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PDF
Auszug-CS5016.pdf
(1-D) Ctot Vin -Qin= VinC tot D = VREF forVfn= 0V Figure 2a. Tracking Mode Figure 2b. Convert Mode DS14F7 2-17 CS5012A, CS5014, CS5016 during conversion much like a hold capacitor in a Auto-zeroing enhances power supply rejection at sample/hold amplifier. frequencies well below the conversion rate. The
in „Spannungsteiler ohne Widerstände möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PVLogger_v0.5_St__ckliste.pdf
-‐-‐-‐-‐ VALUE # REFDES Printtaster Tactschalter 1 B1 100nF 10% MKS2 8 C1,C4,C6,C8,C9,C14,C16,C18 100uF 20% Elko 1 C11 330nF 10% MKS2 2 C12,C13 1nF 5% Keramik 1 C5,C15 1uF 20% Elko 4 C19,C20,C21,C22 22pF 5% Keramik 2 C2,C3 10uF 20% Elko 2 C7,C17 CD74HC4067 PDSO-‐G24 1 IC1 ATmega32A_PDIP DIP40600
in „Reset durch Stack overflow?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Liste.txt
2xNAMD 113X UY70092A BA3896KV 919 130 31x 74LCX373MTCX (latch) 55x BHAAA EL7531 (Stop down) 56x RDW 17-18 5x MC1488 (Quad Eip.232 Driver ) 1X atf-13736 wfk:L78-032A HP ??????? 4x AD7628KR Dual 8-Bit Buffered Multiplying DAC 50x B084D = TL084CN GDR RFT Quad JFET Op Amplifier Audio High Slew Rate HFO 36x gd74ls299
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PDF
STPicProgK.pdf
USB_DM 32 2 DATA USB_DP 33 PA11 PA12 3 PGM_SWDIO 34 PA13 4 VCCSWI PGM_SWDCLK 37 PA14 5 VPPSWI 38 PA15 18 k 4 VT2 PB0 1 3 BSS123 19 PB1 R BOOT1 20 PB2 39 R20 40 PB3 VT3 PB4 +3,3V BSS123 41 PB5 I2C1_SCL 42 PB6 1k5 I2C1_SDA 43 PB7 TIM4_CH3 45 TIM4_CH4 46 PB8 CLOCK PB9 21 PB10 3 E+ 5 DATA 22 PB11 1 RD_DATA
in „Padauk MCU für 0.038 USD aus Taiwan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_LT3433.pdf
SHDN 3433 TA03aINL-H: 8.3V 3433 TA03b 3433f 13 LT3433 U TYPICAL APPLICATIO S 8V-60V to 12V Converter DS1 L1 B160A 200µH TDK SLF12565T-221M1R0 VOUT 12V D2 8V < IN< 18V: 125mA 1N4148 DS2 + C5 18V < V < 60V: 380mA B120A 47µF IN C7 V SW_L 25V 0.47µF BST 20V SW_H PWRGND VIN LT3433 8V TO 60V V IN VOUT D1 C6
in „Burst Mode Lt3433“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7376.pdf
Power Supply Sensitivity Test Circuit 1200 (PSS, PSRR) A m – 800 D VDD = +15V A DUT B I VSS= –15V W +18V 400 VIN V = +5V OP275 VOUT DD VSS= 0V OR –5V 0 0 5 10 15 –18V VLOGIC Figure 35. Inverting Programmable Gain Test Circuit Figure 30. Supply Current (I ) vs.DDogic Voltage +18V PARAMETRIC TEST CIRCUITS V+ = V OP275 VOUT A DD DUT 1LSB = V+/128 VIN V+ W W –18V B VMS A DUT B Figure 31. Potentiometer Divider Nonlinearity Error Test Figure 36. Noninverting Programmable Gain Test Circuit Circuit (INL, DNL) NO CONNECT A +18V IW W DUT A VIN DUT W V B OP275 OUT
in „1-10 V digitales Potentiometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1716.pdf
0.5 0 2 4 6 8 10 12 14 16 18 20 22 0 2 4 6 8 10 12 14 16 18 20 22 Frequency (kHz) Frequency (kHz) ® 5 PCM1716 SYSTEM CLOCK Typical input system clock frequencies to the PCM1716 are shown in Table I, also, external input clock timing
in „DAC über SPI configurieren??, Codevision“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lpc11u3x.pdf
C series resistance R capacitors C , C OSC L S X1 X2 1 MHz to 5 MHz 10 pF < 300 18 pF, 18 pF 20 pF < 300 39 pF, 39 pF 30 pF < 300 57 pF, 57 pF 5 MHz to 10 MHz 10 pF < 300 18 pF, 18 pF 20 pF < 200 39 pF, 39 pF 30 pF < 100 57 pF, 57 pF 10 MHz to 15 MHz 10 pF < 160 18 pF, 18 pF 20 pF < 60 39 pF, 39 pF 15 MHz to 20 MHz 10 pF < 80 18 pF, 18 pF Table 19. Recommended values for C /C in oscillation mode (crystal and external X1 X2 components parameters) high frequency mode
in „LPC11U3 CRP zurücksetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Wohnraumuhr1_280820_Rev1.2A.pdf
SDA)PC1 23 C (SCL)PC0 22 IN OUT (OC2)PD7 21 ADJ R7 (ICP)PD6 20 LM317 240 + (OC1A)PD5 19 C8 (OC1B)PD4 18 10µ/16V (INT1)PD3 17 R8 R6 D (INT0)PD2 16 1k 3k D N (TXD)PD1 15 GND G A 14 (RXD)PD0 R9 TR1 R5 MEGA8535-P S1-1 on 750 BC548B 1 3 S1-2 on Gehäuse BOPLA ET-233 10k +5V S1-3 off KK1 GND S1-4 off eventuell
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mp3-decoder.asm
out spdr, r16 send1: sbis SPSR, SPIF rjmp send1 in r16, SPDR ret w: ;Warteschleife push r17 push r18 push r19 ; ============================= ; delay loop generator ; 110590 cycles: ; ----------------------------- ; delaying 110589 cycles: ldi R17, $BF WGLOOP0: ldi R18, $C0 WGLOOP1: dec R18 brne WGLOOP1
in „VS1011e abspielen von MP3 klappt nicht :(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DeviceList.txt
) PIC18F2450 PIC18F2450(QFN) PIC18F2455 PIC18F2455(QFN) PIC18F2480 PIC18F2480(QFN) PIC18F2510 PIC18F2510(QFN) PIC18F2515 PIC18F2515(QFN) PIC18F2520 PIC18F2520(QFN) PIC18F2523 PIC18F2523(QFN) PIC18F2525 PIC18F2550 PIC18F2580 PIC18F2580(QFN PIC18F2585 PIC18F2610 PIC18F2620 PIC18F2680 PIC18F2680(QFN) PIC18F2682 PIC18F2682(QFN) PIC18F2685 PIC18F2685(QFN) PIC18F4220 PIC18F4221 PIC18F4221(TQFP) PIC18F4221(QFN) PIC18F4320
in „[V] Genius G540 EPROM/Flash/uC Programmer (USB)“ · Markt ·
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PDF
21237_0_samwha-green-cap.pdf
ØD L SCREW(QUANTITY) 35 68 ~ 120 60 51 100, 130 30 64 120, 130 25 76 150 16 ● RADIAL TYPE PACKING ●DS series BULK PACKING QUANTITY(pcs) / BOX SIZE BULK(QUANTITY) ØD L V-Bag INNER BOX MIDDLE BOX 20 300 2400 9600 8 20 200 1600 6400 10 30 200 1200 4800 16 25 50 500 2000 18 40 50 300 1200 19 Green-Cap (ELECTRICDOUBLELAYERCAPACITORS
in „Goldcap auslutschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samwha-green-cap.pdf
ØD L SCREW(QUANTITY) 35 68 ~ 120 60 51 100, 130 30 64 120, 130 25 76 150 16 ● RADIAL TYPE PACKING ●DS series BULK PACKING QUANTITY(pcs) / BOX SIZE BULK(QUANTITY) ØD L V-Bag INNER BOX MIDDLE BOX 20 300 2400 9600 8 20 200 1600 6400 10 30 200 1200 4800 16 25 50 500 2000 18 40 50 300 1200 19 Green-Cap (ELECTRICDOUBLELAYERCAPACITORS
in „Green-Cap/Super-Cap 2.7V 500F - fake?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samwha-green-cap.pdf
ØD L SCREW(QUANTITY) 35 68 ~ 120 60 51 100, 130 30 64 120, 130 25 76 150 16 ● RADIAL TYPE PACKING ●DS series BULK PACKING QUANTITY(pcs) / BOX SIZE BULK(QUANTITY) ØD L V-Bag INNER BOX MIDDLE BOX 20 300 2400 9600 8 20 200 1600 6400 10 30 200 1200 4800 16 25 50 500 2000 18 40 50 300 1200 19 Green-Cap (ELECTRICDOUBLELAYERCAPACITORS
in „Datenblatt von Kondensator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dms-78xxsr_363265-67_dat_e.pdf
to 100% Load Step 7805SR 10% to 100% Load Step 7812SR 10% to 100% Load Step Vin = 9V Vin = 9V Vin = 18V 7803SR 100% to 10% Load Step 7805SR 100% to 10% Load Step 7812SR 100% to 10% Load Step Vin = 9V Vin = 9V Vin = 18V www.cd4power.com Page 3 of 5 78SR Series H I G H - E F F I C I E N C Y S W I T C H
in „Speisung für mein Projekt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
debug_okay.asm
: 9a 01 movw r18, r20 2f4: 01 2e mov r0, r17 2f6: 01 c0 rjmp .+2 ; 0x2fa <acquire_DHT+0x186> 2f8: 22 0f add r18, r18 2fa: 0a 94 dec r0 2fc: ea f7 brpl .-6 ; 0x2f8 <acquire_DHT+0x184> 2fe: 20 95 com r18 300: 30 91 09
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMPA910_Rev.1.0_Schematic.pdf
CLAC CLAC RP901A D19 LCD_D19 CP901A LCD_D19 21 B1 2 LED_K B1 37 LCD_D19 LCD_D19 8 7 D CLCP RP901B D18 LCD_D18 CP901B LCD_D18 20 VSSBKL 38 LCD_D18 LCD_D18 6 5 CLCP RP901C D17 LCD_D17 CP901C B0 L900 B0 LCD_D17 4 3 PRG[2..0] RP901D D16 LCD_D16 CP901D LCD_D15 18 C901 EMI C902 25 LCD_D15 LCD_D16 2 1 PRG[2
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PDF
L-KISS_Schema_v01.pdf
L2 PB3 4 6 30 AVCC PB4 5 7 47u PB5 6 8 C6 32 AREF PB6 7 9 X6 100n 8 CON10 31 PB7 10 C U3 C7 GND C 1 DS14RS232 GND 2 14 12 BZ1 100n 18 3 Dout1 Rout1 PD4 D8 D7 D6 D5 D4 D3 D2 D1 8x LED 4 5 13 Rin1 Din1 11 19 PD5 6 Vcc 7 C11 1 C1+ _VCC 16 SMAT-13 MSB LSB 8 12 XTAL1 9 22u 3 C1- V+ 2 C13 22u C15 13 10 GND
in „ATMEGA644 programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WK_In.pdf
Widerstand 0R24 1% 2W ?? THT 0617 1 µC MSM85C154 Oki DIP40 piggy-back mit 27C128, gebraucht 2 µC PIC18F458 Microchip DIP40 3 µC dsPIC30F4013 Microchip DIP40 6 Zahlenschalter 137 AK2 Hartmann SMC-D 10 DC-DC Wandler NME0505DC Murata DIP-THT 7 12bit D/A DAC312H Analog Devices DIP 24 TVS-Diod e P6KE30A Vishay
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PDF
kendryte_datasheet_20181011163248_en.pdf
and will be published in a future version of this docu- ment Chapter4 Electrical Characteristics 27 DS[3:0] Min(mA) Typ(mA) Max(mA) 0000 3.2 5.4 8.3 0001 4.7 8.0 12.3 0010 6.3 10.7 16.4 0011 7.8 13.2 20.2 0100 9.4 15.9 24.2 0101 10.9 18.4 28.1 0110 12.4 20.9 31.8 0111 13.9 23.4 35.5 High Level Output Current DS[3:0] Min(mA) Typ(mA) Max(mA) 0000 5.0 7.6 11.2 0001 7.5 11.4 16.8 0010 10.0 15.2 22.3 0011 12.4 18.9 27.8 0100 14.9 22.6 33.3 0101 17.4 26.3 38.7 0110 19.8 30.0 44.1 0111 22.3 33.7 49.5 28 Chapter 5
in „RiscV Maixduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s35i_c35i_m35i_atc_commandset_v01.pdf
telephone-book entry 16 AT+CMEE Expanded error messages according to GSM 07.07 17 AT+VTS Send a DTMF tone 18 AT+VTD Set duration of a DTMF tone 18 AT+WS46 Select wireless network 18 AT+CSCS Select TE character set 19 AT+CAOC Advice of charge 19 AT+CSSN Supplementary service notifications 20 AT+CRSM Restricted
in „Problem: Siemens C35 per Mikrocontroller steuern funktioniert nicht?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s35i_c35i_m35i_atc_commandset_v01.pdf
telephone-book entry 16 AT+CMEE Expanded error messages according to GSM 07.07 17 AT+VTS Send a DTMF tone 18 AT+VTD Set duration of a DTMF tone 18 AT+WS46 Select wireless network 18 AT+CSCS Select TE character set 19 AT+CAOC Advice of charge 19 AT+CSSN Supplementary service notifications 20 AT+CRSM Restricted
in „AVR an Handy C35“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT_commandset.pdf
telephone-book entry 16 AT+CMEE Expanded error messages according to GSM 07.07 17 AT+VTS Send a DTMF tone 18 AT+VTD Set duration of a DTMF tone 18 AT+WS46 Select wireless network 18 AT+CSCS Select TE character set 19 AT+CAOC Advice of charge 19 AT+CSSN Supplementary service notifications 20 AT+CRSM Restricted
in „Simens S 35; AT-Befehle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MX26LV400__2_.pdf
35 Q3 OE# Output Enable Input RY/BY# 15 34 Q10 NC 16 33 Q2 RY/BY# Ready/Busy Output A17 17 32 Q9 A7 18 31 Q1 VCC Power Supply Pin (3.0V~3.6V) A6 19 30 Q8 A5 20 29 Q0 GND GroundPin A4 21 28 OE# A3 22 27 GND A2 23 26 CE# A1 24 25 A0 48-Ball CSP Ball Pitch = 0.8 mm,Top View, Balls Facing Down A B C D E F
in „falsche u-boot nand geflasht,J-Tag möglichkeit für Flytouch2?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
formelsammlung.pdf
Nach der obenstehenden Formel ergibt sich dann: t ˆ t cos −)s sin − s sin s c t = ∫ Y s )⋅f s ds = ∫ −sin − )s cos − )s ⋅ e−s ⋅ds tcoss −sin s sin s t coss ⋅sins e −s sin s = ∫ −s ⋅ds = ∫ 2 −s ⋅ds sin s coss e sin s e ⋅cos s 1 1 ⋅sin2 t+ ⋅e −t⋅sin t
in „linear Interpolieren mit mehreren Parametern“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
2_updated_pcb_design.pdf
VCC 8 I2C0_SCL 6 SCL C R N 3 32.768KHZ 1 X1 INTA 7 RTC_INTA 2 D SQW/INTB RTC_INTB Y3 X2 G C ? N R 4 DS1337S+ D N _ U? T R Sheet: /ICs/ D File: ics.sch D Title: Size: A4 Date: Rev: KiCad E.D.A. kicad (5.1.8)-1 Id: 2/4 1 2 3 4 5 6 1 2 3 4 5 6 PIN Header Microcontroller C? GND 1uF 14 1 3.3V 3.3V 13 GND GND
in „Schaltplan für mein erstes Dev board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcb_design.pdf
VCC 8 I2C0_SCL 6 SCL C R N 3 32.768KHZ 1 X1 INTA 7 RTC_INTA 2 D SQW/INTB RTC_INTB Y? X2 G C ? N R 4 DS1337S+ D N _ U? T R Sheet: /ICs/ D File: ics.sch D Title: Size: A4 Date: Rev: KiCad E.D.A. kicad (5.1.8)-1 Id: 2/4 1 2 3 4 5 6 1 2 3 4 5 6 PIN Header Microcontroller C? GND 1uF 14 1 3.3V 3.3V 13 GND GND
in „Schaltplan für mein erstes Dev board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_ESP32-MES-WiFi_2026-03-31.pdf
FB R3 2 MODE C7 C9 8k2 8PG FB5 100nF 100nF PPGND ADC EP9 7 6 C6 C17 AGND 220uF 10u PGND C15 R6 C20 C18 C19 100n 2k2 10u 10u 10u B B 5V Switch Watchdog LEDs / Connector +5V VUSB VCC5 VCC VIN VCC5 MES_V- 5V 3V3 MES_V+ C VCC C U2 VUSB +5V VCC VIN_F U8 STWD100NYWY3F TPS2113APWR 1 8 RESET 1 WDO VCC 2STAT I71
in „LON Bus Windhager mitlesen/steuern“ · Softwareentwicklung ·
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PDF
datasheet.pdf
...................................................................................................18 5.11.1 SMBus Interface ....................................................................................................................18 5.11.2 GPIO Power Source.................................
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Roland_G-70_Service_Notes_.pdf
BRDXWR RPC05T@J 27 D 17 WRITE_PRT WRITE_PRT L98 1000 N1608Z@T01 28 27 XCSFDC C365 39 WRTPRT 29 28 BX8WE 18p X4 X2 36 MOTOR_ON READ_DATA L99 1000 N1608Z@T01 30 29 BX8RD 1 24.000MHz MTR0 31 30 D +3.3 DRIVE_SEL SD1_SEL L100 1000 N1608Z@T01 31 DS0 37 32 32 40 X1 33 33 IC77 GRM39@ C366 4 MTR1/IDLE 34 DISK_CHANGE L101 1000 N1608Z@T01 34 34 TC7SH04FU C364 0.1 18p p p p p p p p p p p p 5 38 RESET DS1/PD 35 7 7 7 7 7 7 7 7 7 7 7 75341-0X0-B 3.3V R229 22 5V D MA-406@ 4 4 4 4 4 4 4 4 4 4 4 D 4 2 BXFDC_INT ECJ1V@ S S S S RPC05T@J V V V V 7 8 9 0 1 2 3 4 5 6 7 3 D
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Roland-G-70-Service-Manual.pdf
WRITE_PRT WRITE_PRT L98 1000 N1608Z@T01 27 27 XCSFDC D WRTPRT 17 28 28 BX8WE C365 39 X2 29 29 BX8RD 18p 1 X4 MTR0 36 MOTOR_ON READ_DATA L99 1000 N1608Z@T01 30 30 + 24.000MHz 31 31 D 3.3 37 DRIVE_SEL SD1_SEL L100 1000 N1608Z@T01 32 40 DS0 33 32 IC77 GRM39@ C366 X1 34 DISK_CHANGE L101 1000 N1608Z@T01 34 33 TC7SH04FU C364 0.1 18p 4 MTR1/IDLE 34 p p p p p p p p p p p 75341-0X0-B R229 22 5 MA-406@ 38 RESET DS1/PD 35 4 4 4 4 4 4 4 4 4 4 4 3.3V 5V D D BXFDC_INT 4 2 S S S S ECJ1V@ V V V V RPC05T@J 3 6 6 6 7 7 7 7 7 7 7 7 D D 6 8
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mc33151u.pdf
with Common Switching Regulator WW, W = Work Week Control ICs PIN CONNECTIONS Pin Out Equivalent to DS0026 and MMH0026 N.C. 1 8 N.C. Representative Block Diagram Logic Input A 7 Drive Output A VCC 6 Gnd 3 6 VCC Logic Input B 5 Drive Output B + + – + + (Top View) 5.7V + Drive Output A Logic Input A ORDERING
in „Mosfett-Driver Art-Kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Normen_bersicht.pdf
IEC DieFormelfürSteckverbindernach 61076-4-101lautet: IEC61076-4-113lautet: DR=Leiterplattentiefe+20 DS=Leiterplattentiefe+12,78 (z.B.80+20=100). Anwendungsbeispiel CompactPCI DieFormelfürSteckverbindernach IEC61076-4-101lautet: DS=Leiterplattentiefe+12,14 Die maximale Dicke der Busplatine sollte 6 mm
in „Abmessungen von Platinen in 19-Zoll Gehäuse gesucht“ · Platinen ·
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PDF
Normenuebersicht.pdf
IEC DieFormelfürSteckverbindernach 61076-4-101lautet: IEC61076-4-113lautet: DR=Leiterplattentiefe+20 DS=Leiterplattentiefe+12,78 (z.B.80+20=100). Anwendungsbeispiel CompactPCI DieFormelfürSteckverbindernach IEC61076-4-101lautet: DS=Leiterplattentiefe+12,14 Die maximale Dicke der Busplatine sollte 6 mm
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Datei
8080int-jmp.asm
ret do_fetch_msp: movw x,z_spl mem_read_d opl adiw x,1 mem_read_d oph ret do_fetch_dir8: mem_read_ds opl, z_pc adiw z_pcl,1 ret do_fetch_dir16: mem_read_ds opl, z_pc adiw z_pcl,1 mem_read_ds oph, z_pc adiw z_pcl,1 ret do_fetch_rst: movw x,z_pcl sbiw x,1 mem_read_d opl andi opl,0x38 ldi oph,0 ret ; -
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
recommended.pdf
V I 5.4 V; O = 350 mA 145 200 r N-channel MOSFET on-resistance V = 3.5 V; I = 200 mA 170 m DS(ON) I O V I 3 V; O = 100 mA 200 N-channel MOSFET leakage V = 17 V 0.1 2 µA current DS POWER GOOD OUTPUT , LBI, LBO V Power good trip voltage V - V (PG) O 1.6% V ramping positive 50 Power good delay time
in „Kurz vorm Verzweifeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
V I 5.4 V; O = 350 mA 145 200 r N-channel MOSFET on-resistance V = 3.5 V; I = 200 mA 170 m DS(ON) I O V I 3 V; O = 100 mA 200 N-channel MOSFET leakage V = 17 V 0.1 2 µA current DS POWER GOOD OUTPUT , LBI, LBO V Power good trip voltage V - V (PG) O 1.6% V ramping positive 50 Power good delay time
in „DC DC Wandler Pins“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
V I 5.4 V; O = 350 mA 145 200 r N-channel MOSFET on-resistance V = 3.5 V; I = 200 mA 170 m DS(ON) I O V I 3 V; O = 100 mA 200 N-channel MOSFET leakage V = 17 V 0.1 2 µA current DS POWER GOOD OUTPUT , LBI, LBO V Power good trip voltage V - V (PG) O 1.6% V ramping positive 50 Power good delay time
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PDF
TPS6211.pdf
V I 5.4 V; O = 350 mA 145 200 r N-channel MOSFET on-resistance V = 3.5 V; I = 200 mA 170 m DS(ON) I O V I 3 V; O = 100 mA 200 N-channel MOSFET leakage V = 17 V 0.1 2 µA current DS POWER GOOD OUTPUT , LBI, LBO V Power good trip voltage V - V (PG) O 1.6% V ramping positive 50 Power good delay time
in „QFN Gehäuse.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
V I 5.4 V; O = 350 mA 145 200 r N-channel MOSFET on-resistance V = 3.5 V; I = 200 mA 170 m DS(ON) I O V I 3 V; O = 100 mA 200 N-channel MOSFET leakage V = 17 V 0.1 2 µA current DS POWER GOOD OUTPUT , LBI, LBO V Power good trip voltage V - V (PG) O 1.6% V ramping positive 50 Power good delay time
in „Trennung von analoger und digitaler Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ISL6545-Renesas.pdf
and P = Io r D +- Io V t F maximum output levels for the worst case response time. UPPER DSON 2 IN SW S P = Io x r x (1 - D) Input Capacitor Selection LOWER DS(ON) Use a mix of input bypass capacitors to control the voltage Losses while Sinking Current (EQ. 12) overshoot across the MOSFETs. Use small ceramic capacitors P = Io x r x D UPPER DS(ON) for high frequency decoupling and bulk capacitors to supply the P = Io r 1 – D +- IoV t F current needed each time Q t1rns on. Place the small ceramic LOWER DSON 2 IN SW S Where: D
in „Synchronwandler ISL6545A wird heiss“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ISP1160_PHI.pdf
WR_N HIGH to 0 - - ns DACK_N HIGH tSLAL DREQ HIGH to DACK_N LOW 0 - - ns T DC DREQ cycle [1]- - - ns tDS(read) DREQ pulse spacing (read) 4-cycle burst mode 105 - - ns tDS(read) DREQ pulse spacing (read) 8-cycle burst mode 150 - - ns t DREQ pulse spacing (write) 4-cycle burst mode 72 - - ns DS(write) tDS
in „USB Host Controller (ISP1160) an StrongARM 1110 anbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8703_PHI.pdf
n.c. 6 TDA8703/ 19 V CCO D7 12 data output; bit 7 (MSB) TDA8703T D6 13 data output; bit 6 V CCA 7 18 VCCD D5 14 data output; bit 5 VI 8 17 CLK V D4 15 data output; bit 4 RT 9 16 CLK CLK 16 clock input n.c. 10 15 D4 CLK 17 complementary clock input O/UF 11 14 D5 VCCD 18 positive supply voltage for digital
in „TDA 8703 AD Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8703_3.pdf
n.c. 6 TDA8703/ 19 V CCO D7 12 data output; bit 7 (MSB) TDA8703T D6 13 data output; bit 6 V CCA 7 18 VCCD D5 14 data output; bit 5 VI 8 17 CLK V D4 15 data output; bit 4 RT 9 16 CLK CLK 16 clock input n.c. 10 15 D4 CLK 17 complementary clock input O/UF 11 14 D5 VCCD 18 positive supply voltage for digital
in „TDA 8703 AD Wandler, Entkopllungsfragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
plasti_bruch.pdf
geschlossenen Kontur Γ 0 Γ ∪1 ∪Γ ∪Γ 2 − (13) enthält keine Singularität, also F i= v∫⎣ wni −σ jk k j ⎦ds = > [ ]ds + ∫ [ ]ds + ?[ ]ds + v∫[ ]ds = 0. (14) h Γ0 Γ1 Γ+ Γ 2 Γ− Man nennt J = ⎡wn − σ n u ⎤ds . (15) i Γ ⎣ i jkk ,i⎦ 1 den J-Vektor . J-Integral, Brocks, 15.01.20- 2 - Wolfgang Brocks Bruchmechanik
in „Glasbruchkante glatt schleifen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
MAX1270-MAX1271B.pdf
REFERENCE INPUT (Reference buffer disabled, reference input applied to REF) Input Voltage Range 2.40 4.18 V Normal or STBYPD 400 Input Current VREF= 4.18V µA FULLPD 1 Normal or STBYPD 10 kΩ Input Resistance VREF= 4.18V FULLPD 4.18 MΩ REFADJ Threshold for Buffer V DD - Disable 0.5 V POWER REQUIREMENT Supply
in „Max1270 Eingang auf mind. 0,8V ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm70.c
register initialization value const uint8_t Bank0_Reg[][2] PROGMEM = { {0,0x0F},//reflect RX_DR\TX_DS\MAX_RT,Enable CRC ,2byte,POWER UP,PRX {1,0x3F},//Enable auto acknowledgement data pipe5\4\3\2\1\0 {2,0x3F},//Enable RX Addresses pipe5\4\3\2\1\0 {3,0x03},//RX/TX address field width 5byte {4,0x0F},//
in „RFM70 und ATMega16 benötige Hilfe!!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS138.pdf
resistance while provide rugged, reliable, and fast switching • High density cell design for extremely lDS(ON) performance.These products are particularly suited for • Rugged and Reliable low voltage, low current applications such as small • Compact industry standard SOT-23 surface mount servo motor control
in „L4791 Step-down stirbt - wieso?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BSS138.pdf
resistance while provide rugged, reliable, and fast switching • High density cell design for extremely lDS(ON) performance.These products are particularly suited for • Rugged and Reliable low voltage, low current applications such as small • Compact industry standard SOT-23 surface mount servo motor control
in „I2C Spannung von kleiner 5V auf 5V mit NMOSFET wandeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS138.pdf
resistance while provide rugged, reliable, and fast switching • High density cell design for extremely lDS(ON) performance.These products are particularly suited for • Rugged and Reliable low voltage, low current applications such as small • Compact industry standard SOT-23 surface mount servo motor control
in „P-Mosfet, Plus schalten mit 3.3V“ · Analoge Elektronik und Schaltungstechnik ·