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PIC18Fxx2.pdf
C B B B B C R R R R M N R R R R N 6 5 4 3 2 1 4 3 2 1 0 RA4/T0CKI 7 4 4 4 4 39 RB3/CCP2 * RA5/AN4/SS/LVDIN 38 RB2/INT2 8 RE0/RD /AN5 9 37 RB1/INT1 RE1/WR /AN6 10 PIC18F442 36 RB0/INT0 RE2/CS/AN7 11 35 V DD VDD 12 PIC18F452 34 V SS VSS 13 33 RD7/PSP7 OSC1/CLKI 14 32 RD6/PSP6 OSC2/CLKO/RA6 15 31 RD5/PSP5
in „AD1 und AD2 Multiplexen (PIC18F452)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P89C51RC_IN.pdf
P3.5/T1 26 PSEN 12 P3.6/WR 27 ALE 42 P1.2/ECI XTAL2 18 23 P2.2/A10 13 P3.7/RD 28 NIC* 43 P1.3/CEX0 14 XTAL2 29 EA/V 44 P1.4/CEX1 XTAL1 19 22 P2.1/A9 PP 15 XTAL1 30 P0.7/AD7 V 20 21 P2.0/A8 SS * NO INTERNAL CONNECTION SU00891 SU00888 1999 Oct 27 4 Philips Semiconductors Product specification 80C51 8-bit
in „[V] 8St. 8051er Philips P89C51RC+IA PLCC44 (6€)“ · Markt ·
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Datei
avreth-netlist.txt
39 Vss 2 7 2 GND Gnd 40- PB0 T0 XCK 41- PB1 T1 42- PB2 AIN0 INT2 43 10 PB3 AIN1 OC0 (-Rst) 44 9 PB4 SS (-CS) ENC28J60-SO SOIC28 1 VCAP (10µF nach Gnd) 2 VSS 3 CLKOUT (nc) 4 INT (PD3 INT1) 5 WOL (nc) 6 SO (PB6 MISO) 7 SI (PB5 MOSI) 8 SCK (PB7 SCK) 9 CS (PB4 SS) 10 RESET (PB3 Ain1) 11 VSSRX 12 TPIN- 13 TPIN+ 14 RBIAS (2k7 nach Gnd) 15 VDDTX 16 TPOUT- 17 TPOUT+ 18 VSSTX 19 VDDRX 20 VDDPLL 21 VSSPLL 22 VSSOSC 23 OSC1 24 OSC2 25 VDDOSC 26 LEDB (rot) 27 LEDA (blau) 28 VDD 10-poliger Kamerastecker 37 1 PA0 18 Vss
in „winziger Webserver mit enc28j60+mega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
engine_driver_opt.pdf
X2-2 Hall Sensoren 4,7 o 21 GND PC2(ADC2) 26 HALL_C 3 5 o o V QG1 20 AREF PC3(ADC3) 27 X2-3 o M 5 14 GND AVCC PC4(ADC4/SDA) 28 ACPL-312T M D + VCC +5V PC5(ADC5/SCL) GND D N 8 9 G G PB6(XTAL1/TOSC1) 7 OUT 10 2 RX X4-1 UART GND PB7(XTAL2/TOSC2) PD0(RXD) 3 TX MKDSN1,5/2-5,08 48V Motor + PD1(TXD) 4 LIN3
in „Problem mit BLDC Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AVR_Stamp_sheet_V1_1.pdf
1 5 U$2 MICROSD_CARD_POLLIN RTS 3 R R R 1 D l 100n 10µ 2 19 RESET CTS 11 L B 3 1 2 DAT2 J 27 DTR 9 SS/1.3B 2 3 CD/SS 28 OSCI DSR 10 MOSI/1.4B IC5A CMD/MOSI GND OSCO DCD RI 6 74AHC125D 5 IC5B 6 VCC +5V_USB GND LED2 Blau SCK/1.4B CLK/SCK 23 R6 C 74AHC125D GND 65100516121 GNDC10 CBUS0 22 330 C MISO/1.4B DAT0/MISO CBUS1 330 C 4 GND 5 17 3V3OUT CBUS2 13 R8 R7 V DAT1 ID 4 CBUS3 14 C LED3 JP2 GND CARDDETECTION 3 100n 15 12 V Rot MISO|PDO 1 2 9 IC5C 8 Shield D+ 2 16 USBDP CBUS4 10k TXD0/1.5C D- USBDM 3 4 RXD0/1.5C 74AHC125D VCC 1 TEST 26 ARESET/1.1A 5 6 MOSI|PDI 25 GND 1 B 7 B K1
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hinger.pdf
GND P SCK 19 PB5(SCK) K1 MISO 18 PB4(MISO) V_0 O S E3206S1 T2 MOSI 17 PB3(MOSI/O K1 S_4 16 15 PB2(SS/OC V_24 R4 RELAY_2 LCD_DB8 14 PB1(OC1A) PB0(ICP) LCD_RS 13 12 PD7(AIN1) LCD_E 11 PD6(AIN0) GND LCD_DB5 PD5(T1) LCD_DB7 6 PD4(XCK/T LCD_DB6 5 PD3(INT1) S_1 4 PD2(INT0) S_2 3 PD1(TXD) R5 C S_3 2 PD0(RXD
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PDF
ht1632c.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „HT1632C mit welchen Bus ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_treiber_ht1632cv120.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „HT1632C mit welchen Bus ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „HT1632C mit SPI steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „LED Matrix Schaltung gesucht sowie Bsp Programm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „C-Code -> Verständnis problem..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_K4B4G1646D-BC_I_P_Rev102.pdf
1066 DDR3-1333 DDR3-1600 DDR3-1866 DDR3-2133 Parameter Bin Unit 6-6-6 7-7-7 9-9-9 11-11-11 13-13-13 14-14-14 tCKmin(IDD) 2.5 1.875 1.5 1.25 1.071 0.938 ns CL(IDD) 6 7 9 11 13 14 nCK tRCDmin(IDD) 6 7 9 11 13 14 nCK tRCmin(IDD) 21 27 33 39 45 50 nCK tRASmin(IDD) 15 20 24 28 32 36 nCK tRPmin(IDD) 6 7 9 11
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
89C51RD2.pdf
INT1/P3.3 28 P2.7/A15 6 NIC* 21 P2.3/A11 36 P0.1/AD1 7 P3.1/TxD 22 P2.4/A12 37 P0.0/AD0 T0/P3.4 14 27 P2.6/A14 8 P3.2/INT0 23 P2.5/A13 38 V CC T1/P3.5 15 26 P2.5/A13 9 P3.3/INT1 24 P2.6/A14 39 NIC* 10 P3.4/T0 25 P2.7/A15 40 P1.0/T2 WR /P3.6 16 25 P2.4/A12 41 P1.1/T2EX 11 P3.5/T1 26 PSEN RD /P3.717
in „P89C51RC2 12Clock mod“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WT588D-U_Voice_Module.pdf
........... 14 8.3.3、Voice Address Corresponds ............................................................................ 14 8.3.4、Three-Wire Serial Port Control Time Sequence.....................................
in „WT588D Voice Modul Tonqualität“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT90PWM2_2B_3_3B__2_.pdf
AVCC (MOSI/PSCOUT21) PB1 9 16 PB2 (ADC5/INT1) (OC0B/XTAL1) PE1 10 15 PD7 (ACMP0) (ADC0/XTAL2) PE2 11 14 PD6 (ADC3/ACMPM/INT0) ADC1/RXD/DALI/ICP1A/SCK_A) PD4 12 13 PD5 (ADC2/ACMP2) Figure 3-2. SOIC 32-pin Package AT90PWM3/3B SOIC 32 (PSCOUT00/XCK/SS_A) PD0 1 32 PB7(ADC4/PSCOUT01/SCK) (INT3/PSCOUT10) PC0
in „Interrupt bem Flankenwechsel beim AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at90pwm3.pdf
AVCC (MOSI/PSCOUT21) PB1 9 16 PB2 (ADC5/INT1) (OC0B/XTAL1) PE1 10 15 PD7 (ACMP0) (ADC0/XTAL2) PE2 11 14 PD6 (ADC3/ACMPM/INT0) ADC1/RXD/DALI/ICP1A/SCK_A) PD4 12 13 PD5 (ADC2/ACMP2) Figure 3-2. SOIC 32-pin Package AT90PWM3/3B SOIC 32 (PSCOUT00/XCK/SS_A) PD0 1 32 PB7(ADC4/PSCOUT01/SCK) (INT3/PSCOUT10) PC0
in „Schrittmotorsteuerung mir 90atPWM3“ · Mikrocontroller und Digitale Elektronik ·
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hp-6236B.pdf
1N485B 1901-0033 L1, 2, 3 Inductor, ferrite bead 3 56-590-65/4A6 02114 9170-0894 1 (Q2, Q3, CR49) Q2 SS NPN Si 3 SS1147 (Note1) 04713 1854-0448 3 Q4 SS PNP Si 1 2N2904A 1853-0012 1 Q11 Power PNP Si 1 2N3740 1853-0052 1 Q12 SS NPN Si SS1147 (Note 1) 04713 1854-0448 Q13 SS PNP Si 1 2N4036 1853-0041 1 Q14 SS NPN Si 1 2N2714A 1854-0027 1 Q15 SS NPN Si SS1147 (Note 1) 04713 1854-0448 R1 var. 10k (VOLTAGE ±20V) 2 43X 02582 2100-3461 R2 fxd, film 2.61k 1% 1/8W 1 Type MF4C, T-9 19701 0698-0092 1 R3 fxd, ww 0.1
in „Problem mit Simulation von HP/Agilent Tracking LNG“ · Mikrocontroller und Digitale Elektronik ·
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HT1621.pdf
1.30 3 August 6, 2003 HT1621 Pad Coordinates Unit: mil Pad No. X Y Pad No. X Y 1 -55.04 59.46 25 58.14 -25.29 2 -58.52 22.18 26 58.14 -18.66 3 -58.52 15.56 27 58.14 -11.94 4 -58.52 5.36 28 58.14 -5.31 5 -58.52 -4.51 29 58.14 1.32 6 -58.52 -11.14 30 58.14 7.95 7 -58.52 -34.76 31 58.14 14.58 8 -58.52 -41.90
in „Picomite und LCD Display PC-6749-UUW von Densitron“ · Mikrocontroller und Digitale Elektronik ·
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FCB-SE600_TM_E.pdf
3e 3f Õ Ñ Ç ß Ä Ï Ö Ü 40 41 42 43 44 45 46 47 Å $ ¥ £ ¿ ¡ 48 49 4a 4b 4c 4d 4e 4f ø “ : ‘ . , / - 14 Basic Functions Privacy Zone Setting Command List Command Set Command Command Packet Comments CAM_PrivacyZone Non_InterlockMask
in „Digitales HD auf Analoges PAL wandeln“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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M30201F6SP.pdf
P16(LED ) A14 WE P40/TA0IN/TP35 23 30 nP17(LED ) A15 P34 24 29 P31 A4 A7 P33 26 27 P32 A5 A6 V SS m i Figure CC-2. Pin connection diagram in parallel I/O mode (1) l e r P 135 nt er me Mitsubishi microcomputers U e
in „Biete Mitsubishi / Renesas M30201F6SP aus der M16C60 Serie“ · Mikrocontroller und Digitale Elektronik ·
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ST29F400BB.pdf
Manufacturer Code: 0020h – Top Device Code M29F400BT: 00D5h – Bottom Device Code M29F400BB: 00D6h V SS AI02904 July 2000 1/22 M29F400BT, M29F400BB Figure 2. TSOP Connections Figure 3. SO Connections A15 1 48 A16 A14 BYTE NC 1 44 RP RB 2 43 W A13 VSS A12 DQ15A–1 A17 3 42 A8 A11 DQ7 A7 4 41 A9 A6 5 40 A10
in „AT91 & OpenOCD Externes Flash Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6581.pdf
Manufacturer Code: 0020h – Top Device Code M29F400BT: 00D5h – Bottom Device Code M29F400BB: 00D6h V SS AI02904 July 2000 1/22 M29F400BT, M29F400BB Figure 2. TSOP Connections Figure 3. SO Connections A15 1 48 A16 A14 BYTE NC 1 44 RP RB 2 43 W A13 VSS A12 DQ15A–1 A17 3 42 A8 A11 DQ7 A7 4 41 A9 A6 5 40 A10
in „Externes Flash M29F400B ansprechen“ · Mikrocontroller und Digitale Elektronik ·
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PSU.pdf
6 13 N o : a H H P H _ d VCC (PCINT1/OC1A)PB1 CS_ADC N D n r P 1 2 _ 1_ 1_ r 10 uHS g (PCINT2/OC1B/SS)PB2 14 SS C M H e e i i i t a e 18 15 S 0 d r P P P i _ o AVCC (PCINT3/OC2A/MOSI)PB3 MOSI _ C F C 0 a a s s i s e 1 L1 0 d 16 D 2 : e _ r r l r R 100nF _ H (PCINT4/MISO)PB4 MISO - 2 M _ a d d S d e D
in „Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Pingu920-0.8.0.pdf
D26 ETX1 TXD1 LED1/OP1 A13 35 A11 D11 47 D11 A13 35 A11 D11 47 D27 ETX0 20 TXD0 LED2/OP2 13 7 RD+ A14 36 A12 D12 48 D12 A14 36 A12 D12 48 D28 8 RD- A16 20 BA0 D13 50 D13 A16 20 BA0 D13 50 D29 ETXEN 21 TXEN TX+ 7 A17 21 BA1 D14 51 D14 A17 21 BA1 D14 51 D30 22 TXCLK TX- 8 3 CT D15 53 D15 +3.3V D15 53 D31
in „"Pingu920" - ARM9 Linux Embedded zum selbst Löten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pingu920-0.9.2.pdf
ETXD1 19 TXD1 LED1/OP1 12 A13 35 A11 D11 47 D11 A13 35 A11 D11 47 D27 ETXD0 20 TXD0 LED2/OP2 13 7 RD+ A14 36 A12 D12 48 D12 A14 36 A12 D12 48 D28 8 RD- A16 20 BA0 D13 50 D13 A16 20 BA0 D13 50 D29 ETXEN 21 TXEN TX+ 7 A17 21 BA1 D14 51 D14 A17 21 BA1 D14 51 D30 ETXCLK 22 TXCLK TX- 8 3 CT D15 53 D15 D15 53
in „"Pingu920" - ARM9 Linux Embedded zum selbst Löten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8_n3410.c
0x1E }, // 9 { 0x00, 0x36, 0x36, 0x00, 0x00 }, // : { 0x00, 0x56, 0x36, 0x00, 0x00 }, // ; { 0x08, 0x14, 0x22, 0x41, 0x00 }, // < { 0x14, 0x14, 0x14, 0x14, 0x14 }, // = { 0x00, 0x41, 0x22, 0x14, 0x08 }, // > { 0x02, 0x01, 0x51, 0x09, 0x06 }, // ? { 0x32, 0x49, 0x59, 0x51, 0x3E }, // @ { 0x7E, 0x11, 0x11
in „ATmega8 und Nokia Display / SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sr_adc.vhdl
incremented on each sample entity sr_adc is Port ( cs : in STD_LOGIC; -- start with setting cs high ss : in STD_LOGIC; -- single shot (high) or free running (low) gclk : in STD_LOGIC; -- system clock aclk : out STD_LOGIC; -- clock line to ADC aconv : inout STD_LOGIC; -- trigger to start conversion adata
in „Der vhdl-Schnipsel-Anfängerfragen Thread“ · FPGA, VHDL & Co. ·
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Datei
sr_adc.vhdl
incremented on each sample entity sr_adc is Port ( cs : in STD_LOGIC; -- start with setting cs high ss : in STD_LOGIC; -- single shot (high) or free running (low) gclk : in STD_LOGIC; -- system clock aclk : out STD_LOGIC; -- clock line to ADC aconv : inout STD_LOGIC; -- trigger to start conversion adata
in „Der vhdl-Schnipsel-Anfängerfragen Thread“ · FPGA, VHDL & Co. ·
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PDF
AN07NMEA183-010.pdf
Navigation Aid...………………………………………Page 13 INITAID………………………………………...Page 13 ALTAID………………………………………...Page 14 SETLIMIT……………………………………...Page 14 3.5 LOGGING……………………………………….........Page 16 LOGCLEAR……………………………………Page 16 LOGFREE……………………………………...Page 16 LOGGET……………………………………….Page 16 LOGINFO………………………………………Page 17 LOGMODE
in „DCF77 Auswertung (ein bisschen anders)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
715G7312_PSU.pdf
5 +12V 12 11 +12V 10R 1% 82 OHM 9 8 1 U 9 5 0 1 F +12V +12V D9111 1 1 9 . C F 9 P 1 OUT IN 3 +12V 14 13 +12V NC/1N4148W R9104 9 K SS1060FL C 4 2 C 0 D 16 15 R9134 R 1 C9139 C9140 2 1 N NC 150 OHM 1/4W 2.2nF 50V 2.2nF 50V U9112 G C9112 NC 2 C9310 CN9101 2.2nF 50V C9104 NC Conn +5V C9125 470PF 50V R9101
in „Phillips 55PUS6561/12 keine Hintergrundbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN07NMEA183-010.pdf
Navigation Aid...………………………………………Page 13 INITAID………………………………………...Page 13 ALTAID………………………………………...Page 14 SETLIMIT……………………………………...Page 14 3.5 LOGGING……………………………………….........Page 16 LOGCLEAR……………………………………Page 16 LOGFREE……………………………………...Page 16 LOGGET……………………………………….Page 16 LOGINFO………………………………………Page 17 LOGMODE
in „Daten von GPS-Modul über USB lesen;“ · PC Hard- und Software ·
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PDF
NJU6060.pdf
DATA Input Serial Data terminal Oscillating terminal 6 OSC Input External resistor connecting 7 V SS Power Ground terminal 8 LED1 Output LED Connect terminals (Open drain output) 9 LED2 Output Output level are 32 steps PWM by instruction control. Connecting cathode of LED. 10 LED3 Output Ver.2004-04
in „SMD Bauteil Identifizieren (Schaltung / Foto gegeben)“ · Mikrocontroller und Digitale Elektronik ·
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radino_CC1101.pdf
Port (bold = main function) 12 D0(RX) 0 PD2 UART-RX GPIO; INT2 13 D1(TX) 1 PD3 UART-TX GPIO; INT3 14 V CC - VCC Power supply 15 HWB - PE2 Hardware-Bootloader-Enable; Low-Active 16 RD- - RD- USB-D- 17 RD+ - RD+ USB-D+ 18 VBUS - VBUS USB voltage IN (VBUS will NOT supply the module. ConnectVCC on Pin 14
in „Homematic, Radino CSM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HT_12E.pdf
Connections Rev. 1.20 3 February 20, 2009 HT12A/HT12E Absolute Maximum Ratings Supply Voltage (HT12A) .....SS-0.3V to SS+5.5V Supply Voltage (HT12E) ...........................-0.3V to 13V Input Voltage..................-0.3 to V.+0.3V Storage Temperature............................-50°C to 125°C SS DD Operating
in „günstiger 433Mhz Fernschalter DIY ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PG24064LRU-ETA-H_OK_.pdf
voltage VOL - 0 - 0.3 V Supply current IDD V DDV - 9.6 11.52 mA LCD driving voltage VOP VDDV O - 13.6 14.0 V POWERTIPTECHNOLOGY CORPORATION DISPLAY DEVICES FOR BETTER ELECTRONIC DESIGN NO.PG24064LRU -ETA-H 1.5 Optical Characteristics 1/64 duty, 1/9 bias,OPR=13.6V, Ta=25°C Item Symbol Conditions Min. Typ
in „Informationen gesucht: LCD-Display HG24501“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt2.pdf
10 DB1 Data input/output 11 DB2 Data input/output 12 DB3 Data input/output 13 DB4 Data input/output 14 DB5 Data input/output 15 DB6 Data input/output 16 DB7 Data input/output (MSB) - A Anode of LED backlight - K Cathode of LED backlight DATA MODUL INC. 1767-46 Veterans Memorial Highway Islandia NY 11749
in „LCD 128x64 Initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SA57251.PDF
VST2 oscillator start voltage – 0.7 – 0.8 V VHLD operation hold voltage IOUT = 1.0 mA – 0.7 – – V SS1 consumption current 1 VOUT = output voltage0.95 -20 – 14.5 24.1 A (ON/OFF is ON) -25 – 17.8 29.7 A -28 – 20.0 33.3 A -30 – 21.4 35.7 A -33 – 23.7 39.5 A -36 – 28.8 48.0 A -50 – 54.0 89.9 A SS2 consumption
in „Reichelt: Was ich gerne im Programm hätte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ewm-E-HAND-FIBEL.pdf
...................................................................................................14 7.3 Magnetische Blaswirkung.................................................................................................................14 7.4 Schweißparameter....................................
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Datei
test_.pas
Out 3 28 PC4 A12 OUT A12; ICP-Selection 0; Out 4 29 PC5 A13 OUT A13; ICP-Selection 1; Out 5 30 PC6 A14 IN A14; ICP-Selection 2; I2C-CLK; Out 6 31 PC7 A15 IN A15; Report 2 (Opto Coupler); I2C-DATA; Out 7 32 OC1B OUT 7-Segment-Display-LUMINOSITY (PWM 2) 33 ALE OUT ALE 34 NC - 35 ICP IN IF1/n (typ. IF/8)
in „Schieberegister ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test_.pas
Out 3 28 PC4 A12 OUT A12; ICP-Selection 0; Out 4 29 PC5 A13 OUT A13; ICP-Selection 1; Out 5 30 PC6 A14 IN A14; ICP-Selection 2; I2C-CLK; Out 6 31 PC7 A15 IN A15; Report 2 (Opto Coupler); I2C-DATA; Out 7 32 OC1B OUT 7-Segment-Display-LUMINOSITY (PWM 2) 33 ALE OUT ALE 34 NC - 35 ICP IN IF1/n (typ. IF/8)
in „Schieberegister ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
CCI 23 C 1 1nF 10k 100nF LP3982 C2 k 9 R8 + RESET 4 3 TDO 8 BATT CCS F 2 R - 2 1 TCK BATT 4 THM 6 n C14 C15 33nF 1 LX_1 19 C 1 L1 GND C20 +C19 9 k 8 k 7 k 5 0 LX_2 20 22µH 1 0 1 6 1 0 1 7 11 CELL BST 22 LL4148 VL GND GND 100nF100µF R 1 R 6 R 1 R 2 12 TIMER1 H H VL 1 D4 D5 GND GND GND GND 13 TIMER2 TC N
in „Datenlogger mit AT90USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_ESP32-MES-WiFi_2026-03-31.pdf
5 1 2 3 4 5 X1 X3 VCC5 VCC5 X2 X4 A F2 A SCT1.0A F3 HFD4/5-S SHFD4/3-S K1 K2 1 2 3 4 1 2 3 4 D4 D3 SS0520 SS0520 8 7 6 5 8 7 6 5 B B 2 1 L L R R Q3 MUN5233DW1T1G 1 6 2E2 C5 3B2 B4 C1 E1 C C GND D D TITLE: Sheet_1 REV: 1.0 Company: Your Company Sheet: 1/1 Date: 2019-08-29 Drawn By: g3gg0.de 1 2 3 4 5 1 2 3 4 5 A A VUSB U5 USB CP2104-F03-GM MICRO_USB 8 14 VCC VUSB VUSB 4 VBUS G13O.0 D- D- D-P 3 D- G12O.1 D+ D+ D+P D+ G11O.2 RESET 4 GPIO.3 I5 9 RST# DTR GND DTR DTR Q2 16VPP DSR 10k MMBT2222A DCD R11 RI CTS RTS RTS TXD RXD0 MMBT2222A RXD TXD0 RTS Q1 VCC
in „LON Bus Windhager mitlesen/steuern“ · Softwareentwicklung ·
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PDF
58L128.pdf
NC DQc 28 NC DQd 53 NC DQa 78 NC DQb 4 VDDQ 29 NC DQd 54 VDQ 79 NC DQb 5 VSS 30 NC NC/DQPd** 55 V SS 80 SA NC/DQPb** 6 NC DQc 31 MODE 56 NC DQa 81 SA 7 NC DQc 32 SA 57 NC DQa 82 SA 8 DQb DQc 33 SA 58 DQa 83 ADV# 9 DQb DQc 34 SA 59 DQa 84 ADSP# 10 VSS 35 SA 60 V SS 85 ADSC# 11 VDDQ 36 SA1 61 VDQ 86 OE# 12 DQb DQc 37 SA0 62 DQa 87 BWE# 13 DQb DQc 38 DNU 63 DQa 88 GW# 14 VSS 39 DNU 64 ZZ 89 CLK 15 VDD 40 VSS 65 VDD 90 VSS 16 NC 41 V DD 66 NC 91 VDD 17 VSS 42 DNU 67 V SS 92 CE2# 18 DQb DQd 43 DNU 68 DQa DQb 93 BWa# 19 DQb DQd 44 SA 69 DQa DQb 94 BWb# 20 VDDQ 45 SA 70
in „4GSPS ADC SRAM Speicher“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Rhode_Schwarz_uri_bn1050_handbuch.pdf
x 226 mm (R&S-Normkasten Größe 35) Gewicht 10kg i e c d e s a K i e e r h e u Z i m I U p y T ä e ß e - d n t r d i - o l - s n n n p S . 1 2 Eigenschaften der Zubehörteile des URI 2.1 URI-Gleichspannungstaster BN 10504 Mit diesem Taster kann man bei einer Eingangskapazität von l pF direkt an den Elektroden
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DS203V2.6_SCH.pdf
K K 12K 12K GND VD L3 C8A 101 2 3 3 C12 2 3 11 X3 X0 12 12 X0 X3 11 R30 R32 10 BIN VD 13 C2A R4A 7 14 X1 Gnd 8 8 Gnd X1 14 11 BIN S2 9 2 FB CN2 C8 271 2 4 2 10p 15 X2 CS 6 6 CS X2 15 F B B B B B B B B B VDDA 5/30pF 1 -3V R14 13 X B 9 Bx5 Bx0 9 B X 13 E C 7 6 5 4 3 2 1 0 K R43 C6A 3 Y A 10 Bx2 Bx1 10
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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Product_preview_LPST096096A00-T4__Rev_0.0_.pdf
displaysize (upper) [AH] end line point Segment start line Segment Driver displaysize 0 1 1 0 0 1 0 1 0 1 1 SS3 SS2 SS1 SS0 (lower) [BH] start line point Segment start line Segment Driver displaysize (upper) [CH] 0 1 1 0 0 1 0 1 1 0 0 * SS6 SS5 SS4 start line point Segment end line 0 1 1 0 0 1 0 1 1 0 1 ES3 ES2
in „O-LED Display von SMI“ · Mikrocontroller und Digitale Elektronik ·
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EEPROM.pdf
are C, D M95xxx and Q, as shown in Table 2. and Figure 2. The device is selected when Chip Select (Ss tak- S 1 8 VCC Q 2 7 HOLD en Low. Communications with the device can be interrupted using Hold (HOLD. W 3 6 C V SS 4 5 D Figure 2. Logic Diagram AI01790D V CC Note: See PACKAGE MECHANICAL section for
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8KanalLoggerS.pdf
USBDP 7 R2 R7 1 +5V D4 22 CTS# 2 B PB0(ICP) 12 23 RTS# USBDM 8 R3 3 S PB1(OC1A) 13 1 24 RXD 4 U PB2(SS/OC1B) TASTER E RXD 25 TXD 3V3OUT 6 PB3(MOSI/OC2) 15SS L TXD I C PB4(MISO) 16MOSI C C C C N PB5(SCK) 17MISO 8 V V V A C7 G PN87520-S SCK R IC1 U$1 3 6 3 0 GND MISO 1 2 3 C D 5 N + R6 G 4 25AA080P 5 GND y HOLD 7 + a O SCK 6 2 SO A R SI MOSI E CS 1 SS E VCC WP 3 1 1 8 R R V IC2 + V GND +
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AuszugDatasheet_HIP4081A.pdf
DELAY TO V (PIN 16) D BS DD DIS 3 VCC 15 DRIVER ALO +12VDC TURN-ON 13 BIAS ALI 6 DELAY SUPPLY CBF ALS 14 8 HDEL LDEL 9 V SS 4 Typical Application (PWM Mode Switching) 80V 1 BHB BHO 20 12V 2 BHI BHS 19 1 LOAD DIS 3 DIS 0 BLO 18 4 4 VSS I BLS 17 PWM 5 BLI 1 V 16 INPUT 8 DD 6 ALI 4 VCC 15 12V I 7 AHI H ALS 14 8 HDEL ALO 13 9 LDEL AHS 12 10 AHB AHO 11 GND TO OPTIONAL - CURRENT CONTROLLER + 6V GND 2 HIP4081A Electrical Specifications VDD = oCC = VAHB= VBHB = 12V, VSS= VALS = VBLS= VAHS = VBHS= 0V, RHDEL = RLDEL
in „PWM-Signale an Brückentreiber HIP4081“ · Analoge Elektronik und Schaltungstechnik ·
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variant.h
#define PIN_SPI_MISO (-1u) // P0.22 #define PIN_SPI_MOSI (15u) // P0.23 #define PIN_SPI_SCK (14u) // P0.24 static const uint8_t SS = -1 ; // P0.25 static const uint8_t MOSI = PIN_SPI_MOSI ; static const uint8_t MISO = PIN_SPI_MISO ; static const uint8_t SCK = PIN_SPI_SCK ; #define PIN_SPI1_MISO (17u) #define PIN_SPI1_MOSI (3u) #define PIN_SPI1_SCK (2u) static const uint8_t SS1 = -1 ; static const uint8_t MOSI1 = PIN_SPI1_MOSI ; static const uint8_t MISO1 = PIN_SPI1_MISO ; static const uint8_t SCK1 = PIN_SPI1_SCK ; /* * Wire Interfaces */ #define WIRE_INTERFACES_COUNT 1 #define
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