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MCP1703_MIC.pdf
ambient (Rθ ). The thermal resistance from junction to T A = Ambient temperature JA ambient for the SOT-23A pin package is estimated at 336°C/W. © 2009 Microchip Technology Inc. DS22049D-page 17 MCP1703 6.3 Voltage Regulator TJ= T JRISE + TA(MAX) Internal power dissipation, junction temperature rise, T =
in „Was ist das für ein IC“ · Mikrocontroller und Digitale Elektronik ·
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iot.pdf
15 IO12 GND_3 39 2 1 1 10uF MINI_USB_TYPE_RCM TXD 25 A 16 GND_2 GND_4 40 S S 1 54819-0572 EXP GND RXD 24 470 IO13 GND_5 2 S GND RTS RTS U0TX FB4 R8 R9 QUARZ 17 SD2 GND_6 41 I A 4 C10 1 GND MP1 MP1 3 GND CTS 23CTS HIGH 18 SD3 GND_7 42 2 ID MP2 MP2 330k 330k 1 2 19 CMD GND_8
in „Schaltung des IOT-Steckdoses mit Eagle entwickeln“ · Mikrocontroller und Digitale Elektronik ·
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Platinfuchs_IIa_Schematic-and-Layout.pdf
U17B VZK VZK *3V3* 5 TS393 R17 Q11 pp3t-B 13K 2N7002F pp3t-B D 7 T5 V V V 15,73V 6 BC846C pp2t-B pp2t-B C12 C13 6 22µF 22µF S 16V 16V C28 C29 R18 pp2t-A pp2t-A 100nF R19 10µF 2,2R 47K 6,3V R20 R21 R22 R23
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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MCP794xx.pdf
Format bit 1 = 12-hour format 0 = 24-hour format bit 5-4 HRTEN<1:0>: Binary-Coded Decimal Value of Hour’s Tens Digit Contains a value from 0 to 2 bit 3-0 HRONE<3:0>: Binary-Coded Decimal Value of Hour’s Ones Digit Contains a value from 0 to 9 2011-2018 Microchip Technology Inc. DS20005009G-page 17 MCP79400
in „MCP794xx EUI-64 Node Adresse“ · Mikrocontroller und Digitale Elektronik ·
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can_g1251_v02.eagle7_Falk.sch.pdf
RESET) (CLKO/ICP1)PB0 12 CLKO R15 R4 1 TXD RS 8 (OC1A)PB1 13 D9-EXTOFF 10k 10k 2 VSS CANH 7 14 D10_MCP2515_CS 3 6 (OC1B/SS0)PB2 15 D11_MOSI 4 VDD CANL 5 (OC2A/TXD1/MOSI0)PB3 RXD VREF TP1 0 7 PB6(XTAL1) (RXD1/MISO0)PB4 16 D12_MISO R 1 (XCK0/SCK0)PB5 17 D13_SCLK TJA1050 3 1 8 PB7(XTAL2) 23 A0_H2_CS 2 2
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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MCP4821-MCP4822.pdf
+ (CC- 3) V23 = - ---R + R--------- - R 23 2 3 V R + V R V = --------------------- V trip R2+ R23 23 EXAMPLE 6-2: Single-Supply “Window” DAC. © 2005 Microchip Technology Inc. DS21953A-page 21 MCP4821/MCP4822 6.6 Bipolar
in „Digital-Analog-Umsetzer (10V -> 1mV Auflösung)“ · Mikrocontroller und Digitale Elektronik ·
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teile-ttester.txt
led 1 P1 250 TRIM_EU-CA6H CA6H pot 1 P2 10k lin TRIM_EU-CA9V CA9V pot 1 Q1 BC847CSMD BC847CSMD SOT23 transistor-npn 1 Q2 BC847CSMD BC847CSMD SOT23 transistor-npn 1 Q3 BC807-40SMD BC807-40SMD SOT23-BEC transistor-pnp 1 Q4 8,000 MHz CRYSTALHC49S HC49/S crystal 1 Q5 BC847CSMD BC847CSMD SOT23 transistor-npn
in „Sammelbestellung Transistortester III - schnelle Runde“ · Markt ·
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MCP_2210.pdf
Copper • Board – Bottom Pads and Copper © 2012 Microchip Technology Inc. DS52056A-page 17 MCP2210 Breakout Module User’s Guide A.2 BOARD – SCHEMATIC D S n 5 M J U D - V D D I G B 8 7 6 O 5 K 1 2 3 4 5 U G G G I G S D M D D G D - + N _ D G 0 S B 6 5 U U 0 6 F C 1 D + - N D D B G B B U U U
in „USB - SPI Adapter“ · Mikrocontroller und Digitale Elektronik ·
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Rollladensteuerung.pdf
AVR-Controller: 16kB Flash 512 Byte EEPROM 1kB RAM 8 ADC-Kanäle TWI 1 Eingang Wandschalter MCP23017-Interrupt (nicht zwingend interruptfähig) 1 Eingang Keypad MCP23017-Interrupt (nicht zwingend interruptfähig) 1 Eingang HMI Erkennung (nicht zwingend interruptfähig) 1 flankengetriggerter
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SPI-Level-Shift-MCP.pdf
Projekt Painter Rev. A3 TFT-Display Steffen H. 0.0 Date:11.05.0716:32 Sheet 1 SCALE 75,46% 1 2 3 4 5 6 I S O O I M M T E C K S / S E R T U N O I ; Stückliste=SPI_LEVEL_SHIFT ; Datum=11.Mai.2007 16:34 ; Author= Steffen H. ; Pos Name Wert Gehäuse Farnell Digikey 1 C1 1+F/16V C0603 587-1241-1-ND 2 C2 4,7+F/16V
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SAM7-EX256_Rev_C-sch.pdf
6 7 8 AN_TRIM AN_TERM U7 3 C28 U6 R15 10K MIC_IN R33 6 100n R13 2 R32 100n C I D R23 + 10K 10K C40 100 Z1 MCP601 4 R78 + C27 + V 1 C33 R64 C64 BZV55C2V4 C37 100K R31 C26 3 SC 2 5.6K/1% 220u/16 U5 5 9 C63 10K 100n 47p R29 C39 100K NA 470u/16V R18 470u/16V TC SE CANTX 1 8 4 8 100n Z2 47p 470K 1u C31 S 2 TXD RS 7 3 7 BZV55C2V4 +5V 47p 240/1% R17 S 5 3 VSS CANH 6 2 6 C34 V FB VDD CANL R14 SPEAKER 120/1% 470p CANRX 4 RXD VREF 5 1 10K PB12211 4 MC34063 R21 HEADPH/SPKR +5V MCP2551 R12 CAN + 3 2 1 3.3V
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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Last_board.pdf
1/1) 1 2 3 4 5 6 A A C V 3 3 VCC +8V + +3V3 k 6 0 fg = 7,1kHz k 4 V R 1 +8V 0 R 1 9 5 1 0 , MPZ2012S1021J0T0Dk25 100k 3 IC2 1 S 0 t L23 R3 R2 1 MPZ2012S1021JTD25 D 5 i o 4 L1 R1 A V-MEASSURE t > C1 2 MCP601OT B o - k C4 V 0 R 4 220pf B n 5 100pf B V - AGND D N A +8V C C C2 C5 100nf 100nf C3 100nf -5V
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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can_g1251_v02_12f.eagle7.sch.pdf
ICP1)PB0 13 RST GND GND 20 1 1 8 (OC1A)PB1 14 GND 19 VDD TXCAN 2 2 TXD RS 7 GND (OC1B/SS0)PB2 15 D10_MCP2515_CS 18 RST RXCAN 3 3 VSS CANH 6 (OC2A/TXD1/MOSI0)PB3 D11_MOSI CS CLKOUT/SOF VDD CANL Q1 7 PB6(XTAL1) (RXD1/MISO0)PB4 16 D12_MISO 17 SO TX0RTS 4 4 RXD VREF 5 TP1 0 (XCK0/SCK0)PB5 17 D13_SCLK 16 SI
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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MT2202_Abstract.pdf
and direction of the cable. The Receiver consists of a PreAmp and Detector made from an RFID Chip (MCP2030). The RSSI signal strength output is amplified by a Variable Gain Amplifier (MCP6S26). The amplified output feeds an Analog Meter to provide a visual indication of the signal strength. The meter
in „DIY Power Kabelsucher / Trassenfinder“ · Analoge Elektronik und Schaltungstechnik ·
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pif2_sch-1.pdf
PT22D/SDA/PCLKC0_0 TP2 39 GND SCL 126 PT22C/SCL/PCLKT0_0 GPIO23 13 PL10A GPIO4/GPCLK0 7 PiCLK 127 PT18B/PCLKC0_1 14 PL10B 29 GPIO5 128 15 GPIO5 PT18A/PCLKT0_1 PL11A GPIO6 31 GPIO6 FTMS 130 PT17D/TMS 17 PL11B 32 GPIO12 FTCK 131 GPIO22 19 GPIO12 PT17C/TCK PL12A/PCLKT4
in „PIF_2 MachXO2-7000HC antwortet nicht“ · FPGA, VHDL & Co. ·
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MCP320412-bitA-DConverterDatasheet.pdf
ksps 90 FSAMPLE= 100 ksps 80 80 )70 )70 B60 B60 ( ( R50 R50 VDD = REF = 2.7 V N40 D FSAMPLE= 50 ksps S VDD = VREF= 2.7V F40 30 FSAMPLE= 50 ksps S30 20 20 10 10 0 0 1 10 100 1 10 100 Input Frequency (kHz) Input Frequency (kHz) FIGURE 2-20: Signal to Noise (SNR) vs. FIGURE 2-23: Signal to Noise and Input
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HMI_board.pdf
E-Last\03_Schaltplan\01_Eagle\HMI_board.sch (I2C_EXTERN: Sheet: 1/1) 3 3 + +3V3 1 2 L T J 0 X15-3 X17-1 CM1213-085R S 1 SPI_MISO 1 CH1 C 0 MPZ2012S300X17-2 / MPZ2012S102JTD25 L7 V Z LED 2 CH2 P MPZ20 115-3X17-325 / MPZ2012S102JTD25 L6 / SPI_SCK 3 CH3 5 MPZ20 115-3X17-425 / MPZ2012S102JTD25 L8 D SPI_MOSI 4 CH4 C3T MPZ2012S300X17-5 / MPZ2012S102JTD25 L9 0 D/C 6 CH5 223nf MPZ2012S300X17-6 / MPZ2012S102JTD25 L10 S RESET 7 CH6 1 MPZ2012S300X17-7 / MPZ2012S102JTD25 L11 2 SPI_CS0 9 CH7 Z MPZ2012S300ATD25 / MPZ2012S102JTD25 L12
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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Firework_Peri_Mainboard.pdf
10V 47K J6 A R A U2 0 2 Power A S A E N N 5MCP3428 R8 3 ON_ARMED_MODE R14 GND R26 D O O E 1 4K7 5 M D S CH4- 14 GND 100K S ON_SAFE_MODE 3 C7 U5 GND 4K7 GND _ M V 13 N u OKI-78SR-5_1.5-W36h-C +5V R20 E _ CH4+ - 2 1 0 l 3 M F GND 9 Adr0
in „Again: ESP32 external Power funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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fehlerlesen.pdf
Warning: set up FUSE-Bits ! See Datasheet! .def temp =r16 .def address =r21 .def value =r22 .def mask =r23 ; for BitModify .def stack =r24 .def stack2 =r25 ; mcp2515 Instructions: .equ WRITE =0b00000010 .equ READ =0b00000011 .equ RESET =0b11000000 .equ BITMODIFY =0b00000101 ; mcp2515 addresses: .equ RXB0D0
in „CAN übertragung brich ca. nach 10 sek ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Rollladensteuerung.pdf
AVR-Controller: 16kB Flash 512 Byte EEPROM 1kB RAM 8 ADC-Kanäle TWI 1 Eingang Wandschalter MCP23017-Interrupt (nicht zwingend interruptfähig) 1 Eingang Keypad MCP23017-Interrupt (nicht zwingend interruptfähig) 1 Eingang HMI Erkennung (nicht zwingend interruptfähig) 1 flankengetriggerter
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Taz_Altium_Version.pdf
PC3 IP1A26 A3_VSENS PIC509 RST RXCAN PIIC52 VCCIO PIC102 VSS CANH PIC107 C NH P PI 1 27 A4_SDA D10_MCP2515_ 18 S 3 3 6 C NL 2 (SDA0/ADC4)PC4 IP1A27 NA 0SL PIC508 CS CLKOUT/SOF PIIC53 GND PIC103 VDD CANL PIC106 P (SCL0/ADC5)PC5 PII1A28 A5_SCL D12_MISO PIC507 SO TX0RTS PIIC54 PIC104 RXD VREF PIC105 PPTPTP1 D11_MOSI PIC506 SI TX1RTS PIIC55 CS +5V 30 R D 15 6 TJA1050 S (RXD0/OC3A)PD0 PII1A30 PIC505 NC' NC PIIC56 1 GND (TXD0/OC4A)PD1 IP1A31 TXD D13_SCLK PIC504 SCK TX2RTS PIIC57 (INT0/OC3B/OC4B)PD2 PII1A32 D2_ CP2515_INT D2_MCP2515_I PIC503 INT OSC2 PIIC58 PI10 PI10
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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Firework_Peri_Mainboard.pdf
E GND 3 1 10K J6 A R A U2 2 Power A S E N N 5MCP3428 R8 ON_ARMED_MODE R14 GND R26 D O O E 47K M D S CH4- 14 GND 100K ON_SAFE_MODE U5 GND 47K GND _ M V 13 OKI-78SR-5_1.5-W36h-C +5V R20 E _ CH4+ 2 1 3 M F GND 9 Adr0 CH3- 12 GND J2 1 3 10K
in „Again: ESP32 external Power funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Lenovo_schematic.pdf
/I2S1_TXD SATA_RP3/PERP6_L0 E5 @ TC22 @ 1 AV10 C17 RC47 1 @ 2 1K_0402_5% HDA_SDOUT TC23 @ 1 AY8 HDA_DOCK_RST/I2S1_SFRM SATA_TN3/PETN6_L0 D17 I2S1_SCLK SATA_TP3/PETP6_L0 V1 SATA0GP HDA_SDO This signal has
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
+5V R3 IC1A IO 29 PC6(RESET) (CLKO/ICP1)PB0 12 CLKO +5VIO 10k (OC1A)PB1 13 14 D10_MCP2515_CS (OC1B/SS0)PB2 15 D11_MOSI 7 (OC2A/TXD1/MOSI0)PB3 16 D12_MISO PB6(XTAL1) (RXD1/MISO0)PB4 17 1 k 4 k 4MHz (XCK0/SCK0)PB5 D13_SCLK R 1 R 1 8 PB7(XTAL2) 3 1 (MISO1/ADC0)PC0 23 A0_H2_CS (SCK1/ADC1
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
(mmcblk0p2): re-mounted. Opts: (null) [ 13.102326] EXT4-fs (mmcblk0p2): re-mounted. Opts: (null) [ 23.776403] mcp251x spi0.0 can0: bit-timing not yet defined [ 23.776450] mcp251x spi0.0: unable to set initial baudrate! [ 23.776852] mcp251x spi0.0 can0: bit-timing not yet defined [ 23.776886] mcp251x spi0.0: unable to set initial baudrate! [ 23.776950] mcp251x spi0.0 can0: bit-timing not yet defined [ 23.776976] mcp251x spi0.0: unable to set initial baudrate! [ 23.777034] mcp251x spi0.0 can0: bit-timing not yet defined [ 23.777056] mcp251x
in „RaspberryPiB+ mit CAN (MCP2515)“ · PC Hard- und Software ·
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CanBus_RTC_Adapter.pdf
TXD CANL 6 2 100n C5 5 VDD RS 8 3 P$3 8 OSC1 2 GND VREF 3 4 - 100n FO +5V 5 2 GND GND GND P$2 GND MCP2551-I/SO 6 6 JP3 J1P18 P$18 12 INT GND 7 5 RTC CRYSTALRESONATORXO91 17 RESET 8 J GND V R P$19 14 + IC7 JP3 J1P19 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
in „LinuxCNC mit rasberry-PI als IO-Interface -“ · PC Hard- und Software ·
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mcp3424.pdf
C e t a o 1 1 C M S S D C M – – – – – b B r : r s t L A S M o C D N S S FIGURE 5-4: Timing Diagram For Reading From The MCP3422/3/4 With 18-Bit Mode. © 2009 Microchip Technology Inc. DS22088C-page 23 MCP3422/3/4 t r a t
in „Sensorplatine MPX4115 DS1621 HIH5030 - Schaltungskontrolle“ · Mikrocontroller und Digitale Elektronik ·
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STPicProgL.pdf
VT1 C11 1k R7 47uF/16 100 R29 R30 BSS123 470 10k 10k C9 R21 R26 10u/16 C76 470 4k7 47uF/16 C10 U6 C8 MCP6561T-E/OT 100nF U4 H 5 TC4429 8 MHz 3 L C17 C2 - 10uF/10 22p R4 L R27 10k R24 P 4k7 R5 C1 100k E R12 10k 22p W P 1k J C5 1k1 100n 3 3 C16 0 D R25 4 V 22k S R R6 U1 R23 R18 R86 C74 M 10k 22k 470 8k2 10nF STM32F103C8T6 X3 X2 C3 C4 R14 R87 100n R15 100n 6k8 3k6 22 R22 C75 22k B 22uF/25 R20 - U2 1k5 S U21 TP1 R TS2596CM5 C41 R1 R2 R17 - 22uF/25 XC6201-PR 33 33 470 0 1 R S P T X J C7 C6 10uF 10uF
in „Padauk MCU für 0.038 USD aus Taiwan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OPAmp_Layout.pdf
are separated from power (top layer) and digital (bottom layer) traces to reduce crosstalk. 7. The MCP9800’s power traces are kept short, straight and above ground plane for minimal FIGURE 38: 1 Layer – Top Silk. crosstalk. 2009-2012 Microchip Technology Inc. DS01258B-page 17 AN1258 Figure 40 shows
in „Transimpedanzwandler für Photodiode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
0207 1 7 GND2 PCM_CLK 8 U u U 9 10 0 0 0 11 SDIO_CLK PCM_SYNC 12 2 0 1 0 2 0 NGF F_WLAN_PEWAKE_N 13 S DIO_CMD PCM_IN 14 _ _ _ D 15 S DIO_DAT0 PCM_OUT 16 3 0 3 D 17 SDIO_DAT1 LED2# 18 V 6 V 19 S DIO_DAT2 GND1 1 20 NGF F_GND M NGFF_GND K M S DIO_DAT3 UA RT_WAKE 21 SDIO_WAKE UART_RX 22 23 SDIO_RESET KEY
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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Lab-PSU.pdf
R 1 2 7 3 R8 1 D -5V R 4 R +12V 0 IC1B 5 10k 1 0 U-Reg 7 D 4 R 1 GND D8 D9 2 6 4 TS4148 k 3 LM393N S TS4148 1 R T IC5A 3 R25 10k GND GND D6 1 2 3 TS4148 TLC272D R U-CTRL Spannungsüberwachung R26 10k 0 X5-1 56p 1 X5-2 VCC +9V +9V C17 CC-CV X5-3 X3-1 AGND X3-2 AGND VCC I-Reg AGND 3 k 5 k R 3 R 3 IC5B
in „Labornetzteil mit getakteter Vorregelung - Überschwinger“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
% HDATC21UT@ 1 AW10 HDA_SDO/I2S0_TXD SATA_RN3/PERN6_L0 E5 l 44 ME_FLASH @ TC22 @ 1 AV10 HDA_DOCK_EN/I2S1_TXD SATA_RP3/PERP6_L0 C17 RC47 1 @ 2 1K_0402_5% HDA_SDOUT TC23 @ 1 AY8 I2S1_SCLKRST/I2S1_SFRM SATA_TP3/PETP6_L0 D17 HDA_SDO This
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PICO_SDR.sch.pdf
180 VCC 16 L4 33µH C4 10µ R13100 IC2B 7 RX_I 2 1 A C1 220n . P_0 5 +3V3 A B 7 1A 1B1 6 33µH 10µ 100 MCP6022 NF - rechts 2 SJ4 1 RF_1 5 R4 100k C D . b 1B2 4 C27 C26 C12 C11 BIAS 2 SJ3 1 S S A 1B3 10n 10n 10n 10n 0 N C33 220n 1B4 3 C24 27p C 10µ G 2 SJ2 1 N C C D a . r G V S S RF_2 C 9 10 GND GND GND GND C8 27p 1 FC68131 C SJ1 2A 2B1 11 P_270 C 5 d c 2B2 P_180 2 u D C L A +3V3 2B3 12 P_0 R10 1 S N V S S 2B4 13 P_90 10Dk 10µ G N J2 0 1 L5 C5 R8 100 4 G GND 6 1 15 OE1 P_270 2 BIAS R OE2 33µH 10µ IC2A 1 RX_Q L6 3 1.3'' OLED LO_Q GND4 S0 P_90 10µ MCP6022 NF - links 128x64 C3 k 2 33µH C23 R9 100
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20002019c.pdf
• Line Drivers • Motor and Solenoid Drive 2006-2016 Microchip Technology Inc. DS20002019C-page 1 MCP1406/07 Package Types 8-Pin PDIP/SOIC MCP1406 MCP1407 V 1 V V VDD DD 8 DD DD 1 8 INPUT 2 7 OUT INPUT 2 7 OUT NC 3 6 OUT NC 3 6 OUT GND 4 5 GND GND 4 5 GND 8-Pin 6x5 DFN-S) MCP1406 MCP1407 V 1 8 V VDD
in „Pulsschweisgerät mit Auto Batt Schaltungs Verbesserung“ · Analoge Elektronik und Schaltungstechnik ·
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MCP4151.pdf
5 P0W - High-Speed Read/Writes to wiper registers SS SS 3x3 DFN* 3x3 DFN* - SDI/SDO multiplexing (MCP41X1 only) • Resistor Network Terminal Disconnect Feature via: MCP42X1 Dual Potentiometers - Shutdown pin (SHDN) D O D S D D H - Terminal Control (TCON) Register C V S S • Brown-out reset protection
in „Frage zum MCP4151 SPI Digital Poti?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
/* SLdt 220912 Disclaimer: none. Sue me. MCP23S17 einfachst: 'Blinken' auf GPIO-A */ #define F_CPU 16000000UL #include "util/delay.h" #include "avr/io.h" // ATmega48PA ATtiny841 #define SPI_DDR DDRB // DDRA #define SPI_PORT PORTB // PORTA #define
in „SPI mit Attiny 841 und MCP23S17“ · Mikrocontroller und Digitale Elektronik ·
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PDF
22107B-1180063.pdf
= 3.0V). Ambient Temperature (V = 3.0V). DD DD 2008-2013 Microchip Technology Inc. DS22107B-page 23 MCP454X/456X/464X/466X Note: Unless otherwise indicated, T = A25°C, V DD = 5V, V SS = 0V. 10300 12000 ) A 10250 10000 ( 10200 e ) n )10150 s 8000 t s10100 h i h 2.7V ( 6000 e O10050 B l (10000 W 4000
in „[V] 24St SMD Digital I2C / 256 Steps 5K Dual Poti Microchip MCP4561- 502E/MS (MSOP8) (alle 15€)“ · Markt ·
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PDF
MCP4261-DigitalPot-2Fach-50kDATASHEET.pdf
Read/Write to Data EEPROM registers - Serially enabled EEPROM write protect - SDI/SDO multiplexing (MCP41X1 only) MCP42X1 Dual Potentiometers • Resistor Network Terminal Disconnect Feature D O D via: S D D H C V S S - Shutdown pin (SHDN) CS 1 14 VDD 16 15 14 13 - Terminal Control (TCON) Register 13 SDO
in „Step Down Regler zu heiss & Fragen zur Umsetzbarkeit einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Netzteil_Schaltplan.pdf
CS_DAC 3 SDI 14 V_SET 10k 2,7k 2 0 CS VOUT_A GND R 1 9 10 V SHDN_DAC 8 SHDN VOUT_B I_SET 5 0 LDAC LDAC S GND + 4 GND V K1 4 N GND 3 1FRS1B D 1 3 MCP4922-I/2L T2 I_LIMIT + 1 MAX44246AUA BC847SMD 6 IC5B R12 2 C1 C2 7 T4 GND I_SET 5 10k BC847SMD 1µF 100nF SENSE_REL R17 GND 2,7k GND 3 + GND 3 V +UB + 4 3 +UB
in „Layout Bewertung“ · Platinen ·
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PDF
2243913.pdf
= 3.0V). Ambient Temperature (V = 3.0V). DD DD 2008-2013 Microchip Technology Inc. DS22107B-page 23 MCP454X/456X/464X/466X Note: Unless otherwise indicated, T = A25°C, V DD = 5V, V SS = 0V. 10300 12000 ) A 10250 10000 ( 10200 e ) n )10150 s 8000 t s10100 h i h 2.7V ( 6000 e O10050 B l (10000 W 4000
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
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PDF
2243913.pdf
= 3.0V). Ambient Temperature (V = 3.0V). DD DD 2008-2013 Microchip Technology Inc. DS22107B-page 23 MCP454X/456X/464X/466X Note: Unless otherwise indicated, T = A25°C, V DD = 5V, V SS = 0V. 10300 12000 ) A 10250 10000 ( 10200 e ) n )10150 s 8000 t s10100 h i h 2.7V ( 6000 e O10050 B l (10000 W 4000
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
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PDF
2243913.pdf
= 3.0V). Ambient Temperature (V = 3.0V). DD DD 2008-2013 Microchip Technology Inc. DS22107B-page 23 MCP454X/456X/464X/466X Note: Unless otherwise indicated, T = A25°C, V DD = 5V, V SS = 0V. 10300 12000 ) A 10250 10000 ( 10200 e ) n )10150 s 8000 t s10100 h i h 2.7V ( 6000 e O10050 B l (10000 W 4000
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
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PDF
RasperryPI_CAN-S.pdf
SDA 3 4 4 3 SCL 7 8 8 7 ONEWIRE 9 10 10 9 INT 11 12 12 11 IN_G 13 14 14 13 IN_X 15 16 OUT24V 16 15 17 18 IN_H 18 17 MOSI 19 20 20 19 MISO 21 22 IN_I 22 21 B SCK 23 24 CS0 24 23 B 25 26 IN_J 26 25 27 28 28 27 ENC_A 29 30 30 29 ENC_B 31 32 IN_F 32 31 ENC_PUSH 33 34 34 33 IN_A 37 38 IN_E 38 37 IN_B 39 40
in „MCP2515 CAN-Bus Modul“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MCP6566.txt
10.0E12 *C13 1 2 1.00E-15 * * Noise, PSRR, and CMRR I20 21 20 423U D20 20 0 DN1 D21 0 21 DN1 I22 22 23 1N R22 22 0 1k R23 0 23 1k G26 0 26 POLY(2) 3 0 4 0 0.00 -316U -316U R26 26 0 1 G27 0 27 POLY(2) 1 0 2 0 -2.75M 158U 158U R27 27 0 1 * * Open Loop Gain, Slew Rate G30 0 30 12 11 1 R30 30 0 1.00K G31 0 31 3 4 18.5 I31 0 31 DC -4.17 R31 31 0 1 TC=0.00,0.00 GD31 30 0 TABLE {V(30,31)} ((-100,-1n)(0,0)(1m,0.1)(2m,2)) G32 32 0 3 4 18.5 I32 32 0 DC -4.17 R32 32 0 1 TC=0.00,0.00 GD32 0 30 TABLE {V(30,32)} ((-2m,2)(-1m,0.1)(0,0)(100,-1n
in „PSpice Modell in LTSpice Problem“ · Mikrocontroller und Digitale Elektronik ·
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raffstorecontrol.pdf
high mit 24V 128x64px C4 3 10 SDA 1 SSD1315 3 COM SCL 2 1,3 inch OLED 100nF 1 I1 O1 18 1 GND J5 U9 2 17 2 3 Conn_01x04 GND U8 I2 O2 3.3V 4 PC817 9 MCP23017 3 I3 O3 16 3 1 4 4 15 4 In1 D1 A I4 O4 A SDA 13 SDA D GPB0 1 5 I5 O5 14 5 J1 Q3 2.2k 2 3 12 V 2 6 13 6 IRLML 6402 R5 GND GND SCL SCK GPB1 I6 O6 SW4
in „mcp23017 pull up / Vorwiderstand erforderlich?“ · Mikrocontroller und Digitale Elektronik ·
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MCP2551.pdf
(N0NH'\7W,S\&D [:32 [\)\7\,S\03K8\,&KH,10(&(W''$0/KNQH(N0NH'\7W,S\10)H70K,)H78WNKH,0O(7OH&\&0H,'$D RKS7HSQKO J\SQ,H'H6$ 37W/K,6 ;FVIFPU1 © 2010 Microchip Technology Inc. DS21667F-page 17 MCP2551 /HDG3OVWL3F'X,V
in „MCP2551 Standby Mode wenn AVR im Power down Modus“ · Mikrocontroller und Digitale Elektronik ·
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2019-02-22_SCH_ATMega_Eval_DEVEL_v0_2_.PDF
R38 LED7 1k R27 V11 100 nF 10k S5 LS R976-NR-1 R18 1 3 BTN3 2 4 1k C21 R39 DTS61K GND 100 nF 10k S6 B R20 1 3 B BTN4 2 4 1k C22 B1 R40 DTS61K Drehencoder Buzzer 5V R23 100 nF 10k S7 5V R33 BTN5 1 3 1 + 1k 2 4 R29 R31 R48 220R_micro C23 DTS61K R34 2 - R41 1k 100 nF 10k S8 10k 10k 10k R30 1 3 Jumper X23 BTN6 2 4 PE5 3 MCSMT-8030C-K4082 1k C24 Jumper X24 Q2 R42 DTS61K PE6 S10 BSS138P 100 nF 10k S9 Jumper X25 1 PEC16-4220F-40024 X26 1
in „AD.wandler und FFT auf Atmega 128A“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan_2.pdf
R G IC1 20 VDD TXCAN 1 1 TXD RS 8 GND 19 RST RXCAN 2 I 2 VSS CANH 7 IC1A 18 3 +5VIO 3 6 29 12 CLKO 17 CS CLKOUT/SOF 4 GND 4 VDD CANL 5 PC6(RESET) (CLKO/ICP1)PB0 13 16 SO TX0RTS 5 +5IOO RXD VREF TP1 1 2 (OC1A)PB1 14 D10_MCP2515_CS 15 SI TX1RTS 6 TJA1050 R 1 (OC1B/SS0)PB2 15 14 NC' NC 7 (OC2A/TXD1/MOSI0
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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flipdot_neu_Register.pdf
3 l D 3 GPB2 D D e 2 N 8 15 A0 GPB3 4 = = Z 1 I I I I I I I I G 2 16 A1 GPB4 5 0 7 T I L 74HC574D 17 A2 GPB5 6 B B S U OC 1 6 7 r r N 1 2 3 4 5 6 7 8 9 11 r r 6 10 GPB6 8 P P e 3 CLK e i 0 r VSS GPB7 l 1 2 e 12 9 74HC574D i Z e ff p G l t a 8Q 8D 5 4 3 2 1 0 i Z MCP23017SP S a a p 13 7Q 7D 8 OC 1 1 1 1 1 1 1 9 7 Z e S p S 14 6Q 6D 7 CLK 11 S S 15 5Q 5D 6 0 1 2 3 4 5 6 7 1 1 1 1 1 1 9 7 16 4Q 4D 5 12 8Q 8D 9 Y Y Y Y Y Y Y Y 17 4 13 8 D 18 3Q 3D 3 14 7Q 7D 7 3 Y Y Y Y Y Y Y Y 19 2Q 2D 2 15 6Q 6D 6 1 D 1Q 1D 5Q 5D 1
in „Flipdot Display Projekt (Hilfe Logik Erbeten)“ · Mikrocontroller und Digitale Elektronik ·
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raffstorecontrol.pdf
128x64px C4 3 10 Q1 SDA 1 SSD1315 3 COM 2N7002 SCL 2 1,3 inch OLED 100nF 1 I1 O1 18 1 GND J5 U9 2 17 2 2 3 3 Conn_01x04 GND U8 I2 O2 3.3V 4 PC817 9 MCP23017 3 I3 O3 16 3 1 4 4 15 4 In1 D1 A I4 O4 1 A SDA 13 SDA D GPB0 1 5 I5 O5 14 5 J1 R1 2.2k 2 3 12 V 2 6 13 6 10K R5 GND GND SCL SCK GPB1 I6 O6 SW4
in „mcp23017 pull up / Vorwiderstand erforderlich?“ · Mikrocontroller und Digitale Elektronik ·