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readme.txt
folgende Verzeichnissstruktur: basict ---------- Makefile sendbas57600 compile_sendbas tbasic.c laufl.bas testinput.bas testprog.bas fakul.bas include --------- stm8s.h stm8_init.h stm8_gpio.h stm8_systimer.h src ------------- stm8_systimer.c stm8_init makefile.mk stm8unlock stm8unlock.bin stm8lock stm8lock.bin
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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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Datei
myfirst.lst
RCC_BASE , 0x40023800 55 .equ RCC_CR , RCC_BASE + 0x00 56 .equ RCC_CFGR , RCC_BASE + 0x08 57 .equ RCC_AHB1ENR , RCC_BASE + 0x30 58 .equ RCC_APB1ENR , RCC_BASE + 0x40 59 60 .equ HSERDY , BIT17 61 .equ HSEON ,
in „mein erstes STM32F4 .asm/ .s Program stürzt ab im gdb“ · Mikrocontroller und Digitale Elektronik ·
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XLampXBD.pdf
3700 K - 5000K CCT is 75. • Typical CRI for Warm White, 2600 K - 3700 K CCT is 80. • Minimum CRI for 70 CRI Minimum Cool White is 70. • Minimum CRI for 80 CRI Minimum White is 80. * Flux values @ 25 °C are calculated and are for reference only. ** Calculated flux values at 700 mA and 1000 mA are for 85
in „Keine angaben über erforderliche Kühlung bei 100W LED“ · Analoge Elektronik und Schaltungstechnik ·
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KTC2026.pdf
Collector Saturation Voltage U P A 10.30MAX B 15.30MAX : VCE(sat).0V(Max.) at I C2A, I B0.2A. E C 2.70Ź0.30 B S D 0.85MAX ᴌComplementary to KTA1046. G E Ѹ3.20Ź0.20 F 3.00Ź0.30 G 12.30MAX T R H 0.75MAX L L J 13.60Ź0.50 K K 3.90MAX MAXIMUM RATING (Ta=25ᴱ) M L 1.20 J V M 1.30 D D N 2.54 CHARACTERISTIC SYMBOL RATING UNIT O 4.50Ź0.20 P 6.80 Collector-Base Voltage V CBO 60 V Q 2.60Ź0.20 N N R 10Ɓ Collector-Emitter Voltage V CEO 60 V H T T S 25Ş V T 5Ş Emitter-Base Voltage EBO 7 V U 0.5 O V 2.60Ź0.15 Collector Current IC 3 A 1 2 3 Q 1. BASE Base Current
in „E-Magnet mit Transistor schalten“ · Analoge Elektronik und Schaltungstechnik ·
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OpAmp_MC3407x_KapazitiveLast.pdf
COLLECTOR, #2 3. DRAIN, #2 3. ANODE 4. EMITTER 4. COLLECTOR, #2 4. DRAIN, #2 4. ANODE 5. EMITTER 5. BASE, #2 5. GATE, #2 5. ANODE 6. BASE 6. EMITTER, #2 6. SOURCE, #2 6. ANODE 7. BASE 7. BASE, #1 7. GATE, #1 7. ANODE 8. EMITTER 8. EMITTER, #1 8. SOURCE, #1 8. COMMON CATHODE STYLE 5: STYLE 6: STYLE 7: STYLE
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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BC547_datasheet.pdf
by BC546/D Amplifier Transistors BC546, B NPN Silicon BC547, A, B, C BC548, A, B, C COLLECTOR 1 2 BASE 3 EMITTER MAXIMUM RATINGS 12 3 BC BC BC Rating Symbol 546 547 548 Unit CASE 29–04, STYLE 17 Collector–Emitter Voltage VCEO 65 45 30 Vdc TO–92 (TO–226AA) Collector–Base Voltage VCBO 80 50 30 Vdc Emitter–Base
in „NPN mit PNP Transistor ersetzen für SHARP Pocket-Interface?“ · Mikrocontroller und Digitale Elektronik ·
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diode-ds31634.pdf
Information: See Page 3 • Weight: 0.072 grams (approximate) T C CO LLE CTOR U 2,4 3 E D O 4 2 C 1 C R BAS E P 1 B 3 W EM TER T OP VIEW E Top View Device Schematic Pin Out Configuration N Maximum Ratings @T =A25°C unless otherwise specified Characteristic Symbol Value Unit Collector-Base Voltage V CBO -15
in „Transistor als Schalter beim Akkuladen“ · Analoge Elektronik und Schaltungstechnik ·
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A100-BC327_28_BC337_38.pdf
160-400 Group-40 250-600 250-600 Collector Emitter Saturation Voltage VCEsat)* IC=500mA,I B50mA <0.70 V Base Emitter On Voltage VBEon)* C =500mA,V CE=1V <1.20 V DYNAMICS CHARACTERISTICS Transition Frequency fT C =10mA, VCE5V NPN Typ 200 MHz f=35MHz PNP Typ 100 MHz Out-put Capacitance C ob VCB10V, f=1MHz
in „Tansistor brechnen allgemein“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
enet_io.c
I2C1_MASTER_BASE)){ }; I2CMasterSlaveAddrSet(I2C1_MASTER_BASE, 0x60, false); I2CMasterDataPut(I2C1_MASTER_BASE,0x13); I2CMasterControl(I2C1_MASTER_BASE,I2C_MASTER_CMD_BURST_SEND_START); while(I2CMasterBusy(I2C1_MASTER_BASE
in „I2C Problem bei DK LM3S9b96 TI Cortex M3“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DG24128.asm
--------------------- .equ F_CPU = 8000000 .equ CYCLES_PER_US = ((F_CPU+500000)/1000000) .equ TXT_BASE = $0000 .equ GFX_BASE = $0200 .equ SPALTEN = 240/8 .equ GFX_ZEILEN = 128 .equ TXT_ZEILEN = 128/8 ; 0bxxxxxyyyyyyyyzzz ; x - CHR_OFFSET ; y - CHR_CODE ; z = CHR_LINE .equ CHR_OFFSET = 3 .equ CHR_CODE
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Ethernet_Hub_LXT914PE.pdf
Unit Interface (AUI) • Programmable DTE/MAU interface on AUI port port and four 10BASE-T transceivers. The AUI port is • Seven integrated LED drivers with four unique mode selectable: DTE mode allows connection of an exter- operational modes nal transceiver (10BASE2, 10BASE5, 10BASE-T
in „Ethernet Transceiver und Hub auf einer Platine verbinden“ · Mikrocontroller und Digitale Elektronik ·
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Schematic.pdf
A FB1 R2 R1 PIR0 P PIR0 PI11 GND GND 20k 80.6k R6 VPUP1 PI62 PI61 100k CO6 PG1 PC01 PC62 P0 P1 U1 BAS16GWJ CO CO5 SC2440A D3 P0 PI505 PI50FPI50 PI5PU05 FB1 PG1 PIU0 PID302 PID301 C1 CO7 COMP1 BST1 SW1 PC P0 22µF 13.3k 470pF CO2 PI70 PI70 PU03 SS1 PC 100nF SW1 PIU0 PL11 PIL0 OUT1 22nF PU14 SYNC D 5V
in „Dual Step-Down Spannungsregler Semtech SC2440A Eval-PCB“ · Markt ·
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PDF
M500_Askoll__No_Variations__2018-12-02.PDF
CO18 68R Q6 4k7 C PI2 D2 P0 D5 P1 D7 R40 PI PD0 PIPIQ11 PI5 PDPQ40 PI7K PDPI601 P0 PR2 PIP2 PI U5 BAS16T U6 BAS16T U8 BAS16T R38 CQ8 560R C26 R46 3 8 C9 3 8 C13 3 8 CO20 PR0 PPI81 BC846T P2 1k VCC PI53VCC VBOOTPI7 PC2PI91 P3 VCC PU3VCC VBOOT PU7 PC3 P10 P0 VCC PU0 VCC VBOOT PU7 PI0 PC0 PQ 22k P0 PI
in „RX und TX Schaltung beim Askoll M505“ · Analoge Elektronik und Schaltungstechnik ·
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6n136.pdf
Immunity • Bandwidth 2 MHz Dimensions in inches (mm) • Open-Collector Output 4 3 2 1 Pin • External BaseWiring Possible One I.D. NC 1 8 (Vt)ode • Field-Effect Stable byTRIOS* Base • Underwriters Lab File #E52744 .268 (6.81) Anode 2 7 (B ) .255 (6.48) 3 6 Collector DESCRIPTION Cathode (O ) NC 4 5 Emitter
in „High-speed Optokoppler“ · Mikrocontroller und Digitale Elektronik ·
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AL5802-DIO.pdf
40 — — hFE DC Current Gain C = 1.0mA, CE = 1.0V 70 — — — C = 10mA, VCE= 1.0V 100 — 300 Collector-Emitter Saturation Voltage (Note 9) — — 0.20 V VCE(SAT) C = 10mA, B = 1.0mA VBE(SAT) Base-Emitter Saturation Voltage C = 10mA, B = 1.0mA 0.65 — 0.85 V Electrical
in „Dimensionierung von LED-Dimm-Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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CNW82.pdf
Emitter-Collector Voltage VECO 7 V (CNW82/CNW83) 50 Collector-Emitter Voltage V CEO V (CNW84/CNW85) 80 Collector-Base Voltage (CNW83) VCBO 70 V (CNW85) 120 Total Power Dissipation @ A = 25°C P 200 mW Derate above 25°C D 2.0 mW/°C TOTAL DEVICE Tstg -55 to 150 °C Storage Temperature Range Ambient Operating Temperature
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8019AS.pdf
41H, D0H, 80H, D6H TAG I/O Format Length: fixed 8 bytes Item byte 47H I/O information 00H Min. I/O base bits 7-0 20H Min. I/O base bits 15-8 02H Max. I/O base bits 7-0 80H Max. I/O base bits 15-8 03H Base alignment 20H Range length 20H TAG IRQ Format Length: fixed 4 bytes Item byte 23H IRQ mask bits 7
in „Webserver mit ISA Netzwerkkarte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
activity_recognition_from_accelerometer_data.pdf
for different activities Correlation is calculated between each pair of axes as the than that of base-level classifiers, base-level-classifiers are ratio of the covariance and the product of the standard devia- known to outperform meta-level-classifiers on several data tions uorr)xGy* ¿ uτ xxyy*. Correlation
in „Menschliche Bewegung detektieren (laufen von gehen unterscheiden)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BD249ABC-ISC.PDF
/C ¡⁄125 W at 25°C case temperature ¡⁄25 A continuous collector current PINNING PIN DESCRIPTION 1 Base Collector;connected to 2 mounting base 3 Emitter Fig.1 simplified outline (TO-3PN) and symbol Absolute maximum ratings(Ta= ¡æ) SYMBOL PARAMETER CONDITIONS VALUE UNIT BD249 45 BD249A 60 VCEO Collector-e导itter voltage Open base V 电 半 BD249B 80O R 固 BD249C U C 100 BD249 N D 55 IC O V Collector-base voltageD2E9A SOpen base 70 V CBO N GBD249B 90 C H A IN BD249C 115 VEBO Emitter-base voltage Open collector 5 V C Collector current
in „Rippelstromgenerator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BDX54BTU-datasheetz.pdf
Applications Power Darlington TR Complement to BDX53, BDX53A, BDX53B and BDX53C respectively 1 TO-220 1.Base 2.Collector3.Emitter PNP Epitaxial Silicon Transistor Absolute Maximum Ratings TC=25°C unless otherwise noted Symbol Parameter Value Units V Collector-Base Voltage: BDX54 - 45 V CBO : BDX54A - 60 V
in „Saito Pro Charger Batterieladegerät - Mikrocontroller ATmel ATTINY26L defekt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DG24128.asm
--------------------- .equ F_CPU = 8000000 .equ CYCLES_PER_US = ((F_CPU+500000)/1000000) .equ TXT_BASE = $0000 .equ GFX_BASE = $0300 .equ FONT_SIZE = 6 .equ SPALTEN = 240/FONT_SIZE .equ GFX_ZEILEN = 128 .equ TXT_ZEILEN = 128/8 ; 0bxxxxxyyyyyyyyzzz ; x - CHR_OFFSET ; y - CHR_CODE ; z = CHR_LINE .equ CHR_OFFSET
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DTC114.pdf
. BASE PIN 1. ANODE PIN 1. CATHODE PIN 1. DRAIN 2. EMITTER 2. ANODE 2. CATHODE 2. SOURCE 2. BASE 3. CATHODE 3. ANODE 3. GATE 3. COLLECTOR 3. COLLECTOR STYLE 6: STYLE 7: STYLE 8: STYLE 9: STYLE 10: PIN 1. GATE PIN 1. SOURCE PIN 1. DRAIN PIN 1. BASE 1 PIN 1. CATHODE 2. SOURCE & SUBSTRATE 2. DRAIN 2. GATE 2. EMITTER 2. GATE 3. DRAIN 3. GATE 3. SOURCE & SUBSTRATE 3. BASE 2 3. ANODE STYLE 11: STYLE 12: STYLE 13: STYLE 14: STYLE 15: PIN 1. ANODE PIN
in „Transistor mit Vorwiderstand (Digitaltransistor) in TO92 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
myfirst.s
GPIOB_BASE + 0x00 .equ GPIOB_OTYPER , GPIOB_BASE + 0x04 .equ GPIOB_OSPEEDR , GPIOB_BASE + 0x08 .equ GPIOB_PUPDR , GPIOB_BASE + 0x0C .equ GPIOB_IDR , GPIOB_BASE + 0x10 .equ GPIOB_ODR , GPIOB_BASE + 0x14 .equ GPIOB_BSRR
in „Assemblerprogramm zur Ausgabe eines Zeichens auf UART3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-BFQ790-DS-v02_00-EN.pdf
Noteor TestCondition Min. Max. Collector emitter voltage VCE – 6.1 V TA=25°C – 5.1 T =40°C A Collector base voltage VCB – 18 V – Instantaneous total base emitter VBE -2.0 – V DC +RFswing reverse voltage Instantaneous total collectorcurrentCi – 600 mA DC+ RFswing DC collector current IC – 300 mA – DC base
in „HF-Ausgangsleistung - Verständnisfrage“ · HF, Funk und Felder ·
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Datei
xparameters.h
of devices include volatile RAM * devices. */ #define XPAR_ZBT_NUM_INSTANCES 1 #define XPAR_ZBT_0_BASE 0x00000000 #define XPAR_ZBT_0_SIZE 0x00100000 #define XPAR_SRAM_NUM_INSTANCES 1 #define XPAR_SRAM_0_BASE 0x00100000 #define XPAR_SRAM_0_SIZE 0x00200000 #define XPAR_DDR_NUM_INSTANCES 1 #define XPAR_DDR
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Datei
main.c
structures // ****************************************************** volatile AT91PS_PIO mPIOB = AT91C_BASE_PIOB; volatile AT91PS_PMC mPMC = AT91C_BASE_PMC; //AT91PS_PIO v_pPioA = AT91C_BASE_PIOA; // ******************************************************* // External References // ************************
in „Data aus USART vom SAM7-EX256 lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HBO_100W_2_eng.pdf
after a run-up phase of approximately five minutes. Mounting This lamp should be mounted at the anode base; the cathode base should be left unsupported. It is allowed to mount at the cathode base leaving the anode base unsupported; however, this renders length „a“ meaningless. 1 2 Length „a“ specifies the
in „Vorschaltgerät für Quecksilber kurz Bogen Lampe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rtl8309sb.pdf
0: Not 100Base-TX half duplex capable 4.6 10Base-T-FD RW 1: 10Base-TX full duplex capable 1 0: Not 10Base-TX full duplex capable 4.5 10Base-T RW 1: 10Base-TX half duplex capable 1 0: Not 10Base-TX half duplex capable
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2222_2222A.pdf
2N2218,2N2219, 2N2907 2N2904, 2N2905 MAXIMUM RATINGS Characteristic Unit Symbol NPN PNP Collector - Base Voltage V 60 60 Vdc CBO Collector - Emitter Voltage V 30 40 Vdc CEO Emitter - Base Voltage V 5 5 Vdc EBO Collector Current IC 800 600 mAdc Total Device Dissipation P @ 25° C Case Temperature D To -
in „Alternative/Vergleichstyp zu 2N5109“ · HF, Funk und Felder ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
Symbol Values Unit Noteortestcondition Min. Typ. Max. Transition frequency T 31 42 – GHz VCE= 3V,CI =70mA, f= 1GHz Collector base capacitance CCB – 0.26 0.4 pF VCB= 3V, BE=0, f=1MHz, emittergrounded Collector emitter capacitance CCE 0.45 – VCE= 3V, BE=0, f=1 MHz, basegrounded Emitter base capacitance CEB
in „keysight ads bjt transistor (Bipolartransistor) Parameter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
Symbol Values Unit Noteortestcondition Min. Typ. Max. Transition frequency T 31 42 – GHz VCE= 3V,CI =70mA, f= 1GHz Collector base capacitance CCB – 0.26 0.4 pF VCB= 3V, BE=0, f=1MHz, emittergrounded Collector emitter capacitance CCE 0.45 – VCE= 3V, BE=0, f=1 MHz, basegrounded Emitter base capacitance CEB
in „Clapp Oszillator mit oder ohne Bandpassfilter“ · HF, Funk und Felder ·
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PDF
Colpitts_OT_XO.pdf
selection tank. That other condition is to set the reactance of the tank consisting of C and L to 70 ohms at f . Hence, the second condition is 2 1 0 (1 2π f 0 2 )(2πf 0 1 ) = −j70 (10.15) 1 2π f 0 2 2πf L 0 1 We can now set up two equations and two unknowns to arrive at the tank values. 10.4. Setting
in „3rd-OT-Oszillator mit NE602 (an Pin 6 und 7)“ · HF, Funk und Felder ·
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PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
20 3.6 6 15 600 725 7.14/13 51.2 1.80 x 10 4242 8484 2700 9450 20 4.8 6 15 900 1025 7.14/13 76.8 2.70 x 10 6363 12726 3900 13650 20 7.2 23 P r Q X F S E R I E S t 2 – Liquid Cooled, Xenon Filled Flashlamps for High Average Power, Medium Peak r o Power Operation u c t R a g e Bore Arc Overall Base Size
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
20 3.6 6 15 600 725 7.14/13 51.2 1.80 x 10 4242 8484 2700 9450 20 4.8 6 15 900 1025 7.14/13 76.8 2.70 x 10 6363 12726 3900 13650 20 7.2 23 P r Q X F S E R I E S t 2 – Liquid Cooled, Xenon Filled Flashlamps for High Average Power, Medium Peak r o Power Operation u c t R a g e Bore Arc Overall Base Size
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC18_CHAPTER_5_1.pdf
Ptot M Tjmax —T mb p P tot M max = - (8) t Zthj —mb when T mb > T mb K. That is, below a mounting-base Ptot M th j-mb = 0.01) temperature of T mb K, the maximum power dissipation has a fixed limit value; and above T mb K, the power dissipation Tmb t must be reduced linearly with increasing mounting-base
in „Wärmewiderstand Rthg - Rthgk“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK7514-55A.pdf
PARAMETER CONDITIONS TYP. MAX. UNIT R th j-mb Thermal resistance junction to - - 0.9 K/W mounting base R Thermal resistance junction to in free air 60 - K/W th j-a ambient(TO220AB) R th j-a Thermal resistance junction to Minimum footprint, FR4 50 - K/W ambient(SOT404) board July 2000 1 Rev 1.000 Philips
in „Wärmewiderstandsberechnung FET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK_7514-55.pdf
PARAMETER CONDITIONS TYP. MAX. UNIT R th j-mb Thermal resistance junction to - - 0.9 K/W mounting base R Thermal resistance junction to in free air 60 - K/W th j-a ambient(TO220AB) R th j-a Thermal resistance junction to Minimum footprint, FR4 50 - K/W ambient(SOT404) board July 2000 1 Rev 1.000 Philips
in „Brauche Hilfe bei Motoransteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
700144.pdf
audio equipment ,general amplifier,and analogue switching applications PINNING PIN DESCRIPTION 1 Base 2 Collector;connected to mounting base 3 Emitter Absolute maximum ratings(Ta=25 ¡æ) 导 体 SYMBOL 电 半 PARAMETER CONDITIONS VTLOE R UNIT 固 BD645 U C 80 BD647 O N D 100 VCBO Collector-base voltage OpenMemitIer V BD64E S E 120 A N GBD651 140 C H BD645 60 IN BD647 80 VCEO Collector-emitter voltage Open base V BD649 100 BD651 120 VEBO Emitter-base voltage Open collector 5 V C Collector current-DC 8 A ICM Collector current-Pulse 12 A B Base current 0.3 mA P C Collector power dissipation TC=25¡æ 62.5 W Tj
in „Informationen über den Transistor BD645AS von Philips“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Full_Code.c
defined end // Initialize all the handles needed for this application myClk = CLK_init((void *)CLK_BASE_ADDR, sizeof(CLK_Obj)); myCpu = CPU_init((void *)NULL, sizeof(CPU_Obj)); myFlash = FLASH_init((void *)FLASH_BASE_ADDR, sizeof(FLASH_Obj)); myGpio = GPIO_init((void *)GPIO_BASE_ADDR, sizeof(GPIO_Obj)); myPie = PIE_init((void *)PIE_BASE_ADDR, sizeof(PIE_Obj)); myPll = PLL_init((void *)PLL_BASE_ADDR, sizeof(PLL_Obj)); myPwm1 = PWM_init((void *)PWM_ePWM1_BASE_ADDR, sizeof(PWM_Obj)); myPwm2 = PWM_init((void *)PWM_ePWM2_BASE_ADDR, sizeof
in „Fließkommazahlen in Ganzzahlen umrechnen für Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WM-G-MR-01-v27__01192006.pdf
Transmit (6Mbps, 14 dBm) - 500 mA 540 mA Transmit (11Mbps, 14 dBm) - 485 mA 530 mA Receive (54Mbps, -70 dBm) - 275 mA 300 mA Receive (11Mbps, -70 dBm) - 255 mA 280 mA Sleep connected average* - 8 mA 15 mA Deep Sleep** - 1.2 mA 2.0 mA range)m Current (Full temperature and voltage Condition Maximum Transmit
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIPL791Af.PDF
100°C B 1 C 2 ● 1000 Volt Blocking Capability 3 E Pin 2 is in electrical contact with the mounting base. MDTRACA absolute maximum ratings at 25°C case temperature (unless otherwise noted) RATING SYMBOL VALUE UNIT TIPL791 850 Collector-base voltagE (I = 0) VCBO V TIPL791A 1000 TIPL791 850 Collector-emitter
in „Kühlkörper für mehrere Bauteile berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sysinit.c
10.000 TimerBaseInitStructure.TIM_ClockDivision = TIM_CKD_DIV1; TimerBaseInitStructure.TIM_RepetitionCounter = 1; TIM_TimeBaseInit(TIM2, &TimerBaseInitStructure); // Timer 2 einstellen /* Interrupt Handler anbinden
in „Timer Interrupt STM32F103“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Grille_prix_Tarif_Bleu.pdf
mois) Bleu Bleu Blanc Blanc Rouge Rouge (kVA) HC HP HC HP HC HP 6 15,59 13,25 16,12 14,99 18,71 15,75 70,60 9 19,38 13,25 16,12 14,99 18,71 15,75 70,60 12 23,07 13,25 16,12 14,99 18,71 15,75 70,60 15 26,47 13,25 16,12 14,99 18,71 15,75 70,60 18 30,04 13,25 16,12 14,99 18,71 15,75 70,60 30 44,73 13,25 16,12 14,99 18,71 15,75 70,60 36 52,42 13,25 16,12 14,99 18,71 15,75 70,60 Majoration pour les auto-producteurs individuels avec injection (€/an HT) : 9,60 EDF SA Direction Commerce Origine 2024 de l’électricité du Tarif Réglementé
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PDF
CNY17-2.pdf
4 ■ Current transfer ratio in select groups coupled with an NPN phototransistor. P o ■ High BVCEO—70V minimum t t White Package (-M Suffix) Black Package (No -M Suffix) a s s t r 6 O 6 6 6 p 1 1 o o 1 1 u p r 6 6 s 1 1 Schematic ANODE 1 6BASE CATHODE 2 5 COL 3 4 EMITTER ©2004 Fairchild Semiconductor Corporation
in „Optokoppler CNY17“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
; } for(i=0;i<100;i++); //AT91C_BASE_PIOA->PIO_SODR = PA6; AT91C_BASE_PIOA->PIO_SODR = PA13; for(i=0;i<100;i++); AT91C_BASE_PIOA->PIO_CODR = PA13; //AT91C_BASE_PIOA->PIO_CODR = PA6; //Einlesen //AT91C_BASE_PIOA->PIO_ODR = PA3; for(i=0;i<1500;i++); //while(!(AT91C_BASE_PIOA->PIO_PDSR & PA3)){ //} Eingelesen = 0x01; //I2C /*//Initialisierung AT91C_BASE_TWI->TWI_CWGR = (0x02 | (0x02 << 8) | (0x02 << 16)); AT91C_BASE_TWI->TWI_MMR = ((0x70 << 16) | (AT91C_TWI_MREAD));
in „TWI und AT91SAM7S“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM1203.pdf
upon level clamp) which holds the dc bias of the video amplifiers the differential DC voltage at the bases of Q3 and Q4. The and CRT cathodes constant during the black level reference Q3 and Q4 differential base voltage is determined by the portion of the video waveform. The clamp comparator, contrast control
in „Overhead-Projektor Display ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N3442_Audiopower_NPN.PDF
MAXIMUM RATINGS (Note 1) Rating Symbol Value Unit Collector−Emitter Voltage V 140 Vdc CEO Collector−Base Voltage VCB 160 Vdc Emitter−Base Voltage VEB 7.0 Vdc Collector Current− Continuous C 10 Adc − Peak 15 TO−204AA (TO−3) CASE 1−07 Base Current − Continuous B 7.0 Adc − Peak − STYLE 1 Total Device Dissipation
in „BJT-2N3442 von ON -ist der echt ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2SC2922.pdf
Complement to type 2SA1216 APPLICATIONS ·Audio and general purpose PINNING(see Fig.2) PIN DESCRIPTION 1 Base Collector;connected to 2 mounting base 3 Emitter Fig.1 simplified outline (MT-200) and symbol Absolute maximum ratings(Ta=25 ℃) SYMBOL PARAMETER CONDITIONS VALUE UNIT VCBO Collector-base voltage Open emitter 180 V VCEO Collector-emitter voltage Open base 180 V VEBO Emitter-base voltage Open collector 5 V IC Collector current 17 A IB Base current 5 A PC Collector power dissipation TC=25℃ 200 W T Junction temperature 150 ℃ j T stg Storage temperature
in „Gefälschte Transistoren!“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
myfirst.s
GPIOB_BASE + 0x00 @<<<<< .equ GPIOB_AFRL , GPIOB_BASE + 0x20 @<<<<< .equ GPIOB_AFRH , GPIOB_BASE + 0x24 .equ GPIOA_BASE , 0x40020000 .equ GPIOA_MODER , GPIOA_BASE + 0x00 .equ GPIOA_OTYPER , GPIOA_BASE + 0x04 .
in „STM32CubeIDE - kann man dem gdb server einen Schalter mitgeben?“ · Mikrocontroller und Digitale Elektronik ·