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PDF
ANLOGIC_EG4S20BG256_DevBoard_V1.2.pdf
K12 1 2 SPI2 UART Jumper +3,3V 3 4 +3,3V +3,3V SPI2_MOSI UART0_TX 1 2 UART0_RX 1 2 +3,3V LVDS_TX1_N 1 R14 2 TX1-B6-21N UART_TX 3 4 UART_RX SPI2_MISO 3 4 SPI2_SCK 1 1 120 SPI2_NSS 0 6 5 0 UART1_TX 5 6 UART1_RX 5 6 3 1 1 3 K7 K11 R R 120 K6 2 2 1 2 LVDS_TX1_P 1 R13 2 TX1-C5-21P 5V0
in „Sipeed Lichee Tang FPGA mit RISC-V Core aus China unter 20€“ · FPGA, VHDL & Co. ·
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PDF
ADF7020.pdf
MurataDielectricFilter 0 10 –5 200kHz FILTER BW –10 0 –15 B –20 ( ) L –25 m –10 E d E –30 ( L E ASK N –35 V –20 I L OOK T –40 L U –45 150kHz FILTER BW A N N –30 T –50 I T 100kHz FILTER BW S A –55 –40 –60 –65 GOOK –70 –50 8 –400 –300 –200 –100 0 100 200 300 400 500 600 5 - - 89,960 89,980 90,000 90,020
in „erfahrung mit adf7020?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ITU-R.pdf
, and W = (12) N N 1 − αW where N is an odd integer chosen as a compromise for computing time. Large values of N will dramatically increase computation time. Reasonable values have been determined as 11 ≤ N ≤ 21
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PDF
B156XW03_V.2.pdf
Min Typ Max Units Condition (Ta=25℃ ), Note 1 Backlight Power PLED [Watt] Vin =12V Consumption - 3.65 4.2 LED Life-Time N/A Hour (Ta=25℃ ), Note 2 10,000 - - IF=20 mA Note 1: Calculator value for refLED= VF(Normal DistributioF(Normal Distribution) / Efficiency Note 2: The LED life-time define as the
in „Pollin LVDS-Board an B156XW03 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
usblc6-4sc6.pdf
RPU TRANSCEIVER USB connector SW 2 SW 1 VBUS VBUS RX LS/FS RX LS/FS T X H+ TX HS+ RX LS/FS - D+ RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND GND RS USBLC6-2P6 GND R S TX LS/FS USBLC6-4SC6 TX LS/FS RS R S TX LS/FS - TX LS/FS - R PD RPD Mode SW 1 SW
in „Instabile USB Verbindung mit USBLC6-4SC6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ethernet_Hub_LXT914PE.pdf
Partitioned Out N/A N/A Table 16: Mode 1 LED Truth Table Condition LEDTP 1-4 LEDAUI LEDCF LEDJM 1 Rx Link Pulse N/A MAU Jabber Lockup N/A Protection (MJLP) 2 N/A N/A N/A N/A 3 N/A N/A Collision N/A 4 Rx Packet Rx Packet
in „Ethernet Transceiver und Hub auf einer Platine verbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HY-LandTiger_SCH.pdf
B CAN1_TX 2 TXD Rs 7 CAN1H R129 3V3 C38 3 VSS CANH 6 CAN1L 120R P0.0 R74 4 VDD CANL 5 R77 U14 CAN1_RX RXD Vref 0R 0R 5V CN8 485_RX P4.29 1 RO VCC 8 104 SN65VHD230 1 R76 485B CN10 2 485_DIR P2.8 2 RE B 7 2 3V3 3 0R R32 R84 1 C36 4 3 DE A 6 120R 5 10K 485A RS485 R73 6 485_TX P4.28 4 DI GND 5 104 U12 0R
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PDF
HY-SmartSTM32_SCH.pdf
CH1/USART1_TX PE6/TRACED3/FSMC_A22 JOY_SEL CAM_WRST WRST 93 PB7/I2C1_SDA/FSMC_NADV/TIM4_CH2/USART1_RX PE7/FSMC_D4/TIM1_ETR 38 FSMC_D4 FSMC_D4 CAN_RX CAN_RX 95 PB8/TIM4_CH3/SDIO_D4/I2C1_SCL/CAN_RX PE8/FSMC_D5/TIM1_CH1N 39 FSMC_D5 FSMC_D5 CAN_TX CAN_TX 96 PB9/TIM4_CH4/SDIO_D5/I2C1_SDA/CAN_TX PE9/FSMC_D6
in „STM32 can Message“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bourns-PTC-MF-R.pdf
: MF-R010–MF-R160, t1 1.5 max. MF-RX110/72–MF-RX185/72 (.059) Tape thickness with splice: MF-R250–MF-R1100, t1 2.3 MF-RX110–MF-RX375, MF-R/90, MF-RX250/72-MF-RX375/72 (.091) max. ±0.3 Splice sprocket hole alignment 0 (±.012) Body lateral
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CP_Robot_12b_sch.pdf
Out 0 Pas 1 R47Pas 1 Pas 1 0 0 BTC BTC T9 uC42 u PORTA19 u BC337-40 1 0 10u CFIRQ 9 In 0 4k7 S P00n P 65 OC 0 a FIQ 66 OC 0 P IRQ0 WAIT 67 OC 0 HAREROD CENTIPAD_B Marcus Hasenstab CP_Robot info@harerod.de Display V1.1 R70 OK8 +5V PaSsu1p 0 Pas 01as 1 6 Pas 0 5 Pas 0 Pas 0 330 X47-1 D0 In 0 2 19 Hiz
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PDF
schematics.pdf
7-22-2005_17:26 Sheet 1 of 11 A B C D A B C D A[1:19] U35 D[0:15] A1 J14A1 D0M9 D0 U35 A2 K14A2 D1N9 D1 PJ0_MDC C7MDC GPIO/UART0_TX/DMAR0 M1 PF0_UART0_TX A3 L14A3 D2P9 D2 A4 J13 M8 D3 PJ1_MDIO B7MDIO GPIO/UART0_RX/DMAR1/TACI1 L1 PF1_UART0_RX A4 D3 B11 L2 A5 K13 N8 D4 PJ2_SCL SCL GPIO/UART1_TX/TMR7
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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RXV667.pdf
45 EM_D[5] IO – N EMIF data bus [lower 16-bits] 46 EM_D[4] IO – N EMIF data bus [lower 16-bits] 47 VSS 48 EM_D[3] IO – N EMIF data bus [lower 16-bits] 49 EM_D[2] IO – N EMIF data bus [lower 16-bits] 50 DVDD 65 RX-V667
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTN150XB-L03.pdf
Differential Data INPUT (G1-G5,B0-B1) Positive 13 VSS Ground 14 RxIN2- LVDS Differential Data INPUT (B1-B5,Sync,DE) Negative 15 RxIN2+ LVDS Differential Data INPUT (B1-B5,Sync,DE) Positive 16 VSS Ground 17 RxCLK- LVDS Differential Data INPUT (Clock) Negative 18 RxCLK
in „Samsung LTN150XB-L03 Display“ · Mikrocontroller und Digitale Elektronik ·
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db214_224-2_1_.pdf
VDD A single 5.0V supply is required. 10, 4, 5, 6, N/C No Connection 11, 7, 9 12 Table 1: Signal List Rx/Tx = 1 Rx/Tx = 0 MUTE = 0 POWERSAVE Rx Path Enabled Disabled Disabled Disabled Rx Out Level Bias Bias Bias High Impedance Tx Path Disabled Enabled
in „Scrambler für PMR“ · Mikrocontroller und Digitale Elektronik ·
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rxv396.pdf
High, SAT/D-TV H H L L=Low) DVD/LD L H L 28 Downloaded from www.Manualslib.com manuals search engine RX-V396/RX-V396RDS/HTR-5230/HTR-5230RDS IC3 : YM3436DK (DIR2) Digital Format Interface Receiver 0 2 N D P N A N S M M S N T C C T D C O S D OL L T C 6 2 1 S F K K T G C N P C V / I M S D CT T S R O 2 O
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SP3222EBEP.pdf
MaximumData Rate 250 kbps RL=3kΩ, C L1000pF, one driver switching Receiver Propagation Delay 0.15 µs t , RxIN to RxOUT, C =150pF PHL L 0.15 tPLH RxIN to RxOUT, C L150pF Receiver Output Enable Time 200 ns Receiver Output Disable Time 200 ns Driver Skew 100 ns | PHL- PLH|, AMB = 25 C Receiver Skew 50 ns | t
in „Adafruit Ultimate GPS Breakout mit SP3232 an RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BK4802N_Datasheet_V1.1_EN.pdf
Average Speed. 0-256 samples; 1-1024 samples 32 W/R B12: Bypass Low Pass Filter. 0-Valid; 1-Bypass B08: RX Volume set by. 0-PIN VOL; 1-REG32<07:00> B07~B00: Set the Volume of RX Audio 33 W/R B15~B00: Threshold for “0”/”1” ASK Data Decision Proprietary and Confidential Page 8 of 19 BK4802N 4 Pin Assignment
in „Tranceiver Chip RDA1846 Erfahrungen Selbstbau“ · HF, Funk und Felder ·
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PDF
cycloneIII_3c120_dev_reference_manual.pdf
HSMA_RX_N2 U4 J8 pin 65 LVDS TX bit 3p or CMOS I/O data bit 16 LVDS or 2.5 V HSMA_TX_P3 R3 J8 pin 66 LVDS RX bit 3p or CMOS I/O data bit 17 LVDS or 2.5 V HSMA_RX_P3 W2 J8 pin 67 LVDS TX bit 3n or CMOS I/O data
in „[V]erkaufe: Cyclone III FPGA Video Developement Board“ · Markt ·
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Datei
rpn_boris_A328_v1.12.bas
= Pressedkey - 47 Select Case Memoryflag Case 1: ' STO Ee_mem(n_1) = Rx Call Beepme Case 2: ' RCL Call Enter Rx = Ee_mem(n_1) Bcheck = Checkfloat(rx) Errx = Bcheck And 5 If Errx > 0 Then Rx = 0.0 Call Beepme End Select Memoryflag = 0 Call Interpr_rx End If End Sub
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v1.13.bas
= Pressedkey - 47 Select Case Memoryflag Case 1: ' STO Ee_mem(n_1) = Rx Call Beepme Case 2: ' RCL Call Enter Rx = Ee_mem(n_1) Bcheck = Checkfloat(rx) Errx = Bcheck And 5 If Errx > 0 Then Rx = 0.0 Call Beepme End Select Memoryflag = 0 Call Interpr_rx End If End Sub
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v1.13.bas
= Pressedkey - 47 Select Case Memoryflag Case 1: ' STO Ee_mem(n_1) = Rx Call Beepme Case 2: ' RCL Call Enter Rx = Ee_mem(n_1) Bcheck = Checkfloat(rx) Errx = Bcheck And 5 If Errx > 0 Then Rx = 0.0 Call Beepme End Select Memoryflag = 0 Call Interpr_rx End If End Sub
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
m1306b.pdf
O STANDARD RS232 Ring Indicator RS232 ® 14 RESET I/O Schmitt Wireless CPU resetActive low 15 CSPK2N O Analog Speaker negative line confidential © Page: 23 / 65 This document is the sole and exclusive property of WAVECOM. Not to be distributed or divulged without prior written agreement. WM_PRJ_M13_
in „[V] gebrauchtes GSM-Modem von Wavecom Fastrack“ · Markt ·
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emw3165.pdf
of Wi-Fi subsystem Symbol Note Conditions Typical Unit IRF OFF 1 - 2 μA IRF SLEEP 4 - 200 μA 2 IRF Rx(Listen) - 52 mA 3 IRF Rx(Active) - 59 mA I Power Save 5 6 - 1.9 mA RF IRF Tx CCK 7 10 11 Mbps at 18.5 dBm 320 mA IRF Tx OFDM 8 10 54 Mbps at 15.5 dBm 270 mA IRF Tx OFDM 9 10 65 Mbps at 14.5 dBm 260 mA
in „EMW3165 - Der ESP8266 Killer ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Timer_test.c
DIP9 TRISA4 = 1; //DIP10 TRISB = 0b11011111; // DIPs = Eingang; PWM1 = Ausgang //TRISC 0b1xxxx00x DMX RX = Eingang; PWM2+3 = Ausgang TRISC1 = 0; //PWM3 TRISC2 = 0; //PWM2 TRISC7 = 1; //DMX RX //WPUB 0b111x1111 Pullups EIN, Nötig? da WPUEN?? nWPUEN = 0; //WPUEN = EIN } void init_Timer(void) { //OSCCON MPU
in „Interrupt Zeiten - Rechenfehler gesucht..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC14538B.PDF
intended as an indication of the IC’s potential performance. www.onsemi.com 4 MC14538B VDD VDD P1 RX 2 (14) ENABLE + + V -C1 -C2 R Q 6 (10) C X ref1 ENABLE Vref2 OUTPUT 1 (15) LATCH S Q 7 (9) N1 VSS CONTROL 4 (12) A 5 (11) B 3 (13) Q R Q R NOTE: Pins 1, 8 and 15 must RESET S RESET LATCH R be externally
in „Platine Bedieneinheit mit Oszi durchmessen“ · Platinen ·
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PDF
Funkmodul.pdf
decoders. The data is true data, i.e. as fed to the transmitter. Load impedance should be > 1kΩ and < 1nF DS000022 Rev D July ‘99 1999 REG No 277 4001, ENGLAND. Page 3 FM T RANSMITTER & R ECEIVER FM-TX2-XXX M ODULES . (2 ND G ENERATION ) FM-RX2-XXX Absolute Maximums: Operating temperature: -10°C to +55
in „Funkübertragung über uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC14489.pdf
T N C A N C A E D E D Figure 8. Timing Diagrams for Non–Cascaded Devices MOTOROLA MC14489B 9 APPLICATIONS INFORMATION +5V MC14489B a VDD b VSS c d 8 e 8 8 8 8 8 f g OPTIONAL DATAOUT a Rx h f b +5V Rx e
in „4094 kaskafieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rpn_boris_A328_v1.14.bas
N_1 = Pressedkey - 47 Select Case Memoryflag Case 1: ' STO Ee_mem(n_1) = Rx Call Beepme Case 2: ' RCL Call Enter Rx = Ee_mem(n_1) Bcheck = Checkfloat(rx) Errx = Bcheck And 5 If Errx > 0 Then Rx = 0.0 Call
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v1.14.bas
N_1 = Pressedkey - 47 Select Case Memoryflag Case 1: ' STO Ee_mem(n_1) = Rx Call Beepme Case 2: ' RCL Call Enter Rx = Ee_mem(n_1) Bcheck = Checkfloat(rx) Errx = Bcheck And 5 If Errx > 0 Then Rx = 0.0 Call
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v1.15.bas
N_1 = Pressedkey - 47 Select Case Memoryflag Case 1: ' STO Ee_mem(n_1) = Rx Call Beepme Case 2: ' RCL Call Enter Rx = Ee_mem(n_1) Bcheck = Checkfloat(rx) Errx = Bcheck And 5 If Errx > 0 Then Rx = 0.0 Call
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
Serial_Quick_Reference_Guide.pdf
Char Dec Hex Char Dec Hex Char Dec Hex Char Tx Tx Tx 0 0x00 (nul) 32 0x20 (sp) 64 0x40 @ 96 0x60 ‘ Rx Rx Rx Tx 1 0x01 (soh) 33 0x21 ! 65 0x41 A 97 0x61 a T 2 0x02 (stx) 34 0x22 “ 66 0x42 B 98 0x62 b A 120 Ω 120 Ω 3 0x03 (etx) 35 0x23 # 67 0x43 C 99 0x63 c M Rx 4 0x04 (eot) 36 0x24 $ 68 0x44 D 100 0x64
in „RS485 - differentielles Signal, wieso kann ich die Datenleitungen dann nicht tauschen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sp3222_3232e.pdf
RL= 3KΩ, C =L1000pF 1.0 µs t , R = 3KΩ, C = 1000pF PLH L L Receiver Propagation Delay 0.3 µs tPHL RxIN to RxOUT, C =L50pF 0.3 tPLH RxIN to RxOUT, C =L50pF Receiver Output Enable Time 200 ns Receiver Output Disable Time 200 ns Driver Skew 100 500 ns | t - t |, T = 25 C PHL PLH AMB Receiver Skew 200 1000
in „Kein TX bei GSM Modul“ · Mikrocontroller und Digitale Elektronik ·
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adm2490e.pdf
DriverVoltageMeasurement Figure7.ReceiverPropagationDelay VDD2 VDD1 VDD2 220Ω Y O TxD T Z 100Ω A L S 220Ω I I N V A L RxD A G B GND 1 GND 2 4 - 8 5 GND 2 0 Figure5.Supply-CurrentMeasurementTestCircuit(SeeFigure10andFigure11) Rev. A | Page 8 of 16 ADM2490E SWITCHING CHARACTERISTICS 3V 1.5V 1.5V 0V tPLH PHL Z VO
in „RS485 Baustein ohne 12V einspeisung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12.c
) rx_daten[i] = rx_buffer[i]; flag_new_rf_data = 1; // Signal neue Daten im Buffer rf12_bytecount = 0; LEDblue = 0; } } /****************************************************************************** RFM12
in „RFM12 Modul defekt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
F407-IoTBoard-Schematics.pdf
RMII_RX_DV PA7 43 PA7/SPI1_MOSI/TIM1_CH1N/TIM3_CH2/TIM8_CH1N/TIM14_CH1/ETH_MII_RX_DV/ETH_RMII_CRS_DV/ADC12_IN7 PE7/FSMC_D4/TIM1_ETR 58 PE7 FSMC_D4 DCMI_XCLK PA8 100 PA8/TIM1_CH1/U1_CK/I2C3_SCL/MCO1/OTG_FS_SOF
in „STM32 Nucleo welches Board am besten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
clrc632.pdf
Command = (Transmit OR Receive OR Transceive) Idle (000) D v) Co AN cei R mm pt ans eceand te = Tr ie = n n O R IF mami F om as C (r GoToRx1 TxSOF (100) (001) next bit clock SOF transmitted TxData PrepareRx (010) (101) RxWaitCounter RxMultiple = 1 && Data transmitted = 0 TimeSlotPeriod > 0 && TimeSlot Trigger
in „SPI master/slave - schreib/lese befehle ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
handy_lcd_schaltplan.pdf
Level 3 Repair L110 UMTS900_GSM900_RX_N 2 4 5 7 9 G G G G G L111 8 3 TX RX L112 R 07 RX 1 ANT 6 UMTS900_GSM900_RX_P 5 2 L113 1 1 F104 L114 C C UMTS900_GSM900_ANT 9 1 0 R R L121 DCS_RX_N L134 C155 L122 DCS_RX_P L123 PCS_RX_N L124 C161 L125
in „Altes Handy Display zum Basteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EFcomProV10.pdf
R61 3 1 5 RI GP6 47 5 5 1K DCD 46 4RX_4 0 R 0 R MD_PWR 6 GND4 45 C62 C61 1 1 7 NCW GND5 N N R53 8 CTS 44 C C 5RX_5 RTS SIM9000 GP5 43 TX_L TX_H 3904 1 TX_L 9 GP4 42 2 3 10 TXD GP3 RX_L RXD 41 J9 11 GP2 40 12 DISP_CLK GP1 VEXT VEXT 13 DISP_DATA
in „Abblockproblematik“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A200_DS_ADM3053_Isolated_CAN_Tranceiver.pdf
CIRCUITS CANH RL 2 TxD R L C L TxD V V OD CANH R L VOC 2 CANL VCANH 6 RxD 0 0 9 15pF 3 9 2 0 0 Figure22.DriverVoltageMeasurement Figure24.SwitchingCharacteristicsMeasurements CANH V ID RxD 7 0 CANL C L 9 9 0 Figure23.ReceiverVoltageMeasurements 100nF 10µF 100nF 10µF VCC VISOOUT isoPower DC-TO-DC CONVERTER OSCILLATOR RECTIFIER REGULATOR VIO VISOIN 10µF 100nF 100nF 10µF V CC DIGITAL ISOLATION iCoupler TxD PROTECTION RS TxD ENCODE DECODE R S DRIVER RS SLOPE/ STANDBY CANH DECODE ENCODE RxD RxD RL CANL V RECEIVER REF REFERENCE VOLTAGE CAN TRANSCEIVER VREF ADM3053
in „Eagle Neue Bibliothek bitte mal prüfen CAN-Tranceiver“ · Platinen ·
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Datei
rpn_boris_A328_v1.16.bas
N_1 = Pressedkey - 47 Select Case Memoryflag Case 1: ' STO Ee_mem(n_1) = Rx Call Beepme Case 2: ' RCL Call Enter Rx = Ee_mem(n_1) Bcheck = Checkfloat(rx) Errx = Bcheck And 5 If Errx > 0 Then Rx = 0.0 Call
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
Platinfuchs_IIa_Schematic-and-Layout.pdf
D10 C30 C31 3 R25 6 3 13 4 2 1 a485-en GND GND 10µF 4 A DE B3 A3 a485-en PMEG4010 PMEG4010 6,3V 100nF 10R EIA-485 5 4 12 5 GND DI B4 A4 C32 D29 SN65HVD72 11 B5 A5 6 4 3 a485-tx a485-tx *GND* *GND* *GND* CDSOT23-SM712 Replacement: SN65HVD1780 100nF Replacement: PESD12VL2BT 10 7 U4B 3V3 3V3 EN2 EN1 74LVC14A 4 B *GND* *GND* 9 8 a485-rx C 5 U16 GND2 GND1 a485-rx 4 I C33 7 C34 S 6 SW Boost 1 R26 SI8651BD-B-IS 100nF 100nF 47K *GND* GND *VZK* 5 Vin GND 2 4 3 800mV *VZK* *VZK* *VCC* *VCC* *VZK* *VCC* GND GND GND EN Vfb MCP16301 * 0 C U15
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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PDF
Schematic_bruce-2_2024-12-19.pdf
C32 1UH SW2 checked I2C_SCL 6 SCL SW 19 3 COM VBAT 2 PIN CONNECTOR COPY IR_RX LED1 I2C_SDA 7 SDA SW 18 VOUT BAT non-sho2ting 10R TO 30R TO LESSEN CAPACITOR BUYINGTSOP4838 R21 10k 8 INT PGND 17 1 30R 1 R5 R6 VOUT 9 OTG PGND 16 GND C33 C34 CON1 2 OUT 1.2 DROP 65MA CURRENT 150R 150R
in „Möglicher Fehler mit AO3400 und Bauteilen U4 Bruce github“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_bruce-2_2024-12-19.pdf
C32 1UH SW2 checked I2C_SCL 6 SCL SW 19 3 COM VBAT 2 PIN CONNECTOR COPY IR_RX LED1 I2C_SDA 7 SDA SW 18 VOUT BAT non-sho2ting 10R TO 30R TO LESSEN CAPACITOR BUYINGTSOP4838 R21 10k 8 INT PGND 17 1 30R 1 R5 R6 VOUT 9 OTG PGND 16 GND C33 C34 CON1 2 OUT 1.2 DROP 65MA CURRENT 150R 150R
in „Möglicher Fehler mit AO3400 und Bauteilen U4 Bruce github“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at90can-v1.1.pdf
12JLI 5 5 5 C WR + + + C 74AHC1G08DBV 2 5 C 2 C 2C 4 V V V A15 1 IC9P C113 IC8P C112 IC10P C114 D IC9 N 100n N 100n N 100n 3 G 1 G 1G GND GND GND D D Memory 1 2 3 4 5 6 1 2 3 4 5 6 V + V IC3 + R10 8 RS VCC 3 CAN0H 10k CAN0TX 1 TXD A CANH 7 C104 A CAN0RX 4 RXD CANL 6 R 2 100n 1 5 VREF GND 2 CAN0L SN65HVD251D
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PDF
DM-KIT-SSK_for_BF533.pdf
+ 5 NC NC 12 D8 89 SD8 SA6 94 0.1uF TXO+ RXI+ RXI- 6 11 D2RX_N C DM9000_INT 100 SA5 93 GND GND TP16 TP18 RDP RXP C DM9000_INT INT SA4 1 TXO- 1 RXI- 7 RDC RXC 10 D2RX_C DM9000 T TXO- RXI- RXI+ 8 9 D2RX_P 3V3 RDN RXN H1102 58 U14B 55 5057 5059 C145 63 DGND DVDD
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Datei
main.c
timer */ SIGNAL (SIG_OVERFLOW0) { common_scheduler (); TCNT0 = octopus.latency_timer; } void USBCommandRX (char *buf) { int i; debugf("receiving command: %X (length: %u)\n", buf[1]); /* a paket can be max 255 bytes */ if (octopus.long_rx_cmd == 1) { debugf("get next\n"); for (i = 0; i < 64; i++) request[
in „Octopus+CAN Bus benutzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
picastar-all.pdf
C22 C52 1 IC6a 100µH 100n 220µ 100n 4 8 R10 C21 TL072 100n R31 100n C1 R62 2k2 10p D6 2 R29 10k 1n RFC1 IC2 5 TR6 4 10k C11 +12V Rx 100k 3 AD603 2N3906 1N4148 C56 RFC6 1n 1mH C63 0V to Rx IF amp 7 R15 6 5 100n 1 3k3 100n 1mH
in „Projekt Kurzwellenempfänger Doppelsuper welcher VCO?“ · HF, Funk und Felder ·
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Datei
pelota_2051.c
--------------------*/ void initg(void) { gotoxy(0,0); putstring(m1ptr); showrahmen(); padpos= 27; rx= 1; ry= 1; x= 2; y= 18; chi= 0; clo= 0; loose= 0; } void main() { init_n3410(); gotoxy(0,0); initg(); gotoxy(1,4); putstring(demotxt); while(!taststart); while(1) { showbmp(x,y); for (timcx= 0;timcx<
in „Pelota - Spiel AT89C2051 & Nokia 3410 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cc3351mod.pdf
FEBRUARY 2026 5 Pin Configuration and Functions 5.1 Pin Diagram Figure 5-1 shows pin assignments for the 65-pin LGA package. S L W R _ F P L n G G G G G O G G G P K e G D D D D D U D D D N N e D T t GND 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 GND GND 30 14 GND SWCLK GND 31 13 GND 32 12 SWDIO GND 33 11
in „Frage zu KYOCERA AVX Chip Antenne“ · HF, Funk und Felder ·
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PDF
MT6252_Design_Notice.pdf
HEADSET MICOPHONE MICBIAS near BB located in Shielding case HANDSET MICOPHONE R60 MICBIAS 1K C42 C41 100n 2 MICN1 10u C43 R66 R59 100p 1.5K 1K 2 MICP1 C46 100n XMIC C49 C47 near BB located in 33p 33p Shielding case R65 1.5K L5 BLM15BB750SN1 C44 100n 2 MICP0 MK1 Microphone 2 ADC_USB R69 1K C45 C48 1 10u 2
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·