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SP200_POWER_SUPPLY_SP-PW1-10.pdf
100uF, 16V L1 3 C4 C7 FB1 47n J1 GND VCC 7 RAMP 1 HF1 R1 1000uF, 63V R2 11 6K8, 1W 2K2 0u1 3 OUTA 14 R7 TBD C14 TBD C15 C13 2 HF1 7 R6 EAOUT OUTB 3n3, 1.6kV 10n, 1.6kV 3 HF-RETURN TP2 22R 47n 4 HF-GND 4 2K 1 INV PGND 12 GND R8 OnHeatsink N R3 R4 2 NI D2 1K GND CON4 S 680R 13K 10 10V GND 8 GND GND R12 GND 9 SS 16 150K C R5 ILIM VREF VCC C R21 3K GND 1K UC3823N C8 Mountedontopofcase C6 0u1 T1 POWERSET TBD E1 SW1 Q1VoltageLimiterControlLoop POWER GND T2 E2 C3 R9 910R 0u1 TP3 D1 TBD +12V U2:1 PE R19 R14 R15 R11
in „METCAL MX-500P-11 Technische Dokumentation“ · Mechanik, Gehäuse, Werkzeug ·
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SP200_POWER_SUPPLY_SP-PW1-10.pdf
100uF, 16V L1 3 C4 C7 FB1 47n J1 GND VCC 7 RAMP 1 HF1 R1 1000uF, 63V R2 11 6K8, 1W 2K2 0u1 3 OUTA 14 R7 TBD C14 TBD C15 C13 2 HF1 7 R6 EAOUT OUTB 3n3, 1.6kV 10n, 1.6kV 3 HF-RETURN TP2 22R 47n 4 HF-GND 4 2K 1 INV PGND 12 GND R8 OnHeatsink N R3 R4 2 NI D2 1K GND CON4 S 680R 13K 10 10V GND 8 GND GND R12 GND 9 SS 16 150K C R5 ILIM VREF VCC C R21 3K GND 1K UC3823N C8 Mountedontopofcase C6 0u1 T1 POWERSET TBD E1 SW1 Q1VoltageLimiterControlLoop POWER GND T2 E2 C3 R9 910R 0u1 TP3 D1 TBD +12V U2:1 PE R19 R14 R15 R11
in „METCAL MX-500P-11 Technische Dokumentation“ · Mechanik, Gehäuse, Werkzeug ·
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SP200_POWER_SUPPLY_SP-PW1-10.pdf
100uF, 16V L1 3 C4 C7 FB1 47n J1 GND VCC 7 RAMP 1 HF1 R1 1000uF, 63V R2 11 6K8, 1W 2K2 0u1 3 OUTA 14 R7 TBD C14 TBD C15 C13 2 HF1 7 R6 EAOUT OUTB 3n3, 1.6kV 10n, 1.6kV 3 HF-RETURN TP2 22R 47n 4 HF-GND 4 2K 1 INV PGND 12 GND R8 OnHeatsink N R3 R4 2 NI D2 1K GND CON4 S 680R 13K 10 10V GND 8 GND GND R12 GND 9 SS 16 150K C R5 ILIM VREF VCC C R21 3K GND 1K UC3823N C8 Mountedontopofcase C6 0u1 T1 POWERSET TBD E1 SW1 Q1VoltageLimiterControlLoop POWER GND T2 E2 C3 R9 910R 0u1 TP3 D1 TBD +12V U2:1 PE R19 R14 R15 R11
in „METCAL SP200 Loetstation Technische Dokumentation“ · Mechanik, Gehäuse, Werkzeug ·
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SP200_POWER_SUPPLY_SP-PW1-10_REV2.pdf
0u1 100uF, 16V J2 GND C4 VCC C7 7 11 FB1 47n R1 1000uF, 63V R2 RAMP OUTA 1 HF1 6K8, 1W 1n0 R7 Bead C14 28.5uH, 46T C15 C13 2 2K2 3 EAOUT OUTB 14 3n3, 1.6kV 10n, 1.6kV 3 HF1 TP2 7 R6 22R 47n 4 4 2K 1 12 R8 R3 R4 2 INV PGND GND D2 1K OnHeatsink 5 HF-RETURN N 680R 13K NI 10 10V GND 6 HF-GND S GND GND 8 SS
in „METCAL SP200 Loetstation Technische Dokumentation“ · Mechanik, Gehäuse, Werkzeug ·
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SP200_POWER_SUPPLY_SP-PW1-10_REV3.pdf
100uF, 16V J2 GND C4 VCC C7 7 11 FB1 47n R1 1000uF, 63V R2 RAMP IlimREF 1 HF1 6K8, 1W 1n0 R7 Bead C14 28.5uH, 46T C15 C13 2 2K2 3 EAOUT OUTB 14 3n3, 1.6kV 10n, 1.6kV 3 HF1 TP2 7 R6 22R 47n 4 4 2K 1 12 R8 R3 R4 2 INV PGND GND D2 1K OnHeatsink 5 HF-RETURN N 680R 13K NI 10 10V GND 6 HF-GND S GND GND 8 SS
in „METCAL SP200 Loetstation Technische Dokumentation“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
mmc.asm
equ MMC_Chip_Select =2 ;//Port Pin an dem Chip Select der MMC/SD-Karte angeschlossen ist ;.equ SPI_SS =0 ;//Prototypes ;<work> char Read_Byte_MMC(void); ;void Write_Byte_MMC(<work> char); ;<work> char Init_MMC(void); ;<work> char Read_Block_MMC (<Y, work> unsigned long, <Z: SRAM @Buffer> char *Buffer
in „Benutzen einer MMC Card“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GSM_GPS_Shield.cpp
gps_data_buffer[12]; gps_data_buffer[12] = gps_data_buffer[13]; gps_data_buffer[13] = gps_data_buffer[14]; gps_data_buffer[14] = gps_data_buffer[15]; gps_data_buffer[15] = gps_data_buffer[16]; gps_data_buffer[16] = gps_data_buffer[17]; gps_data_buffer[17] = gps_data_buffer[18]; gps_data_buffer[18] = command_result
in „Arduino + GSM-GPRS-GPS-Shield“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mainSTK500.asm
Nutzdaten) ; in den isr Routinen für Senden/ empfangen werden bei Start und Ende Ports gesetzt ; ; Takt 14.7456MHz .LIST ; Listing ausschalten .INCLUDE "m32def.inc" ; Deklaration für mega32 .LIST ; Listing einschalten ; Softwaretimer .EQU TIM_TMP = 0b_0001_0000 ; tmp-Timer ; USART Baudrate .EQU USART_BAUDRATE
in „Interruptprobleme mit RFM12 868 MHz“ · Mikrocontroller und Digitale Elektronik ·
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an-978.pdf
11SD NC4 φ2 11SD NC 4 φ3 +15V 0V +15V 0V +15V 12LIN VCC3 12 LIN VCC3 12LIN VCC3 13V COM 2 V 2 V 2 SS 13 SSCOM 13 SSCOM 14NC LO 1 14 NC LO1 14 NC LO1 Figure 29: Three-Phase Inverter Using Three IRS2110 Devices to Drive Six IGBTs In the case of the three-phase drivers, like the IR213x, the guidelines
in „Treiber-IC Peripherie berechnen“ · Mikrocontroller und Digitale Elektronik ·
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kme3.pdf
Tabelle 3 Daten für einstufige Schaltkreise ES I ES II ES lli Kollektorstrom (mA) 0,79/23,2 0,37/1 1,5 0,14/6,3 Widerstand l(k -mW) 18-1 1 39-5 100-2 R Widerstand R2 (k -mW) 8,2-18 18-1 1 50-3 Widerstand R3 (k -mW) 5,6-35 12-16 20-4 Widerstand R4 (k -mW) 0,82-120 1,8-70 4-90 Widerstand R5 (k -mW) 0,56-160
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4511_phillips.pdf
. TYP. MIN. MAX. Output voltage 5 0 4,10 4,10 4,40 4,10 V HIGH 10 0 VOH 9,10 9,10 9,40 9,10 V 15 0 14,10 14,10 14,40 14,10 V Output voltage 5 5 4,20 V HIGH 10 5 V 9,20 V OH 15 5 14,20 V Output voltage 5 10 3,60 3,60 4,05 3,30 V HIGH 10 10 VOH 8,75 8,75 9,10 8,45 V 15 10 13,75 13,75 14,10 13,45 V Output
in „Sieben-Segmentanzeige: Problem mit "6"“ · Mikrocontroller und Digitale Elektronik ·
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SAA3010_PHI.pdf
21-27 X0-X6 (IPU) sense inputs from key matrix DR3 13 16 DR1 28 VDD (I) voltage supply V SS 14 15 DR2 Note MGE346 1. (I) = input (IPU) = input with p-channel pull-up transistor (ODN) = output with open drain n-channel transistor (OP3) = output 3-state Fig.2 Pinning diagram. June 1989 4 Philips
in „IR-Fernbedienung“ · Mikrocontroller und Digitale Elektronik ·
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P87LPC767BN.pdf
P1.7 2 19 P0.2/CIN2A P1.6 3 18 P0.3/CIN1B/AD0 4 17 RST/P1.5 P0.4/CIN1A/AD1 V 5 16 P0.5/CMPREF/AD2 SS X1/P2.1 6 15 V DD X2/CLKOUT/P2.0 7 14 P0.6/CMP1/AD3 INT1/P1.4 8 13 P0.7/T1 SDA/INT0/P1.3 9 12 P1.0/TxD SCL/T0/P1.2 10 11 P1.1/RxD SU01349 LOGIC SYMBOL VDD VSS CMP2 TxD CIN2B RxD CIN2A T0 SCL 1 AD0 CIN1B
in „uC P87LPC767 ,ports als schmitt-trigger eingänge“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
PLLVCC 20 P43 GND6 30 D4 LVDSVCC 12 P1 1 CTRL LED 6 VLED+ P44 GND7 G0 P13 31 D5 100 GND P45 GND8 G1 P14 33 D6 A0P 9LVDS_Y0+ P48 GND9 G2 P15 GND A0N 8LVDS_Y0- R15 2 P49 GND10 G3 P16 34 D7 IC5 100 LT3593 = P50 GND11 G4 P17 35 D8 SN75LVDS8A1P 1LVDS_Y1+ G5 P18 37 D9 A1N 1LVDS_Y1- R14 G6 P19 39 D10 100 VLED
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_Audio-Codec.pdf
1 2 3 4 5 6 7 8 CD4052BM U4 U9 U14 BLM15PX471SN1D BLM15PX471SN1D FSUSB42MUX R25 1 Y CHANNELS IN/OUT 0 VDD 16 +5V 3V3 1 VCC OE# 10 1.5k▯' SLV0 2 Y CHANNELS IN/OUT 2 X CHANNELS IN/OUT 215 VoutR+ USB-MUX 2 Sel HSD2+ 9 1USB_P R1 U5 1R+/2V5
in „Selbstgebauter Audio-Codec: Lautsprecher rauscht“ · Analoge Elektronik und Schaltungstechnik ·
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Platte_neu_2.pdf
9 3 P +5V 1 1 + 1 L1 2 F1 D1 1 2 GND +24 V FUSEBLANK_5X20MM4004 ESC26 5VDC_TEN4-2411 C8 + C1 22*2 14 C10 +C9 1 +IN(VCC) +OUT 100n 47u 2*2 ON/OFF 16 100n 47u - 1 -IN(GND) -OUT 2 TEN_8-1211 MC33064 D 4x Pull down 0V GND N 5 D G GND +15V + GND GND N 4 0 6 0 5 k G R 1 R 1 R 1 RSET RSET C14 +C13 5 k 7 k
in „Schaltung H-Brücke mit µC und Zubehör“ · Mikrocontroller und Digitale Elektronik ·
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HT604L.pdf
D13 D14 D15 D16 D17 HT648L A0~A3 A4 A5 A6~A9 D10 D11 D12 D13 D14 D15 D16 D17 HT651 A0~A3 A4 A5 A6~A9 A10 A11 A12 A13 A14 A15 A16 A17 HT654 A0~A3 A4 A5 A6~A9 A10 A11 A12 A13 D14 D15 D16 D17 HT656 A0~A3 A4 A5 A6~A9 A10 A11 D12 D13 D14 D15 D16 D17 HT658 A0~A3 A4 A5 A6~A9 D10 D11 D12 D13 D14 D15 D16 D17 HT682L A0~A3 — — A6~A9 — A11 A12 — D14 D15 — — HT683L A0~A3 — — A6~A9 — A11 D12 — D14 D15 — — HT684L A0~A3 — — A6~A9 — D11 D12 — D14
in „838MHz Sender/Empfänger Codierelektronik?“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan eines Schrittmotor-Treibers mit DRV8825PWP
K12 Vin D5 SS44 100uF C8 100uF C3 100nF C4 R1 1M C2 10nF CP1 CP2 VCP MODE2 MODE1 MODE0 STEP DIR FAULT Strom-PWM K8 PSS254/8G D1 D2 D3 D4 SMAJ28CA/TR13 K14 AOUT1 AOUT2 BOUT2 BOUT1 M1 DRV8825PWP GND_2 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 R8 AOUT1 AOUT2 BOUT2 BOUT1 R9 100m 100m ISENA ISENB DIR DECAY VMB AOUT1 AOUT2 BOUT2 BOUT1 100nF C5 330 R6 12 36K R4 100nF C7 R5 10K AVREF BVREF GND_1 GND_3 V3P3OUT 47nF
in „DRV8825: Schrittmotor im Mikroschrittbetrieb ungleichmäßig“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Schema.pdf
22 60 PF1 T1_PD6 31 R28 RJ45_5 Y1 GND 9 R13 GND RJ45_6 61 PF0 T2_PD7 32 R30 180 VCC3.3 R45 5.6K X2 C14 21 47 D4 330 6 12.000MHz J2 22pF 8 R14 10 2 RX_PE0 GND P X X CON6 20 47 SCK 11 PB0_SS RXD0_PE0 3 TX_PE1 VCC3.3 B 7 R15 LED MOSI 12 PB1_SCK TXD0_PE1 4 PE2 1 2 3 4 5 6 U 19 47 R7 R8 MISO 13 PB2_MOSI XCKO_PE2
in „Schema für Platine/Modul.wer kann sowas bauen?“ · Platinen ·
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Lueftungszentrale.pdf
ISENSE R12 R109 FB1 U12 5 8 2 HBus_TxEn 47uF 10uH/4A 4.7k VCC_In GND_2 470R 330R VCC_5V0_2 74AHC1G14 7 V+ 6 4 C14 1 U13 4 + 2 6 2 PWR GND FB 100pF + C9 1 X5 2 Data- Data- 8 1 5 3 1.239V C 100uF VCC RO - GND Data+ 3 4 GND_2 LM3489 D1 C15 2 5 6 R110 7 B RE 2 1 3 HCPL0601 100pF R11 7 8 120R 330R FB2 60V
in „Umfrage zu installierten Hausbussen“ · Haus & Smart Home ·
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Datei
dcmi_ov9655.h
#define OV9655_CLKRC 0x11 #define OV9655_COM7 0x12 #define OV9655_COM8 0x13 #define OV9655_COM9 0x14 #define OV9655_COM10 0x15 #define OV9655_REG16 0x16 #define OV9655_HSTART 0x17 #define OV9655_HSTOP 0x18 #define OV9655_VSTART 0x19 #define OV9655_VSTOP 0x1A #define OV9655_PSHFT 0x1B #define OV9655_
in „STM3220G-EVAL + Kamera OV2460“ · Mikrocontroller und Digitale Elektronik ·
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mega644.pdf
11-7. Overriding Signals for Alternate Functions in PB7:PB4 Signal PB7/SCK/ PB6/MISO/ PB5/MOSI/ PB4/SS/OC0B/ Name PCINT15 PCINT14 PCINT13 PCINT12 PUOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR PUOV PORTB7 PUD PORTB14 PUD PORTB13 PUD PORTB12 PUD DDOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR DDOV 0 0 0 0 PVOE SPE
in „AVR Controller braucht zu viel Strom“ · Mikrocontroller und Digitale Elektronik ·
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PIC18F46J11_39932D.pdf
PERIPHERAL PIN SELECT INPUT REGISTER 23 (BANKED EFDh) U-0 U-0 U-0 R/W-1 R/W-1 R/W-1 R/W-1 R/W-1 — — — SS2R4 SS2R3 SS2R2 SS2R1 SS2R0 bit 7 bit 0 Legend: R/W = Readable, Writable if IOLOCK = 0 R = Readable bit W = Writable bit U = Unimplemented bit, read as ‘0’ -n = Value at POR ‘1’ = Bit is set ‘0’ = Bit
in „PIC18F46J11 und RTC. Quarz nötig? Anfängerfrage Übersicht verloren ;-(“ · Mikrocontroller und Digitale Elektronik ·
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SC18IS600_601_5.pdf
terminal 1 . P . . 5 . n G n n I n index area 4 3 2 1 0 9 2 2 2 2 2 1 CS 1 18 WAKEUP/IO4 RESET 2 17 INT V SS 3 16 GPIO3 SC18IS600IBS MISO 4 15 VDD MOSI 5 14 SCLK SDA 6 13 GPIO2 0 1 2 7 8 9 1 1 1 . L . . 1 . n C n n I n S P 002aad707 G Transparent top view Fig 5. SC18IS600 pin configuration for HVQFN24 SC18IS600
in „SPI mit I2C vernbinden“ · Mikrocontroller und Digitale Elektronik ·
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Pinbelegung eines TQFP Mikrocontrollers
Pinout TQFP Top View PD2 (INT0/PCINT18) 32 PD1 (TXD/PCINT17) 31 PD0 (RXD/PCINT16) 30 PC6 (RESET/PCINT14) 29 PC5 (ADC5/SCL/PCINT13) 28 PC4 (ADC4/SDA/PCINT12) 27 PC3 (ADC3/PCINT11) 26 PC2 (ADC2/PCINT10) 25 PC1 (ADC1/PCINT9) 24 PC0 (ADC0/PCINT8) 23 ADC7 22 GND 21 AREF 20 ADC6 19 AVCC 18 PB5 (SCK/PCINT5) 17 PCINT4/MISO/PB4 16 PCINT3/OC2A/MOSI/PB3 15 PCINT2/SS/OC1B/PB2 14 PCINT1/OC1A/PB1 13 PCINT0/CLKO/ICP1/PB0 12 PCINT23/AIN1/PD7 11 PCINT22/OC0A/AIN0/PD6 10 PCINT21/OC0B/T1/PD5 9 PB7 (PCINT7/XTAL2/TOSC1) 8 PB6 (PCINT6/XTAL1/TOSC1) 7 VCC 6 GND 5 VCC 4 GND 3
in „Fusebits lassen sich nicht setzen (neuer ATMEGA328P)“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
Layout.pdf
1IN_MIN_MINH_ENRSTTRACSWCLSWDIOV33 1 _ C J 1 2 _ _ C11 C10 B B R19 H H BAT C9 CH3 R10 R11 R9 C15 CQ2 C5 U2 C_CAN 1 I C * T J _ Z N C14 R13 R12 R14 CH1 T T C A CQ1 A H U C 4 Q 7 D CD_ECD_ENU CD_VCD_VCC C D C1 C2 R3 C7 R5 R4 R7 R6 R8 C6 R16 C8 C _ 7 1 J R Q GND V33 NU V5 V33 C3 C4 R2 R1 R18 1 R CAN_OUT SENSORIK V33OUT_OUT_OUT_OUT_PB1 VREG_5 VREG_33 NU NU NU GND SS_VN 05.03.2019 17:50 f=2.00 C:\Users\Johannes\Documents\ADP_Git\adp_tauchspulenelektronik\Platinenentwurf\testboard\ProtoBoardH
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bom.pdf
1µF 16V 1206 1 47k 1206 1 MC34063 1 100nF 16V 1206 5 10k 1206 1 74HC4050 1 1nF 50V 1206 3 1k 1206 1 SS16 SMD-Schottky 1 15pF 1206 1 180R 1206 3 1N4148 SMD 1 17pF 1206 1 2R2 1206 1 2SA733 eq. BC857 1 33pF 1206 1 5k6 1206 1 LM4040 2.5 eq. TL431 1 470pF 1206 1 150k 1206 1 330µH SMD 1812 3 10µf 16V SMD 1
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Datei
IS66WVH16M8ALL_Rev0_3.v
csb signal added * - Burst Counter Error : Modified Burst Decode task * Revision : Rev0.2 (2017.3.14) * - Row address r[ROW_BITS-1:0] error increment when if Column address c[8:0]reaches and 1FF roll back 000. * : Modified Row Decode task added * Revision : Rev0.3 (2017.3.21) * - Modified ck2/ck2b change
in „HyperBus Ideen“ · FPGA, VHDL & Co. ·
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datasheet.pdf
consists of two 8-bit ports and one 6-bit port (both general purpose). The MSM81C55-5 also contains a 14-bit programmable counter/timer which may be used for sequence-wave generation or terminal count-pulsing. FEATURES • High speed and low power achieved with silicon gate CMOS technology • 256 words x 8bits
in „OKI M81C55 benutzen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PL560-XX.pdf
15.76 550 5.78 110 42.67 220 15.71 110 49.38 275 22.02 280 15.11 560 5.41 112 40.92 224 14.96 112 47.40 280 21.02 285 14.49 570 5.06 114 39.26 228 14.25 114 45.53 285 20.07 290 13.90 580 4.72 116 37.69 232 13.58 116 43.75 290 19.16 295 13.34 590 4.41 118 36.19 236 12.94 118 42.06 295 18.30
in „Suche Analog Frequency Multiplier IC“ · Mikrocontroller und Digitale Elektronik ·
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AT90CAN128.pdf
OC3B / INT4) PE4 6 43 PG2 (ALE) (OC3C / INT5) PE5 7 42 PC7 (A15 / CLKO) (T3 / INT6) PE6 8 41 PC6 (A14) (64-lead TQFP top view) (ICP3 / INT7) PE7 9 40 PC5 (A13) (SS) PB0 10 39 PC4 (A12) (SCK) PB1 11 38 PC3 (A11) (MOSI) PB2 12 37 PC2 (A10) (MISO) PB3 13 36 PC1 (A9) (OC2A) PB4 14 35 PC0 (A8) (OC1A) PB5
in „uC + 3 Schieberegister + 7-Segmentanzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega164_324_644_1284pa.pdf
into SPI MSTR OUTPUT and SPI SLAVE INPUT. Table 14-7. Overriding Signals for Alternate Functions in PB7:PB4 Signal PB7/SCK/ PB6/MISO/ PB5/MOSI/ PB4/SS/OC0B/ Name PCINT15 PCINT14 PCINT13 PCINT12 PUOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR PUOV PORTB7 PUD
in „Hilfe bei AD-Wandler!“ · Mikrocontroller und Digitale Elektronik ·
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doc7593.pdf
D+ 5 44 PA7 (AD7) UGnd 6 43 PE2 (ALE/HWB) 7 UCap 42 PC7 (A15/IC.3/CLKO) VBus 8 ATmega32U6 41 PC6 (A14/OC.3A) AT90USB90128/64 (IUID) PE3 9 40 PC5 (A13/OC.3B) TQFP64 (SS/PCINT0) PB0 10 39 PC4 (A12/OC.3C) (PCINT1/SCLK) PB1 11 38 PC3 (A11/T.3) (PDI/PCINT2/MOSI) PB2 12 37 PC2 (A10) (PDO/PCINT3/MISO) PB3 13
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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Layout_v2.7.pdf
R 1 VCC (OC1B)PB6 2 3 k 3,3k LED1 1 n 6 21 VCC (OC1A)PB5 15 3 R22 R 5 1 6 0 C F 3 22 GND (OC0)PB4 14 4 GND R3 5 GND 1 0 C 53 GND (MISO)PB3 13 5 P X1 100k 1 (MOSI)PB2 12 6 J 10k 5V 1 7 k 2 4 GND 18 PG3(TOSC2) (SCK)PB1 11 N 1 2 2 R21 R 5 5V (SS)PB0 10 G R0052 CNY17 GND 19 PG4(TOSC1) 100k (A15)PC7 42 6 5 43 41 3 0 GND 34 PG2(ALE) (A14)PC6 40 300 R 5 k 2 3 33 PG1(RD) (A13)PC5 39 LAP4-TOP OK6 1 R 2 1 PG0(WR) (A12)PC4 38 R48 1 1 1 9 7 5 3 1 R0050 3 GND 5V 3,3kLED10 1 6 1 5V PEN (A11)PC3 37 V V 2 2 1 5 EXT1 BAT54S (A10)PC2 36 5 5 6 R38
in „Schematic + Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DA_Mean-Well-GST90A24-P1M-Tischnetzteil-Festspannung-24-V-DC-3.75A-90W.pdf
■ Applications Universal AC input / Full range Consumer electronic devices 3 pole AC inlet IEC320-C14 Telecommunication devices Built-in active PFC function Office facilities No load power consumption<0.15W Industrial equipments Energy efficiency Level VI Comply with EISA 2007/DoE,NRCan, AU/NZ MEPS,EU
in „Welcher IC ist das? SOT23-6 Marking: 368L 4? 945“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PG320240LRF-DE9HZ3.pdf
Standard Value Unit Outline Dimension 148.02 (L) * 120.24 (w) * 21.0 (H)(Max) mm Viewing Area 120.14 (L) * 92.14 (w) mm Active Area 115.18 (L) * 86.38 (w) mm Dot Size 0.34 (L) * 0.34 (w) mm Dot Pitch 0.36 (L) * 0.36 (w) mm Note : For detailed information please refer to LCM drawing 1.3 Absolute Maximum
in „LCD von Actron“ · Mikrocontroller und Digitale Elektronik ·
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Datei
UHR_LED_TWI.asm
=65536-62500 ;(2 hoch 16 minus....) .def FEHLER= R0 .def TEMPERATUR_L=R1 .def TEMPERATUR_H=R2 .def ss =R3 ; SEKUNDE .def mm =R4 ; MINUTE .def hh =R5 ; STUNDE .def TAG =R6 ; TAG .def MONAT =R7 ; MONAT .def JAHR =R8 ; JAHR .def HELLIGKEIT =R9 .def ZIFFER_A = R10 ; 1 er Stelle .def ZIFFER_B = R11 ; 10 er
in „i2c problem“ · Mikrocontroller und Digitale Elektronik ·
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Einfuehrung_in_Matlab.pdf
umrechnen. 3.2 • Umformungen zwischen Zeit- und s-Bereich Mit Hilfe des Befehls [ zaehler, nenner ] = ss2tf ( A, b, c, d ); läßt sich ein Zustandsmodell (ss : state-space-model) x(t) = A x(t+ bu ( t y(t) = c' x(t )+ dt ) in eine Übertragungsfunktion in Polynomdarstellung (tf : transfer-f unction) umwan-
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Tabelle mit Änderungsvorschlägen für Röhrenmodelle auf Radiomuseum
Zenit (Marks), M Schiebespulen-Detektor 8 30.Mar.2024, 11:45 Zeigen J Sanyo Electric C, Pulsar RP-8700SS 10 07.Apr.2024, 20:26 Zeigen J Sharp, Osaka Digital DJ DRW-V2 8 14.Apr.2024, 22:00 Zeigen J CBC Charles Brow, Browni High Sensitivity 1 15.Apr.2024, 14:55 Zeigen J Siemens-Austria, UKW-Unters-Super 547W
in „Bauteilbestimmung (Steinzeit, Widerstand)“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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Schaltplan eines Schaltreglers
C4 100uF 35V F 12V C7 100uF 35V F 12V C10 10uF 0805 2mR 12V L1 10uH 7070 3,5A 33mR U2 LT8365 16 SW1 14 SW2 3 VIN 17 GND 1 ENABLE_UA 12 EN/UVLO SYNC/MODE 10 RT 11 SS 5 VC 1 C18 1.0uF 25V 0603 X5R 2 VR1 2.5k 3314G 20% 7 BIAS 9 FBX 180V UA D1 ES2F C1 SMB ES2F D2 R6 20R 0503 1% C9 470nF 250V 1210 X7R R4 470k 0805 1% R7 510k 0805 1% C14 470nF 250V 1210 X7R Adjustable 168-210V UA TP1 RD TP2 BK R10 82v 0603 1% R9 6.9k 0603 1% R11 100k 0603 1% C17 220nF 50V 0603 X7R C18 100nF 50V 0603 X7R
in „klassischer Step Up in Verbindung mit Spannungsvervielfacher dahinter - Erfahrungswerte?“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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ss.pdf
is listed in Table 1. D 1 16 VDD D 1 18 VDD C 2 15 E C 2 17 E Name Function of the pin B 3 16 F B 3 14 F V DDV ss Power supply SL1 4 15 CML SL1 4 UTI 13 CML UTI A, B, C, D, E, F Sensor connections SL2 5 Top View 12 OUT SL2 5 Top View 14 OUT SEL1..SEL4 Mode selection (see Table 2) (Not to Scale) (Not to
in „Temperaturmessung mit PT100 und UTI03“ · Mikrocontroller und Digitale Elektronik ·
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DSUTI.pdf
is listed in Table 1. D 1 16 VDD D 1 18 VDD C 2 15 E C 2 17 E Name Function of the pin B 3 16 F B 3 14 F V DDV ss Power supply SL1 4 15 CML SL1 4 UTI 13 CML UTI A, B, C, D, E, F Sensor connections SL2 5 Top View 12 OUT SL2 5 Top View 14 OUT SEL1..SEL4 Mode selection (see Table 2) (Not to Scale) (Not to
in „PT1000 mit UTI messen Berechnung der Auflösung bzw. max. Tempbereich“ · Mikrocontroller und Digitale Elektronik ·
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SchemaV4.pdf
VCC 4 U2 DCDC 3.3V +3.3V 5 TRST GND 6 F 6.4uH 1 +Vin C C +Vout 11 7 TDI GND 8 0 24 +Vin N N +Vout 14 Connector PCB - Test Point LED1 9 TMS GND 10 4 TCLK GND 12 10 11 RTCK GND 12 C 13 -Vin C C -Vout 15 13 TDO GND 14 * -Vin N N -Vout 15 RESET GND 16 1 17 N/C GND 18 2 2 Q1 W 19 N/C GND 20 GND BSS123 JTAG +12V U3 SR10SS1V8 J6 +1.8V L2 1 3 GND K K K K F F IN OUT 1 1 1 1 0 6.4uH 0 GND Connector PCB - Test Point 4 4 2 6 7 8 9 4 5 R R R R C * C * J7 GND Connector PCB - Test Point GND Speisung uP Input (Taster, Entprellung
in „Probleme mit LPC2103 (NXP)“ · Mikrocontroller und Digitale Elektronik ·
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BLDC-_Controller_rev.1.pdf
AIN0) 10 N$40 PD7(AIN1) 11 Art.Nr. 667206 +5V N$31 GND D 12 GND G n 3 PB0(ICP) 13 N$44 0 1 PB1(OC1A) 14 1 C PB2(SS/OC1B) 15 PB3(MOSI/OC2) 16 PB4(MISO) Phase V V PB5(SCK) 17 4 + IC4 +C17 X1A GND 1 Art.Nr. 810586 3 Q5 Q6 5 IR2181 IRFB3206 IRFB3206 GND 7 N$52 4 IC5B N$13 R5 9 6 1 8 5 HIN VB 15 V X1B 2 7 C3
in „BLDC- Controller 44VDC“ · Mikrocontroller und Digitale Elektronik ·
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ATmegaXX4.pdf
13-7. Overriding Signals for Alternate Functions in PB7:PB4 Signal PB7/SCK/ PB6/MISO/ PB5/MOSI/ PB4/SS/OC0B/ Name PCINT15 PCINT14 PCINT13 PCINT12 PUOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR PUOV PORTB7 PUD PORTB14 PUD PORTB13 PUD PORTB12 PUD DDOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR DDOV 0 0 0 0 PVOE SPE
in „Atmega644PA Timer3“ · Mikrocontroller und Digitale Elektronik ·
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ht16K33v110_Datenblatt.pdf
...................V -0.3V to V +6.5V SS SS Input Voltage ................................................................SS..........DD.....................V -0.3V to V +0.3V Storage Temperature ............................................
in „HT16K33 - habe ein Problem damit“ · Mikrocontroller und Digitale Elektronik ·
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RS485_NODE.pdf
/PCINT0) V V (AIN1/PCINT23)PD7 11 PD7 +5V PB1 13 PB1(OC1A/PCINT1) (AIN0OC0A/PCINT22)PD6 10 PD6 PB2 14 IC4 PB2(SS/OSC1B/PCINT2) 9 PD5 3 R5 MOSI 15 (T1/OC0B/PCINT21)PD5 2 PD4 VCC 2 RST MISO 16 PB3(MOSI/OC2A/PCINT3) (XCK/T0/PCINT20)PD4 C C4 1 RESET PB2 SCK 17 PB4(MISO/PCINT4) 1 PD3 C GND 1k PB5(SCK/PCINT5
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Winkelmesser.pdf
7-SEG_SA10-21 AVCC 31 AGND (SCK)PB7 8 LED6 (MISO)PB6 7 7 a A 3 10 VCC (MOSI)PB5 6 6 b A 8 11 GND (SS)PB4 5 4 c (AIN1/OC0)PB3 4 2 d 3 1 e (AIN0/INT2)PB2 2 9 f (T1)PB1 1 10 5 (T0/XCK)PB0 IC2 g DP 29 1 16 7-SEG_SA10-21 (TOSC2)PC7 I1 O1 (TOSC1)PC6 28 2 I2 O2 15 LED7 (TDI)PC5 27 3 I3 O3 14 7 a A 3 (TDO)PC4
in „12 Stk. 7Seg.-Anzeigen Multiplexen“ · Mikrocontroller und Digitale Elektronik ·
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Winkelmesser2.sch.pdf
-SEG_SA10-21 (OC1A)PD5 18 (OC1B)PD4 LED7 (INT1)PD3 17 7 a A 3 (INT0)PD2 16 6 b A 8 15 4 c (TXD)PD1 14 2 (RXD)PD0 d 1 e MEGA16-P 9 f 10 g DP 5 7-SEG_SA10-21 LED8 7 a A 3 6 b 8 4 A c 2 d 1 e 9 f 10 5 g DP 7-SEG_SA10-21 LED9 7 a A 3 6 b A 8 4 c 2 d 1 e 9 f 10 g 5 DP 7-SEG_SA10-21 LED10 7 a A 3 IC5 6 8 13
in „12 Stk. 7Seg.-Anzeigen Multiplexen“ · Mikrocontroller und Digitale Elektronik ·
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Winkelmesser3.sch.pdf
(TXD)PD1 15 4 c (RXD)PD0 14 2 d 1 e MEGA16-P 9 10 f 5 g DP 7-SEG_SA10-21 7 LED8 3 a A 6 b A 8 4 c 2 d 1 e 9 f 10 g DP 5 7-SEG_SA10-21 LED9 7 3 6 a A 8 b A 4 c 2 d 1 e 9 f 10 g DP 5 7-SEG_SA10-21 7 LED10 3 a A IC5 6 b A 8 13 2 4
in „12 Stk. 7Seg.-Anzeigen Multiplexen“ · Mikrocontroller und Digitale Elektronik ·