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RGB-Controller.sch.pdf
- - - - _ _ _ _ - - B B B B _ _ G G G G T T N R R D R R H I E E W H R _ T W G / I 2 V H / 1 _ E2 1 _2 1 / L 1 2 V2 1 _ + 1 1 _ V 1 1 + DNG DNG DNG DNG YALPSI D 5 5 5 5 DNG N E 9 N9 9 9 M D 5 G I 2 E2 E 2 2 V D R N V E S / 0 1 2 3 E E H L RL U L EL 5 N + - T G 5 V R R E D D D D L L WIR GI B I RI + G 2 4 6 3 2 1 + - D V E S E 0 1 2 3 V D 3 2 1 4 M N 5E R / D D D D _ N S k72 R G V R D _ 5 0 3 0 2 0 4 0 T D L D N R 1 R 1 R 1 R 1 S NO V5+ 6R N DNG L G I 1 3 5 4 5 6 G D V5
in „RGB Controller Platine“ · Mikrocontroller und Digitale Elektronik ·
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ProMini328PB_R1.pdf
1 2 3 4 5 6 ARDUINO PRO-MINI C14 10n R12 1R0 VCC R13 U3 F1 1 Vin Vo 5 +3V3 VCC VCCIN D 10M 3V3EN 3 D 2 on/off- 4 C12 C8 200mA GND Gnd Bp 2u2 C9 10uF, 16V ZD1 LP2985-33DBVR C13 0u1 5V6 TP2 10n EN JP3-3 R15
in „Heute aus China angekommen: fake or not“ · Mikrocontroller und Digitale Elektronik ·
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FSUSB30-1010253.pdf
b LOW LOW D+, D = HSD1 p n ) Pin Assignment for MSOP HIGH LOW D+, D = HSD2 n S w i S 1 10 VCC c h HSD1+ 2 9 OE HSD2+ 3 8 HSD1– D+ 4 7 HSD2– GND 5 6 D– (Top Through View) Pad Assignments for µMLP 1 2 D D H H 7
in „Problem mit FSUSB30 als USB-Schalter“ · Mikrocontroller und Digitale Elektronik ·
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00643b.pdf
i D D - V V F 1 8 4 C 0 7 4 6 L 7 6 5 4 3 2 1 0 L T U R c B B B B B B B B C S T D S b D R R R R R R R R E R 6 5 A V 7 S h a D U 5 3 1 F u P V F E T U C 2 P h 2 2 2 2 2 2 2 2 2 1 1 1 1 1 1 p R 4 O 2 e C 0. 7 5 C 8 8 0 G 2 GN D 2 r p B B B B B B B N D S C C D D z R 1 6 R 1 T R M I F 2 k t S R R R R R R R 0 V V R R / / k L V L R 1 S e B 5 D 4 k V 1 1 2 a R R / @ 6 6 C n V C 2 i C F R 1 1 + 9 D I I R 72 L V o W K 6 h t 1
in „Messdaten Kompression“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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project.pdf
D D O N G y C4 C5 C6 C7 A 100uF 100nF t 2 2 2 k 4 A 7 5 4 LM2678-5.0 h D 100uF 100nF 2 LF33 100nF 100uF 3 E 4 E 1 R S D L D L 1 1 GND GND PWR_FLAG SWD GND GND GND 4 Power Supply +3.3VGND P 1 2 3 4 5 6
in „Schaltplan so richtig? STM32F407VG“ · Mikrocontroller und Digitale Elektronik ·
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main.c
| FSMC D3 DB3 | FSMC D3 PD1 | fix on BlackBoard | * | FSMC D2 DB2 | FSMC D2 PD0 | fix on BlackBoard | * | FSMC D1 DB1 | FSMC D1 PD15 | fix on BlackBoard | * | FSMC D0 DB0 | FSMC D0 PD14 | fix on BlackBoard |
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controller.pdf
3 1 2 3 4 5 6 1 2 3 4 5 6 +3.3V +3.3V VDD +3.3V VDD VDD A1 A2 A3 Pololu_Breakout_A4988 Pololu_Breakout_A4988 C22 Pololu_Breakout_A4988 2 8 C20 2 8 C24 D T 100uF D T 100uF 2 8 100uF D O D O D T A 13RESET V
in „mp2451 funktioniert nicht korrekt“ · Analoge Elektronik und Schaltungstechnik ·
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can_g1251_v02_12f.eagle7.sch.pdf
(INT1/OC2B)PD3 2 D4_BI1 4 SMCLK CS3 5 +5V 2 0 (XCK0/T0)PD4 9 D5_BI2 C15 VDD GND D C 120 (OC0B/T1)PD5 10 N AREF (OC0A/AIN0)PD6 11 D6_AI1 100n CAP1203 GND L1 G (AIN1)PD7 D7_AI2 18 AVCC 10uH (SDA1/ICP4/ACO)PE0 3
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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TMP006_IR_temperatur_I2C__sbos518.pdf
hold configuration information, temperature measurement results, and status information. (1) Table 2. Register Map POINTER REGISTER D15 D14 D13 D12 D11 D10 D9 D8 D7 D6 D5 D4 D3 D2 D1 D0 (HEX) 00h VOBJECT V15 V14 V13 V12 V11 V10 V9 V8 V7 V6 V5 V4 V3 V2 V1 V0 01h TAMBIENT T13 T12 T11 T10 T9 T8 T7 T6 T5
in „Temperaturfühler TMP006 von T, wie anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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WinCUPL_Demo.pdf
; pin 8 = ADC_D0; pin 30 = D7; pin 31 = D6; pin 32 = D5; pin 33 = D4; pin 34 = D3; pin 35 = D2; pin 37 = D1; pin 38 = D0; NODE P10; NODE P9; NODE P8; NODE P7; NODE P6; NODE P5; NODE P4; NODE P3; NODE P2; NODE P1; NODE P0; NODE READ_ADC0; NODE READ_ADC1; NODE READ_ADC2; NODE ADR_RDY; FIELD P = [P19..0]; FIELD DATA2 = [D1,D0]; FIELD DATA = [D7,D6,D5,D4,D3,D2,D1,D0]; FIELD ADC_HB = [ADC_D11,ADC_D10,ADC_D9,ADC_D8,ADC_D7,ADC_D6,ADC_D5,ADC_D4]; FIELD ADC_LB = [ADC_D7,ADC_D6
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APP15.PDF
Logic D5 7 Bit ASCII Code a m Character D4 RAM L l Decode D3 Memory C 4480 Bits D2 D1 D0 4x7 Bit WR Write A0 Address A1 Decoder 14–30 Figure 2. Top view and pin outs Table 1. Electrical inputs to the DLX1414
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099-SINTEG-EWM00.pdf
/ / / / 7 6 5 4 3 2 1 7 6 5 4 3 2 1 S 0 R T R R 4 c V s X X S 2 h V t D D G V r + D D G V m 1 N 2 P N L m 2 D V D 2 E 1 V F R 3 - + F Ä Ä Ä Ä g B V ü e d d d d z t ~ P P c g u u u u e : E E s b g g g g h 1 e : - - - - n
in „EWM Schweissgerät - Messer Griesheim“ · Mikrocontroller und Digitale Elektronik ·
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EWM-TRSQW2-de.pdf
/ / / / 7 6 5 4 3 2 1 7 6 5 4 3 2 1 S 0 R T R R 4 c V s X X S 2 h V t D D G V r + D D G V m 1 N 2 P N L m 2 D V D 2 E 1 V F R 3 - + F Ä Ä Ä Ä g B V ü e d d d d z t ~ P P c g u u u u e : E E s b g g g g h 1 e : - - - - n
in „Schaltplan EWM TRSQW2 für Merkle Insquare 250W 350W, ESS SquareARC 351 WIG-Schweissgeräte“ · Projekte & Code ·
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Datei
piano1.asm
g1,50,f1,25,e1,25 .dw f1,25,e1,25,d1,150 .dw d1,50,e1,50,f1,50,a1,50 .dw g1,48,p,2,g1,50,d2,100 .dw d2,50,c2,25,d2,25,adis1,50,a1,25,g1,25 .dw a1,25,adis1,25,c2,150 .dw c2,50,d2,50,a1,50,g1,25,f1,25 .dw d1,48,p,2,d1,50,g1,100 .dw g1,50
in „5-Oktaven Melodie Box Atmega8 (AVR-Assembler)“ · Projekte & Code ·
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A500_ETV570G2DHU.pdf
2.5 LEDCTRL (V) 02101300-01-02 E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE TECHNOLOGIES CORPORATION E T V 5 7 0 G 2 D H U 3 14 12 .TOUCH PANEL SPECIFICATION 12.1 ELECTRICAL CHARACTERISTICS Ta
in „VGA Grafikkarte mit AVR und 8MB SDRAM“ · Projekte & Code ·
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IP113A_ReferenceDesign.pdf
Number Rev B PLACEMENT 1 5 4 3 2 Date: Tuesday, March 27, 2007 Sh1et 1 of 7 5 4 3 2 1 E D O Y1 _ X2 OSCI E E C1 25MHZ C2 S 15p 15p D X D S F D X _X _ _F C3 C4 D D 0.01u L L 0.01u E D O CRYSTALL _ E E S D X S F C C I C X X C L A C S
in „Umsetzer Ethernet Glasfaser“ · Mikrocontroller und Digitale Elektronik ·
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Receiver_2.pdf
V X1 3 1 + DATA2- 2 DATA2+ 3 DATA2/4S 4 DATA4- 5 DATA4+ 6 2 4 5 7 8 7 8 9 3 7 8 DDCCLOCK 7 SCL 8 8 8 9 9 6 3 6 1 2 4 5 7 DDCDATA 8 SDA AV-SYNC 9 80 D D D D D D D D D D D D D 77 DATA1- 10 81 RX2+ V V V V V V V V V V V
in „digital VGA 6bit -> VGA?“ · Mikrocontroller und Digitale Elektronik ·
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SPI_Com.c
d\t", AD1_Ch1, AD1_Ch2, AD1_Ch3, AD1_Ch4, AD1_Ch5, AD1_Ch6, AD1_Ch7, AD1_Ch8); fprintf(Ziel, "%d\t%d\t%d\t%d\t%d\t%d\t%d\t%d\n", AD2_Ch1, AD2_Ch2, AD2_Ch3, AD2_Ch4, AD2_Ch5, AD2_Ch6, AD2_Ch7, AD2_Ch8);
in „Lange Rechenzeit von kurzem C-Code“ · Mikrocontroller und Digitale Elektronik ·
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sim.pdf
v h 1 2 C9 D10 3 3 R = 2 100n 3.3V 1 r E MJE350.LIB B Q11 C .paramrsource=10k .paramcsource=10p 2 1 D13 15V 3 Q12 1 2 e IXTP10P50P 1 r 2 C10 2 o {csource} R { 2 1 r 2 1 c v 3 D14 1 Q13 15V 2 e IXTP10P50P 1 5 r 2 C11 2 o {csource} 2 R { p 4.7pF500V: KEMET1501206N4R7C102NT 1 r h v 33pF 1000V: Wima FKP2O100331D00HF00 68pF 1000V: Wima FKP2O100681D00HO00 2 1 2 3 V 2 D15 1 1 1 D 15V 1 Q14 = 1 = 3 1 2 0 r R r R C3
in „Slew Rate Erhöhung für diskrete Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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avrcp_m.pdf
1 2 3 4 5 6 +3V3 + 5V USB 0 k A 3 1 A C12 Reset 10µ R2 R4 RESET_CPM IC5 4256 1 23 /RAS D0_A0 6 1 D0_A0 4 3 D PC6(/RESET) PC0(ADC0) 24 /CAS D1_A1 7 A0 I/O1 2 D1_A1 +3V3/5 IC3 L C6 C7 100n PC1(ADC1) /OE D2_A2 A1 I/O2 D2_A2 20 VCC TXD 1 RXD_AVR 22 GND PC2(ADC2) 25 8 A2 I/O3 18 C9 + C10 4 VCCIO RXD 5 TXD_AVR n 21 AREF PC3(ADC3) 26 /WE D3_A3 9 A3 I/O4 19 D3_A3 3 2 1 S r 100n 20 27 D4_A4 11 100n 10µ 19 RTS 11
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Macom_Doubler.pdf
22.5 / 15.0 - 45.0 GHz XX1000-QT Rev. V7 Typical Performance Curves: Nominal Bias Conditions Fin, Pin=2dBm 30 Fin, Pin=4dBm 2xFin Fin, Pin=6dBm 20 Fin, Pin=8dBm 10 Fin, Pin=10dBm 0 2xFin, Pin=2dBm -10 2xFin, Pin=4dBm Fin 2xFin, Pin=6dBm -20 2xFin, Pin=8dBm -30 15 17 19 21 23 25 27 29 31 33 35 37 39 41
in „Spannungsversorgung -0,6V“ · Analoge Elektronik und Schaltungstechnik ·
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crc32.c
, 0x256fd2a0, 0x5268e236, 0xcc0c7795, 0xbb0b4703, 0x220216b9, 0x5505262f, 0xc5ba3bbe, 0xb2bd0b28, 0x2bb45a92, 0x5cb36a04, 0xc2d7ffa7, 0xb5d0cf31, 0x2cd99e8b, 0x5bdeae1d, 0x9b64c2b0, 0xec63f226, 0x756aa39c, 0x026d930a
in „CRC oder einfach die Daten doppelt schicken?“ · Mikrocontroller und Digitale Elektronik ·
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schematic.pdf
1 7N N 3 10µ/351µ/35V_cer D * 3 K 4 7 3G 5V G 1 C 1 2 N N S C18 C23C25 2 R 3 T B 2 R G O R C22 + + 3K R25 3 K R19 5 B MBR750 1 1 MBR750 1 1 3 5 D M 1µ/35V_cer0Vµ/_21C50eVµK/_2C5eVr_Cer D10 0 R27Z 2.1k D8 0 R20 2.1k P P 8 R 5 3
in „Finde Packages von Eagle nicht beim Bestellen“ · Platinen ·
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schematic.pdf
1 7N N 3 10µ/351µ/35V_cer D * 3 K 4 7 3G 5V G 1 C 1 2 N N S C18 C23C25 2 R 3 T B 2 R G O R C22 + + 3K R25 3 K R19 5 B MBR750 1 1 MBR750 1 1 3 5 D M 1µ/35V_cer0Vµ/_21C50eVµK/_2C5eVr_Cer D10 0 R27Z 2.1k D8 0 R20 2.1k P P 8 R 5 3
in „Schematic + Board“ · Mikrocontroller und Digitale Elektronik ·
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HT604L.pdf
pins for address A0~A17 setting A0~A17 I GATE They can be externally set to VDD, VSS, or left open. D10~D17 O CMOS OUT Output data pins DIN I CMOS IN Serial data input pin VT O CMOS OUT Valid transmission, active high OSC1 I OSCILLATOR Oscillator input pin OSC2 O OSCILLATOR Oscillator output pin VSS
in „838MHz Sender/Empfänger Codierelektronik?“ · Mikrocontroller und Digitale Elektronik ·
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FR_Family_MB91F109.pdf
0 0 0 0 0 0 D D D D D D D D D D D D D D V D A V A A A A A A A (FPT-100P-M05) 4 MB91F109 (Top view) G F 5 4 F 2 3 A / F F F / / / E E 6 7 7/ 2 1 3 / 3 B B 0 1 1 2 / / P P P P A G 2 P / / P P S S 0 1 0 1 /0 C C R G
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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542-01945-0-Z86E04.pdf
01-00 HEX) D7 D6 D5 D4 D3 D2 D1 D0 T Initial Value (When Written) Figure 28. Prescaler 0 Register (F5 :Write Only) (Range 1-256 Decimal H 01-00 HEX) T Current Value (When READ) R246 P2M D7 D6 D5 D4 D3 D2 D1 D0 Figure 25. CounterTimer 1 Register (F2 : Read/Write) H P27 - P0 I/O Definition 0 Defines Bit as OUTPUT 1 Defines Bit as INPUT R243 PRE1 D7 D6 D5 D4 D3 D2 D1 D0 Figure 29. Port 2 Mode Register (F6 :Write Only) H Count Mode 0 = 1 Single Pass
in „Pollin Ladegerät WCFD0801500IFOON : Rückwärts Ingenieur gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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ADG714_715.pdf
ADG715 FEATURES FUNCTIONAL BLOCK DIAGRAMS ADG714 SPI™/QSPI™/MICROWIRE™-Compatible Interface ADG715 I 2C™-Compatible Interface 2.7 V to 5.5 V Single Supply ADG714 ADG715 S1 D1 S1 D1 2.5 V Dual Supply S2 D2 2.5 On Resistance S2 D2 0.6 On Resistance Flatness S3 D3 S3 D3 100 pA Leakage Currents S4 D4 S4 D4
in „Arduino Uno & ADG714 via SPI funktioniert nur sporadisch“ · Mikrocontroller und Digitale Elektronik ·
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tmp175.pdf
Register D7 D6 D5 D4 D3 D2 D1 D0 T3 T2 T1 T0 0 0 0 0 Table 4. Byte 2 of Temperature Register 5 www.ti.com SBOS288J − JANUARY 2004 − REVISED DECEMBER 2007 TEMPERATURE DIGITAL OUTPUT HEX POLARITY (POL) (°C) (BINARY
in „Temperaturmessung mit dem LM75“ · Mikrocontroller und Digitale Elektronik ·
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CPU_ECB_sheet.pdf
1 2 3 4 5 6 A A U$1 AVR-STAMP U$2 Z180-STAMP A1 NC 3.3V B1 +3V3 A1 DESEL 3.3V B1 +3V3 ARESET A2 B2 +5V A2 B2 +5V J2 A3 ARESET 5.0V B3 A18 A3 NC 5.0V B3 A18 D0 A4 NC PE4 B4 A17 D0 A4 A19 A18 B4 A17 A1 C1 D0 PE3 D0 A17 A2 C2 D1 A5 D1 PE2 B5 A16 D1 A5 D1 A16 B5 A16 A3 C3 D2 A6 D2 A15 B6 A15 D2 A6 D2 A15 B6 A15 A4 C4 D3 A7 B7 A14 D3 A7 B7 A14 D4 A8 D3 A14 B8 A13 D4 A8 D3 A14 B8 A13 A5 C5 D5 A9 D4 A13 B9 A12
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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Wohnraumuhr1_Rev1.1.pdf
1 2 3 4 5 6 + V ELV_DC2_91610DCF2 5 8 3 5 8 3 5 8 3 5 8 3 p A A p A A p A A p A A +5V 1 C T D d D2 C C dD3 C C DA d D4 C C d D5 C C F V D G 1 2 E0 2 2 D 3 - L 2 - - A e A e 2 2A e 2 e 2 A +5V C T D S A E0 A A V O N S L 2 S , S G a b c d e f g , 6 a b c d e fg a b c d e f g 4 b c d e f g + GND 7 6 4 2 1 9 0 4 D7 6 4 2 1 9 0 D10 7 6 4 2 1 9 0 9 P 6 4 2 1 9 0 J2-1 C9 1 D 1 ZPD4,7 1 D Z 1 33k 47µ/25V T1 0 0 00 0 0 Z 0 0
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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rtc.pdf
D7 D6 D5 D4 D3 D2 D1 D0 D S DOUT HIGH IMPEDANCE 1 Figure 11. SPI Single-Byte Write 3 9 1 / CS D S 1 SCLK DIN 3 9 W/R A6 A5 A4 A3 A2 A1 A0 2 DOUT HIGH IMPEDANCE / D7 D6 D5 D4 D3 D2 D1 D0 D S 1 Figure 12
in „ein Uhrenquartz für AVR und RTC???“ · Mikrocontroller und Digitale Elektronik ·
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ASUS_A8J.F.pdf
4 5 6 6 R R E 1 D K _ A # D R R R R WTA _ D R A A A A _ A L A C I I I I A _ _ 7 I N I I I I # L H H T I M _ _ _ _ K WC C M _ 2 P 2 2 A E I X X X X _ C P _ _ R _ N P _ I I E I L K L C C C C W C C P P P P 7 1 2 1 1 7 2
in „Anschlüsse Mini-PCIe“ · Mikrocontroller und Digitale Elektronik ·
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Digging_inside_CMU200_SW.txt
) COR_PBID_IF_AMP_SWITCH_LEVEL(FIX16D2) COR_PBID_FILTER_BAND_DEVIATION(FIX16D2) COR_PBID_SINGLE_FILTER_DEVIATION(FIX16D2) COR_PBID_LAST_SSI_OFFSET_LEVEL(FIX16D2) COR_PBID_COPRO_DEVIATION(FIX16D2) COR_PBID_RF1_PATH_GAIN(FIX16D2) COR_PBID_RF2_PATH_GAIN(FIX16D2) COR_PBID_IF_PATH_GAIN(FIX16D2) COR_PBID_IF1ATT_NOMINAL_GAIN(FIX16D2) COR_PBID_IF1ATT_DEVIATION(FIX16D2) COR_PBID_LOW_RF_PREFLT_DEVIATION(FIX16D2) COR_PBID_FILTER_NOMINAL_GAIN(FIX16D2) COR_PBID_IF2_
in „CMU200 Erfahrungen und Modifikationen“ · HF, Funk und Felder ·
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DAC904_14-Bit_165MSPS_Digital-to-Analog_Converters.pdf
PIN CONFIGURATION PIN DESCRIPTIONS Top View SO, TSSOP PIN DESIGNATOR DESCRIPTION 1 Bit 1 Data Bit 1 (D13), MSB 2 Bit 2 Data Bit 2 (D12) 3 Bit 3 Data Bit 3 (D11) 4 Bit 4 Data Bit 4 (D10) 5 Bit 5 Data Bit 5 (D9) Bit 1 1 28 CLK 6 Bit 6 Data Bit 6 (D8) 7 Bit 7 Data Bit 7 (D7) Bit 2 2 27 +VD 8 Bit 8 Data Bit
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DMX-Record_00_schematic.pdf
+5V 1 IC6A 4 2 N M1 G 1 74AHCT1G125 X1 26 VDD D0 35 IC5A 7 R D 27 34 2 3 8 DAT0 6 0 N VSS D1 33 1 DAT1 D R 1 G 21 D2 32 2 DAT2 S 22 CAP1N D3 31 GND +5V D 74AHC125D CD/DAT3 r CAP1P D4 N 3 CMD i 0 D5 30 G 4 5 CLK m R
in „Wichtigkeit von Leiterbahnlänge bei Digitalsignalen“ · Platinen ·
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MC7800-D.pdf
/Rail MC7809CTG TO-220 50 Units /Rail (Pb-free) 2 MC7812ABD2T D PAK 50 Units /Rail 2 MC7812ABD2TG D PAK 50 Units /Rail (Pb-free) 2 MC7812ABD2TR4 D PAK 800 / Tape & Reel 12 V T = -40°C to +125°C 2 MC7812ABD2TR4G J D PAK 800 / Tape & Reel (Pb-free) MC7812ABT
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harman_kardon_hkts200-230_hkts210-230_sub.pdf
P P P ZD2 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 P3J203 P0R2301P0R2302 P0D10A P0D10K LD1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 P5J205 2 0 2.7V 0 2 D1 2 D 2 2 +3.3V P0J204 R 0 R24 P 1 R25 C40 P P R82 1 22K 0 LED 100nF C P2J202
in „Überspannung Herman Kardon Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
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ETEMB043013XDHAL_-_ver2.pdf
I L rai n. NT r ro ai D E d f Co rz NFI ize is to CO tor log tau Au hno ho Tec wi ly ut ip ti g D di gin not mer o E D 02101300-01-02 ETECHNOLOGIES CORPORAETEMB043013XDHALVE2SIP0-2 T A B L E O F C O N T E N T S ============
in „EDT Display Interface mit STM32F7“ · Mikrocontroller und Digitale Elektronik ·
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platine_oben.pdf
JP1 1 2 3 4 5 6 7 8 9 1D 1D 1 D 1 D 1 D 1 D 1 D 1D 1D 1 D 1 D 1 D 1 D 1D 1D 1 D 1 D 1 D 1 D 1 D 1D 1D 1 D 1 D 1 D 1 D 10 V V V V V V V V V V V V V V V V V V V V V V V V V V 11 12 IC31IPC30IPC29IPC28IPC27IPC26IPC25IPC32IPC33IPC34IPC35IPC36IPC15IPC13IPC12IPC11PIC10IPC9PIC16IPC17IPC18IPC19IPC20IPC21IPC22IPC23P
in „Nixie Uhr Probleme :-(“ · Analoge Elektronik und Schaltungstechnik ·
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mainschem.pdf
S S S R G 4 S S S R G 4 S S S R G 4 n M 7 7 7 A L 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 k D R 2 7 0 D N C 1 D N D G N V5+ G V5+ N V5+ G G 3 4 n 1 k 9 7 R 2 C 2 4 4 8 5 5 5 5 R 2 C 1 D 1 1 2 3 4 5 6 7 9 1 1 2 3 4 5 6 7 9 1 1 2 3 4 5 6 7 9 N G * * * Q Q Q Q Q Q Q Q H N Q Q Q Q Q Q Q Q H N Q Q
in „uint128_t mit AVR?“ · Mikrocontroller und Digitale Elektronik ·
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DSO_User_Manual_Addon_LA.pdf
Pulse meet the trigger condition (defined by the Source, When and Set Pulse Width options). CH1 CH2 Source EXT Select the input source as the trigger signal. EXT/5 D0-D15 = When ≠ Select the trigger condition. < > Set Pulse With Set Pulse Width highlighted by pressing F4, turn the Width 20ns to 10.0sec
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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DSO_User_Manual_Addon_LA.pdf
Pulse meet the trigger condition (defined by the Source, When and Set Pulse Width options). CH1 CH2 Source EXT Select the input source as the trigger signal. EXT/5 D0-D15 = When ≠ Select the trigger condition. < > Set Pulse With Set Pulse Width highlighted by pressing F4, turn the Width 20ns to 10.0sec
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AVR-Board_neutral.pdf
Funktionen-Auswahl S2 Pin Port ------------ S1 S3 RS PB0 EN PB1 D4 PB4 D5 PB5 LCD-DISPLAY 2x 16 Zeichen D6 PB6 D7 PB7 + - V 5 E S / N 0 1 2 3 4 5 6 7 E E S4 0 + V R R E D D D D D D D D L L S1 PB2 +5V S2 PB3 R16 R17 S3 PD3
in „[V] AVR-Module mit ATMEGA644 in Hutschinengehäuse“ · Markt ·
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ms5561c.pdf
s Difference between actual temperature and reference r temperature: dT(D2) = D2 -ref dT = 2608 P dT = D2 - UT1 Actual temperature: TEMP(D2) = 20°+dT(D2)*TEMPSENS TEMP = 391 10 = 39.1 °C TEMP = 200 + dT*(C6+50)/2 (0.1°C resolution) Calculate temperature compensated pressure Offset at actual temperature: OFF(D2) = OFFT1+TCO*dT(D2) OFF = 5220 OFF = C2*4 + ((C4-512)*dT)/2 Sensitivity at actual temperature: SENS(D2) = SENST1+TCS*dT(D2) 10 SENS = 49923 SENS = C1 + (C3*dT)/2 + 24576 14 X = 23093 X = (SENS * (D1
in „Baro- & Hygrometer ab 8.4. bei Lidl“ · Mikrocontroller und Digitale Elektronik ·
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Interface_f_r_Forum.pdf
P0D102 P0FIL1001 P0FIL1002 22 P0PM1+Uin +Uout 14 2 1 2 0 0 3 0 23 P0PM1023 2 D L B 2 +Uin 0 L n 2 N Uin=24V/DC 1N4007 F D 0 P RA 025-120 P ü 0 D I P 0 n P r C P A X1 0 0 P ü 5 C25 D2 VCC 0 G P D3 A R 0 4
in „Defekter FET Treiber LM5104“ · Analoge Elektronik und Schaltungstechnik ·
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ATMEGA128.pdf
VCC P0P20331 32 P0P2032 DGND (OC1B)PB6 PG0(/WR) P0P10331 32 P0P1032 7 2 3 HEADER 16X2 B 0 1 D D DGND HEADER 16X2 P D D ) ) VCC ) 3 4 ) ) 2 3 5 1 G P 0 1 T T 4 D 2 2 C P 1 T T I I D P D R O 2 1 T 2 1 I I /71 8/ P 1 6 7 P P 1/ C C E L L 2/ 2/ 0 01 1 P P U2 8S S1 S C D A A
in „Was nehme ich nur?“ · Offtopic ·
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te2200.pdf
> CD1 = 0 OK DTR1 = 0 – – > CD1 = 0 OK DTR1 = 0 – – > C I 1 = 0 OK DTR1 = 0 – – > C I 1 = 0 OK T x D – – > Rx D OK T x D – – > Rx D OK END 4 1 END x n 0 4 1 x=0, d=2 x=1~3, d=2 COM2 4 2 COM2 x n 0 4 2 RTS2 = 1 – – > CTS2 = 0 OK RTS2 = 1 – – > CTS2 = 0 OK DTR2 = 1 – – > DSR2 = 0 OK DTR2 = 1 – – > DSR2
in „LCD identifizieren.“ · Mikrocontroller und Digitale Elektronik ·
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0900766b81417515.pdf
Voltage 1 E D = 0.7 C A D = 0.5 S S D = 0.3 E R 0.1 L D = 0.1 M D = 0.9 R D = 0.05 E T RθJAt) = r(JA * R T RθA= 80°C/W N D = 0.02 I 0.01 P(pk) N D = 0.01 t1 A R 2 ) D = 0.005 TJ-AT = PθJAt) r Duty Cycle,1 2= t /t
in „Datenblatt DMG4511SK4 COMPLEMENTARY PAIR MOSEFT“ · Analoge Elektronik und Schaltungstechnik ·
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geigercCounter_pcb.pdf
S D Vbat_USB SOD-323 = ca. 0805 VBUS A4 A GND C8 R14 R24 A A7 R9 U2 þÿ4,7µF 10k 8,2R D- D- 8 MCP73871-2AA G SW5 D- B7 R6 330k 1 R19 I_L_HV A6 I GND SW_SPDT D+ 120k 1 100k D+ B6 D+ 2 VPCC OUT 1 Vbat 2 E C12 Q2 B JP1 3 C13 A5 3 SEL þÿ100µF þÿ0.1µFBCW68 L2 Vhigh CC1 14 C Vbat_USB 10mH CC2 B5 R7 10k 13 V_{BAT} C7 D18 G PROG1 BT1 GND T 4 16 þÿ4,7µF Battery_Cell VBUS RS1M L A8 R1 R2 D6 D7 D8 . 12 PROG2 V_{BAT_SENSE
in „Review-Anfrage – Akku-betriebene Geigerzähler-Platine mit ESP32-S3“ · Analoge Elektronik und Schaltungstechnik ·