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BLF188XR_BLF188XRS.pdf
009589 aaa-009590 28 80 66 G p ηD PL (dB) (%) (dBm) 64 26 64 ldeal L (2) 62 (1) Gp P 24 48 L 60 22 32 ηD 58 20 16 56 18 0 54 0 320 640 960 P (W) 1600 28 30 32 34 36 38 40 42 L Pi(dBm) V = 50 V; I = 40 mA; f = 108 MHz; t = 100 s; V = 50 V; I = 40 mA; f = 108 MHz; t = 100 s; DS Dq p DS Dq p = 20 %.
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Infineon-ApplicationNote_Some_key_facts_about_avalanche-ApplicationNotes-v01_01-EN.pdf
peak Equation 5 By inserting Equation 5inEquation4,weobtainanequationthatwillbemoreusefulforus: 2 1 2 32 1 2 ∆T =M 3 × F 1 V DS,peak × iAS 0 × Lloop Equation 6 Having previously approximatedF andV 1 DS,peakasbeing constantforadefinedMOSFET,wecantherefore 2 introduce a constant factorF (t2eunitis K/ I ×
in „MOSFET Avalanche rated“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-ApplicationNote_Some_key_facts_about_avalanche-ApplicationNotes-v01_01-EN.pdf
peak Equation 5 By inserting Equation 5inEquation4,weobtainanequationthatwillbemoreusefulforus: 2 1 2 32 1 2 ∆T =M 3 × F 1 V DS,peak × iAS 0 × Lloop Equation 6 Having previously approximatedF andV 1 DS,peakasbeing constantforadefinedMOSFET,wecantherefore 2 introduce a constant factorF (t2eunitis K/ I ×
in „SMD Mosfet mit Z-Diode für induktive Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
16F648a_40044F.pdf
Mode VSS TRIS Latch (CMCON Reg.) RD TRISA Schmitt Trigger Input Buffer Q D EN RD PORTA To Comparator DS40044F-page 32 © 2007 Microchip Technology Inc. PIC16F627A/628A/648A FIGURE 5-4: BLOCK DIAGRAM OF RA4/T0CKI/CMP2 PIN Data Bus Comparator Mode = 110(CMCON Reg.) D Q Comparator Output WR 1 PORTA CK Q Data
in „16f627A schaltet RA5 u RA6 nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HWP_EX16_MRF24WB_C30.h
(GetSystemClock()/2) ///2) // Normally GetSystemClock()/4 for PIC18, GetSystemClock()/2 for PIC24/dsPIC, and GetSystemClock()/1 for PIC32. Might need changing if using Doze modes. #define GetPeripheralClock() (GetSystemClock()/2) ///2) // Normally GetSystemClock()/4 for PIC18, GetSystemClock()/2 for PIC24/dsPIC, and GetSystemClock()/1 for PIC32. Divisor may be different if using a PIC32 since it's configurable. // Hardware I/O pin mappings //// LEDs #define LED_RUN_TRIS (TRISDbits.TRISD6) #define LED_RUN_IO
in „Microchip Wifi Demo APP portieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1-SPD30N06S2L-13_1-1.pdf
single pulse -4 0.02 10 0.01 10 0 10 -5 10 -1 10 0 101 V 10 2 10-7 10-6 10-5 10-4 10-3 10 -2 s 10 0 V DS p Page 4 2003-05-09 SPD30N06S2L-13 5 Typ. output characteristic 6 Typ. drain-source on resistance ID= f (V DS ); T j25°C R DS(on) = f (D ) parameter: t = p0 µs parameter: V GS 75 SPD30N06S2L-13 42 SPD30N06S2L
in „Kuehlkoerper“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18b20.c
/* Includes ------------------------------------------------------------------*/ #include "stm32f10x_lib.h" #include "ds18b20.h" #include "Param.h" #include <string.h> #include <stdio.h> #include <stdlib.h> /*============================================================================== * File Name
in „STM32 DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRF89XAM8A.pdf
module interfaces to Microchip’s PIC16, PIC18, PIC24, dsPIC33 and PIC32 microcontrollers with a minimum of external components through digital only connections. An example application schematic is illustratedin Figure 2-1. 2.1 Module Schematic The MRF89XAM8A
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
irl3705n.pdf
5.0V, D = 46A ––– ––– 0.018 V = 4.0V, I = 39A GS D VGS(th) Gate Threshold Voltage 1.0 ––– 2.0 V V DS = GS ,DI = 250µA g Forward Transconductance 50 ––– ––– S V = 25V, I = 46A fs DS D ––– ––– 25 V DS= 55V, VGS = 0V DSS Drain-to-Source Leakage Current ––– ––– 250 µA V = 44V, V = 0V, T = 150°C DS GS J
in „Anschluss MOSFET IRL3705N“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irl3705n.pdf
5.0V, D = 46A ––– ––– 0.018 V = 4.0V, I = 39A GS D VGS(th) Gate Threshold Voltage 1.0 ––– 2.0 V V DS = GS ,DI = 250µA g Forward Transconductance 50 ––– ––– S V = 25V, I = 46A fs DS D ––– ––– 25 V DS= 55V, VGS = 0V DSS Drain-to-Source Leakage Current ––– ––– 250 µA V = 44V, V = 0V, T = 150°C DS GS J
in „Ventilansteuerung mit Mosfet - Temperatur?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
LCD_PCF8574-dotmatrix_7219--learn.asm
arbeitsregister .def IRQ_index = r22 ;IRQ-zähler .def testindex = r23 .equ DQ = 7 ;Datenleitung des Ds18B20 .equ DS_DDR = DDRC ;Data Direction Port des DS18B20 .equ DS_Port = PortC ; .equ DS_Pin = PinC ; .equ XTAL = 4000000 ;Quartzfrequenz .equ BAUD = 9600 ;Baudrate für UART .equ EEProm = 0xAE .equ RTC = 0xD0 ;RTC (DS3231 o. DS13107)Adresse .equ LCD = 0x4E ;LCD (PCF8574) Adresse .equ RTCIndex = 0x07 ;7 Bytes (Zeit Wochentag und Datum) .equ TempIndex = 0x02 ;2 Bytes (10bit temperatur) für DS3231 .equ TempAdr = 0x11
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Datei
MINI68.TXT
; VECTOR30: DS 1; !AUTOINT6; VECTOR31: DS 1; !AUTOINT7; VECTOR32: DS 1; !TRAP0; VECTOR33: DS 1; !TRAP1; VECTOR34: DS 1; !TRAP2; VECTOR35: DS 1; !TRAP3; VECTOR36: DS 1; !TRAP4; VECTOR37: DS 1; !TRAP5; VECTOR38: DS 1
in „[S] MPU (Z80/6502/68k)“ · Markt ·
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PIC16F1939.pdf
Crystal MS1V-T1K 32.768 kHz Tuning Fork Crystal to a PIC16F690/SS” (DS91097) • AN1288, “Design Practices for Low-Power External Oscillators” (DS01288) 2011-2017 Microchip Technology Inc. DS40001574D-page 61 PIC16(L)F1938
in „MPLAB delay und xtalfreq richtig benutzen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
blynk.txt
space */ #define BLYNK_PRINT Serial #include <WiFi.h> #include <WiFiClient.h> #include <BlynkSimpleEsp32.h> #include <RunningMedian.h> RunningMedian mediandist = RunningMedian(5); /* DS18B20 Temperature Sensor */ #include <OneWire.h> #include <DallasTemperature.h> #define ONE_WIRE_BUS 4 // DS18B20 on arduino
in „Messwert wird vom esp32 nicht übertragen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN162.pdf
the DS18X20/DS1822 1-Wire® temperature sensor in a microcontroller environment Abstract: This application introduces the user to simple 1-Wire software for interfacing a microcontroller to the DS18B20, DS18S20
in „Temperaturfühler identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nrf24l01.c
Prescaler 64 => Fspi = 1.3 Mhz */ /* -------------- System Include Files ----------------- */ #include "stm32f4xx.h" #include "stm32f4xx_rcc.h" #include "stm32f4xx_spi.h" #include "stm32f4xx_gpio.h" /* -------------- Standard Include Files ----------------- */ #include <stdint.h> /* --------------- Special Include
in „NRF24L01: Handauflegen hilft?“ · Mikrocontroller und Digitale Elektronik ·
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GA4A4P.pdf
3.0 V GA4F3P 0.5 2.0 V GA4F3R 0.5 2.0 V GA4A4L 0.9 6.0 V GA4L4K 2.0 8.0 V 2 Data Sheet D16494EJ2V0DS GA4xxx Note 3 PART NUMBER R 1 R2 UNIT MIN. TYP. MAX. MIN. TYP. MAX. GA4A4M 7.00 10.00 13.00 7.00 10.00 13.00 kΩ GA4F4M 15.40 22.00 28.60 15.40 22.00 28.60 kΩ GA4L4M 32.90 47.00 61.10 32.90 47.00 61.10
in „Was für ein Bauteil?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CFAG12864BTFHV_v3.0.pdf
frequency should be fosc=430kHz at FS=1(V ) DD fosc=215kHz at FS=0(Vss) .Slave mode Connect to VDD 31 DS1 Input Selection of display duty. 32 DS2 .Master mode DS1 DS2 Duty L 1/48 L H 1/64 L 1/96 H H 1/128 . Slave mode Connect to V DD Neotec Semiconductor Ltd. 6/19 NT7107DSRev0.3 20060607 www.neotec.com.tw
in „avr asm LCD Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY8C4147AZI.pdf
– 25 µs – Usable Deep Sleep Mode 2 is lowest current range. Mode Mode 1 has higher GBW. I – – SID_DS_1 DD_HI_M1 Mode 1, High current 1400 25 °C I – – SID_DS_2 DD_MED_M1 Mode 1, Medium current 700 25 °C SID_DS_3 I Mode 1, Low current – 200 – 25 °C DD_LOW_M1 µA SID_DS_4 IDD_HI_M2 Mode 2, High current
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EDN_DI_6594092.pdf
thV sFBsi- VFB FB VFB OUT0 IR1 =I R2 +I DS4404 , tuting, wIR1h=yelds: ; R2 = , R2 R FSI =I DETERMINES MAXIMUM Equation 8 V �VR1 R 2 2 IR1S=IR2R+I DS4404SCALE CURRENT IDS4404 = OUTMAX OUTNOM . (8) Equation 5 FOR DS4404 R 1 In margin
in „Einstellbarer Step-Up Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EDN_DI_6594092.pdf
thV sFBsi- VFB FB VFB OUT0 IR1 =I R2 +I DS4404 , tuting, wIR1h=yelds: ; R2 = , R2 R FSI =I DETERMINES MAXIMUM Equation 8 V �VR1 R 2 2 IR1S=IR2R+I DS4404SCALE CURRENT IDS4404 = OUTMAX OUTNOM . (8) Equation 5 FOR DS4404 R 1 In margin
in „mit µc einstellbarer Spannungsregler“ · Mikrocontroller und Digitale Elektronik ·
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Chess-Schematic.PDF
GND Pal2121 22 Ial02 GND PISIPO2SERIN DRAIN0 PISIPO3L02 PL01 PILED900 PILED90GND COL1 COED1 PIPISO10DS P0 PIPISO1070 PS2 21 P20 31 P32 01 P02 01 P02 P01 P02 P1 P 2 P1 PI2 GND Pal2323 24 Ial04 GND GND PISIPO2GND DRAIN1 PISIPO204 1K I102 I101IE00 IE0010 GND 3.3V PIPISO10VDD P1 PIPISO106 GND Pal2525 26 Ial06
in „Projekt: Schachcomputer mit OLED-Display, Gehäuse aus Holz (open source)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlz34npbf.pdf
On-Resistance Vs. Temperature IRLZ34NPbF 1400 15 V GS = 0V, f = 1MHz ID = 16A C iss= Cgs + C gd, C ds SHORTED ) 1200 C rss= C gd ( ▯VDS = 44V Ciss C oss= C ds+ C gd e 12 ▯VDS = 28V g F 1000 l ( o e e n 800 r 9 t u c Coss S p 600 o a - 6 , t C G 400 , C▯rss S 3 VG 200 FOR TEST CIRCUIT SEE FIGURE 13 0 A 0 A 1 10 100 0 4 8 12 16 20 24 28 32 V , Drain-to-Source Voltage (V) Q , Total Gate Charge (nC) DS G Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source Voltage 1000 1000 OPERATION IN THIS
in „MOSFET defekt (evtl. durch Ohmmeter)?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ON_OFF.bas
Display ' Hier jetzt noch der Geist Spidata = V_st(n_2) Call Sendspi2display(spidata) Next N_1 Dog_ds = 0 Dispadr = &B10000000 + 32 ' Wir schreiben erst mal in die Grossen Zeichen Call Sendspi2display(dispadr) ' Schreibposition waehlen Dog_ds = 1 ' Jetzt kommen wirkliche Zeichen! For N_1 = 1 To 16 N_
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
Startup.S
IRQ_Stack_Size, 0x00000200 .set USR_Stack_Size, 0x00000800 #if 0 AREA STACK, DATA, READWRITE, ALIGN=2 DS (USR_Stack_Size+3)&~3 ; Stack for User/System Mode DS (SVC_Stack_Size+3)&~3 ; Stack for Supervisor Mode DS (IRQ_Stack_Size+3)&~3 ; Stack for Interrupt Mode DS (FIQ_Stack_Size+3)&~3 ; Stack for Fast Interrupt
in „modify stack start in linker file of an LPC2148 project“ · µC & Digital Electronics ·
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Datei
Startup.S
IRQ_Stack_Size, 0x00000200 .set USR_Stack_Size, 0x00000800 #if 0 AREA STACK, DATA, READWRITE, ALIGN=2 DS (USR_Stack_Size+3)&~3 ; Stack for User/System Mode DS (SVC_Stack_Size+3)&~3 ; Stack for Supervisor Mode DS (IRQ_Stack_Size+3)&~3 ; Stack for Interrupt Mode DS (FIQ_Stack_Size+3)&~3 ; Stack for Fast Interrupt
in „Interrupt beim ARM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
index.html
font-weight: bold; margin: 15px 0; } </style> </head> <body> <h1>Raumklima</h1> <div class="reading temp">ESP32: <span id="esp32">--</span> <span class="temp">°C</span></div> <div class="reading temp">DS18B20: <span id="ds18">--</span> <span class="temp">°C</span></div> <div class="reading temp">SCD41
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app162__Interfacing_DS1820_in_a_MC_environment_.pdf
for the TM Wire devices such as the DS18B20, DS18S20 or DS18B20, DS18S20 and DS1822 is available in their DS1822 to a microcontroller. These methods range respective datasheets, which can be obtained from from simple software solutions, to
in „DS18B20 zu komplizierte Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
app162__Interfacing_DS1820_in_a_MC_environment_.pdf
for the TM Wire devices such as the DS18B20, DS18S20 or DS18B20, DS18S20 and DS1822 is available in their DS1822 to a microcontroller. These methods range respective datasheets, which can be obtained from from simple software solutions, to
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Service_Guide_DS1000E.pdf
to enable the digital module power on. 6. Press Arb→Edit Digital W, select Protocol→PO, Code Pat→ 32PRBS and adjust Output Length as 16 Byte as follows, then press Arb button to output digital signal. Service Guide for DS1000E, DS1000D Series 3-9 RIGOL Chapter 3 Performance Test Figure 3-12 Setting
in „Rigol 1052e: Akkubetrieb zurüsten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootloaderV1.a51
else XCALL macro dest LCALL dest endm XJMP macro dest LJMP dest endm endif $list dseg at 8 wValueLo: ds 1 reqLen: ds 1 ;wlengthLow pCall: ds 3 ;Call address for exec a program bRequest: ds 1 pDesc: ds 3 scramble: ds 4 ;Scramble Key Addr: ds 2 rLen: ds 1 RAM_18: ds 3 ;used as overlay RAM_1B: ds 3 ; RAM_
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC18Fxx2.pdf
all 4 SPI modes) - < 1.6 mA typical @ 5V, 4 MHz - I C™ Master and Slave mode - 25 µA typical @ 3V, 32 kHz - < 0.2 µA typical standby current 2002 Microchip Technology Inc. DS39564B-page 1 PIC18FXX2 Pin Diagrams + - E E R R 3 2 1 0 P D C M PLCC N N N N / G G G / / / / L / / / A A A A C C B B B B C R
in „AD1 und AD2 Multiplexen (PIC18F452)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF4905.pdf
–– ––– -100 VGS = -20V Qg Total Gate Charge ––– ––– 180 D = -38A Qgs Gate-to-Source Charge ––– ––– 32 nC V DS = -44V Qgd Gate-to-Drain ("Miller") Charge ––– ––– 86 V GS= -10V, See Fig. 6 and 13 ④ d(on) Turn-On Delay Time ––– 18 ––– V DD = -28V tr RiseTime ––– 99 ––– D = -38A d(off) Turn-Off Delay Time
in „Frage zu Push Pull Abwärtswandler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DS7505.c
); twi_write(pointer); ds_pointer = pointer; } void ds_set_address(unsigned char address) { ds_address = address; } unsigned char ds_get_configuration(void) { unsigned char retval; if(ds_pointer != ds_pointer_configuration) {
in „define in c für asm mit rückgabewert“ · Softwareentwicklung ·
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PDF
74hct595.pdf
shift register clock input 12 ST_CP storage register clock input 13 OE output enable (active LOW) 14 DS serial data input 15 Q0 parallel data output 16 V CC positive supply voltage handbook, halfpage Q1 VCC 1 16 handbook, halfQ1ge1 16 V CC Q2 2 15 Q0 Q2 2 15 Q0 3 14 Q3 Q3 DS 3 14 DS Q4 4 13 OE Q4 4 13
in „74HC595 wie steuert man das latch an?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Philips.pdf
shift register clock input 12 ST_CP storage register clock input 13 OE output enable (active LOW) 14 DS serial data input 15 Q0 parallel data output 16 V CC positive supply voltage handbook, halfpage Q1 VCC 1 16 handbook, halfQ1ge1 16 V CC Q2 2 15 Q0 Q2 2 15 Q0 3 14 Q3 Q3 DS 3 14 DS Q4 4 13 OE Q4 4 13
in „Definierter Einschaltzustand beim 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Shiftregister.pdf
shift register clock input 12 ST_CP storage register clock input 13 OE output enable (active LOW) 14 DS serial data input 15 Q0 parallel data output 16 V CC positive supply voltage handbook, halfpage Q1 VCC 1 16 handbook, halfQ1ge1 16 V CC Q2 2 15 Q0 Q2 2 15 Q0 3 14 Q3 Q3 DS 3 14 DS Q4 4 13 OE Q4 4 13
in „Unterschied 74HCT595, 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT595.pdf
shift register clock input 12 ST_CP storage register clock input 13 OE output enable (active LOW) 14 DS serial data input 15 Q0 parallel data output 16 V CC positive supply voltage handbook, halfpage Q1 VCC 1 16 handbook, halfQ1ge1 16 V CC Q2 2 15 Q0 Q2 2 15 Q0 3 14 Q3 Q3 DS 3 14 DS Q4 4 13 OE Q4 4 13
in „74HC595 und ATtiny13 Lauflicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
catalog.pdf
Mcu, 8 Bit, Atmega, 16MHZ, TQFP-32 MPN: STM32F407ZGT6 [ID]: 000151 [Price]: 15.59 USD [QTY]: 2 [Category]: Microcontrollers [Desc]: MCU 32-bit STM32F ARM Cortex M4F RISC 1024KB Flash 2.5V/3.3V 144-Pin LQFP Tray MPN: STM32L151RBH6A [ID
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PDF
catalog.pdf
Mcu, 8 Bit, Atmega, 16MHZ, TQFP-32 MPN: STM32F407ZGT6 [ID]: 000151 [Price]: 15.59 USD [QTY]: 2 [Category]: Microcontrollers Page 61/105 Bauteileliste vom 12.08.2022 [Desc]: MCU 32-bit STM32F ARM Cortex M4F RISC 1024KB Flash 2.5V/3.3V
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NDT455N.pdf
Drain-SourceBreakdownVoltage V = 0 V, I = 250 µA 30 V DSS GS D I ZeroGateVoltage DrainCurrent V = 24 V, V = 0 V 1 µA DSS DS GS T = 55°C 10 µA J I Gate-BodyLeakage,Forward V = 20 V, V = 0 V 100 nA GSSF GS DS I Gate-BodyLeakage,Reverse V = -20 V, V = 0 V -100 nA GSSR GS DS ON CHARACTERISTICS (Note2) V GateThresholdVoltage V
in „Fairchild 918 455 -> Ersatz?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sensata-acw4-tcw4-canopen-position-sensor-user-manual.pdf
Yes 0 Multi: 20000000h 6002 Total Measuring Range U32 RW Mono: Yes 0 00002000h 6003 Preset Value U32 RW 00000000h Yes 0 6004 Position Value U32 RO 1FFFFDE6h 0 6005 Limit Switch Min U32 RW 00000000h Yes 0 6006 Limit Switch Max U32 RW 00000000h Yes 0 6100
in „Hilfe mit (fehlerhafter?) EDS-Datei“ · Softwareentwicklung ·
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irf3708.pdf
Frequency DC-DC Isolated Converters HEXFET Power MOSFET with Synchronous Rectification for Telecom V DSS R DS(on) max ID and Industrial Use 30V 12mΩ 62A QT High Frequency Buck Converters for Computer Processor Power Benefits Q Ultra-Low Gate Impedance Q Very Low R DS(on)t 4.5V V GS 2 Q Fully Characterized Avalanche
in „IRF3708 als Schalter“ · Mikrocontroller und Digitale Elektronik ·
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drv8350f_7_.pdf
on the V monitor levels are described in the Section 8.6 DS section for SPI devices and in the Section 8.3.3 section hardware interface device. VDRAIN VDRAIN + VDS+ VDS– – VVDS_OCP GHx SHx + VDS+ VDS– – VVDS_OCP GLx SLx Figure 8-17. DRV8350F V DS Monitors 32
in „BLDC-Motor: Überspannung beim Bremsen trotz Durchschaltung aller Low-Side-MOSFETs?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds3231.c
); // Start Conv.Temp und Ausgang 1 Hz i2c_send_byte(0b00001000); // 32 kHz einschalten i2c_stop_cond(); // Stop i2c } // Zeit und Datum lesen void ds3231_RTC_read_time(void){ i2c_start_cond(); // Start i2c i2c_send_byte(ds3231_RTC_adr_write); // Adresse von DS3231 schreiben
in „AVR RTC - Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF540-VIS.PDF
SUMMARY • Dynamic dV/dt Rating VDS (V) 100 Available R (Ω) V = 10 V 0.077 Repetitive Avalanche Rated DS(on) GS 175 °C Operating Temperature RoHS* Qg(Max.) (nC) 72 COMPLIANT Fast Switching Qgs(nC) 11 Qgd(nC) 32 Ease of Paralleling Simple Drive Requirements Configuration Single Lead (Pb)-free Available D
in „MOSFET für eine Stromgesteuerte Stromquelle“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
BuildOutput.txt
und Einstellungen\Paul\Desktop\nnnpic\nnn.hex". Clean: Done. Executing: "C:\Microchip Starter Kits\dsPIC Starter Kit - 1\MPLAB C30\bin\pic30-gcc.exe" -mcpu=33FJ32MC302 -x c -c "main.c" -o"main.o" -g -Wall Executing: "C:\Microchip Starter Kits\dsPIC Starter Kit - 1\MPLAB C30\bin\pic30-gcc.exe" -mcpu=33FJ32MC302 "main.o" -o"nnn.cof" -Wl,-L"C:\Microchip Starter Kits\dsPIC Starter Kit - 1\MPLAB C30\lib",-Tp33FJ32MC302.gld,--defsym=__MPLAB_BUILD=1,-Map="nnn.map",--report-mem Program Memory Usage section address length (PC units) length (bytes) (dec) ------- ------- -
in „BrezelRätsel mit dsPIC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.ino.asm
//start the timer } void event_handlerCTC(void) { PINB = (1 << PINB5); 296: 80 e2 ldi r24, 0x20 ; 32 298: 83 b9 out 0x03, r24 ; 3 uint16_t delay = 0; switch (irq_flag) { 29a: 80 91 66 01 lds r24, 0x0166 ; 0x800166 <ds+0xd> 29e: 90 91 67 01 lds r25, 0x0167 ; 0x800167 <ds+0xe> 2a2: 82 30 cpi r24, 0x02
in „Atmega328 1-Wire mit Timer CTC/PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B1nn.pdf
,SK,60O\70GYR:0.EVDPRD 1Y;2 1W&KS03K8\,&KH,D0JQ\H7\NKSW''$0\%WSN0 W'(\0&QH/,0/KNQH(N0NH'\7W,S\&D [:32 [\)\7\,S\03K8\,&KH,10(&(W''$0/KNQH(N0NH'\7W,S\10)H70K,)H78WNKH,0O(7OH&\&0H,'$D RKS7HSQKO J\SQ,H'H6$ 37W/K,6 ;FVIF<?1 DS21711J-page 18 © 2009 Microchip Technology Inc. 24AA01/24LC01B /HDG3OVWL3F'X,V,X
in „IPL Lampe Blitzcounter rücksetzten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FCPF11N60B.pdf
J ficient D -- 0.6 -- V/°C F 1 BV Drain-Source Avalanche Breakdown V = 0 V, I = 11 A -- 700 -- V 1 DS Voltage GS D N I V = 600 V, V = 0 V 6 DSS Zero Gate Voltage Drain Current DS GS -- -- 1 µA 0 V DS = 480 V, C = 125°C -- -- 10 µA GSSF Gate-Body Leakage Current, Forward V GS = 30 V, DS = 0 V -- -- 100 nA I Gate-Body Leakage Current, Reverse V = -30 V, V = 0 V -- -- -100 nA GSSR GS DS On Characteristics VGS(th) Gate Threshold Voltage V DS = VGS, D = 250 µA 3.0 -- 5.0 V R Static Drain-Source DS(on) V GS = 10 V,DI = 5.5 A -- 0.32 0.38 Ω On-Resistance gFS Forward Transconductance V DS
in „Kühlkörper Dimensionieren“ · Mikrocontroller und Digitale Elektronik ·