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PDF
24c16.pdf
KHz (5V) Compatibility Two-Wire Serial Interface HardwareDataProtection -- Bi-directional data transfer protocol -- Write Protect Pin Sequential Read Feature High Reliability -- Endurance: 1,000,000 Cycles Filtered Inputs for Noise Suppression 8-pin PDIP and 8-pin SOIC packages -- Data Retention: 100
in „24C16 EEPROM I2C in C-code“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootloader.c
0: { switch (bRequest) { case USB_GET_DESCRIPTOR: PreparePacket(); UEP0_CTRL ^=bUEP_T_TOG; UIF_TRANSFER=0; return; case USB_SET_ADDRESS: USB_DEV_AD = wValueLo; //wValue Lo break; default: UEP0_T_LEN = 0; } } //break; //falltrough // status in case UIS_TOKEN_OUT | 0: { UEP0_CTRL = UEP_T_RES_NAK; } // break; } UIF_TRANSFER=0; return; } if(UIF_BUS_RST) { UEP0_CTRL = UEP_T_RES_NAK; UEP2_CTRL = UEP_T_RES_NAK | bUEP_AUTO_TOG; USB_DEV_AD = 0; } if(UIF_SUSPEND) { UIF_SUSPEND = 0; return; } USB_INT_FG = 0xFF; } /** Protocol
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootloader.c
0: { switch (bRequest) { case USB_GET_DESCRIPTOR: PreparePacket(); UEP0_CTRL ^=bUEP_T_TOG; UIF_TRANSFER=0; return; case USB_SET_ADDRESS: USB_DEV_AD = wValueLo; //wValue Lo break; default: UEP0_T_LEN = 0; } } //break; //falltrough // status in case UIS_TOKEN_OUT | 0: { UEP0_CTRL = UEP_T_RES_NAK; } // break; } UIF_TRANSFER=0; return; } if(UIF_BUS_RST) { UEP0_CTRL = UEP_T_RES_NAK; UEP2_CTRL = UEP_T_RES_NAK | bUEP_AUTO_TOG; USB_DEV_AD = 0; } if(UIF_SUSPEND) { UIF_SUSPEND = 0; return; } USB_INT_FG = 0xFF; } /** Protocol
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
channe1 to default values; DMA_DeInit(DMA1_Channel1); //channel will be used for memory to memory transfer DMA_InitStructure.DMA_M2M = DMA_M2M_Enable; //setting normal mode (non circular) DMA_InitStructure.DMA_Mode = DMA_Mode_Normal; //medium priority DMA_InitStructure.DMA_Priority = DMA_Priority_Medium
in „STM32F103 + I2C + MPU6050 - DMA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sfh610a-1767438_1_.pdf
www.vishay.com/doc?99912 AGENCY APPROVALS DESCRIPTION The SFH610A and SFH6106 feature a high current transfer • UL1577, file no. E52744 system code H or J, double ratio, low coupling capacitance and high isolation voltage. protection These couplers have a GaAs infrared diode emitter, which • DIN EN 60747-
in „[V] 16St Optokopler Vishay SFH610A -2 und -A3“ · Markt ·
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PDF
mega644.pdf
Flag, before reading the buffer and returning the value.. Assembly Code Example (1) USART_MSPIM_Transfer: ; Wait for empty transmit buffer sbis UCSRnA, UDREn rjmp USART_MSPIM_Transfer ; Put data (r16) into buffer, sends the data out UDRn,r16 ; Wait for data to be received USART_MSPIM_Wait_RXCn: sbis
in „AVR Controller braucht zu viel Strom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AtMega644P_Datasheet.pdf
12 16. SPI – Serial Peripheral Interface 16.1 Features Full-duplex, Three-wire Synchronous Data Transfer Master or Slave Operation LSB First or MSB First Data Transfer Seven Programmable Bit Rates End of Transmission Interrupt Flag Write Collision Flag Protection Wake-up from Idle Mode Double Speed (
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmegaXX4.pdf
Flag, before reading the buffer and returning the value.. Assembly Code Example(1) USART_MSPIM_Transfer: ; Wait for empty transmit buffer sbis UCSRnA, UDREn rjmp USART_MSPIM_Transfer ; Put data (r16) into buffer, sends the data out UDRn,r16 ; Wait for data to be received USART_MSPIM_Wait_RXCn: sbis
in „Atmega644PA Timer3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega644.pdf
12 16. SPI – Serial Peripheral Interface 16.1 Features Full-duplex, Three-wire Synchronous Data Transfer Master or Slave Operation LSB First or MSB First Data Transfer Seven Programmable Bit Rates End of Transmission Interrupt Flag Write Collision Flag Protection Wake-up from Idle Mode Double Speed (
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega48PA-ATmega88PA-ATmega168PA_Datasheet.pdf
19. SPI – Serial Peripheral Interface 19.1 Features ● Full-duplex, three-wire synchronous data transfer ● Master or slave operation ● LSB first or MSB first data transfer ● Seven programmable bit rates ● End of transmission interrupt flag ● Write collision flag protection ● Wake-up from idle mode ●
in „Probleme mit Int Capt ISR ATmega48PA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Design_Considerations_For_Class-D_Audio_Power_Amps__TI.pdf
the relatively flat pass-band response it provides and the small number of parts it requires. The transfer function for a second order Butterworth approximation is 1 (3) H(s) + s ) 2 Ǹ s ) 1 The first step is to realize the circuit and derive the transfer function, beginning withahalfcircuitmodelandmovingtothefull-bridgecircuit.Thehalfcircuitmodel
in „Class-D Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
X1205.pdf
Super Cap Input and battery backup switch. • 2-Wire™ Interface interoperable with I2C* —400kHz data transfer rate The oscillator uses an external, low-cost 32.768kHz crystal. All compensation and trim components are • Low Power CMOS integrated on the chip.This eliminates several external —1.25µA Operating
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opb_emc.pdf
3) Write OPB_select To 3+Twc_clock 4 5 5 Sln_xferack Write Sln_xferack To DATA_ACCESS (2) 1 1 1 Transfer Complete 3+Trc_clock Read OPB_select To 5 6 6 Sln_xferack + DATA_ACCESS (2) Read Sln_xferack To 1 1 1 1 Transfer Complete Notes: 1. Latency calculations are for a single bank of external memory 2.
in „ext. Flash-ROM in C beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX186-MAX188.pdf
- 1LSB INPUT VOLTAGE (LSBs) INPUT VOLTAGE (LSBs) FS - 3/2LSB Figure 15. MAX186/MAX188 Unipolar Transfer Function, Figure 16. MAX186/MAX188 Bipolar Transfer Function, 4.096V = Full Scale ±4.096V/2 = Full Scale Using the buffered REFADJ input avoids external buffering of the reference. To use the direct VREF input, +5V disable the internal buffer by tying REFADJ to V DD. MAX186 Transfer Function and Gain Adjust 510k Figure 15 depicts the nominal, unipolar input/output 100k REFADJ (I/O) transfer function, and Figure 16 shows the bipolar 12 input/output transfer function. Code transitions
in „Allgemeine Frage zu ADC Spezifikationen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOSFET-Basics_AN-9010.pdf
VGS1 VGS4 VGS3 Cutoff VGS < VGS(th) VGS2 VGS1 V 0 BV DS DSS Figure 6: Output Characteristics 4. Transfer characteristics D characteristics due to V GS in the active region. (Refer to Fig. 7) • iDequation due to V GS 2 D = K(V GS – V GS(th) K = µ C ------ n OX 2L where µ :ncarrier mobility C OX : gate
in „MOSFET ohne Body-Diode“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
stm32f10x_it.c
Example: USART-Hyperterminal\ communication using Interrupt\n\r"; u8 RxBuffer[97]; u8 NbrOfDataToTransfer = 97; u8 NbrOfDataToRead = 97; u8 TxCounter = 0; u16 RxCounter = 0; void NMIException(void) //generated by Clock Security System (CSS) { } void HardFaultException(void) { //hard fault exeption ->
in „[STM32] Probleme mit USART-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2n6032.pdf
Collector-Emitter Cutoff Current I 10 mAdc V CE= 80 Vdc CEO (2) ON CHARACTERISTICS Forward-Current Transfer Ratio I = 50 Adc, V = 2.6 Vdc 2N6032 h 10 50 C CE FE IC= 40 Adc, VCE = 2.0 Vdc 2N6033 10 50 Collector-Emitter Saturation Voltage 1.3 Vdc IC= 50 Adc, B = 5.0 Adc 2N6032 V CE(sat) IC= 40 Adc, B = 4.0
in „Transistor: BD249C“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ADC_DMA.txt
ADC_Channel_19, 2, ADC_SampleTime_4Cycles); // use channel 19 (PB13) // enable DMA request after last transfer (Single-ADC mode) ADC_DMARequestAfterLastTransferCmd(ADC1, ENABLE); // turn on clock for timer TIM6 RCC_APB1PeriphClockCmd(RCC_APB1Periph_TIM6, ENABLE); // initialize timer TIM_TimeBaseInitTypeDef
in „STM32: DMA mit 8 MHz Chiptakt?!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ADC_DMA.c
ADC_Channel_19, 2, ADC_SampleTime_4Cycles); // use channel 19 (PB13) // enable DMA request after last transfer (Single-ADC mode) ADC_DMARequestAfterLastTransferCmd(ADC1, ENABLE); // turn on clock for timer TIM6 RCC_APB1PeriphClockCmd(RCC_APB1Periph_TIM6, ENABLE); // initialize timer TIM_TimeBaseInitTypeDef
in „STM32: DMA mit 8 MHz Chiptakt?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematic_file_format_EN.pdf
1800 60 F3 “/RESET” O R 3300 2000 60 F4 “VPWR” O R 3300 2700 60 F5 “/HALT” O R 3300 2100 60 F6 “TRANSF1” I L 1800 1900 60 F7 “TRANSF2” I L 1800 2000 60 F8 “3.84MH” O R 3300 2200 60 $EndSheet Schematic Capture File Format 6 - Description of a text note Format: Text Notes posx posy orientation dimension
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PDF
2SD2420_A_.pdf
amplification Unit: mm Complementary to 2SB1623, 2SB1623A 9.±0.3 . 4.±02.±0.2 φ 3±0.1 • High forward current transfFE ratio h 5/ • Dielectric breakdown voltage of the package: > 5 kV 1 ■ Absolute Maximum Ratings T =C25°C e ± 1.±0.2 Parameter Symbol Rating Unic 74 D 1.±0.2 ge . 2.±0.1 Collector-base vol2SD2420 V
in „Endstufen Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CJ2303.pdf
Dynamic Input Capacitance C iss 155 Output Capacitance Coss VDS =-15V,V GS=0V,f =1MHz 35 pF Reverse Transfer Capacitance Crss 25 VDS =-15V,V GS=-10V,ID =-1.9A 4 8 Total Gate Charge Q g 2 4 nC Gate-Source Charge Q gs VDS =-15V,V GS=-4.5V,ID=-1.9A 0.6 Gate-Drain Charge Q gd 1 Gate Resistance R g f =1MHz 1.7
in „Suche Transistor equivalent zu „S3“ SOT-23“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2307271031_Shenzhen-Fuman-Elec-2302P-D_C7495028.pdf
Parameters Input Capacitance Ciss 182 Output Capacitance Coss 22 pF VDS=10V,VGS=0V,f=1MHZ Reverse Transfer Capacitance Crss 29 Switching Parameters Total Gate Charge Qg 3.5 Gate Source Charge Qgs 0.84 nC VGS=4.5V,VDS=10V,ID=2.5 A Gate Drain Charge Qgd 0.75 Turn-on Delay Time tD(on) 7.4 Turn-on Rise Time
in „MosFET schaltet PWM Signal nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2202251530_Shenzhen-Fuman-Elec-2302P_C2834503.pdf
Parameters Input Capacitance Ciss 182 Output Capacitance Coss 22 pF VDS=10V,VGS=0V,f=1MHZ Reverse Transfer Capacitance Crss 29 Switching Parameters Total Gate Charge Qg 3.5 Gate Source Charge Qgs 0.84 nC VGS=4.5V,VDS=10V,ID=2.5 A Gate Drain Charge Qgd 0.75 Turn-on Delay Time tD(on) 7.4 Turn-on Rise Time
in „MosFET schaltet PWM Signal nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
q450.pdf
may be processed without any problem. Conveniently operating laboratory Using vapour a as heat-transfer medium reflow soldering system the solder product,independent of its size and weight, will be heated to preheat and Integrated cooling system peak temperature levels in an absolutely Automatic pr
in „[V] Verkaufe Dampfphasenlötanlage ASSCON QUICKY 450“ · Markt ·
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PDF
2233_1_.pdf
a sixteen plastic DIP package. ▯ Collector−emitter voltage: 55 V (min) TOSHIBA 11−5B2 ▯ Current transfer ratio: 50% (min) Rank GB: 100% (min) Weight: 0.26 g ▯ Isolation voltage: 2500 Vrms (min) ▯ UL recognized made in Japan: UL1577, file No. E67349 made in Thailand: UL1577, file No. E152349 Pin Configurations
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Datei
main.c
cycle will reselect the device (repeated start * condition, going into master receiver mode), and transfer the data * from the device to the TWI master. Multiple bytes can be * transfered by ACKing the client's transfer. The last transfer will * be NACKed, which the client will take as an indication to
in „IS24C01B I2C ATmega 16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
J174_J175_J176_J177.pdf
Capacitance C V = 0 V, V = 0 V, f = 1 MHz 20 iss DS GS Common-Source V = 0 V, V = 10 V pF Reverse Transfer Capacitance Crss DS f = 1 MHz 5 VDG = –10 V,DI = –1 mA nV⁄ Equivalent Input Noise Voltage en f = 1 kHz 20 √Hz Switching td(on) 10 Turn-On Time r V = 0 V, V = 10 V 15 GSSee Switching Circuit ns td(
in „P-Kanal J-FET, gibt's den real?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MPXH.pdf
Pin 3 47 pF 51 K Figure 3. Typical Application Circuit (Output Source Current Operation) 5.0 4.5 Transfer Function: VOUT = S x (0.002421xP 0.00842 – Error 4.0 VS= 5.0 DC Temperature = 0 to 85°C 3.5 t 3.0 o t 2.5 MAX t O 2.0 TYP 1.5 1.0 0.5 MIN 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 4 6 8 1 1 1 1 1 2 2 2
in „[V] Drucksensoren“ · Markt ·
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PDF
gp1fav31rk_e.pdf
connector (JEITA RC-5720B) 3. With mounting hole 4. With shutter function 5. Supply voltage : 3 V 6. Transfer rate : 15.5 Mb/s Notice The content of data sheet is subject to change without prior notice. In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects
in „probleme mit Mega32-opto-fdti-Pc @ 912.6kbaud“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twitest.c
cycle will reselect the device (repeated start * condition, going into master receiver mode), and transfer the data * from the device to the TWI master. Multiple bytes can be * transfered by ACKing the client's transfer. The last transfer will * be NACKed, which the client will take as an indication to
in „Die I2C Schnittstelle eines PIC16F876A initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Ws2812Spi.c
--------------------------------------------------------------------------------- int WsSpiStartTransfer(void) { if (!InitOk) return -1; if (IsWsSpiTransferActiv()) return -2; StreamActive = true; WsIntInfo.Current = SpiBuffer; WsIntInfo.PMuxOn = 1; WsIntInfo.DmaOn = SpiBuffer + 1; WsIntInfo.End = SpiBuffer
in „ATSAM WS2812B?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi2.c
einschalten bcm2835_wr(bs,BCM2835_SPI_CS,BCM2835_SPI_CS_INTD|BCM2835_SPI_CS_INTR); // SPI, CS-Register, Transfer Active mit Interrupts bcm2835_wr(bs,BCM2835_SPI_CS,BCM2835_SPI_CS_TA|BCM2835_SPI_CS_INTD|BCM2835_SPI_CS_INTR); printk("spi-cs_B: 0x%.8x\n",bcm2835_rd(bs,BCM2835_SPI_CS)); printk("myspi-status: 0x%
in „[F] SPI-Interrupt auf Raspberry Pi löst nicht aus -> warum?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
xTalk_10-01-2022_211035_MYL6F04233.txt
Queuing ---- : No Linked Commands Support --- : No Synchronous Data Transfers : No 16-bit Data Transfer ------ : No 32-bit Data Transfer ------ : No Relative Addressing ------- : No Vendor ID ---------------- : QUANTUM Product ID ---------------- : DLT-V4 Product Revision Level ---- : 0A00 Product Family
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PDF
tcst2103-279826.pdf
) PARAMETER TEST CONDITION PART SYMBOL MIN. TYP. MAX. UNIT COUPLER TCST2103 CTR 10 20 % Current transfer ratio V = 5 V, I = 20 mA TCST2202 CTR 5 10 % CE F TCST2300 CTR 1.25 2.5 % TCST2103 C 2 4 mA Collector current VCE = 5 V,FI = 20 mA TCST2202 C 1 2 mA TCST2300 C 0.25 0.5 mA F = 20 mA, C = 1 mA TCST2103
in „Spulenwicklungszähler, mit Gabellichtschranke wie an "gehackten" Taschenrechner, anschließen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CH340DS1.PDF
device suspending. In asynchronous serial interface mode, CH340 chip contains these pins: data transfer pin, MODEM liaison signal pin and assistant pin. Data transfer pin contains: TXD pin and RXD pin. When serial interface is idle, RXD must be high-level. If R232 is high-level, use assistant RS232
in „Chip aus USB-Parallel-Adapter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPCS8209.pdf
small and thin package • Low drain-source ON resistance: R DS (ON) = 19 mΩ (typ.) • High forward transfer admittance: |Y |fs 9.2 S (typ.) • Low leakage current: I = 10 μA (max) (V = 20 V) DSS DS • Enhancement mode: V th= 0.5~1.2 V (VDS = 10 V, ID= 200 μA) Absolute Maximum Ratings (Ta = 25°C) Characteristics
in „DC/DC-Wandler von 2.4 V auf 15 V mit 25 Watt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DMG1023UV.pdf
ON) VGS = -1.8V, D = -150mA - 20 VGS = -1.7V, D = -100mA - 25 V = -1.5V, I = -100mA GS D Forward Transfer Admittance |Yfs - 0.9 - S VDS = -10V, D = -250mA Diode Forward Voltage V -0.8 -1.2 V V = 0V, I = -150mA SD GS S DYNAMIC CHARACTERISTICS (Note 7) Input Capacitance C iss - 59.76 - pF - 12.07 - VDS = -16V, VGS = 0V, Output Capacitance Coss pF f = 1.0MHz Reverse Transfer Capacitance C rss - 6.36 - pF Total Gate Charge - 622.4 - pC Qg VGS = -4.5V, VDS= -10V, Gate-Source Charge Q gs - 100.3 - pC Gate-Drain Charge Q - 132.2 - pC D = -250mA gd Turn-On Delay Time D(on)
in „MOSFET Ersatztypen für DMG1024 u. DMG1023 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DMG1024UV.pdf
0.75 Ω VGS = 1.8V, D = 350mA U - 9 VGS = 1.7V, D = 140mA D - 10 VGS = 1.5V, D = 100mA O Forward Transfer Admittance |Yfs - 1.4 - S VDS = 10V, D = 400mA R Diode Forward Voltage 0.7 1.2 V P VSD VGS = 0V, S = 150mA DYNAMIC CHARACTERISTICS (Note 6) Input Capacitance C iss - 60.67 - pF W VDS = 16V, VGS = 0V, E Output Capacitance Coss - 9.68 - pF f = 1.0MHz N Reverse Transfer Capacitance C rss - 5.37 - pF Total Gate Charge Qg - 736.6 - pC V = 4.5V, V = 10V, Gate-Source Charge Q gs - 93.6 - pC GS DS - 116.6 - D = 250mA Gate-Drain Charge Q gd pC Turn-On Delay Time D(on)
in „MOSFET Ersatztypen für DMG1024 u. DMG1023 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1808131746_Diodes-Incorporated-DMN5L06VAK-7_C260916.pdf
Capacitance Ciss — — 50 pF Output Capacitance C — — 25 pF VDS = 25V, GS = 0V oss f = 1.0MHz Reverse Transfer Capacitance Crss — — 5.0 pF Notes: 7. Device mounted on FR-4 substrate PC board, 2oz copper, with minimum recommended pad layout. 8. Short duration pulse test used to minimize self-heating effect.
in „Suche N Mos Dual in SOT563“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TCST1202.pdf
) PARAMETER TEST CONDITION PART SYMBOL MIN. TYP. MAX. UNIT COUPLER TCST1103 CTR 10 20 % Current transfer ratio V = 5 V, I = 20 mA TCST1202 CTR 5 10 % CE F TCST1300 CTR 1.25 2.5 % TCST1103 C 2 4 mA Collector current VCE = 5 V,FI = 20 mA TCST1202 C 1 2 mA TCST1300 C 0.25 0.5 mA F = 20 mA, C = 1 mA TCST1103
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega2560_2561.pdf
Data Transfer Master or Slave Operation LSB First or MSB First Data Transfer Seven Programmable Bit Rates End of Transmission Interrupt Flag Write Collision Flag Protection Wake-up from Idle Mode Double Speed (
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_ATmega1281_doc2549.pdf
Data Transfer Master or Slave Operation LSB First or MSB First Data Transfer Seven Programmable Bit Rates End of Transmission Interrupt Flag Write Collision Flag Protection Wake-up from Idle Mode Double Speed (
in „LM73 über TWI/I2C mit Atmega1281 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega1284P_128KByte.pdf
18. SPI – Serial Peripheral Interface 18.1 Features • Full-duplex, three-wire synchronous data transfer • Master or Slave operation • LSB first or MSB first data transfer • Seven programmable bit rates • End of Transmission Interrupt flag • Write Collision flag protection • Wake-up from Idle mode •
in „ATmega1284P versus ohne P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DA-Converter.pdf
-bit data which is available in the pin for the part. V can be from +5 to +15V . input latch to transfer to the DAC register. CC DC XFER: Transfer control signal (active low). The XFER will Operation is optimum for +15V DC GND: The pin 10 voltage must be at the same ground enable WR . 2 potential as
in „Problem mit DA-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cic.pdf
filter with a unity feedback coef- Incorporates Xilinx Smart-IP™ technology for utmost ficient. The transfer functions for a single integrator is parameterization and optimum implementation To be used with version 4.2i or later of the Xilinx CORE Generator System 1 H Iz) = −1 (1) 1− z General Description
in „Probleme mit CIC Filter“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
NUVOTON_M058_M0516.pdf
clock rate up to 20 MHz, and slave mode clock rate up to 10 MHz Full duplex synchronous serial data transfer Variable length of transfer data from 1 to 32 bits MSB or LSB first data transfer Rx latching data can be either at rising edge or at falling edge of serial clock Tx sending data can be either at
in „ARM Cortex M0 NUVOTON M058ZBN auslesen / flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uP1542-DS-F00A0.pdf
- V IN the PH node. The PWM waveform is smoothed by the output filter (L and C ). The modulator transfer OUT OUT function is the small-signal transfer function oOUT/VCOMP. Figure 7. Operational Transconductance Amplifier. This function is dominated by a DC Gain and the output uP1542-DS-F00A0, Apr. 2018
in „Ersatz Mosfet für ein Defektes Nas System“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCNR200.pdf
Low Nonlinearity: 0.01% • Low Cost Analog Isolation virtually eliminated. The output • K (I /I ) Transfer Gain • Telecom: Modem, PBX photodiode produces a photocur- 3 PD2 PD1 rent that is linearly related to the HCNR200: ± 15% • Industrial Process Control: HCNR201: ± 5% Transducer Isolator light output
in „Spannung messen mit Arduino von zwei nicht verbundenen Batteriebänken (Segelboot)“ · Mikrocontroller und Digitale Elektronik ·
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SDHC_SDM04G7B7_08G7B7.pdf
out put for data block. →0 clock Cycle ŋTRAN_SPEED The following tabledefines the maximum data transfer rate per onedata line. Table 12-3: Maximum DataTransfer Rate Definition TRAN_SPEED bit Code Transfer Rate Unit 2:0 0 = 100kbit/s,1 = 1Mbit/s,2= 10Mbit/s,3= 100Mbit/s, 4-7= Reserved Time Value 0 =
in „SD-Karte - SDHC Karte“ · Mikrocontroller und Digitale Elektronik ·