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Datei
Oszi_Preise__eBay.txt
200 4 212.00 OK, 7A26,7A26, 7B85, 7B80 12003005941916.09.06 22:09:41 TEK 7704A 200 4 299.00 OK, 7A26, 7A26, 7B85, 7B80, kein Gebot 12002730037109.09.06 20:38:15 TEK 7844 400 4 257.00 OK, 7A24,7A26,7B80,7B85 23000165584202.07.06 19
in „Oszi Preise bei eBay“ · Offtopic ·
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Datei
ffft.S
;Zero ldiw ZH,ZL, tbl_window ;Z = &tbl_window[0]; ldiw AH,AL, FFT_N ;A = FFT_N; 1: lpmw BH,BL, Z+ ;B = *Z++; (window) ldw CH,CL, X+ ;C = *X++; (I-axis) FMULS16 DH,DL,T2H,T2L, BH,BL, CH,CL ;D = B * C; stw Y+, DH,DL ;*Y++ = D; #ifdef INPUT_IQ ldw CH,CL, X+ ;C = *X++; (Q-axis) FMULS16 DH,DL,T2H,T2L, BH
in „Problem mit undefined reference to“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80c827e9.pdf
resistors. used in demanding environments. R1 R2 G = 5 + 2(1 /R ) RG INA2332 INA332 40kΩ 10kΩ VREF 40kΩ Ch A 10kΩ A1 A3 VOUT VIN A2 VIN Ch B V+ V– Shutdown Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SDS_Series_Oscilloscopes_Service_Manual_v1_0.pdf
the stable waveform. Then, also set the measured window 1 as the period of CH 1; get the period value B to gain the time error C as follows: C=(B-A)÷A×100% 3.3.4 Voltage division and error inspection A. As shown by Figure 3 connected, CH 1 set as follows: Coupling: DC Channel:
in „WELEC W2000A vs. OWON SDS8102“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan eines ESP32-basierten Systems
POWER VIN TXD2 RXD2 1000±5% U9TXD U8 USB1 USB-Micro B V3 C14 0.1uF 25V GND U9TXD R232 3.3V TXD 13.3V D+ D- 6 UD- R11 12 RXD 10 DS# 9 CTS# CH340C 3.3V-ESP32 3.3V U7 Vin C15 10uF 16V C16 10uF 16V C17 0.1uF 25V AMS1117-3.3 3.3V-TFT 3.3V ADC R15 1MΩ±5% LED1
in „Cheap Yellow Display“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
ureflow.pdf
DS14W 4 1 4 BTN_LEFT 1 4 BTN_RIGHT A VCC 2 3 2 3 J1 C4 C8 100nF D6 VBUS A4 1 4 GREEN TH1 100nF VBUS B4 C 3 3 SCK 5 SCK GND GND A9 U2 C VTXD 2 TXD 1 T+ VBUS PRTR5V0U2X 4 V 3 RXD 2 C7 2 CS 6 CS +3V3 +3V3 VBUS B9 RXD 10nF T- B7 SO 7 SO D- BOOT0 D-A7 D- 3 D- 6 UD- ~{CTS}9 B6 D+ 2 D+ 5 10 R13 R17 D+ A6 15 UD+ ~{DSR}11 1 SW2 SW4 _ D+ TNOW ~{RI} GND 10K 10K B CC1 A5 ~{DCD}12 1 4 BTN_BACK 1 4 BTN_OK U B5 13RESET 3 CC2 1 ~{DTR} 2 3 2 3 SBU1 A8 ~{RTS}14 Q3 GND B8 D 7 2 S8050 SBU2 G ~{RST} R7 1 GND GND GND A1 4.7K B1 R1 R2 1 GND B12 U4 C5 GND 5.1K 5.1K CH340B
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ureflow_1.0.1.pdf
DS14W 4 1 4 BTN_LEFT 1 4 BTN_RIGHT A VCC 2 3 2 3 J1 C4 C7 100nF D6 VBUS A4 1 4 GREEN TH1 100nF VBUS B4 C 3 3 SCK 5 SCK GND GND A9 U2 C VTXD 2 TXD 1 T+ VBUS PRTR5V0U2X 4 V 3 RXD 2 C6 2 CS 6 CS +3V3 +3V3 VBUS B9 RXD 10nF T- B7 1 SO 7 SO D- Q3 D-A7 D- 3 D- 6 UD- ~{CTS}9 2 B6 D+ 2 D+ 5 10 S8550 R13 R18 D+ A6 15 UD+ ~{DSR}11 3 1 SW2 SW4 _ D+ TNOW ~{RI} GND 10K 10K B CC1 A5 ~{DCD}12 1 4 BTN_BACK 1 4 BTN_OK U B5 13RESET CC2 1 ~{DTR} BOOT0 2 3 2 3 SBU1 A8 ~{RTS}14 GND B8 D 7 SBU2 G ~{RST} R7 R8 GND GND GND A1 1.5K 4.7K B1 R1 R2 1 GND B12 U4 GND 5.1K 5.1K CH340B GND
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GPS_ublox_4.pdf
USB-RS232 Koppler mit 3,3 V- Ausgangssignalen. Dazu bot sich ein Arduino Nano V3.0-Clone mit einem CH340 als USB-Zugang an. Die werden derzeit so billig wie Vortagssemmeln angeboten. Nur haben die einen 5V-Regler auf der Platine, sind also für den ublox nicht verwendbar. Die Umrüstung auf 3,3 V ist aber
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PDF
ureflow.pdf
_ D+ TNOW ~{RI} GND 10K 10K B CC1 A5 ~{DCD}12 1 4 BTN_BACK 1 4 BTN_OK U B5 13RESET CC2 ~{DTR} BOOT0 2 3 2 3 SBU1 A8 ~{RTS}14 GND B8 D 7 SBU2 G ~{RST} R7 R9 GND GND GND A1 1.5K 4.7K B1 R1 R3 1 GND B12 U2 TEMPERATURE SENSOR BUTTONS GND 5.1K 5.1K CH340B GND A12 EP Shield B B USB & POWER GND C9 +3V3 +3V3 4.7uF D G +5V C10 U5 +5V +5V +5V BUZZER1 D8 100nF STM32G031F8P6 2 DS14W 4 + A D1 D4 D5 D7 RESET NRST 6 PF2-NRST D PA0 7 BUZZER 1 1N4148W V 8 SCK
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds-mb86r01-jade-rev1-4.pdf
data length: 1 bit unit (max. 32 bit) (programmable setting) CAN (*2) • Mounted BOSCH C_CAN module × 2ch • Conformed to CAN protocol version 2.0 part Aand B • I/O voltage: 3.3V MediaLB (*2) • 16 channels • MediaLB clock speed: 256Fs/512Fs/1024Fs • Built-in 9K bit channel buffer USB (*2) • USB 2.0 compliant
in „Bild im Bild in der Instumententafel Range Rover“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u-blox-ATCommands_Manual__UBX-13002752_.pdf
volume during the call. Other players volume and tone generator volume are not affected. LEON-G / SARA-G340 / SARA-G350 • The <level> parameter is mandatory. Moreover <level>= 100 means 0 dB and the step size is 0.25 dB (e.g.: 80 means -5 dB). 5.13 Mute control +CMUT +CMUT Modules LEON-G SARA-G340 SARA-G350
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
STK500_03.pdf
XCK)PB0 40 1 SH/LD 1 1 1 1 39 C GND GND 1 9 8 (TOSC2)PC7 26 I 74HC165D GND 1 C C (TOSC1)PC6 25 M GND B C C PC5 24 S B PWR 1K V GND GND GND GND PC4 23 M PC3 22 CLK 74HC126D 10n C18 R1 PC2 21 R15 FB1 PC1(SDA) 20 12 11 Grün PC0(SCL) 19 R24 SCK GND 1210 IC2D 330 n 1 C n 16 1 150K C2 7 7 n V 0 (OC2)PD7 15
in „myAVR MK2b fehlerhaft, Firmware / Hardware?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Timing_Summary_N_2.txt
0.000| | 0.749(F)| SLOW | 0.334(F)| FAST |AD9249_dig_data_interface/DCO_2_BUFG| 0.000| bank2_diff_ch_matrix<6><1>| 0.730(R)| SLOW | 0.342(R)| FAST |AD9249_dig_data_interface/DCO_2_BUFG| 0.000| | 0.732(F)| SLOW | 0.340(F)| FAST |AD9249_dig_data_interface/DCO_2_BUFG| 0.000| bank2_diff_ch_matrix<7><1>|
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Alto_D1__D2__D3__D4_Power_Amp_Service_Manual.pdf
system and RoHS directive - 1 - 2. TECHNICAL SPECIFICATION D1 D2 D3 D4 Outputpo wer 2C HA mplier 4CH Am plfer 2CH Amp lir 4C HA mpliir Powe rcontiu ous@ 0.5% TH D. Bothch annel drie n,230V 8ohm sperchann elRM S) 2X 240W 4X 240W 2 X3 40W 4X 340W 4ohm sperchann elRM S) 2X 390W 4X 390W 2 X5 40W 4X 540W
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_.pdf
+ ▯¤ Digital2 CONTROL AND SDI CH2 -nA ModulatoFilter POWER IN4 MANAGEMENT SCLK IN5 + CH3 InA ▯¤ Digital3 CSB IN6 - ModulatoFilter ALARMB WCT T T U U N I F B VSSIO O O D L 0.1 PF R C 5V M L L R D YN3.3V C R R 3.3V L S E B R I 0.1 PF
in „EKG-IS ADS1293 rückt keine Messwerte raus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
schaltplan.txt
U +5V | --+ | 16 | TxD | | | 9 18 | | S D+ | ----------| 6 2 |--------|----|--| 3 RxD Vdd PD1 | | B D- | ----------| 5 CH340G | RxD | | | | | GND | --+ | 3 |--------|----|--| 2 TxD PA1 5 |---+ +--------+ | +---| 4 | 100n | | | STM8 S103F3P6 | | | | | 13 |---||---+----+--| 4 NRST | | | | | 7 8 | DTR
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Datei
fft232slow.asm
ICR1, A ;/ ;ldiw A, 36/2 ;half value ;outw OCR1B, A ;/ ;outi TCCR1A, 0b00100010 ;COM1B[1:0]=10, WGM1[1:0]=10 ;outi TCCR1B, 0b00011001 ;WGM1[3:2]=11, CS1[2:0]=001 ; Start A/D with ch0, free running, 44ksps outi ADMUX, 0b00000000 ;MUX[3:0]=0000 outi
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
FireBeetle_Board-ESP32_V4.0.pdf
D9 X X C5 ADJ P1 P2 T R C1 R2 Q5 100nF 1 100nF RXD 1 A0 1 4 4 10K NPN TXD 2 A1 2 2 2 D2 3 A2 3 A U2 CH340C D3 4 A3 4 A GND 1 16 V3 GPIO0 D4 5 A4 5 5 R R 2 GND VCC 15 D5 USB1 3 TXD R232 14 RTS# R4 Q2 D6 6 GPIO0 6 4 V3 4 RXD RTS# 13 DTR# NPN D7 7 SCK 7 ID 3 UD+ 5 V3 DTR# 12 10K D8 8 MOSI 8 C2 UD+ UD+ DCD
in „Funktion des Schaltplans“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
schaltplan.txt
+ | 16 | TxD | | | 16 5 | | | S D+ | ----------| 6 2 |-------|----|---| 18 RxD PA10 Vdd Vdda | | | B D- | ----------| 5 | RxD | | | | | | GND | --+ | 3 |-------|----|---| 17 TxD PA9 | | +--------+ | +---| 4 CH340G | | | | | | | | | | +----|---| 4 NRST STM32F030F4P6 - TSSOP20 PF0 2 |----+ | | | | | |
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Datei
FFT232b.asm
ICR1, A ;/ ldiw A, 36/2 ;half value outw OCR1B, A ;/ outi TCCR1A, 0b00100010 ;COM1B[1:0]=10, WGM1[1:0]=10 outi TCCR1B, 0b00011001 ;WGM1[3:2]=11, CS1[2:0]=001 ; Start A/D with ch0, free running, 44ksps outi ADMUX, 0b00000000 ;MUX[3:0]=0000 outi ADCSR
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
discoveryf4.pdf
/ 32 S 17 TIM1_CH1N/ D RMII_CRS_DV/ O ADC12_IN7 MCO1/ USART1_CK/ PA8 TIM1_CH1/ 67 43 I2C3_SCL/ OTG_FS_SOF USART1_TX/ G TIM1_CH2/ R B PA9 I2C3_SMBA/ 68 E U 1 44 DCMI_D0/ N S OTG_FS_VBUS USART1_RX/ PA10 TIM1_CH3/ 69 D 4
in „Hilfe bei Programmierung STM32F407VG bei TIM1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hantek_Tekway_DSO_v1.03.pdf
7 8 9 3 2 1 K K K K K K F F F F F F CH1 input B 01-CH1 Input Circuit.SchDoc B AD9288 CPLDBUS 04-ADC.SchDoc Self Cal Signal CH1 1GSs/500MSs CH1 RL1+ 1GSs/500MSs CH1 RL1+ 1GSs/500MSs CH1 RL1- 1GSs/500MSs CH1 RL1- OFFSET3-CH1 1GSs/500MSs CH1
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
d6a9b561-b36e-41ba-960d-979f019b7a6f.pdf
11GPIO15 GPIO4 12 C25 GPIO2 GPIO2 GPIO0 GPIO0 100nF 10uF 2.4GHz GND V 5 GND GND U6 12k▯' 3 2 R18 GPIO0 B VIN VOUT B 1 3V3 12k▯' VSS R8 GPIO2 ME6211A33M3G-N C7 C24 3 1uF 1uF 3 UART GND GND GND S T T R R D U9 470▯' 1 GND VCC 16 3V3 Q2 C10 R17 2 TXD R232 15 6 5 4 UMH3N C RX R9 3 14 C TX 4 RXD RTS# 13 RTS 470
in „Bitte um Hilfestellung beim Platinen Layout“ · Platinen ·
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PDF
d6a9b561-b36e-41ba-960d-979f019b7a6f.pdf
11GPIO15 GPIO4 12 C25 GPIO2 GPIO2 GPIO0 GPIO0 100nF 10uF 2.4GHz GND V 5 GND GND U6 12k▯' 3 2 R18 GPIO0 B VIN VOUT B 1 3V3 12k▯' VSS R8 GPIO2 ME6211A33M3G-N C7 C24 3 1uF 1uF 3 UART GND GND GND S T T R R D U9 470▯' 1 GND VCC 16 3V3 Q2 C10 R17 2 TXD R232 15 6 5 4 UMH3N C RX R9 3 14 C TX 4 RXD RTS# 13 RTS 470
in „Bitte um Hilfestellung beim Platinen Layout“ · Platinen ·
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PDF
bq24725.pdf
and Refresh Pulse Figure 11. System Load Transient (Input DPM) CH1: PHASE, 20V/div, CH2: battery voltage, 5V/div, CH3: LODRV, CH1: PHASE, 20V/div, CH2: LODRV, 10V/div, CH3: battery voltage, 10V/div, CH4: inductor current, 2A/div, 400us/div 5V/div, CH4: inductor current
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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PDF
EKG_usw_Informationformedicalapplications_von_TI.pdf
A(22-0) Serial Port (BSP) _W O S A O S L X/ I F S C C54x™ DSP CPU Timer E M MAC ALU DMA 40-Bit ALU Ch 0 u TDM Serial Port AIC111 functional diagram. 17 x 17 MPY Ch 1 B 40-Bit Adder CMPSOperator(Viterbi) a Serial Port RND, SAT EXP Encoder Ch 2 e Shifter Accumulators Ch 3 i Interface (HPI) 16/8 40-Bit
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_Dez_2014.pdf
2014 www.ti.com Figure 58. ERROR_RANGE2: Channel 2 AFE Out-Of-Range Status Addr 7 6 5 4 3 2 1 0 0x1B SDM_ OR_CH2 SIGN_CH2 OUTN_ OUTN_ OUTP_ OUTP_ DIF_HIGH_ LOW_CH2 HIGH_CH2 LOW_CH2 HIGH_CH2 CH2 [7] RESERVED — [6] SDM_OR_CH2 Channel 2 sigma-delta modulator over range 1: Indicates an over range detected
in „Warum soll ADS1293 mit einem 4,096 MHz Quarz betrieben werden?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
webasm27154_lst.txt
24H,#00H 143: 00EB 75 25 03 MOV 25H,#03H 144: 00EE 75 3A 06 MOV 3AH,#06H;ÖÃÄÖʱ³õÖµ 145: 00F1 75 3B 01 MOV 3BH,#01H 146: 00F4 75 89 11 MOV TMOD,#11H 147: 00F7 75 8C 3C MOV TH0,#3CH 148: 00FA 75 8A B5 MOV TL0,#0B5H;ŒÓÁË5uS 149: 00FD 75 8B CA MOV TL1,#0CAH 150: 0100 75 8D FE MOV TH1,#0FEH 151: 0103 7C
in „Uhrzenbausatz mit At89C2051 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PETH-49_Labornetzteil.pdf
LED2ST 21 LED GRN LED2ST 25 LED GRN LED2ST 26 10k R4 R4 27 10k R4 R4 28 10k R4 R4 29 10k R4 R4 30 GL1 B250C7000 BRÜCKE2B 31 IC1 LM324N / TL074 DIL14 32 IC2 LM723 DIL14 33 IC3 LM317 TO-92C 649225 0.75 42 R1 0R39 2W R8 43 R2 560 R4 44 R3 47 R4 45 R4 1k2 R4 46 R5 100 64W 740016 2.15 47 R6 47 R4 48 R7 430k
in „Oppermann B50“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LQ121S1LG75.pdf
MSB) 4 TA6 G0 (LSB) G2 6 TB0 G1 G3 7 TB1 G2 G4 11 TB2 G3 G5 12 TB3 G4 G6 14 TB4 G5 G7 (MSB) 15 TB5 B0 (LSB) B2 19 TB6 B1 B3 20 TC0 B2 B4 22 TC1 B3 B5 23 TC2 B4 B6 24 TC3 B5 B7 (MSB) 27 TC4 (HS) (HS) 28 TC5 (VS) (VS) 30 TC6 DE DE 50 TD0 R6 R0 (LSB) 2 TD1 R7 (MSB) R1 8 TD2 G6 G0 (LSB) 10 TD3 G7 (MSB) G1 16 TD4 B6 B0 (LSB) 18 TD5 B7 (MSB) B1 25 TD6 (NA) (NA) 4 < SELLVDS = L(GND) or Open > 1 CYCLE R1 R0 G0 R5 R4 R3 R2 R1 R0 G0 G2 G1 B1 B0 G5 G4 G3 G2 G1 B1 B3 B2 DE (VS) (HS) B5 B4 B3 B2 DE R7 R6 NA B7 B6 G7 G6
in „Mini2440 LVDS Display Adapter für größere TFTs“ · Projekte & Code ·
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PDF
lg_flatron_l1800p_lb886f_ch_cl-29.pdf
,RD10V20%BULKF C12 0CH3105F946 1UF16VZF2012R/TP C919 0CKZTBU003B SCE332M12.5BW7250VBK7.5 C13 0CK104CK56A 0.1UF160850V10%R/TPX7R C921 0CE228EF630 2200UFKMG16VMFM5BULK C15 0CK104CK56A 0.1UF160850V10%R/TPX7R C922 0CKZTTA002E
in „Überspannung in Mehrparteien-Wohunung. Baustrom, oder Kabel angebohrt?“ · Haus & Smart Home ·
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PDF
ETEMB043013XDHAL_-_ver2.pdf
" NOTE THE FIGDRE BEdOW ISCTHE OrTPUT SIGNAL OF THE PHOTO DETECTOR. NFI iz is to CO thr olg tau Au ch tou NOTE DEFINITION OF COLOR CHROMATICITY (b)MEASURED AT bHE CENTER POINT OF MODULEALL THE INPUT TERMINALS OF NOTE (a)DEFIDITIONsOF BRIGHTNESS UNIFORMITY AT CENTER POINT. ng td eg on Em D (b)THE BRIGHTNESS
in „EDT Display Interface mit STM32F7“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FK743M5-XIH6.pdf
VDD PIMCU10L1 断开0欧电阻,可接入外部参考电压 IPCU160H16 FMC_A12 PG2CGP PIMCHU10H7 PIMCU10M5 NP 0 U5 PG2 H15 NTO CH_SCLK PG33 H8 VSS VDD M13 LN1B PIMCU10U5 PB0 PG3 PIMCU1 0H15 NLF 0AB0CGP PIMC U10H8 VSS VDD PIMCU10M1 避免因意外输入高压而损坏单片机 P 1 PIMCU10T5 PB1 PG4 PIMCU140H14 FMC_BA0 PG4 PIMCHU10H9 VSS VDD PIMCU10N7 P 2B PIMCU10R6
in „STM32H743 mit 32MByte externem SDRAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uhp-ma_e.pdf
JYd210/A.C 65×70 VPL-FE100 JYd120/A.C 65×70 TLP-X20 JYd210/A.C 65×70 VPL-CS4/CS3 JYd120/A.C 55×50 TLP-B2C JYd150/A.C VPL-CX11 JYd160/A.C TLP-B2 JYd150/A.C VPL-CX5 JYd150/D.C TY-G1 JYd120/A.C VPL-CS5 JYd150/D.C TLP-250 JYd150/A.C 55×50 VPL-VW10 JYd200/A.C 65×70 TLP-251 JYd150/A.C 55×50 VPL-VW11 JYd200/A.C
in „Beamer 'wiederverwerten'?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DiscoveryF3_adap.pdf
R3R3 100R 9 PIP20209 PIP544 MP3V5004DP GND VCC3V 220 Ohm Buzzer PIR330PIR3301 P10 110PIP20201 SM04B-SRSS CU3 52 P2P2 PA4_OUT10 R3PIR340PIR3401 PIP2020PIP202014 GND PC1_I2C2_EOC PIU302 PIU304 PIP201 13 14 PIP202015 GND Label: I2C2 PB6_I2C1_SCL PIU306C VDDD PIU303 L2 D5D PIP202 Label: + 15 PB7_I2C1_SDA
in „[V] STM32F3 Discovery + Adapterboard für ein FlyingF3 (FlightControl) mit der Taulabssoftware“ · Markt ·
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PDF
apc_smart-ups_1000_1400_sch.pdf
C 2, 1 3 ,C 0 C F W 3 8 Z 2 0 2 Q40 2 715-0069 F C U 1 1 0 4 1 V+ VREF VCC R91 R92 9 1 B 0E 2N2222 1 1 2 2 1 1 1 1 IC10 13 2 Q1 2 1 1 2 D N 0E 0 % 0 1 0 CH0 SE 2N7000 22.6K,1%,1/4W 1 9B 1 C54 715-0069 3 0 , R 3 , 2 15 % 1 % 20K,5%,1/4W 2 1 3 1 D27 2 -9V J400 8PINRIB 2 C F CH1 SARS 1 1 1
in „Wechselrichter bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FL5150-D.pdf
Characteristics 1 0 Unless otherwise sAecified, T =25°C and according to Figure 1 to Figure 5. 6 0 — G Ch1: DRV Gate (Pin 9) 5 V/Div B T Ch2: Load Current 100 mA/Div n d Ch3: VS (Pin 6) 5 V/Div M O S E T A C VS discharges during the positive half cycle. a e C u D i m Figure 8. TypicaAC60 Hz 3-Wire Waveforms
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PDF
NANO_BreakoutBoard_Stromlaufplan2.pdf
12 D9/PB1/OC1A ADC1/PC1/A1 19 A0 11 A1 C D10/SS 13 R7 13 ADC0/PC0/A0 330R 12 A0 D11/MOSI 14 D10/OC1B/SS/PB2 R15 13 AREF D12/MISO 15 330R 14 D11/OC2/PB3/MOSI 14 3V3/CH340G-CAUTION!!! 15 D12/PB4/MISO AREF 18 330R 15 D13/SCK CON15 R8 16 D13/PB5/SCK 17 R16 CON15 330R 3V3 J6 HDR2 HDR1 R9 330R ARDUINO_NANO
in „Zeigt her eure Kunstwerke (2017-2019)“ · Projekte & Code ·
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WIMA_DC_Link_MKP_4.pdf
in den Rastermaßen 27,5 mm bis 52,5 mm Stückzahl ROLL REEL AMMO Rastermaß Bauform lose Ø 360 Ø 500 340 x 340 490 x 370 H16,5 H18,5 H16,5 H18,5 H16,5 H18,5 H16,5 H18,5 H16,5 H18,5 B H L Codes S N O F I H J A C B D 9 19 31,5 6A 567* – – 460/340* – – 11 21 31,5 6B 459* – – 380/280* – – 13 24 31,5 6D 378
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Datei
Liste.txt
Upverter ?? 10x cf72300x n 8740 SMD ???? 36x STE 081164 10X 4050 HEX-Non Inverting Buffer 10x MC14093B Quad 2-Input NAND Schmitt Trigger 10x MC14516BCP Binary Up/Down Counter 6x MC14510B BCD UP/DOWN Counter 6x MC14543b BCD-to-Seven Segment Latch/Decoder/Driver for Liquid Crystals 23x 4042Be CMOS Quad
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Datei
fft232.asm
ICR1, A ;/ ldiw A, 36/2 ;half value outw OCR1B, A ;/ outi TCCR1A, 0b00100010 ;COM1B[1:0]=10, WGM1[1:0]=10 outi TCCR1B, 0b00011001 ;WGM1[3:2]=11, CS1[2:0]=001 ; Start A/D with ch5, free running, 22ksps outi ADMUX, 0b11000000 ;MUX[3:0]=0000 outi ADCSR
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
fft232.asm
ICR1, A ;/ ldiw A, 36/2 ;half value outw OCR1B, A ;/ outi TCCR1A, 0b00100010 ;COM1B[1:0]=10, WGM1[1:0]=10 outi TCCR1B, 0b00011001 ;WGM1[3:2]=11, CS1[2:0]=001 ; Start A/D with ch0, free running, 22ksps outi ADMUX, 0b00000000 ;MUX[3:0]=0000 outi ADCSR
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
PIC_Simulator_-_Free_Online_PIC_Microcontroller_Simulator.pdf
================= 27 ; Configuration 28 ;============================================ 29 30 RC equ b'11' ;RC oscillator 31 XT equ b'01' ;XT oscillator 32 WDTE equ b'100' ;watchdog timer 33 PWRTE equ b'1000' ;power up timer 34 CPOFF equ b'10000' ;code protection 35 36 PROCESSOR 16c84 37 __CONFIG RC+CPOFF
in „IC-Idenifikation für Garagentor Zahlenschloß“ · Mikrocontroller und Digitale Elektronik ·
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Datei
display_t.cpp
} case 3: { volt = Selected_Voltage_CH3; voltmfactor = MenuStatus[3][3]; tpos = ZeroLevelCH3 - Trigger_Pos_CH3; break; } case 4: { volt = Selected_Voltage_CH4; voltmfactor = MenuStatus[4][3]; tpos = ZeroLevelCH4 - Trigger_Pos_CH4; break;
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil4)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Backup-FW-UTi260B-EEVBlog.txt
https://www.eevblog.com/forum/thermal-imaging/uti260b-uti690b-firmware-backup-script/msg4964089/#msg4964089 Hi i make a simple script to backup some firmware files of your device... 1) Copy these 2 folders to the SD card: Upgrade FWBackup 2) Insert SD card
in „Wärmebildkamera - Kaufempfehlung“ · Mechanik, Gehäuse, Werkzeug ·
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Si4320.pdf
MEASUREMENTRESULTS Receiver Selectivity at Different Baseband Filter Settings Receiver Selectivity 0 400 kHz 340 kHz -6 270 kHz -12 200 kHz B [ 134 kHz n -18 67 kHz t a n -24 t A -30 -36 -42 -1000 -800 -600 -400 -200 0 200 400 600 800 1000 Frequency offset [kHz] 26 Si4320 Measurement Setup A group of decoupling
in „RF01 und RF02 433 MHz Funkmodul“ · Mikrocontroller und Digitale Elektronik ·
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harman_kardon_avr507_sm.pdf
CERAMIC 820PF 50V K C704 HCEA1VH100T CAP , ELECT 10UF 35V C705 HCBS1H102KBT CAP , CERAMIC 1000PF 50V B C706 HCBS1H561KBT CAP , CERAMIC C708 HCBS1H223ZFT CAP , CERAMIC 0.022UF 50V Z C709 HCEA1CH101T CAP , ELECT 100UF 16V C710 HCEA1HH2R2T CAP , ELECT 2.2UF 50V C711 HCBS1H102KBT CAP , CERAMIC 1000PF 50V B C712 HCEA1HH1R0T CAP , ELECT 1UF 50V C713 HCBS1H223ZFT CAP , CERAMIC 0.022UF 50V Z C714 HCBS1H151KBT CAP , CERAMIC 150PF 50V K C715 HCEA1HH4R7T CAP , ELECT 4.7UF 50V C716 HCEA1CH331T CAP , ELECT C717
in „Harman Kardon geht nicht an (hängt im Standby fest)“ · Analoge Elektronik und Schaltungstechnik ·
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ST7735_128x160_SPI_Display.pdf
≠0 Note: fosc = 333kHz Status Default Value GM[2:0] = “000” GM[2:0] = “011” Power On Sequence 02h/2Ch/2Dh 02h/2Dh/2Eh Default S/W Reset 02h/2Ch/2Dh 02h/2Dh/2Eh H/W Reset 02h/2Ch/2Dh 02h/2Dh/2Eh Flow Chart V2.1 123 2010-02-01 ST7735 10.2.2 FRMCTR2 (B2h): Frame Rate Control (In Idle mode/ 8-colors) B2H
in „ST7735 an MCU“ · Mikrocontroller und Digitale Elektronik ·
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Forum.PDF
- ADR1 PIU10ac010 Analog3_adc 0ad c 0-10VAnalog 1 11 1 IPano3g cd PU10adc01 CH3+ IPano3g cd PU10adc01 GND B 2 Analog _adc4 0ad c CH3- B 0-10VAnalog IPano4g cPU10adc01 1 2 14 CH4+ 2 IPano4g cPU10adc01 CH4- 0-10VAnalog 6 5 IP10adc06 VDD VSS PIU10adc05 +5 MCP3428-E/ST GND C C +5 +
in „Raspberry Pi Compute Module 3 (Carrier Board)“ · Mikrocontroller und Digitale Elektronik ·
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Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
DSO-1062D SoCADIN_CH2 Voltcraft DSO-3062C SoCADIN_CH1 Front Panel 07-FrontPanel.SchDoc 7 8 9 3 2 1 K K K K K K F F F F F F CH1 input B 01-CH1 Input Circuit.SchDoc B SoCADIN_CH1 CPLDBUS AD9288 Self Cal Signal CH1 04-ADC.SchDoc
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·