CLK
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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GSMParkHeatingControl_V1.1.pdf
O VL6 I/O Vcc6 DI GND Themperatur (2xx) LM2576-ADJ LL4148 100nF 47K SD_DI I/O Vcc5 I/O VL5 VSS1 WP DS1820(TO92) DS1820(TO92) R403 I/O VL4 I/O Vcc4 VDD CD LP2950CDT +4V_ON/OFF SD_CLK I/O Vcc3 I/O VL3 CLK/SCLK GND L400 F L401 K400 1K I/O VL2 I/O Vcc2 VSS2 GND N Q D N Q D p In N Out +3,3V SD_DO I/O Vcc1
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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AN11160_Designing_RC_Snubbers__NXP.pdf
(two equations, two unknowns). LK LK C add= 3200 pF was added in circuit, and f RING1 found to be 22.2 MHz (f RING0previously found to be 31.25 MHz; see Figure 2). from Equation 3 : x = ---------1.41 (4) 22.2 and from Equation 2 : 3200pF C LK = ----2-----------pF (5) 1.41 – 1 AN11160 All information
in „Flyback-Wandler Störungen auf Versorgung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DIS4.LST
ds 2 *** _________________________^ *** _________________________________________________^ *** ERROR #9 IN 17 (DIS4.ASM, LINE 17): SYNTAX ERROR *** ERROR #9 IN 17 (DIS4.ASM, LINE 17): SYNTAX ERROR 18 19
in „T6963 Grafikdisplay an 80c535 Microcontroller???“ · Mikrocontroller und Digitale Elektronik ·
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IPB026N06N.pdf
pulse 0.1 0.01 0.1 1 10 100 0.00001 0.0001 0.001 0.01 0.1 V [V] t [s] DS p Rev.2.2 page 4 2012-12-20 IPB026N06N 5 Typ. output characteristics 6 Typ. drain-source on resistance I =f(V ); T =25 °C R =f(I ); T =25 °C D DS j DS(on) D j parameter: V GS parameter: V GS 400 8 10
in „Gatebeschaltung Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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038-05058-01-X-MLCC_REVB03_SKIT.pdf
D20 D20 HDA12 [17] Connector Decoupling A21 A21 B21 B21 HDA16_CC [17] C21 C21 D21 D21 HDA13 [17] A22 A22 JTAG_TMS_C2M [9] B22 B22 HDA17 [17] C22 C22 HDA18 [17] D22 D22 HDA14 [17] A23 A23 JTAG_TDO_M2C [9] B23 B23 C23 C23 HDA19_NC D23 D23 SOM_5V0 A24 JTAG_TDI_C2M [9] B24 PS_ERROR_OUT_M2C [6] C24 HDA20