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PDF
DS_FT232BL_BQ.pdf
transfer USB Smart Card Readers PDA to USB data transfer USB Instrumentation 1.1 Driver Support Royalty free VIRTUAL COM PORT Royalty free D2XX Direct Drivers (VCP) DRIVERS for... (USB Drivers + DLL S/W Interface
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PDF
MAX146-MAX147.pdf
Frequency SHDN = FLOAT 1.8 MHz A SHDN = VDD 0.225 X 0.1 2.0 External Clock Frequency MHz 1 Data transfer only 0 2.0 4 ANALOG/COM INPUTS 7 Input Voltage Range, Single- Unipolar, COM = 0V 0 to VREF Ended and Differential (Note 6) V Bipolar, COM = VREF / 2 ±VREF / 2 Multiplexer Leakage Current On/off leakage
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX146-MAX147.pdf
Frequency SHDN = FLOAT 1.8 MHz A SHDN = VDD 0.225 X 0.1 2.0 External Clock Frequency MHz 1 Data transfer only 0 2.0 4 ANALOG/COM INPUTS 7 Input Voltage Range, Single- Unipolar, COM = 0V 0 to VREF Ended and Differential (Note 6) V Bipolar, COM = VREF / 2 ±VREF / 2 Multiplexer Leakage Current On/off leakage
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD594.pdf
change withe.t notic INTERPRETING AD594/AD595 OUTPUT VOLTAGES compensated signal, the following transfer functions should be To achieve a temperature proportional output of 10 mV/°C and used to determine the actual output voltages: accurately compensate for the reference junction over the rated AD594
in „(V): AD594AQ“ · Markt ·
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PDF
421725987AD594_5_c.pdf
change withe.t notic INTERPRETING AD594/AD595 OUTPUT VOLTAGES compensated signal, the following transfer functions should be To achieve a temperature proportional output of 10 mV/°C and used to determine the actual output voltages: accurately compensate for the reference junction over the rated AD594
in „AD595 Ausgangssignal Pulsiert“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD595.pdf
change withe.t notic INTERPRETING AD594/AD595 OUTPUT VOLTAGES compensated signal, the following transfer functions should be To achieve a temperature proportional output of 10 mV/°C and used to determine the actual output voltages: accurately compensate for the reference junction over the rated AD594
in „Thermoelent an AD595.Versorgung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
421725987AD594_5_c.pdf
change withe.t notic INTERPRETING AD594/AD595 OUTPUT VOLTAGES compensated signal, the following transfer functions should be To achieve a temperature proportional output of 10 mV/°C and used to determine the actual output voltages: accurately compensate for the reference junction over the rated AD594
in „Probleme mit dem AD595 (Thermoelement Typ K)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gbdso_uk.pdf
implemented using a 256-point radix-2 fast Fourier transform (FFT). PC link for screen or data transfer 16-bit arithmetic is used for the majority of the calculations, but since the GB has no multi- 5 hrs operation from NiMH bat- ply instruction this has to be calculated longhand by assembler software
in „Bameboy-LCD mit avr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gbdso_uk.pdf
implemented using a 256-point radix-2 fast Fourier transform (FFT). PC link for screen or data transfer 16-bit arithmetic is used for the majority of the calculations, but since the GB has no multi- 5 hrs operation from NiMH bat- ply instruction this has to be calculated longhand by assembler software
in „Alternative zu teurem Oszilloskop“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD594aq.PDF
change withe.t notic INTERPRETING AD594/AD595 OUTPUT VOLTAGES compensated signal, the following transfer functions should be To achieve a temperature proportional output of 10 mV/°C and used to determine the actual output voltages: accurately compensate for the reference junction over the rated AD594
in „Mehrere Thermoelemente auf einen AD594AQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AS8002_Datasheet_v1_1.pdf
.......10............................................................... 7.3 SPI Interface Data Transfer Protocol...............................................................................................10................................................. 7.4 SPI Hardware Connection .............
in „AS8002 12 bit ADC via SPI auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX127-MAX128B.pdf
____________________________________ Multirange, +5V, 12-Bit DAS with 2-Wire Serial Interface M Transfer Function Layout, Grounding, and Bypassing Output data coding for the MAX127/MAX128 is binary Careful printed circuit board layout is essential for best A in unipolar mode with 1LSB = (FS/4096) and
in „Probleme mit Max127 (i2c adc) und m644p (gcc)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ne5532.pdf
amplifier which uses V REF to add an offset voltage to V and feedback to add inverting gain. The transfer function for V is Equation 2. IN OUT– VOUT+ = VIN (1) V out = V ref æ R 4 ö´ æ1+ R 2ö -V in´R 2 çR 3+R 4 ÷ è R 1ø R1 è ø (2) The differential output signal, V DIFF, is the difference between the two single-ended output signals, V OUT+ and V OUT–. Equation 3 shows the transfer function for V DIFF By applying the conditions that R 1 R an2 R = R 3 the4 transfer function is simplified into Equation 6. Using this configuration, the maximum input signal is equal to the reference
in „Spannungs-Strom-Wandler mit CFA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tcrt5000_application_note.pdf
moto the forward current I ) of the diode emitter is pre- F of the object inferred to the optical transfer function. As with the function of optocc Flers, I /I is generally known as the coupling so-called opticafactor, k. The following approximate relationship exists It is the ratio between k and OT:o
in „Alten Stromzähler elektronisch auslesen“ · Mikrocontroller und Digitale Elektronik ·
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emmc.pdf
mode. By de- fault, after power-on or assertion of the RST_n signal, only DAT0 is used for data transfer. The MMC controller can configure a wider data bus for data transfer either using DAT[3:0] (4-bit mode) or DAT[7:0] (8-bit mode). The device includes internal pull-up resistors for data lines DAT[
in „Pin-Swap/Cross IC?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80f702e6.pdf
____________________________________ Multirange, +5V, 12-Bit DAS with 2-Wire Serial Interface M Transfer Function Layout, Grounding, and Bypassing Output data coding for the MAX127/MAX128 is binary Careful printed circuit board layout is essential for best A in unipolar mode with 1LSB = (FS/4096) and
in „MAX127BCAI Bipolar nur in diff mode?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcf8573.pdf
on/power fail detection 7.6 Interface level shifters 8 CHARACTERISTICS OF THE I 2C-BUS 8.1 Bit transfer 8.2 Start and stop conditions 8.3 System configuration 8.4 Acknowledge 9 I C-BUS PROTOCOL 9.1 Addressing 9.2 Clock/calendar READ/WRITE cycles 10 LIMITING VALUES 11 HANDLING 12 DC CHARACTERISTICS 13
in „DS3231 vs PCF8573, hilfe gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cp2104.pdf
device is not transmitting or receiving doggle at a fixed rate as specified in Table 6 when data transfer is in progress. Typically, these pins are connected to two LEDs to indicate data transfer. VIO CP2104 GPIO.0 – TX Toggle GPIO.1 – RX Toggle Figure 5. Transmit and Receive Toggle Typical Connection
in „Frage zu CP2102N und CP2104“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
sensing in areas previously not monitored in the PC. SST is a self-clocked, one-wire bus for data transfer. The bus requires no additional control lines. In addition, SST also includes variable data transfer rate established with every message. Therefore, it is comparatively flexible. The W83627DHG has
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VisiLogic_-_Communications.pdf
SDO in ProgressSDO is busy transferring SDO is not in PLC 242 data progress SB 243 CANopen: SDO transfer SDO data transfer fails SDO transfer PLC failed begins VisiLogic: Communications 99 Networks (CAN, Serial) CANbus Networking CANbus, SIs 200-201, 236-237, 240-245 When using CANopen SI# Description
in „USB-Host / industrielle SPS / Frequency Counter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN735.pdf
is no limit to the amount of data that can be sent 2. SSP Address Register (SSPADD<6:0>) in one transfer. After each 8-bit transfer, a 9th clock 2 I C Bit Rate pulse is sent by the master. At this time, the transmit- 3. SSP Status Register (SSPSTAT) ting device on the bus releases the SDA line and the
in „I2C example code“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cs5460.pdf
OVERVIEW The state machine decodes the command word as it is received. The serial port enters data transfer The CS5460’s serial port incorporates a state ma- chine with transmit/receive buffers. The state ma- mode if the MSB of the command word is logic 0 (B7 = 0). In data transfer mode, the internal regis
in „Leistung messen an 230V von 1W bis 2000W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4N27-M.pdf
. 1.0.0 2 N X Electrical Characteristics (Continued) (T = 25°C unless otherwise specified) X A M Transfer Characteristics , H Symbol Parameter Test Conditions Device Min. Typ.* Max. Unit 1 A DC CHARACTERISTICS X CTR Current Transfer RatiI = 10mA, V = 10V 4N35M, 4N36M, 100 % M Collector to Emitter F CE
in „Wechselspannungs Fragen :(“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irf7389.pdf
— pF C oss OutputCapacitance P-Ch — 380 — P-Channel V = 0V, V = -25V, ƒ = 1.0MHz C rss Reverse Transfer Capacitance N-Ch — 130 — GS DS P-Ch — 180 — Source-Drain Ratings and Characteristics Parameter Min. Typ. Max. Units Conditions N-Ch — — 2.5 IS Continuous Source Current (Body Diode) P-Ch — — -2.5
in „Mini-FET's“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF7389_N-P-Channel_30V_5.3A_0.058Ohm.pdf
— pF C oss OutputCapacitance P-Ch — 380 — P-Channel V = 0V, V = -25V, ƒ = 1.0MHz C rss Reverse Transfer Capacitance N-Ch — 130 — GS DS P-Ch — 180 — Source-Drain Ratings and Characteristics Parameter Min. Typ. Max. Units Conditions N-Ch — — 2.5 IS Continuous Source Current (Body Diode) P-Ch — — -2.5
in „DC-Motor mit HIP2101“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf7389.pdf
— pF C oss OutputCapacitance P-Ch — 380 — P-Channel V = 0V, V = -25V, ƒ = 1.0MHz C rss Reverse Transfer Capacitance N-Ch — 130 — GS DS P-Ch — 180 — Source-Drain Ratings and Characteristics Parameter Min. Typ. Max. Units Conditions N-Ch — — 2.5 IS Continuous Source Current (Body Diode) P-Ch — — -2.5
in „H-Brücke am µC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
display_init.c
LCD_GPIO_config(void); void delay_loop(int iDelay); void LCD_setup(void); void LCD_init(void); void LCD_transfer_test(void); void do_display_init_and_test(void) { LCD_GPIO_config(); delay_loop(500); LCD_setup(); LCD_init(); delay_loop(5000); LCD_transfer_test(); // forever for(;;) { } } // Display related pins
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PDF
MPXx6115A.pdf
GND Pin 3 47 pF 51 K Figure 3. Typical Application Circuit (Output Source Current Operation) 5.0 Transfer Function: MAX 4.5 Vout= Vs* (.009*P-.095) ± Error 4.0 V = 5.0 Vdc S 3.5 TEMP = 0 to 85ºC ) TYP o 3.0 ( p 2.5 u 2.0 O 1.5 1.0 MIN 0.5 0 5 1 1 2 2 3 3 4 4 5 5 6 65 7 7 8 8 9 9 0 05 0 5 02 1 1 1 1 1
in „(S) Empfehlung für Drucksensoren (MPX? 6115A6U)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sct2080ke.pdf
- S Input capacitance Ciss VGS= 0V - 2080 - Output capacitance Coss VDS= 800V - 77 - pF Reverse transfer capacitance C f = 1MHz - 16 - rss Effective output capacitance, VGS= 0V energy related C o(er) V = 0V to 500V - 116 - pF DS Turn - on delay time d(on)3 VDD= 400V, V GS = 18V - 35 - Rise time t*3 D
in „Verarmungs- oder Anreicherungstyp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOSFET_IRF630_N-Ch_TO-220AB_200V_9_A.pdf
Nanosecond Switching Speeds convertors, motor drivers, relay drivers, and drivers for high Linear Transfer Characteristics power bipolar switching transistors requiring high speed and low gate drive power. These types can be operated directly High Input Impedance Related Literature from integrated circuits
in „Hilfe bei transistor auswahl/suche“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ARTA-user-manual.pdf
is typical in acoustical measurements. The computer generated signal g, after D/A filtering with transfer function D, is applied to the test system that has the transfer function H. Note that H represents the best linear fit of the possible nonlinear transfer function. The generator noise is neglected
in „Empfehlung für Audio-Meßgeräte gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
_ATmega32.pdf
10/02 Serial Peripheral The Serial Peripheral Interface (SPI) allows high-speed synchronous data transfer between the ATmega32 and peripheral devices or between several AVR devices. The Interface – SPI ATmega32 SPI includes the following features: Full-duplex, Three-wire Synchronous Data Transfer Master
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADSP-2181_Datenblatt.pdf
5 I/O Serial Port 1 or Two External is generated after a data buffer transfer. IRQs, Flag In and Flag Out IRD, IWR 2 I IDMA Port Read/Write Inputs • SPORT0 has a multichannel interface to selectively receive and transmit a 24- or 32-word, time-division multiplexed,IS 1 I IDMA
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FT232R.pdf
Low Bandwidth Video data transfer USB Wireless Modems PDA to USB data transfer USB Bar Code Readers USB Smart Card Readers USB Software and Hardware Encryption Dongles USB Instrumentation 1.1 Driver Support Royalty free VIRTUAL COM
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FT232R.pdf
Low Bandwidth Video data transfer USB Wireless Modems PDA to USB data transfer USB Bar Code Readers USB Smart Card Readers USB Software and Hardware Encryption Dongles USB Instrumentation 1.1 Driver Support Royalty free VIRTUAL COM
in „Bite um Kontrolle meines Schaltplans und Layoutes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SH1106_V2.3.pdf
clock line (SCL). Both lines must be connected to a positive supply via a pull-up resistor. Data transfer may be initiated only when the bus is not busy. Note: The positive supply of pull-up resistor must equal to the value of V DD1. 11 SH1106 Bit Transfer One data bit is transferred during each clock
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PDF
SH1106.pdf
clock line (SCL). Both lines must be connected to a positive supply via a pull-up resistor. Data transfer may be initiated only when the bus is not busy. Note: The positive supply of pull-up resistor must equal to the value of V DD1. 11 SH1106 Bit Transfer One data bit is transferred during each clock
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ne2.asm
nic_packet_snd0 cpi XL, 0x40 brcc nic_packet_snd0 ldi XL, 0x40 nic_packet_snd0: ; start remote dma write transfer nic_write NIC_RSAR0, 0 nic_write NIC_RSAR1, NIC_TXPAGE nic_write_r NIC_RBCR0, XL nic_write_r NIC_RBCR1, XH nic_write NIC_CR, ( 1 << STA ) | ( 1 << RD1 ) pushx ; transfer loop nic_packet_snd1: tst
in „NE2000 DMA Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MS-SLR.asm
tx_start: push r16 ;initiates a buffer TX by the USART lds r16,tx_complete ;is there already a transfer running? cpi r16,0 breq tx_start_er ;yes, signal the error by 0xFF in R16 lds r16,tx_bytes ;are there really some bytes to send? cpi r16,0 breq tx_start_ex ;no! -> just leave this subroutine push
in „UART verursacht Reset(?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AO4410.pdf
Capacitance 9130 10500 pF iss C oss Output Capacitance V GS=0V, VDS15V, f=1MHz 625 pF C rss Reverse Transfer Capacitance 387 542 pF R g Gate resistance V GS=0V, VDS0V, f=1MHz 0.2 0.4 0.8 Ω SWITCHING PARAMETERS Q g(4.5V) Total Gate Charge 72.4 85 nC Q gs Gate Source Charge V GS0V, V =DSV, I =1DA 13.4 nC Q
in „Falsches Ladegerät am Notebook :-(“ · Mikrocontroller und Digitale Elektronik ·
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LTV356.pdf
V 0 1 0 5 10 15 0 0.5 1.0 1.5 2.0 2.5 3.0 Forward current IA) Forward voltage VV) Fig.5 Current Transfer Ratio vs. Fig.6 Collector Current vs. Forward Current Collector-emitter Voltage 200 50 V = 5V I = 30mA o ) 180 Ta= 25 C 25mA Ta= 25 C ( 160 ) 40 T m C 140 ( t t 20mA r 120 e 30 e 100 u 15mA Pc(MAX
in „Potentialtrennung zwischen 74HC595 und ATMega128“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hal_dma.c
************************************************************************/ DmacDescriptor* AddDmaTransfer(const dma_channel_id_t chann, void* const srcaddr, const uint16_t src_size, void* const dstaddr, const uint16_t dst_size) { uint16_t bsize, bcount; uint8_t srcinc, dstinc; void *dmasrc, *dmadst; if
in „Bare-Metal ATSAM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MP3_Shield_RealtimeMIDI_demo.ino
/0xB0 is channel message, set channel volume to near max (127) } void sendMIDI(byte data) { SPI.transfer(0x00); SPI.transfer(data); } //Plays a MIDI note. Doesn't check to see that cmd is greater than 127, or that data values are less than 127 void talkMIDI(byte cmd, byte data1, byte data2) { // // Wait
in „VS1003/VS1053 Midi-Synth“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serial_stm32.c
ctx = ctx->next; } return NULL; } /** status of serial activity @param dirout true for outgoing transfer @return true if there is ongoing transfer */ bool serial_status(serial_ctx_t *ctx, bool dirout) { (void) ctx->huart->Instance->SR; if(dirout != false) { // out if(fifo_isempty(&ctx->fifo_tx) == 0)
in „STM32 HAL UART Mysterium oder bin ich dumm?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TastenLedsSummer.asm
; TimerCounter0 Compare Match B rjmp isr_Timer0OFlow ; Timer/Couner0 Overflow reti ; SPI Serial Transfer Complete reti ; USART Rx Complete reti ; USART, Data Register Empty reti ; USART Tx Complete reti ; ADC Conversion Complete reti ; EEPROM Ready reti ; Analog Comparator reti ; Two-wire Serial Interface
in „AmtelStudio6 Simulation/Debugging Timer0Interrupt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SJC00103BED.pdf
EBO E C Collector-basecutoffcurrent(EmitteropenI V = 20 V, I = 0 100 nA CBO CB E Forward current transfer ratio h FE V CE = 10 V, C = 10 mA 20 50 100 Collector-emitter saturation voltage VCE(sat) IC= 20 mA, I B 2 mA 0.4 V Transition frequency 2SC1360 fT V CB = 10 V, E = −10 mA, f = 100 MHz 300 500 MHz 2SC1360A 300 Reverse transfer capacitanceC1360 Cre V CB = 10 V, E = −1 mA, f = 10.7 MHz 0.96 1.5 pF (Common emitter) 2SC1360A 1.5 Power gain 2SC1360 GP V CB = 10 V, E = −10 mA, f = 58 MHz 22 26 30 dB 2SC1360A 22 30 Note) Measuring
in „Was ist das für ein Halbleiter?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AO3404A.pdf
iss Input Capacitance 373 448 pF C oss Output Capacitance V GSV, V =DSV, f=1MHz 67 pF C Reverse Transfer Capacitance 41 pF rss R g Gate resistance V GSV, V =DS, f=1MHz 0.9 1.8 2.8 SWITCHING PARAMETERS Q (10V) Total Gate Charge 7.1 11 nC g Q g4.5V) Total Gate Charge 3.3 nC VGS=10V, VDS=15V, ID=5.8A Q
in „unbekante SMD code (Fujitsu Esprimo X913T Motherboard D3204)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Si2302.pdf
Input Capacitance C 340 iss Output Capacitance C 115 oss VDS = 10 V,GS = 0 V, f = 1 MHz pF Reverse Transfer Capacitance Crss 33 Switching Turn-On Delay Time d(on) 12 25 Rise Time tr V = 10 V, R = 5.5 ▯ 36 60 I ^ 3.6 A, V = 4.5 V, R = 6 ▯ ns Turn-Off Delay Time d(off) D GEN G 34 60 Fall-Time tf 10 25 Notes
in „Highside-Switch gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BSS138.pdf
Capacitance C iss ¾ ¾ 50 pF VDS = 10V, GS = 0V Output Capacitance C oss ¾ ¾ 25 pF f = 1.0MHz Reverse Transfer Capacitance C ¾ ¾ 8.0 pF rss SWITCHING CHARACTERISTICS Turn-On Delay Time D(ON) ¾ ¾ 20 ns VDD = 30V, D = 0.2A, Turn-Off Delay Time tD(OFF) ¾ ¾ 20 ns RGEN = 50W Notes: 1. Device mounted on FR-5 PCB
in „Logic Level Hype“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
70628.pdf
Input Capacitance C 340 iss Output Capacitance C 115 oss VDS = 10 V,GS = 0 V, f = 1 MHz pF Reverse Transfer Capacitance Crss 33 Switching Turn-On Delay Time d(on) 12 25 Rise Time tr V = 10 V, R = 5.5 ▯ 36 60 I ^ 3.6 A, V = 4.5 V, R = 6 ▯ ns Turn-Off Delay Time d(off) D GEN G 34 60 Fall-Time tf 10 25 Notes
in „MOSFET CJ2302 geht kaputt?“ · Analoge Elektronik und Schaltungstechnik ·