-
PDF
MCP794xx.pdf
MCP79400/MCP79401/MCP79402 2 Battery-Backed I C Real-Time Clock/Calendar with SRAM and Protected EEPROM Device Selection Table Operating Ranges Part Number Protected EEPROM • 2-Wire Serial Interface, I
in „MCP794xx EUI-64 Node Adresse“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
CAN_BUS_Analyse_ESP_R32_4.ino
++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ #include "ACAN2515.h" static const byte MCP2515_SCK = 18 ; // SCK input of MCP2515 static const byte MCP2515_MOSI = 23 ; // SDI input of MCP2515 static const byte MCP2515_MISO = 19 ; // SDO output of MCP2515 static const byte MCP2515_CS = 5 ;
-
PDF
fehlerlesen.pdf
EEEEEEEE Input (from PLC) Level ; Port C ldi temp,0x00 ; EE(Sensor Failure)EE(Flowswitch out DDRC,temp ; mcp Startup Delay rcall wait_100ms ; now SPI can be used in mcp2515 ldi temp,25 ; 9600baud out UBRR,temp sbi UCR,TXEN ; TX aktivieren ; SPI Master Init ldi temp,0b10111000 ; Output = SCK & MOSI & /SS &
in „CAN übertragung brich ca. nach 10 sek ab“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
RPM_CAN.txt
------------------------------------------------------------------*/ #include <Canbus.h> #include <mcp2515.h> #include <defaults.h> #include <mcp2515_defs.h> #include <global.h> #include <EEPROM.h> volatile uint16_t Capt1, Capt2, timeStamp1, timeStamp2;//VARIABLES TO HOLD TIMESTAMPS volatile uint8_t
in „Drehzahlmessung und senden über CAN“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
2.txt
------------------------------------------------------------------*/ #include <Canbus.h> #include <mcp2515.h> #include <defaults.h> #include <mcp2515_defs.h> #include <global.h> #include <EEPROM.h> volatile uint8_t pulse; //gezählte Pulse volatile uint16_t Capt1, Capt2,// timeStamp1, timeStamp2, //VARIABLES
in „Drehzahlmessung und senden über CAN“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Carambola2-Base.sch.pdf
470nC 3 P IU2101 VDD R6ROC P P01 3COC PIU20010 NUSB_S LPR61 PR023 +3V3_USB GND WE-65100516121 GND PC 100n 14 SCL 9 10k GND GND 732-2109-1-ND PI U2014 GND SDA PI U2 09 NLUSB0S A RC GND PBFB1 PI2 MCP2221A-I/SL USB_SD PR71 PR023 +3V3_MAIN FB_0805 MCP2221A-I/SL-ND 10k 3 0 GND GND P0R12 0 GND SW2 4k7 PIW0 PIW0
in „[V] Carambola2 100 Stück“ · Markt ·
-
Bild
Schaltplan einer PT100 Temperaturmessung mit MCP6004T
PT100 Temperaturmessung P2 2 1 Header_2_2mm54 3V3 R1 4k99 R2 49k9 NTC1 R6 1k GND NTC_1 R4 49k9 U1 14 4OUT 13 4IN- 12 1IN- 11 GND 10 3IN+ 9 3IN- 8 2OUT 7 2IN- 6 1IN+ 5 NTC2 4 3V3 3 1IN+ 2 NTC1 5VDC P5 2 1 Header_2_2mm54 R12 4k99 R13 49k9 NTC2 R18 1k GND NTC_2 MCP6004T
in „Erneut PT100 an MCP6004T und 12-Bit ADC“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
Datei
MCP601.txt
******************************************* * * The following op-amps are covered by this model: * MCP601,MCP602,MCP603,MCP604 * * Revision History: * REV A: 30-Jun-99, BCB (created model) * REV B: 10-Jul-99, BCB (corrected DC Iq) * REV C: 30-Nov-99, BCB (".subckt" on first line, moved L, W to model)
in „LTSpice: Timestep too small“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MT2202_Abstract.pdf
useful in selecting the desired features of the microcontroller for this application. 24FJ64GA004 MCP2030 RCVR MVGAS26 METER 3.3V REG 1 Cable Tracer MT2202 +3.3V + C3 C4 C1 C2 10UF .1UF .1UF .1UF U1 7 8 1 2 D D 1 V V U2 13 C LCCOM C 4 2 V 1 11 RSSI 3 CH0 OUT RSSI LCX R1 4 CH1 MCP6S26 MCP2030 100K C13
in „DIY Power Kabelsucher / Trassenfinder“ · Analoge Elektronik und Schaltungstechnik ·
-
Bild
Schaltplan eines USB-UART-Konverters
high-quality ceramic C1 330n C2 100u PWr_FLAG 5V_USB R1 10k J1 Conn_01x02_Pin L1 FB J2 USB_B_Micro VBUS U1 USB_D+ USB_D- D+ D- MCP_D 12 MCP_C 12 GND_USB U2 MCP2211A SL GND_USB U1 USB_D+ USB_D- D+ D- MCP_D 12 MCP_C 12 GND_USB U2 MCP2211A
in „Entwurf USB-UART-Converter, KiCad, bitte um Review“ · Platinen · · Schaltpläne
-
PDF
Bulb_Ohm.pdf
1){ USB_Info("test123456789"); HAL_Delay(500); } to: while (1){ for(int n = 0; n <= 4095; n += 9){ MCP4725_Mem_WriteReg(n); HAL_Delay(100); } for(int n = 4086; n >= 0; n -= 9){ MCP4725_Mem_WriteReg(n); HAL_Delay(100); } } The green highlighted lines of code are the changes. Although the USB-code is still
in „I2C STM32F103“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
MCP6001.txt
*************************************************************************** * * Macromodel for the MCP6001/2/4 op amp family: * MCP6001,MCP6002,MCP6004 * * Revision History: * REV A: 21-Jun-02, Created model * REV B: 16-Jul-02, Improved output stage * REV C: 03-Jan-03, Added MCP6001 * REV D: 19-Aug-06
in „ltspice problem“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
MCP6001.txt
*************************************************************************** * * Macromodel for the MCP6001/2/4 op amp family: * MCP6001,MCP6002,MCP6004 * * Revision History: * REV A: 21-Jun-02, Created model * REV B: 16-Jul-02, Improved output stage * REV C: 03-Jan-03, Added MCP6001 * REV D: 19-Aug-06
in „Einbinden opv in LT-Spice“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
CAN_MCP2515-Mega328P-002.bas
Txb0dlc , Dfl 'Daten Mcp2515_write_register Txb0d0 , Db0(1) Mcp2515_write_register Txb0d1 , Db0(2) Mcp2515_write_register Txb0d2 , Db0(3) Mcp2515_write_register Txb0d3 , Db0(4) Mcp2515_write_register Txb0d4 , Db0(5) Mcp2515
in „MCP2515 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
msg.data[7] = 0x8F; msg.length = 8; msg.identifier.extended = 1; msg.identifier.nr = 78; USART_Transmit(mcp_sendmsg(msg)); USART_Transmit(100); USART_Transmit(mcp_read_reg(TXB0CTRL)); _delay_ms(100); while (1) { state = mcp_read_rx_state(); if (state & 0xC0) { //RXB1 oder RXB0 USART_Transmit(54); msg = mcp_read_message
in „MCP2515 sendet nicht richtig“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PMT_handbook_v4E.pdf
of MCP-PMT (11 mm effective diameter, 6 μm channel diameter) in DC operation (1) 110 100 ) ( Y 90 I A E 80 I THBV4_1110EAa L U P 70 T O 60 SUPPLY VOLTAGE: 3000 V 50 100 1000 10000 ANODE CURRENT (nA) THBV4_
in „Suche nach geeignetem OpAmp als Impedanzwandler“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
mcp3426.c
0x00; // I2C Bus initialization // I2C Port: PORTB // I2C SDA bit: 0 // I2C SCL bit: 1 // Bit Rate: 100 kHz // Note: I2C settings are specified in the // Project|Configure|C Compiler|Libraries|I2C menu. i2c_init(); } void mcp_3426_read() { //int value=0; i2c_start(); i2c_write(209); val[0] = i2c_read(
in „? MCP342x Beispiel-Code / Hilfe ?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
can.h
#define SUPPORT_TIMESTAMPS 0 #endif /** * \ingroup can_interface * \name Bits des Filters fuer den MCP2515 umformatieren * * \code * prog_uint8_t can_filter[] = * { * MCP2515_FILTER_EXTENDED(0), // Filter 0 * MCP2515_FILTER_EXTENDED(0), // Filter 1 * * MCP2515_FILTER_EXTENDED(0), // Filter 2 * MCP2515_FILTER_EXTENDED(0), // Filter 3 * MCP2515_FILTER_EXTENDED(0), // Filter 4 * MCP2515_FILTER_EXTENDED(0), // Filter 5 * * MCP2515_FILTER_EXTENDED(0), // Maske 0 * MCP2515_FILTER_EXTENDED(0), // Maske 1 * }; * \endcode * * \see can_static_filter
in „CAN Kommuikation ATmega328P“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Test4.c
data; // Wartet bis Byte gesendet wurde while( !( SPSR & (1<<7) ) ) // SPIF = 7 ; return SPDR; } // mcp2515 Registerwerte schreiben void mcp2515_write_register( int adress, int data ) { // /CS des MCP2515 auf Low ziehen PORT_CS &= ~(1<<P_CS); //CS = 2 spi_putc(SPI_WRITE); // SPI_WRITE = 0x02h (mcp2515
in „MCP2515 Botschaften Empfangen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
can.h
#define SUPPORT_TIMESTAMPS 0 #endif /** * \ingroup can_interface * \name Bits des Filters fuer den MCP2515 umformatieren * * \code * prog_uint8_t can_filter[] = * { * MCP2515_FILTER_EXTENDED(0), // Filter 0 * MCP2515_FILTER_EXTENDED(0), // Filter 1 * * MCP2515_FILTER_EXTENDED(0), // Filter 2 * MCP2515_FILTER_EXTENDED(0), // Filter 3 * MCP2515_FILTER_EXTENDED(0), // Filter 4 * MCP2515_FILTER_EXTENDED(0), // Filter 5 * * MCP2515_FILTER_EXTENDED(0), // Maske 0 * MCP2515_FILTER_EXTENDED(0), // Maske 1 * }; * \endcode * * \see can_static_filter
in „AT90CAN128 nach 15 CAN-Nachrichten ist schluss“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
myheader.h
Port B bit 7 (pin8): clock char SPI_Empfang; //MPC2515 #define CAN_CS 0 // Chip Select-Leitung für MCP2515 #define CAN_RESET 1 // Reset-Leitung für MCP2515 unsigned char adress, data, mask, message_length, i, message_status; unsigned char message_data[8], a_data[5]; unsigned int id_out, id; /**** switch
in „mehrere source files“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Verst__rker.pdf
MCP6283T-E/CH B DA_DACA/DACB 6 DACA/DACB B MCP4551-103E/MS GND GND 5 DGND AGND 1 GND TLC7528CDW +5V +5V +5V +5V +5V C500 C501 C502 C503 C504 100n 100n 100n 100n 100n GND GND GND GND GND +5V C508 +5V 1u +5V GND R502 K502 C 2k7 GND C505 220n 2 BYPASS VDD 6 +5V C LS500 R503 40k 3 IN+ VO+ 5 C506 100u Audio_Signal C507 1u R504 40k 4 8 K503 GND IN- VO- MCP6283T-E/CH 1 Speaker 4Ohm fg=118Hz AMP_SHUTDOWN SHUTDOWN R505 GND 7 GND GND 2k7 TPA6211A1DGNG4 GND D Title D Size Number Revision A4 Date: 05.10.2011
in „Schema für Audioverstärker überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
log.txt
eth0: link up, 100Mbps, full-duplex, lpa 0xCDE1 [ 26.881288] mcp251x spi0.0 can0: bit-timing not yet defined [ 26.881333] mcp251x spi0.0: unable to set initial baudrate! [ 27.882669] mcp251x spi0.0 can0: bit-timing not yet defined [ 27.882713] mcp251x spi0.0: unable to set initial baudrate! [ 28.883943] mcp251x spi0.0 can0: bit-timing not yet defined [ 28.883986] mcp251x spi0.0: unable to set initial baudrate! [ 29.885249] mcp251x spi0.0 can0
in „RaspberryPiB+ mit CAN (MCP2515)“ · PC Hard- und Software ·
-
Datei
functions.c
ZIMbedarfCtrl=ZIMbedarf; //wait10; for(i=3;i<6;i++) { if(!gbi(ZimAbwesend,i)){maskeZIM[i]='x';}} //mcp23017_72_B= (mcp23017_72_B & 0b11000000) + (ZIMbedarf & 0b00111111); //if(mcp23017gefunden==0){set_mcp23017_out(72,0x13,mcp23017_72_B);} } } #ifndef LaufzeitH volatile u8 LaufzeitH; #endif void lcd_anzeige
in „Heizungssteuerung Wärmepumpe Fußbodenheizung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Platinfuchs_IIa_Schematic-and-Layout.pdf
Platinfuchs_IIa.SchDoc 1 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 a3V3 a3V3 C38 C39 aGND a3V3 R32 % C41 C40 % R33 aGND 82K 100pF 100pF 82K U8A R34 100nF 100nF R35 U8D R36 MCP6074 56K MCP6074 MCP6421 56K MCP6074 R37 +12,50 A ^= 4000 LSB 100R 3 % aGND % 12 100R +5,00 V ^= 4000 LSB Icel-pos 1 14 Ucel-pos Icel-pos 2 a3V3 R38 R39
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
-
PDF
CanBus_RTC_Adapter.pdf
P$21 15 SI V JP3 J1P21 P$23 13 SO S C4 C1 1 VIN 33µH + JP3 J1P23 P$24 16 SCK V OUT 2 JP3 J1P24 CS 100n 100n1 2 5 ON/OFF L2 R R B FB 4 C8 9 MCP2515I/SO B 3*2 GND 0 2 D 100n 1 k LM2596S R 8 +C12 CAN 1 GND GND GND GND GND GND C13 220µ X3 3 100n 3 2 38 1A*2 9 k +1 IC5 R 2 1613-15 C9 +C10 4 TX0RTS DCLKOUT
in „LinuxCNC mit rasberry-PI als IO-Interface -“ · PC Hard- und Software ·
-
Datei
kklcdxx.c
use_twilcd72 //uint8_t mcp23017_72_A,mcp23017_72_B; //lcdbyte d7-d6-d5-d4-en-rs-//-// mcp23017_72_A= (mcp23017_72_A & 0b00000011) + (lcdbyte & 0b11111100); //mcp23017_72_B= (mcp23017_72_B & 0b00111111) + (((lcdbyte & 0b00000100)<<5)); set_mcp23017_outAB(mcp23017_72_A, mcp23017_72_B); set_mcp23017_outAB((mcp23017_72_A + WERTpinE), mcp23017_72_B ); set_mcp23017_outAB(mcp23017_72_A, mcp23017_72_B); #endif #if use_twilcd72x set_mcp23017_outAB
in „I2C LCD mit Raspberry“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
kklcdxx.c
use_twilcd72 //uint8_t mcp23017_72_A,mcp23017_72_B; //lcdbyte d7-d6-d5-d4-en-rs-//-// mcp23017_72_A= (mcp23017_72_A & 0b00000011) + (lcdbyte & 0b11111100); //mcp23017_72_B= (mcp23017_72_B & 0b00111111) + (((lcdbyte & 0b00000100)<<5)); set_mcp23017_outAB(mcp23017_72_A, mcp23017_72_B); set_mcp23017_outAB((mcp23017_72_A + WERTpinE), mcp23017_72_B ); set_mcp23017_outAB(mcp23017_72_A, mcp23017_72_B); #endif #if use_twilcd72x set_mcp23017_outAB
in „Verzweiflung um LCD Lib von Peter Fleury“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Values.txt
Display 2 1 MEGA32 / S65 Display 1 1 MEGA16 ISP 1 mega168 1 MEGA161P 1 MEGA161LP 1 MEGA103 1 MCV2G3.81 1 MCP607 1 MCP606 1 MCP4822 1 MCP41X1_5k 1 MCP41X1_100k 1 MCP2551P 1 MCP2515TSOP 1 MCP2510P 1 MCP23017 1 MCP1402 1 MC34063_SMD 1 MC34063AD 1 MC33275 1 MC1319X 1 MBRS360T3 1 MBRS140 1 MAX8880 1 MAX884 1 MAX7349
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
-
PDF
Last_board.pdf
0 R C2100pf 100pf 1 C75 4 p SPI_DIN 4 4_DIN 100pf p 300 pf 100nC4 C7 R n 6 n 2.2µf SPI_CLK 3 3_SCLK C8 R 0 MCP1501-25 MAX5216GUA+ D N G G A A 9 2 R 4 R 4 C32 C67 47pf 47pf C C D D N N A A D D überprüft Last_board 19.04.2020
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
CAN_send.ino
#include <mcp_can.h> #include <SPI.h> #include "setup.h" MCP_CAN CAN0(10); // Set CS to pin 10 void setup() { Serial.begin(115200); // Initialize MCP2515 running at 16MHz with a baudrate of 500kb/s and the masks and filters disabled. if(CAN0.begin(MCP_ANY, CAN_500KBPS, MCP_8MHZ) == CAN_OK) Serial.println("MCP2515 Initialized OK!"); else Serial.println("Error Initializing MCP2515..."); CAN0.setMode(MCP_NORMAL); // Change to normal mode to allow messages
in „Re: Can bus mcp 2515 senden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schaltplan_Mosfet-Unit.pdf
2 + D X2-2 PowerCap + Drain JP4 OK2 D G Stromschiene 1 8 G 1/63 1 8 100n X2-1 PowerCap - CHRG 2 R3 2 IC2 GND WELD 3 7 2 DCHRG 4 3 X1-2 Q2_Gate GND 5 MCP1407 4 5 Ausgang HCPL0211 Q2_Source Gate Stromschiene X1-1 GND GND JP3 GND2 Source +12V/3 1 GND3 2 +12V/3 +12V/2 3 C5 C6 D D + N 2 C7 C8 D OK3 N G D + N R4 8 G 1/63 1 8IC3 100n Q3 N G 2 IRFP2907 G 1/63 1 8IC4 100n 7 2 3 5 2 4 5MCP1407 4 5MCP1407 HCPL0211 GND parallel zu IC2 1 , 2 , R 4 R 4 GND2 GND3 GND GND
-
Bild
Datenblatt Ausschnitt MCP33131D SAR ADC
MICROCHIP MCP33131D/21D/11D-XX 1 Msps/500 kSPS 16/14/12-Bit Differential Input SAR ADC Features Sample Rate (Throughput) MCP33131D/21D/11D-10: 1 Msps MCP33131D/21D/11D-05: 500 kSPS 16/14/12-Bit Resolution with No
in „ADC Daisy Chain“ · Mikrocontroller und Digitale Elektronik · · Screenshots
-
PDF
Last_board_mixed.pdf
3 O 2 B 2.2uF 100nF 100pF GND C305 h 0 R 0 C307 100pF 100pF SPI_CS 2/_CS n k R 0 4 100pF m 300 pF 0 C306 100nF C308 C309 R n 4_DIN 0 h 1 3 C304 R 0 MCP1501-25 2.2uF SPI_CLK 3_SCLK I MAX5216GUA+ AGND I D P N S m m A h
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Schaltplan einer Differenzverstärkerschaltung mit Offsetabzug
+5V Rg1 1,8k Rg 2 8 Rg2 1,8k 3 + 5 Ref Ref Sig+ Offsetabzug und Verstärkung um den Faktor 2 UOp2A MCP607 3 5 1 7 UAus UOp2B MCP607 22 RDiff1 47k RDiff2 100k RPot2 10k 2 6 RV1 22k RV2 1k Ref UOp1B MCP607 +5V 10k RPot1 2 5 7 6 + - Offsetabzug ca. -0.5 ... 2.5 V bezogen auf Ref RDiff4 100k UOp1A MCP607 Ref 3 2 1 Ref +5V Rref1 10k Rref2 1k Cref1 100n Referenzspannung 2,5 V GND
in „Kleines Differentialsignal verstärken und Offset abziehen“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
-
Datei
board-omap3beagle.c
OMAP_PIN_OUTPUT); omap_mux_init_signal("mcbsp1_dr.mcspi4_somi", OMAP_PIN_INPUT_PULLUP); } static int mcp251x_setup(struct spi_device *sdev) { printk(KERN_DEBUG "mcp251x_setup: Entry\n"); return 0; } static int mcp2515_transceiver_enable(int enable) { printk(KERN_DEBUG "mcp251x_transceiver_enable: Entry %d\n", enable); return 0; } static struct mcp251x_platform_data mcp251x_info = { .oscillator_frequency = 10000000, //Benutzter Kristall /* .board_specific_setup = &mcp251x_setup, .power_enable = mcp2515_transceiver_enable, .transceiver_enable =
in „CAN-Bus: MCP2515 und MCP2551 mit Linux Treiber“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
bom-v1-0.pdf
2SC6 0,18 € 0,18 € U2 1LP 38693MP-3.3, 3.3V ldo regulator, 0.5A LP 38693 MP-3.3 1,75 € 1,75 € U10 1MCP 16301, Step down regulator MCP 16301T-I/CHY 0,94 € 0,94 € U20 1AVR ATTINY 861A-SU 1,25 € 1,25 € U21 12V reference REF 3020 AIDBZT 1,35 € 1,35 € U22 1MCP6542, 2x comparator MCP 6542-I/SN 0,55 € 0,55
in „Universalplatine für STM32, grobe Fehler vor der Herstellung?“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Schaltplan eines USB-UART-Konverters
high-quality ceramic, C1 330n, C2 100n, C3 10u, J1, Conn_D1x02_Pin, L1 Ferrite, 5V_USB, R3 10k, J3, Conn_D1x02_Pin, C4 100n, U3 ADuM1201AR, VDD1, VDD2, VSS, VIA, GND1, GND2, MCU_TXD, MCU_RXD, HOST_TXD, HOST_RXD, U4 USBLC6-2SC6, J5, Conn_D1x03_Pin, R6, Audiojack3, C5 100n, F2 340mA, PWR_FLAG, 5V_MCU, MCU_RXD, MCU_TXD, USB_C_Receptacle_USB2.0, 2.16P, A5, CC1A, CC2A, A7, D-, D+, B6, A8, SBUS1, SBUS2, U1, U2, MCP_D+, MCP_D-, MCP_2221A, GP1, GP2, GP3, GP4, R1, R2, R4, R5
in „Entwurf USB-UART-Converter, KiCad, bitte um Review“ · Platinen · · Schaltpläne
-
Datei
Adafruit_CharLCDPlate.py
------------------------------------------------------------ # Constants # Port expander registers MCP23017_IOCON_BANK0 = 0x0A # IOCON when Bank 0 active MCP23017_IOCON_BANK1 = 0x15 # IOCON when Bank 1 active # These are register addresses when in Bank 1 only: MCP23017_GPIOA = 0x09 MCP23017_IODIRB =
in „ATmega32 - LCD mit Adafruit Breakout - Code portieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Bauteile.pdf
5.5V 12V 30mA 3 700-MAX662ACSA 6,33 € BQ25570RGRR DCDC Harvester/ Batterie 5 595-BQ25570RGRR 7,46 € MCP1252-33X50I/MS DCDC 5,5V 3,3V 120mA 16 579-MCP125233X50I/MS 1,86 € MCP41100-E/SN Digitalpoti 100kohm 2 579-MCP41100-E/SN 2,08 € B240-13F Diode 40V 2A SMA 2 621-B240-F 0,47 € 25LC640-I/SN EEPROM 64 kbit
in „[V] diverse Bauteile“ · Markt ·
-
Datei
teile-ttester.txt
Part Value Device Package Library Sheet C1 1n C-EUC0805 C0805 rcl 1 C2 10n C-EUC0805 C0805 rcl 1 C3 100n C-EUC0805 C0805 rcl 1 C4 100n C-EUC0805 C0805 rcl 1 C5 47u CPOL-EU153CLV-0505 153CLV-0505 rcl 1 C6 1u C-EUC0805 C0805 rcl 1 C7 1u C-EUC0805 C0805 rcl 1 C8 1u C-EUC0805 C0805 rcl 1 C9 100n C-EUC0805
in „Sammelbestellung Transistortester III - schnelle Runde“ · Markt ·
-
PDF
OPAmp_Layout.pdf
very small board of its own, which can be easily placed on top of the PCB of interest. VDD = 5.0V U 1 100 nF C1 1.0 µF MCP9700 Temp. Sensor TPCB R1 100 kΩ V C4 DD 100 nF VDD U 2 R MCP6041 2 113 kΩ V OUT R 3 R 4 R 5 R 6 12.4 kΩ 100 kΩ 1.00 MΩ 1.00 kΩ C 2 1.0 µF C 3 22 nF FIGURE 21: IC Temperature Sensor
in „Transimpedanzwandler für Photodiode“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Functions.ino
EEPROM.write(address+2, u.b[2]); EEPROM.write(address+3, u.b[3]); } //THESE FUNCTIONS WILL TURN THE PINS OF A MCP23017 ON AND OFF. THIS ALLOWS FOR THE CONTROL OF UP TO 16 MACHINES. //EVEN MORE MACHINES COULD BE CONTROLLED BY ADDING MORE MCP23017s, BUT THIS CODE WOULD HAVE TO BE MODIFIED. void turnMCP23017PinOn(
in „Heliostatensteuerung mit Arduino Uno“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Platinfuch_IIa_BOM_20210217.pdf
SOIC14 74LVC14ADR Digi-Key 296-1699-2-ND 0.079 0.079 95 2 U5, U16 Buck converter Microchip SOT23-6 MCP16301T-I/CHY Digi-Key MCP16301T-I/CHYTR-ND 0.659 1.318 96 1 U6 Op amplifier Microchip SOT23-5 MCP6071T-E/DT Digi-Key MCP6071T-E/OTTR-ND 0.387 0.387 97 1 U7 Op amplifier Analog Devices SOIC8 ADA4522-1ARZ-R7 Digi-Key ADA4522-1ARZ-R7TR-ND 1.067 1.067 98 1 U8 Op amplifier Microchip SOIC14 MCP6074T-E/SL Digi-Key MCP6074T-E/SLTR-ND 1.054 1.054 99 2 U9, U10 MOSFET driver Microchip SOIC8 MIC4604YM-TR Digi-Key 576-4396-2-ND 0.469 0.939 100 2 U11, U12 MOSFET driver Texas Instruments SOIC8 LM5111
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
-
Datei
00_HEADER_LiIon.INC
RA3 (02) AN4 SHUNT-Spannung ADC-Input DRAIN ; RA2 (01) AN2 VDD5V " Ub ca. 5V VDD5V ; RA1 (18) SS2 (1)MCP4151 SPI-Slave Seleckt ; RA0 (17) SDO2 (3)MCP4151 SPI-Data Output ; ;--PINBELEGUNG PORTB ; RB7 (13) ICSPDAT-PGD + LCD-DAT (2Wire-LCD Interf.) ; RB6 (12) ICSPCLK-PGC + LCD-CLK " " " ; RB5 (11) SCK2 (2)MCP415 1SPI-Clock ; RB4 (10) MCP4151,P0W. ; RB3 (09) AN9 ADC-Input für MCP4151,P0W (=Vref OPA) ; RB2 (05) START_KEY ; RB1 (06) n.c. ; RB0 (07) LED ; ;--MCP4151 Digital Potentiometer 10kOhm ; CS (1) Slave
in „PIC16F1827-MCP4151 TMR0-Interrupt wird immer wieder nicht ausgefuehrt“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Schaltplan mit Raspberry Pi Pico und MCP6002 Operationsverstärkern
+3V3, C2 100nf, J4 Conn_01v03, U3 74HC245, GND, BO, B1, B5, B4, B6, B7, LA0, LA1, LA2, LA3, LA4, LA5, LA6, LA7, U1 Pico, GPIO0 bis GPIO28, VBUS, VS, 3V3_EN, ADC_VREF, GND, LA8, LA9, GPIO27, GPIO26, LAG, GND, LA2, LA3, LA4, LA5, LAB, J2 Conn_01x02, R4 470k, D1 1N4148WB, U2A MCP6002-x5N, R1 100, GPIO25, R6 470k, D2 1N4148WB, U2B MCP6002-x5N, R2 100, GPIO26, R7 220, +3V3, C1 100nf, U2C MCP6002-x5N, GND, H2 bis H4 NountlingHole_Pad
in „PiPico Oszilloskop“ · Offtopic · · Schaltpläne
-
Datei
pdc_uno_CAN_.ino
#include <mcp_can.h> #include <SPI.h> const int SPI_CS_PIN = 10; MCP_CAN CAN(SPI_CS_PIN); int cm ; void setup() { pinMode(A5,OUTPUT); analogWrite(A5,0); pinMode(A0, INPUT); Serial.begin(115200); Serial.println("restart UNO PDC CAN BUS"); while (CAN_OK != CAN.begin(CAN_500KBPS)) {Serial.println("CAN BUS MCP 2515 / MCP 2562 init fail"); Serial.println(" Init CAN BUS again"); delay(100); } Serial.println("CAN BUS init ok!"); } unsigned char stmp[8] = {0, 0, 0, 0, 0, 0, 0, 0}; void loop() { if ( analogRead
-
PDF
MCP1702.pdf
MCP1702 2 μA Low Dropout Positive Voltage Regulator Product Brief Features: General Description: • 2.0 μA Typical Quiescent Current The MCP1702 is a family of CMOS low dropout (LDO), Input Operating Voltage
in „quick and dirty - NiMH stützen“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
board-omap4panda.c
{ .name = "leds-gpio", .id = -1, .dev = { .platform_data = &gpio_led_info, }, }; static int overo_mcp2515_setup(struct spi_device *sdev) { printk(KERN_DEBUG "overo_mcp2515_setup: Entry \n"); return 0; } static int overo_mcp2515_transceiver_enable(int enable) { printk(KERN_DEBUG "overo_mcp2515_transceiver_enable: Entry %d\n", enable); return 0; } static struct mcp251x_platform_data overo_mcp2515_pdata = { .oscillator_frequency = 20*1000*1000, .board_specific_setup = overo_mcp2515_setup, .model = CAN_MCP251X_MCP2515, .power_enable = overo_mcp2515_transceiver_enable
in „CAN-Interface mit galvanischer Trennung für Pandaboard (OMAP4)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
10e-3 + 0.5); // preload for 10ms TIMSK0 |= 1<<TOIE0; // enable timer interrupt REMAP |= (1<<U0MAP); mcp23s17_init(); _delay_ms(500); mcp23s17_write_register(MCP23S17_GPIOB, 0xFF); _delay_ms(1000); mcp23s17_write_register(MCP23S17_GPIOB, 0x00); _delay_ms(200); sei(); wdt_enable(WDTO_500MS); eMBInit( MB_RTU
in „Schaltung zieht nach ausschalten mehr Strom“ · Mikrocontroller und Digitale Elektronik ·