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Sd2Card.h
SOFTWARE_SPI // hardware pin defs /** * SD Chip Select pin * * Warning if this pin is redefined the hardware SS will pin will be enabled * as an output by init(). An avr processor will not function as an SPI * master unless SS is set to output mode. */ /** The default chip select pin for the SD card is SS. */ uint8_t const SD_CHIP_SELECT_PIN = SS_PIN; // The following three pins must not be redefined for hardware SPI. /** SPI Master Out Slave In pin */ uint8_t const SPI_MOSI_PIN = MOSI_PIN; /** SPI Master In Slave Out pin */ uint8_t const SPI_MISO_PIN
in „SD Karte an AVR 328 Arduino UNO welche Pins ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SST89x516.pdf
11 30 ALE/PROG# (INT0#) P3.2 12 29 PSEN# (INT1#) P3.3 13 28 P2.7 (A15) (T0) P3.4 14 27 P2.6 (A14) (T1) P3.5 15 26 P2.5 (A13) (WR#) P3.6 16 25 P2.4 (A12) (RD#) P3.7 17 24 P2.3 (A11) XTAL2 18 23 P2.2 (A10) 22 P2.1 (A9) XTAL1 19 VSS 20 21 P2.0 (A8) 1273 40-pdip PI P2.0 Figure 3: Pin Assignments
in „Einstieg in 8051 - Atmels AT89S52 oder?“ · Mikrocontroller und Digitale Elektronik ·
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WSQ_3000_Testplatine.pdf
T1) 12 8 I7 O7 9 PD6(AIN0) 13 CD4511B GND CD+ PD7(AIN1) V<--U Mess 74595N GND ULN2003AN 14 GND PB0(ICP) 15 PB1(OC1A) 16 V1 PB2(SS/OC1B) 17 PB3(MOSI/OC2) 18 R 13 PB4(MISO) 19 E EN3 V-->U Mess PB5(SCK) E 12 IC5 G C2 L U SRG8 M 10 1 2 1 3 4 6 H P R V V V E E E 4 11 V + + + L L D T C1 + 2 5 7 6 1 14 15 1D 2D 3 A A 1 d C C 0 2 V 1 + S - 3 D H a b c d e f g 4 5 1 IC4 16 IC6 1 9 8 5 4 2 3 2 15 1 16 6 3 14 2 I1 O1 15 4 13 3 I2 O2 14 7 5 12 4 I3 O3 13 2D 3 6 11 5 I4 O4 12 9 7 10 6 I5 O5 11 8 9 7 I6 O6
in „Schieberegister Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Elektronische Leiterplatte mit Epson Chips
EPSON MATN C612 2101739-04 94V-0 IR0522 EPSON DAIWA ED74R4BA 221SS 221SS H2107A2 CN1 CN2 CN3 CN4 CN5 CN6 CN7 CN8 CN9 CN10 CN11 CN12 CN13 CN14 CN15 CN16 CN17 CN18 CN19
in „(V) Konvolut SNT u.a.“ · Markt · · Platinenfotos
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Nahaufnahme einer grünen Leiterplatte mit elektronischen Bauteilen
220UF/35 104 SS56 SS56 R006 104 100R 06 100 1.25-AL15 220uF 10K 80N0B 1K 4K14 A19T10K2.2K T4 2.2K 2.2K MMBT5551 100R BAV70 10K 104 228 100K 1042.2K 1K
in „Fehler zum nachbauen :-)“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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Datei
compound.txt
supports USB 2.0) Usb300 : 0 (no, port not supports USB 3.0) ReservedMBZ : 0x00 Flags : 0x00 DevIsOpAtSsOrHigher : 0 (Device is not operating at SuperSpeed or higher) DevIsSsCapOrHigher : 0 (Device is not SuperSpeed capable or higher) DevIsOpAtSsPlusOrHigher : 0 (Device is not operating at SuperSpeedPlus or higher) DevIsSsPlusCapOrHigher : 0 (Device is not SuperSpeedPlus capable or higher) ReservedMBZ : 0x00 Data (HexDump) : 03 00 00 00 10 00 00 00 03 00 00 00 00 00 00 00 ................ ---------------------- Device
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tidu533.pdf
INTERFACE PROTOCOL OWNER INTERFACE (PHY) SUPPLY VOLTAGE STANDARD EnDat 2.2 Heidenhain RS-485 3.6 to 14 V (1) (2) BiSS iC-Haus GmbH RS-422 5 V, 10 to 30 V Hiperface DSL Sick RS-485 7 to 12 V SSI Open (3) RS-422 5 V, 10 to 30 V) RS-485 and Sine/Cosine EnDat 2.1 Heidenhain 3.6 to 5.25 V (analog, 1 Vpp) RS
in „Hilfe bei der Berechnung (Voltage Divider)“ · Analoge Elektronik und Schaltungstechnik ·
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xc164cm_ds_v1.4_2007_03.pdf
RxD/E* P1H.4/CC24IO/EX4IN 5 44 P9.1/CC17IO/CAN2_TxD P1H.5C C25O EX 5N 6 43 P9.0/CC16IO/CAN2_RxD/E* V SS 7 42 P3.15/CLKOUT/FOUT V DDP 8 41 V SS P5.0/AN0 9 XC164CM 40 VDDP P5.1/AN1 10 39 P3.13/SCLK0/E* P5.2/AN2 11 38 P3.11/RxD0/E* P5.3/AN3 12 37 P3.10/TxD0/E* P5.4/AN4 13 36 P3.9/MTSR0 P5.5/AN5 14 35 P3.8
in „xc164cm16ff und cc770“ · Mikrocontroller und Digitale Elektronik ·
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JVC_rv-nb20b_Schema.pdf
0 . 1K 100P 8 8 SHELL GND 1 0 1 0 1 0 K1005 1 0 1 0 IDATAO TX 7 1 C 1 C C C C 9 AG 9 0 P SHELL GND 14 1 0 K1006 10 AUX_R 10 C 1 11 AG 11 K1007 D1006 12 AUX_L 12 Q1101 D1005 1SS355W -X 2SC3928A/RS/-X 1SS355W -X R 13 ANT_GND 13 X - - 14 AUX 14 8 1 5 0 5 0 . 0 5 0 5 1 1 0 D S DS3 0 0 0 0 0 0 C S S 1 5 1
in „JVC Boomblaster - 12V/230V unterschiedliche Bassstärke“ · Analoge Elektronik und Schaltungstechnik ·
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LeafLabs Maple Mini r3 Mikrocontroller-Platine
LeafLabs Maple Mini r3 av+ av-vbat 14 13 12 reset pwm ain tx2 rx2 ss sck miso mosi boot1 tx3 rx3 vin max 5v sda i2c d1=33 but=32 reset usb dp dm pwm pwm pwm mosi miso sck ss 23 24 25 26 27 28 29 30 31 22 21 20 19 18 17 16 15 vcc gnd but
in „[S] Maple Mini STM32 Bords“ · Markt · · Platinenfotos
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PCF8583.pdf
HANDLING 12 DC CHARACTERISTICS 2 GENERAL DESCRIPTION 3 QUICK REFERENCE DATA 13 AC CHARACTERISTICS 14 APPLICATION INFORMATION 4 ORDERING INFORMATION 14.1 Quartz frequency adjustment 5 BLOCK DIAGRAM 14.1.1 Method 1: fixed osci capacitor 6 PINNING 14.1.2 Method 2: OSCI Trimmer 7 FUNCTIONAL DESCRIPTION
in „RTC PCF8583 einen Interrupt ausloesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8583_5_rtc_real_time_clock.pdf
HANDLING 12 DC CHARACTERISTICS 2 GENERAL DESCRIPTION 3 QUICK REFERENCE DATA 13 AC CHARACTERISTICS 14 APPLICATION INFORMATION 4 ORDERING INFORMATION 14.1 Quartz frequency adjustment 5 BLOCK DIAGRAM 14.1.1 Method 1: fixed osci capacitor 6 PINNING 14.1.2 Method 2: OSCI Trimmer 7 FUNCTIONAL DESCRIPTION
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PCF8583P.pdf
HANDLING 12 DC CHARACTERISTICS 2 GENERAL DESCRIPTION 3 QUICK REFERENCE DATA 13 AC CHARACTERISTICS 14 APPLICATION INFORMATION 4 ORDERING INFORMATION 14.1 Quartz frequency adjustment 5 BLOCK DIAGRAM 14.1.1 Method 1: fixed osci capacitor 6 PINNING 14.1.2 Method 2: OSCI Trimmer 7 FUNCTIONAL DESCRIPTION
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PDF
PCF8583_5.pdf
HANDLING 12 DC CHARACTERISTICS 2 GENERAL DESCRIPTION 3 QUICK REFERENCE DATA 13 AC CHARACTERISTICS 14 APPLICATION INFORMATION 4 ORDERING INFORMATION 14.1 Quartz frequency adjustment 5 BLOCK DIAGRAM 14.1.1 Method 1: fixed osci capacitor 6 PINNING 14.1.2 Method 2: OSCI Trimmer 7 FUNCTIONAL DESCRIPTION
in „PCF8583: Welche Genauigkeit kann ìch erwarten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WIZ-EmbeddedWebServser_User_Manual_V1_0_2.pdf
WebServer 16x2 LCD...................................................................................14 Figure 9. WIZ-Embedded WebServer VR.................................................................................................14 Figure 10. WIZ-Embedded WebServer Temperature Sensor............
in „[V] Ethernet Webserver mit ATMEGA128 und 2x Ohne MCU“ · Markt ·
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CH340G_UNO_ArduinoBoard_3.pdf
29 17 SCK RES/PC6 SCK/PB5 16 MISO 6 D13 0U1 MISO/PB4 15 5 D12 MOSI/PB3 MOSI 4 D11 AREF AREF 20 AREF SS/PB2 14 SS 3 D10 X2 C4 13 IO9 S USB-JACK-MINI OC1/PB1 12 IO8 2 D9 U 0u1 ICP/PB0 1 D8 B +B 1 USBVCC 18 AVCC C DM 2 ZU3 VCC C8 ADC7 22 IOH N 3 1 16 19 J6 N DP 4 OUT GND 2 GND VCC 15 21 ADC6 28 AD5/SCL C COM C1 TXD R232 0u1 GND AGND ADC5/PC5 6 A5 E INP 3 RXD RTS 14 ADC4/PC4 27 AD4/SDA 5 A4 T 6 5 0u1 4 V3 DTR 13 LED1 ADC3/PC3 26 AD3 4 A3 I 5 12 25 AD2 I 6 VD+ DCD 11 R8 6 ADC2/PC2 24 AD1 3 A2 U VD- RI VCC GND VCC VCC ADC1/PC1 2 A1 R 7 XI DSR 10 1K 4 VCC ADC0/PC0
in „Arduino CH340G UNO mit ATMEGA328P-TQFP32 China Board Informationen“ · Mikrocontroller und Digitale Elektronik ·
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CH340G_UNO_ArduinoBoard_3.pdf
29 17 SCK RES/PC6 SCK/PB5 16 MISO 6 D13 0U1 MISO/PB4 15 5 D12 MOSI/PB3 MOSI 4 D11 AREF AREF 20 AREF SS/PB2 14 SS 3 D10 X2 C4 13 IO9 S USB-JACK-MINI OC1/PB1 12 IO8 2 D9 U 0u1 ICP/PB0 1 D8 B +B 1 USBVCC 18 AVCC C DM 2 ZU3 VCC C8 ADC7 22 IOH N 3 1 16 19 J6 N DP 4 OUT GND 2 GND VCC 15 21 ADC6 28 AD5/SCL C COM C1 TXD R232 0u1 GND AGND ADC5/PC5 6 A5 E INP 3 RXD RTS 14 ADC4/PC4 27 AD4/SDA 5 A4 T 6 5 0u1 4 V3 DTR 13 LED1 ADC3/PC3 26 AD3 4 A3 I 5 12 25 AD2 I 6 VD+ DCD 11 R8 6 ADC2/PC2 24 AD1 3 A2 U VD- RI VCC GND VCC VCC ADC1/PC1 2 A1 R 7 XI DSR 10 1K 4 VCC ADC0/PC0
in „Arduino Uno über 9-Pol D-Sub FTDI programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CH340G_UNO_ArduinoBoard_3.pdf
29 17 SCK RES/PC6 SCK/PB5 16 MISO 6 D13 0U1 MISO/PB4 15 5 D12 MOSI/PB3 MOSI 4 D11 AREF AREF 20 AREF SS/PB2 14 SS 3 D10 X2 C4 13 IO9 S USB-JACK-MINI OC1/PB1 12 IO8 2 D9 U 0u1 ICP/PB0 1 D8 B +B 1 USBVCC 18 AVCC C DM 2 ZU3 VCC C8 ADC7 22 IOH N 3 1 16 19 J6 N DP 4 OUT GND 2 GND VCC 15 21 ADC6 28 AD5/SCL C COM C1 TXD R232 0u1 GND AGND ADC5/PC5 6 A5 E INP 3 RXD RTS 14 ADC4/PC4 27 AD4/SDA 5 A4 T 6 5 0u1 4 V3 DTR 13 LED1 ADC3/PC3 26 AD3 4 A3 I 5 12 25 AD2 I 6 VD+ DCD 11 R8 6 ADC2/PC2 24 AD1 3 A2 U VD- RI VCC GND VCC VCC ADC1/PC1 2 A1 R 7 XI DSR 10 1K 4 VCC ADC0/PC0
in „Komisches Verhalten von RX am Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CH340G_UNO_ArduinoBoard_3.pdf
29 17 SCK RES/PC6 SCK/PB5 16 MISO 6 D13 0U1 MISO/PB4 15 5 D12 MOSI/PB3 MOSI 4 D11 AREF AREF 20 AREF SS/PB2 14 SS 3 D10 X2 C4 13 IO9 S USB-JACK-MINI OC1/PB1 12 IO8 2 D9 U 0u1 ICP/PB0 1 D8 B +B 1 USBVCC 18 AVCC C DM 2 ZU3 VCC C8 ADC7 22 IOH N 3 1 16 19 J6 N DP 4 OUT GND 2 GND VCC 15 21 ADC6 28 AD5/SCL C COM C1 TXD R232 0u1 GND AGND ADC5/PC5 6 A5 E INP 3 RXD RTS 14 ADC4/PC4 27 AD4/SDA 5 A4 T 6 5 0u1 4 V3 DTR 13 LED1 ADC3/PC3 26 AD3 4 A3 I 5 12 25 AD2 I 6 VD+ DCD 11 R8 6 ADC2/PC2 24 AD1 3 A2 U VD- RI VCC GND VCC VCC ADC1/PC1 2 A1 R 7 XI DSR 10 1K 4 VCC ADC0/PC0
in „Stromquelle bevorzugen“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan eines USB-zu-Seriell-Wandlers mit Transistoren
3V3 1 VIO 16 RI GND 2 GND 15 CTS VBUS 3 VDD5 14 DSR CH RXD 4 TXD 13 RTS CH TXD 5 RXD 12 DTR 3V3 6 V3 11 DTR USB P 7 UD+ 10 DCD USB N 8 UD- 9 VBUS U1 CH343P RESET R4 10K DTR Q6 SS8050 VBUS C1 100nF C2 10uF/16V GND RTS R29 10K Q9 SS8050 2 3 IO0
in „Auto-Boot-Schaltung für ESP32-S3-Touch-LCD-7 ?“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
qt1081_1r0.04-15735.pdf
circuit version of the E C 7 7 6 6 5 popular QT1080 sensor IC. The QT1081 is designed for low cost E YN SS NS N N N N appliance, mobile, and consumer electronics applications. D S V S S S S S 24 23 22 21 20 19 1817 QTouch™ technology is a type of patented charge-transfer sensing OUT_0 25 16 SNS5 method well
in „Schlatung mit qt1081“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Anleitung.pdf
14 SMD Inductor L1 10uH 1 15 1N5819 Diode SS14 D1 SMD 1 16 0805 SMD LED D2,D3 Red 2 17 0.8in 4Bit Red Digital Tube DS1 Common Anode 1 18 Vibrating Motor M1 1 19 SMD Button S1-S4 6*6*9mm 4 20 Active Buzzer
in „Hilfe bei Fehlersuche“ · Platinen ·
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3d_drucker_print_v16.pdf
PB4 22 SPI_MISO D 80 VCC (MISO/PCINT3)PB3 21 SPI_MOSI 80 VCC (MISO/PCINT3)PB3 21 SPI_MOSI A C16 C15 C14 11 VCC (MOSI/PCINT2)PB2 20 C21 C20 C19 11 VCC (MOSI/PCINT2)PB2 20 X X GND E K K K K K 32 GND (SCK/PCINT1)PB1 19 SPI_SCK 32 GND (SCK/PCINT1)PB1 19 SPI_SCK I A I A I X - O O O O O GND (SS/PCINT0)PB0 MEG1 GND (SS/PCINT0)PB0 MEG2 - - - - - A O L L L L L 100nF 100nF 100nF 62 GND 100nF 100nF 100nF 62 GND X X Y Y Z - O 0 1 2 3 4 81 GND (A15)PC7 60 THERM1 81 GND (A15)PC7 60 MAG1 Z T E E E E E (A14)PC6 59 THERM2 (A14
in „Eigenes 3D-Drucker Board - Viele Fragen“ · Mikrocontroller und Digitale Elektronik ·
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rv-3032-c7.pdf
Solder Pad: 3,2 0, 0, 0, 0, 0,5 , 0 5 , 1 5 0 0 , 0 0,4 3,2 x , a 0 m , Metal lid is connected to V SS (pin #5) 0 All dimensions in mm typical APPLICATIONS DESCRIPTION IoT The RV-3032-C7 is a SMD Real-Time Clock Module that incorporates Metering an integrated CMOS circuit together with an XTAL. It operates
in „18650 Zelle zu 5V“ · Analoge Elektronik und Schaltungstechnik ·
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SeikoChar.pdf
Tolerance (Inverter only) Item Specifications Unit Input voltage 3.0 to 6.0 V Load range 5 to 15 cm² 14 AN No.SIG-CHMO9805A L1642 (16 x 2) 16 Characters x 2 line Electrical Characteristics V DD=5V± 5%, V SS=0V, Ta=0 ~ 50ºC 5 x 7 Dot Matrix + Cursor Item Symbol Conditions Min. Typ. Max. Unit 1/16 Duty Pow
in „Display Seiko L2432 und Kontrastproblem“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan eines DC/DC-Wandlers
IC4 TPS54260DGQR, VIN, EN+, SS/TR, RT/CLK, COMP, PH, BOOT, VSENSE, GND, PWRGD, C27 100nF, C28 4.7uF, C29 4.7uF, C30 6.8nF, R13 100k, R15 200k, C31 2.2nF, R5 100k, C14 100nF, SS34 D7, L2 22uH, R5 220k, R4 100k, R16 10k, C16 22uF, C23
in „Ausgangsspannung von buck converter dynamisch verändern“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
projektarbeit.pdf
multiplizieren. Für die mathematische Multiplikation zweier Sinusfunktionen gilt (Literaturquelle: [14]): sin(α) · sin(β) = ½ [cos(α−β) - cos(α+β)] (Gl. 2.6) Nimmt man also den zeitlichen Verlauf des abgesendeten Signals zu ss(t) = As· sin(2πUS·t) sowie den Verlauf des Empfangssignals zu sr(t) = Ar· sin
in „Abstandsmessung um“ · Mikrocontroller und Digitale Elektronik ·
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AT070TN01_.pdf
Handling (3). Static electricity (4). Storage (5). Cleaning 6. Mechanical dimensions……………………………………………………. 14 7. Packing form………………………………………………………………… 16 ALL RIGHTS STRICTLY RESERVED. ANY PORTION OF THIS PRPER SHALL NOT BE REPRODUCED, COPIED, OR TRANSFORMED TO ANY OTHER FORMS WITHOUT PERMISSION FROM INNOLUX
in „TFT mit PIC24FJ256DA210“ · Mikrocontroller und Digitale Elektronik ·
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cdj350.pdf
248 CCSSCH471J50 C R 327,328,469 RS1/16SS2201D C 249,251,260,262 CKSSYB103K16 C 255 CKSRYB122K50 R 329,332 RS1/16SS4701D R 330,331 RS1/16SS3301D C 256,259,301-303 CKSSYB104K10 R 333,334 RS1/16SS5101D C 257,258 CKSRYB222K50 R 421 RS1/16SS2202F C 261,264,267,283 VCG1063 R 423 RS1/16SS4702F C 265,436,454 CKSRYB104K50 C 268,276,278,340 CKSQYB225K10 R 424 RS1/16SS1102F R 427 RS1/16SS5602F C 275,308,311,335 CCSSCH331J50 R 467 RS1/16SS7500F C 401,402,415 CKSRYB105K10 R 468 RS1/16SS1102D
in „Diode (1SS352) in CD-Player ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WH1602B-TMI-JT__selbstgesucht_.pdf
Character Generator ROM Pattern 11.Instruction Table 12.Timing Characteristics 13.Initializing of LCM 14.Reliability 15.Backlight Information 16. Inspection specification 17. Material List of Components for RoHs 第 3 頁,共 28 頁 1.Module Classification Information W H 1 6 0 2 B-T M I- JT# c d e f g h i j c
in „Winstar WH1602B LCD-Display am Atmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_WINSTAR_WH1602B-NGJ-JT.pdf
Character Generator ROM Pattern 11.Instruction Table 12.Timing Characteristics 13.Initializing of LCM 14.Reliability 15.Backlight Information 16. Inspection specification 17. Material List of Components for RoHs 第 3 頁,共 28 頁 1.Module Classification Information W H 1 6 0 2 B-T M I- JT# c d e f g h i j c
in „LCD Initialisierung klappt nicht, nur chwarzen Kästchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
wh1602b-ngj-jt.pdf
Character Generator ROM Pattern 11.Instruction Table 12.Timing Characteristics 13.Initializing of LCM 14.Reliability 15.Backlight Information 16. Inspection specification 17. Material List of Components for RoHs 第 3 頁,共 28 頁 1.Module Classification Information W H 1 6 0 2 B-T M I- JT# c d e f g h i j c
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6neds.pdf
/CLK OUT P10 3/AN 3 93 38 P60/CTS 0/RTS 0 P10 2/AN 2 94 37 P61/CLK 0 95 36 P62/RxD 0 P10 1/AN 1 AV SS 96 35 P63/TXD 0 P10 0/AN 0 97 34 P64/CTS 1/RTS 1/CTS 0/CLKS 1 33 P65/CLK 1 V REF 98 AVcc 99 32 P66/RxD 1 P9 7/ADTRG 100 31 P67/TXD 1 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25
in „M16C- Key Input Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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RT8298E-02.pdf
ZSPYMDNN Suitable for use in SnPb or Pb-free soldering processes. Pin Configurations (TOPVIEW) FB 1 14GND PGOOD 2 13BG SW 8 VIN EN/SYNC 3 12VCC BOOT 2 7 EN/SYNC VIN 4 GND 11BOOT GND VIN 5 10SW VCC 3 96 FB VIN 6 9 SW BG 4 5 GND NC 7 15 8 SW WDFN-14L 4x3 SOP-8 (Exposed Pad) Copyrig©2015 Richtek Technology
in „Schaltregler - maximaler Spulenstrom“ · Analoge Elektronik und Schaltungstechnik ·
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RT8298E-02.pdf
ZSPYMDNN Suitable for use in SnPb or Pb-free soldering processes. Pin Configurations (TOPVIEW) FB 1 14GND PGOOD 2 13BG SW 8 VIN EN/SYNC 3 12VCC BOOT 2 7 EN/SYNC VIN 4 GND 11BOOT GND VIN 5 10SW VCC 3 96 FB VIN 6 9 SW BG 4 5 GND NC 7 15 8 SW WDFN-14L 4x3 SOP-8 (Exposed Pad) Copyrig©2015 Richtek Technology
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
ZSPYMDNN Suitable for use in SnPb or Pb-free soldering processes. Pin Configurations (TOPVIEW) FB 1 14GND PGOOD 2 13BG SW 8 VIN EN/SYNC 3 12VCC BOOT 2 7 EN/SYNC VIN 4 GND 11BOOT GND VIN 5 10SW VCC 3 96 FB VIN 6 9 SW BG 4 5 GND NC 7 15 8 SW WDFN-14L 4x3 SOP-8 (Exposed Pad) Copyrig©2015 Richtek Technology
in „Woher Eingangsschwingung am Buck“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c.txt
Uhrzeit wird zentral in main.c berechnet (s.u.) // Die anderen Programmteile lesen nur noch hh,mm,ss aus. // -> httpd.h/c, cmd.h/c' unsigned char hh; unsigned char mm; unsigned char ss; char str[13]; char wstr[20]; char tempstr[3]; char feustr[3]; float adc_koma[5]; unsigned int adc_int, ssz, messzeit
in „ATMEGA644 und E2-Interface (i2c) hilfe“ · Mikrocontroller und Digitale Elektronik ·
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Mischpult.pdf
+12V V 8 + C N D 2 1 1 5 4G V G I - IC6 + R3 R2 , C10 C9 - 15 N V A N V 10 INH 1 IC5 , 16 V G 14 11 A R 9 33 , VINL D VOUTL 14 B 3 RESET (ADC7)PA7 34 , 15 13 C 1 (ADC6)PA6 35 A AGND D 4 Q 12 (ADC5)PA5 36 9 1 D 1 XTAL2 (ADC4)PA4 37 8 X0 X N C 13 (ADC3)PA3 38 2 8 7 X1 G XTAL1 (ADC2)PA2 39 CS MUTE
in „Digitale Mischpult: Geht das so?“ · Mikrocontroller und Digitale Elektronik ·
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sn75lvds84a.pdf
Third of the ’LVDS84 D11 12 37 LVDSV CC D Packaged in Thin Shrink Small-Outline D12 13 36 LVDSGND NC 14 35 Y2M Package (TSSOP) With 20 Mil Terminal Pitch D13 15 34 Y2P D14 16 33 CLKOUTM D Consumes Less Than 0.54 mW When 17 32 Disabled GND CLKOUTP D15 18 31 LVDSGND D Wide Phase-Lock Input Frequency Range
in „15" XGA Display an Computer anschließen“ · Mikrocontroller und Digitale Elektronik ·
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T6963C.pdf
3.072 4.915 6.144 1 / 80 4.915 6.144 9.830 12.288 2.949 3.686 5.898 7.373 12 1 / 96 5.898 7.373 11.776 14.746 3.440 4.300 6.881 8.602 14 1 / 112 6.881 8.601 13.763 17.203 3.932 4.915 7.864 9.830 16 1 / 128 7.864 9.830 15.729 19.660 Note 1: Upper ··· Single−Scan, lower ···· Dual−Scan at f =R60 Hz Upper Lower
in „[V] Grafikdisplay 240x128“ · Markt ·
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GN80_2_NMEA_Protocol__1_.pdf
・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・13 $PFEC,GPset: Setup receiver parameters ・・・・・・・・・・・・・・・・・・・・・・・・・14-15 $PFEC,GPsrq: Get receiver parameters ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・16 $PFEC,GPint: Request output / Set log output intervals ・・・・・・・・・・・・・・・17 $PFEC,GPirq: Get log sentence output intervals ・・・・・・
in „DGPS korreliert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PCA9533.pdf
; - 350 550 A V = V or V ; f = 100 kHz I DD SS SCL stb standby current Standby mode; V DD = 5.5 V; no load; - 1.9 3.0 A V = V or V ; f = 0 kHz I DD SS SCL IDD additional quiescent supply Standby mode; V DD = 5.5 V; - - 325 A current every LED I/O
in „[V] 20St 4-Bit I2C LED PWN Treiber NXP PCA9533 (SO8) (1€/St)“ · Markt ·
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PCA9533.pdf
; - 350 550 A V = V or V ; f = 100 kHz I DD SS SCL stb standby current Standby mode; V DD = 5.5 V; no load; - 1.9 3.0 A V = V or V ; f = 0 kHz I DD SS SCL IDD additional quiescent supply Standby mode; V DD = 5.5 V; - - 325 A current every LED I/O
in „[V] einige 4 Bit I2C LED PWN Treiber NXP PCA9533 (SO8)“ · Markt ·
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PDF
PCA9533.pdf
; - 350 550 A V = V or V ; f = 100 kHz I DD SS SCL stb standby current Standby mode; V DD = 5.5 V; no load; - 1.9 3.0 A V = V or V ; f = 0 kHz I DD SS SCL IDD additional quiescent supply Standby mode; V DD = 5.5 V; - - 325 A current every LED I/O
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (1€/St)“ · Markt ·
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PDF
PCA9533.pdf
; - 350 550 A V = V or V ; f = 100 kHz I DD SS SCL stb standby current Standby mode; V DD = 5.5 V; no load; - 1.9 3.0 A V = V or V ; f = 0 kHz I DD SS SCL IDD additional quiescent supply Standby mode; V DD = 5.5 V; - - 325 A current every LED I/O
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (12€ / 20St)“ · Markt ·
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PDF
PCA9533.pdf
; - 350 550 A V = V or V ; f = 100 kHz I DD SS SCL stb standby current Standby mode; V DD = 5.5 V; no load; - 1.9 3.0 A V = V or V ; f = 0 kHz I DD SS SCL IDD additional quiescent supply Standby mode; V DD = 5.5 V; - - 325 A current every LED I/O
in „[V] nochmal 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (12€ / 20St)“ · Markt ·
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PDF
PCA9533.pdf
; - 350 550 A V = V or V ; f = 100 kHz I DD SS SCL stb standby current Standby mode; V DD = 5.5 V; no load; - 1.9 3.0 A V = V or V ; f = 0 kHz I DD SS SCL IDD additional quiescent supply Standby mode; V DD = 5.5 V; - - 325 A current every LED I/O
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (12€ / 20St)“ · Markt ·
-
PDF
PCA9533.pdf
; - 350 550 A V = V or V ; f = 100 kHz I DD SS SCL stb standby current Standby mode; V DD = 5.5 V; no load; - 1.9 3.0 A V = V or V ; f = 0 kHz I DD SS SCL IDD additional quiescent supply Standby mode; V DD = 5.5 V; - - 325 A current every LED I/O
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (30St/17€)“ · Markt ·
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T6963C.pdf
3.072 4.915 6.144 1 / 80 4.915 6.144 9.830 12.288 2.949 3.686 5.898 7.373 12 1 / 96 5.898 7.373 11.776 14.746 3.440 4.300 6.881 8.602 14 1 / 112 6.881 8.601 13.763 17.203 3.932 4.915 7.864 9.830 16 1 / 128 7.864 9.830 15.729 19.660 Note 1: Upper ··· Single−Scan, lower ···· Dual−Scan at f =R60 Hz Upper Lower
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA9533.pdf
; - 350 550 A V = V or V ; f = 100 kHz I DD SS SCL stb standby current Standby mode; V DD = 5.5 V; no load; - 1.9 3.0 A V = V or V ; f = 0 kHz I DD SS SCL IDD additional quiescent supply Standby mode; V DD = 5.5 V; - - 325 A current every LED I/O
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (30St/12€)“ · Markt ·