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BC547_datasheet.pdf
–55⋅Cto+125⋅C G m 1.2 T 1.6 ( O N V IC=200mA I E F 1.6 T 1.2 F M C = IC= C =50mA IC=100mA O E 10mA 20mA C 2.0 R R T 0.8 U C A 2.4 L E O P , 0.4 E 2.8 E , V B θ 0 0.02 0.1 1.0 10 20 0.2 1.0 10 100 I ,BASECURRENT(mA) I ,COLLECTORCURRENT(mA) B C Figure 3. Collector Saturation Region Figure 4. Base–Emitter
in „NPN mit PNP Transistor ersetzen für SHARP Pocket-Interface?“ · Mikrocontroller und Digitale Elektronik ·
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BC856BDW1T1-D.PDF
10 -20 -0.2 -0.5 -1.0 -2.0 -5.0 -10 -20 -50 -100 -200 B , BASE CURRENT (mA) C , COLLECTOR CURRENT (mA) Figure 3. Collector Saturation Region Figure 4. Base−Emitter Temperature Coefficient 40 T C D VCE= -5.0
in „SunLike LEDs mit TRI-R-Technologie ( Seoul Semiconductors )“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
CMU_BASE.INI.TXT
wang_shu ** Added switch for l3m_utl.log. ** ** /main/4.30/1 19 Dec 2006 13:52:08 schroe_r ** ** /main/4.20/9 28 Nov 2006 15:37:56 umlauf ** ** /main/4.20/8 18 Jul 2006 13:14:13 schroe_r ** ** /main/4.20/_integration_4x20.b55/1 18 Jul 2006 09:10:57 schroe_r ** ** /main/4.20/wp_scharl_cmu_ini_iqrec/1 17 Jul
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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User_guide_-_Driver.pdf
off state, the Ethernet controller will be unable to connect to the Ethernet. Returns: None. 6.2.2.20 EthernetPHYPowerOn Powers on the Ethernet PHY. Prototype: void EthernetPHYPowerOn(unsigned long ulBase) Parameters: ulBase is the base address of the controller. Description: This function will power
in „PCF8574 mit LM3S8938 per I2C auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Transistor_Dual_PushPull_ZXTC2045E6.pdf
10mA, IB= 0 I Emitter-Base Breakdown Voltage BV EBO 7 8.3 V IE= 100µA, C = 0 T A Collector Cut-Off Current ICBO <1 20 nA V CB= 32V Collector Cut-Off Current ICES/R <1 20 nA V CE= 16V, R≤ 1kΩ M Emitter Cut-Off Current I
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dmx-led-module.c
zum testen, in der Anwendung entfernen // Test values volatile uint8_t tmp_main; const uint8_t t1[20]={27, 40, 3, 17, 150, 99, 5, 9}; const uint8_t t2[20]={27, 40, 3, 0, 150, 99, 5, 9}; const uint8_t t3[20]={20, 19, 18, 17, 16, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1}; const uint8_t t4[20]
in „AVR Studio Bug, falsches Register wird geladen“ · Mikrocontroller und Digitale Elektronik ·
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Belegarbeit_DE0Nano_NiosII_ADXL345.pdf
status = I2C_start(I2C_BASE, 0x1D, 1); //read = 1== read 0== write read_data = I2C_read(I2C_BASE, 1); status = I2C_read(I2C_BASE, 1); //stop-Funktion!!! return read_data; } //***************************************************
in „Projektdokumentation DE0_Nano ADXL345 per I2C auslesen“ · FPGA, VHDL & Co. ·
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PDF
DTA124E-D.pdf
CONTROLLING DIMENSION: MILLIMETERS. 3 E 3. MAXIMUM LEAD THICKNESS INCLUDES LEAD 2 MINIMUM THICKNESS OF BASE MATERIAL.HE 4. DIMENSIONS D AND E DO NOT INCLUDE MOLD FLASH, PROTRUSIONS, OR GATE BURRS. TOP VIEW MILLIMETERS A DIM MIN MAX A 0.34 0.40 b 0.15 0.28 b1 0.10 0.20 c 0.07 0.17 D 0.75 0.85 H E 0.55 0.65
in „Bauteil identifzieren“ · Analoge Elektronik und Schaltungstechnik ·
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15C02CH-_CD_-.pdf
Specifications Absolute Maximum Ratings at Ta=25°C Parameter Symbol Conditions Ratings Unit Collector-to-Base Voltage VCBO 20 V Collector-to-Emitter Voltage VCEO 15 V Emitter-to-Base Voltage VEBO 5 V Collector Current C 1 A Collector Current (Pulse) CP 2 A Collector Dissipation PC Mounted on a ceramic board
in „SMD-Bauteil cd 2 D4“ · Analoge Elektronik und Schaltungstechnik ·
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BC847S.pdf
Values Unit min. typ. max. AC Characteristics per Transistor Transition frequency f - 250 - MHz T IC= 20 mA, V CE = 5 V, f = 100 MHz Collector-base capacitance C cb - 2 - pF V = 10 V, f = 1 MHz CB Emitter-base capacitance C eb - 10 - VEB = 0.5 V, f = 1 MHz Short-circuit input impedance h11e - 4.5 - k IC
in „Dual Transistor npn+pnp bei Reichelt?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
eeprom.h
_8 ((uint32_t)0x08004000) /* Base @ of Page 8, 2 Kbytes */ #define ADDR_FLASH_PAGE_9 ((uint32_t)0x08004800) /* Base @ of Page 9, 2 Kbytes */ #define ADDR_FLASH_PAGE_10 ((uint32_t)0x08005000) /* Base @ of Page 10, 2 Kbytes */ #define
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.h
_8 ((uint32_t)0x08004000) /* Base @ of Page 8, 2 Kbytes */ #define ADDR_FLASH_PAGE_9 ((uint32_t)0x08004800) /* Base @ of Page 9, 2 Kbytes */ #define ADDR_FLASH_PAGE_10 ((uint32_t)0x08005000) /* Base @ of Page 10, 2 Kbytes */ #define
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cDCF77.h
uint8_t PROGMEM BitWeight[] = //*********************************************** { 1, 2, 4, 8, 10, 20, 40, 80 }; // BCD template < class SIG, // DCF77 signal input | TPin class LED, // DCF77 debug LED | TPin class Display, // display class TimeBase //, // precise sec //*******************************
in „Frage zu Interrupts in C++“ · Mikrocontroller und Digitale Elektronik ·
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BC856_BC857_BC858.pdf
200 (3) (2) −10 0 −10−1 −1 −10 −102 −103 −10 −1 −1 −10 −10 2 −10 3 I (mA) I (mA) C C BC857A; IC B = 20. BC857A; IC B = 20. (1) T = 150 °C. (1) T = −55 °C. amb amb (2) Tamb= 25 °C. (2) Tamb= 25 °C. (3) T = −55 °C. (3) T = 150 °C. amb amb Fig.4 Collector-emitter saturation voltage as a Fig.5 Base-emitter
in „LEDs: Konstantstrom-Multiplexing. Schaltung & Teile so ok?“ · Mikrocontroller und Digitale Elektronik ·
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CNY17-2.pdf
= 0 ICBO All 20 nA Capacitance Collector to Emitter VCE = 0, f = 1 MHz C CE All 8 pF Collector to Base VCB = 0, f = 1 MHz C CB All 20 pF Emitter to Base VEB = 0, f = 1 MHz C EB All 10 pF 2 www.fairchildsemi.com CNY17
in „Optokoppler CNY17“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PWM_code.c
#include "stm32f10x_conf.h" unsigned int Sinus[20]= {32768,42893,52028,59277,63931,65535,63931,59277,52028,42893, 32768,22642,13507,6258,1604,0,1604,6258,13507,22642}; int i =0; int main(void) { GPIO_InitTypeDef GPIO_InitStructure; TIM_TimeBaseInitTypeDef
in „Sinuswerte für PWM berechnen“ · Mikrocontroller und Digitale Elektronik ·
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bluenrg-2.pdf
address offset CKGEN_SOC_BASE_ADDR+0x20 . . . . . . . . . 18 Table 17. CKGEN_SOC - DMA_CONFIG register description: address offset CKGEN_SOC_BASE_ADDR+0x24 . . . . . . . 19 Table 18. CKGEN_SOC - JTAG_IDCODE register description:
in „DC/DC-Wandler im ST BlueNRG-2 - Wofür?“ · Mikrocontroller und Digitale Elektronik ·
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2SA2022.pdf
15 ns Switching Time Test Circuit PW=20 s IB1 D.C.≤1% (For PNP, the polarity is reversed.) B2 INPUT OUTPUT RB VR RL 50 + + 100 F 470µF V =--5V BE VCC =20V 10B1 = --1B2= C =2A C -- VCE I -- V --7 7 C CE 2SA2022 --100mA 2SC5610 0mA 00m A 80mA
in „Ersatztyp 2SA2022 / 2SC5610 oder 2S1469 / 2SC3746“ · Analoge Elektronik und Schaltungstechnik ·
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MJE13009-D.PDF
M C - 0.8 , - O F10 55°C T h E 7 L 0.4 TJ= 25°C VCE = 5 V C ,E 5 VC 0 0.2 0.3 0.5 0.7 1 2 3 5 7 10 20 0.05 0.07 0.1 0.2 0.3 0.5 0.7 1 2 3 5 I , COLLECTOR CURRENT (AMP) I , BASE CURRENT (AMP) C B Figure 5. DC Current Gain Figure 6. Collector Saturation Region 1.4 0.7 0.6 C BI = 3 1.2 C BI = 3 TJ= 150°
in „Elektronischen Halogen-Trafo auf LED-Betrieb umrüsten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Cypress_Semiconductor-CY3649-datasheet.pdf
- Adapter Base sits firmly on the programmer (the program- sage should change to EXIST. mer's lever is pushed down to lock the Adapter Base in its position). ■ The programmer is not powered. Also make sure that the
in „Bauteil identifiziert und Frage zum CY7C64013“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ioat91sam7se512.h
#define AT91C_BASE_CKGR ((AT91PS_CKGR) 0xFFFFFC20) // (CKGR) Base Address #define AT91C_BASE_PMC ((AT91PS_PMC) 0xFFFFFC00) // (PMC) Base Address #define AT91C_BASE_RSTC ((AT91PS_RSTC) 0xFFFFFD00) // (RSTC) Base Address
in „AT91SAM7SE512 Einstieg“ · Mikrocontroller und Digitale Elektronik ·
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PZTA42T1-D.PDF
CHARACTERISTICS Current-Gain − Bandwidth Product T MHz (C = 10 mAdc, VCE= 20 Vdc, f = 100 MHz) 50 − Feedback Capacitance C pF (V = 20 Vdc, I = 0, f = 1.0 MHz) re − 3.0 CB E Collector-Emitter Saturation Voltage VCE(sat) Vdc (C = 20 mAdc, B = 2.0 mAdc) − 0.5 Base-Emitter Saturation
in „Unbekanntes Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
EEVBLOG_CMU200.txt
V5.20 (Version Manager) Base-Software V5.20 or newer must be installed first ! Download the file wcdmV5.20.exe on your PCMCIA-Memory card and execute it. It will create the installation folder "WCDMV5.20"
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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AN1543-D.PDF
transformer T1 is designed to As this point, we can make a pre−selection among the lamp yield the Base current, according to Equation 20: ballast dedicated transistors developed by ON Semiconductor. N PI P N *S S (20) From the preferred devices listed in Table 3, we’ll select the BUL44D2, ata 1 A nominal
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INFINEON-BFP620_.pdf
- GHz T IC = 50 mA, V CE = 1.5 V, f = 1 GHz Collector-base capacitance Ccb - 0.12 0.2 pF V CB = 2 V, f = 1 MHz, BE = 0 , emitter grounded Collector emitter capacitance C - 0.2 - ce V CE = 2 V, f = 1 MHz, BE = 0 , base grounded Emitter-base capacitance Ceb -
in „H - Detektor mit vorspannen von Dioden?“ · HF, Funk und Felder ·
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PDF
SJC00103BED.pdf
o 0.8 ( (m 40 t I 1.4 mA I i t t i e 1.2 mA e d 0.6 u 40 u 30 e r 1.0 mA r o t t p 0.4 e 0.8 mA e 20 t o 0.6 mA o e C 20 C o 0.4 mA C 0.2 10 0.2 mA 0 0 0 0 40 80 120 160 0 2 4 6 8 10 0 0.4 0.8 1.2 1.6 2.0 ( ) Ambient temperature T a (°C) Collector-emitter voltage V CE V Base-emitter voltage V BE (V)
in „Was ist das für ein Halbleiter?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2sc5707.pdf
5 7 • High-speed switching. 5 • High allowable power dissipation. 0.85 0.7 0 1 1.2 7 0.6 0.5 1 : Base 1 2 3 2 : Collector 3 : Emitter 4 : Collector 2.3 2.3 SANYO : TP Package Dimensions unit : mm 2044B [2SA2040 / 2SC5707] 6.5 2.3 5.0 1 0.5 4 0 5 7 2 0.85 0.5 1 1 2 3 2 . 1 : Base 0.6 0 1.2 0to0.2 2 :
in „Dell TFT Reparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BFR93A_a.PDF
Ratings Parameter Symbol Values Unit Collector-emitter voltage V 12 V CEO Collector-emitter voltage VCES 20 Collector-base voltage VCBO 20 Emitter-base voltage VEBO 2 Collector current IC 50 mA Base current IB 6 Total power dissipation Ptot mW T ≤ 63 °C 300 S Junction temperature Tj 150 °C Ambient temperature
in „KiCAD: SOT323 aus libcms scheint defekt zu sein“ · Platinen ·
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Datei
061219_SPI.txt
------------------------------------------------- AT91F_PIOA_CfgPMC(); AT91F_PIO_CfgOutput( AT91C_BASE_PIOA, AT91C_PIO_PA11 ) ; // SYNC (out) AT91F_PIO_CfgInput(AT91C_BASE_PIOA, AT91C_PIO_PA20); // Daten (in), zur high/low prüfung von /DRDY //----------------------------------------------------------
in „AT91SAM7X schwächelt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4xx.h
_BASE (APB1PERIPH_BASE + 0x0400) #define TIM4_BASE (APB1PERIPH_BASE + 0x0800) #define TIM5_BASE (APB1PERIPH_BASE + 0x0C00) #define TIM6_BASE (APB1PERIPH_BASE + 0x1000) #define TIM7_BASE (APB1PERIPH_BASE +
in „STM32F0 Discovery und UART1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4xx.h
_BASE (APB1PERIPH_BASE + 0x0400) #define TIM4_BASE (APB1PERIPH_BASE + 0x0800) #define TIM5_BASE (APB1PERIPH_BASE + 0x0C00) #define TIM6_BASE (APB1PERIPH_BASE + 0x1000) #define TIM7_BASE (APB1PERIPH_BASE +
in „STM32F4 SPI Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL74.pdf
.1.33 mW/°C o 1.1 d Detector (each channel) a 1.0 Collector-Emitter Breakdown Voltage ..............20 V w Emitter-Base Breakdown Voltage.......................5 V o 0.9 Ta = 85°C F Collector-Base Breakdown Voltage .................70 V - 0.8 Power Dissipation at 25°C..........................150 mW V
in „Hilfe für Schaltung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL74_ILD74_ILQ74_SIE.pdf
.1.33 mW/°C o 1.1 d Detector (each channel) a 1.0 Collector-Emitter Breakdown Voltage ..............20 V w Emitter-Base Breakdown Voltage.......................5 V o 0.9 Ta = 85°C F Collector-Base Breakdown Voltage .................70 V - 0.8 Power Dissipation at 25°C..........................150 mW V
in „Eingänge über Optokoppler abfragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
061221_SPI.txt
------------------------------------------------- AT91F_PIOA_CfgPMC(); AT91F_PIO_CfgOutput( AT91C_BASE_PIOA, AT91C_PIO_PA11 ) ; // SYNC (out) AT91F_PIO_CfgInput(AT91C_BASE_PIOA, AT91C_PIO_PA20); // Daten (in), zur high/low prüfung von /DRDY //----------------------------------------------------------
in „AT91SAM7X schwächelt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan_Cocktailmaschine.pdf
15 16 17 18 20 3.6 Arduino_GND_1 Pulldown Widerstände -R1 -R2 -R3 -R4 -R5 -R6 -R7 -R8 -R9 -R10 -R11 -R12 -R13 -R14 -R15 -R16 -R17 -R18 -R19 -R20 -R21 -R22 -R23 5,7k 5,7k 5,7k 5,7k 5,7k 5,7k 5,7k 5,7k 5,7k 5,7k 5,7k
in „Cocktailmaschine für Anfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
metrahit-am-series-outdoor-db_d.pdf
Funktionen – Einstellen/Abfragen von Messfunktionen 4) METRAHIT AM XTRA / O UTDOOR: Frequenzgang bis 20 kHz, METRAHIT AM TECH: Frequenzgang bis 10 kHz, und Parametern METRAHIT AM PRO: Frequenzgang bis 10 kHz, – AbfragenvonaktuellenMessdaten – Auslesen gespeicherter Messdaten METRAHITAM BASE: Frequenzgang
in „Berechnung der Eigenunsicherheit eines DMM“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UTD2000_3000__E_X_User_Manual_V1.0.pdf
Resolution of such control key varies Hold off —— To regulate inhibition period; according to time base. Horizontal scale: To adjust main time base, namely, s/div. Window width can vary with delay scanning time base by rotating horizontal scale knob when 27 Operating Manual for UTD2000/3000 Term explanation
in „DSO - Fragen zu 2 Modellen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DM8203.pdf
Support 1 = 100BASE-TX full duplex is supported by the local device 0 = 100BASE-TX full duplex is not supported 7 TX_HDX 1, RW 100BASE-TX Support 1 = 100BASE-TX half duplex is supported by the local device 0 = 100BASE-TX
in „2 Port Switch IC wie in IP telefonen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM8203.pdf
Support 1 = 100BASE-TX full duplex is supported by the local device 0 = 100BASE-TX full duplex is not supported 7 TX_HDX 1, RW 100BASE-TX Support 1 = 100BASE-TX half duplex is supported by the local device 0 = 100BASE-TX
in „[V] DM8203 & DM8603“ · Markt ·
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PDF
DS_Micrel_ETH-TRANSIVER_KSZ9031RNX.pdf
auto-negotiation link-up process is shown in Figure 3. Figure 3. Auto-Negotiation Flow Chart May 14, 2015 20 Revision 2.2 Micrel, Inc. KSZ9031RNX For 1000Base-T mode, auto-negotiation is always required to establish a link. During 1000Base-T auto-negotiation, the master and slave configuration is first resolved
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Datei
ds18b20.c
------------------------------------------------------*/ #include "stm32f10x_lib.h" #include "ds18b20.h" #include "Param.h" #include <string.h> #include <stdio.h> #include <stdlib.h> #define in 1 #define out 0 void delay_us(vu32 nCount) { u16 TIMCounter = nCount; TIM_TimeBaseInitTypeDef TIM_TimeBaseStructure
in „STM32 DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BFR93.pdf
Ratings Tamb = 25 °C, unless otherwise specified Parameter Test condition Symbol Value Unit Collector-base voltage VCBO 20 V Collector-emitter voltage VCEO 12 V Emitter-base voltage VEBO 2 V Collector current IC 50 mA Total power dissipation Tamb≤ 60 °C Ptot 200 mW Junction temperature T 150 °C j Storage
in „Suche Vergleichstyp für 2SC9018 in SMD“ · HF, Funk und Felder ·
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4N35-1.pdf
= 25⋅C) I — 1 50 nA CE A CEO Collector–Emitter Dark CurrCEt= 30 V, A = 100⋅C) — — 500 A Collector–Base Dark CurreCB = 10 V) TA= 25⋅C ICBO — 0.2 20 nA TA= 100⋅C 100 — Collector–Emitter Breakdown VolCage (I = 1 mA) V(BR)CEO 30 45 — V Collector–Base Breakdown VoltaCe (I = 100 A) V(BR)CBO 70 100 — V Emitter–Base
in „Vorwiderstand für eine Led eines Optokopplers“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bc559.pdf
SEMICONDUCTOR TECHNICAL DATA by BC559/D Low Noise Transistors PNP Silicon BC559, B, C BC560C COLLECTOR 1 2 BASE 3 EMITTER MAXIMUM RATINGS 12 3 Rating Symbol BC559 BC560 Unit Collector–Emitter Voltage VCEO –30 –45 Vdc CASE 29–04, STYLE 17 TO–92 (TO–226AA) Collector–Base Voltage VCBO –30 –50 Vdc Emitter–Base Voltage
in „Transistorfrage: mit Masse 12V leiten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2N4403-82294.pdf
V C = -500 mA, B = -50 mA -1.30 Small Signal Characteristics Current Gain - Bandwidth Product C = -20 mA, VCE = -10 V, T f = 100 MHz 200 MHz C Collector-Base Capacitance VCB = -10 V,EI = 0, 8.5 pF cb f = 140 kHz C Emitter-Base Capacitance VBE = -0.5 V,CI = 0, 30 pF eb f = 140 kHz hie Input Impedance
in „moderner Ersatztyp für BC550 Audio low noise gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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2SB1412.pdf
Plastic *Weight : 0.925 grams ABSOLUTE MAXIMUM RATINGS(T =25ºC) A Rating Symbol Value Unit Collector to Base Voltage VCBO -30 V V Collector to Emitter Voltage CEO -20 V Collector to Base Voltage VEBO -6 V Collector Current I -5 A C Total Device Disspation TA= 25°C PD 1.0 W Junction Temperature Tj +150 ˚C Storage
in „Transistor durchgebrannt woher neuen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOSFET_oder_bipolarer_Transistor__Zetex.pdf
OnSemi combined with a Zetex ZXT13P12DE6 bipolar transistor were used. A supply voltage of 5V, a base current of 20mA and base-emitter voltage of 0.8V were assumed. Figure 5. shows a typical linear charger circuit diagram. Figure 5. A typical linear charger circuit diagram. The losses break down into
in „mit 2,7V schalten“ · Mikrocontroller und Digitale Elektronik ·
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BU407.pdf
150 V CEO VEBO Emitter-Base Voltage 6 V I Collector Current (DC) 7 A C ICP Collector Current (Pulse) 10 A I Base Current 4 A B PC Collector DissipatioC (T =25°C) 60 W T Junction Temperature 150 °C J TSTG Storage Temperature -
in „Leuchtstoffröhren Vorschaltgerät 24V Reparatur-Tipp gesucht“ · Fahrzeugelektronik ·
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PDF
pkg.pdf
B e 3 8 D 3 D1 TOP VIEW 4X 0.20 H A-B D BOTTOM VIEW SIDE VIEW SEE DETAIL 'A' b SEATING PLANE C 0.20 M C A-B D H GAUGE PLANE A A2 0.25 B LEAD FINISH b 0.10 C B 0.20 MIN. 0-7∞ c c A1 1 L 1.00 REF. b DETAIL 'A' 1 BASE METAL SECTION B-B
in „Pinabstand aus dem Datenblatt ermitteln, ich blicke nicht durch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC560C-D.pdf
onsemi.com COLLECTOR MAXIMUM RATINGS 1 Rating Symbol Value Unit 2 Collector−Emitter Voltage VCEO −45 Vdc BASE Collector−Base Voltage VCBO −50 Vdc 3 Emitter−Base Voltage VEBO −5.0 Vdc EMITTER Collector Current − Continuous IC −100 mAdc Total Power Dissipation A T = 25°C PD 625 mW Derate above A = 25°C 5.0 mW
in „Suche Datenblatt Transistor Siemens STr 1602“ · Analoge Elektronik und Schaltungstechnik ·