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tpm754.pdf
clock generator circuits. X2 6 O Crystal 2: Output from the inverting oscillator amplifier. 1 AV CC 14 I Analog supply voltage and reference input. AV 1 13 I Analog supply and reference ground. SS ZIN 9 I ZIN: Input to analog multiplexer. YIN 10 I YIN: Input to analog multiplexer. XIN 11 I XIN: Input
in „IBM Thinkpad keyboard with trackpoint -> wireless“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPQ4210_r1.1_MPS.pdf
= 2.5V 1220 μA/V (8) Comp to current sense gain Gcs ∆V CS / ∆VCOMP 200 mV/V During soft start and SS charge current CHG_SS overload recovery 2 6 10 μA After hiccup protection is SS discharge current DSG_SS 1 μA triggered MPQ4210 Rev. 1.1 www.MonolithicPower.com 7 7/12/2019 MPS Proprietary Information
in „Controlling DC DC converter with STM32“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Display.pdf
V OUT (14.0 V) when the voltage is boosted. If this value and V SS, and setting VEE2 and V EE3 to NC when is exceeded, the operation of the LH155BA is not boosting two times. covered by warranty. The boosted voltage
in „LC-Display Sharp M078CKA ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
V OUT (14.0 V) when the voltage is boosted. If this value and V SS, and setting VEE2 and V EE3 to NC when is exceeded, the operation of the LH155BA is not boosting two times. covered by warranty. The boosted voltage
in „Suche sehr dünnes Grafikdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
V OUT (14.0 V) when the voltage is boosted. If this value and V SS, and setting VEE2 and V EE3 to NC when is exceeded, the operation of the LH155BA is not boosting two times. covered by warranty. The boosted voltage
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schematic.pdf
MCLR PGED1/AN0/VREF+/CVREF+/PMA6/CN2/RB0 16 16 4 3 4 5 PGEC1/AN1/VREF-/CVREF-/CN3/RB1 15 15 2 3 34 34 14 14 64 5 6 1 VBUS AN2/C2IN-/CN4/RB2 13 13 62 7 8 63 35 AN3/C2IN+/CN5/RB3 12 12 60 9 10 61 VUSB AN4/C1IN-/CN6/RB4 11 11 58 11 12 59 56 AN5/C1IN+/VBUSON/CN7/RB5 17 17 54 13 14 55 VCAP/VDDCORE PGEC2/AN6/
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HIP4086_Mostfet.pdf
RFSH Refresh Pulse Setting. An external capacitor can be connected from thisto increase the length of SS the start up refresh pulse - see Figure 14. If this pin is not connected, the refresh pulse is typically 1.5µs. 10 DIS Disable Input. Logic level input that when taken high sets all six outputs low.
in „Kommunikation zwischen mehreren µC“ · Mikrocontroller und Digitale Elektronik ·
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FR_Family_MB91F109.pdf
PA2 9 67 A23/P67 CS1 /PA1 10 66 A22/P66 CS0/PA0 11 65 VSS NMI 12 64 A21/P65 V CC 13 63 A20/P64 RST 14 62 A19/P63 V SS 15 61 A18/P62 MD0 16 60 A17/P61 MD1 17 59 A16/P60 MD2 18 58 A15/P57 RDY/P80 19 57 A14/P56 BGRNT /P81 20 56 A13/P55 BRQ/P82 21 55 A12/P54 RD /P83 22 54 A11/P53 WR0/P84 23 53 A10/P52 WR1
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W24257AK_32kx8_SRam.pdf
I/O7 WE I/O8 I/O2 12 17 I/O6 I/O3 13 16 I/O5 VSS 14 15 I/O4 PIN DESCRIPTION OE 1 A10 SYMBOL DESCRIPTION A11 2 27 CS A9 3 26 I/O8 A0−A14 Address Inputs A8 4 25 I/O7 AWE 6 24 I/O5 Data Inputs/Outputs VDD 7 28-pin 22 I/O4 I/O1−I/O8 A14 8 TSOP 21 VSS A12 9 20 I/O3 CS Chip Select Input A6 11 19 I/O1 A5 12 17 A0 WE Write Enable Input A4 13 16 A1 A3 14 15 A2 Output Enable Input OE V DD Power Supply V SS Ground Publication Release Date: May 1997 - 1 - Revision A14 W24257A DC CHARACTERISTICS Absolute Maximum Ratings PARAMETER RATING UNIT Supply Voltage
in „8 Kanal 50Ms/s AVR Logic-Analyzer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W24257.pdf
I/O7 WE I/O8 I/O2 12 17 I/O6 I/O3 13 16 I/O5 VSS 14 15 I/O4 PIN DESCRIPTION OE 1 A10 SYMBOL DESCRIPTION A11 2 27 CS A9 3 26 I/O8 A0−A14 Address Inputs A8 4 25 I/O7 AWE 6 24 I/O5 Data Inputs/Outputs VDD 7 28-pin 22 I/O4 I/O1−I/O8 A14 8 TSOP 21 VSS A12 9 20 I/O3 CS Chip Select Input A6 11 19 I/O1 A5 12 17 A0 WE Write Enable Input A4 13 16 A1 A3 14 15 A2 Output Enable Input OE V DD Power Supply V SS Ground Publication Release Date: May 1997 - 1 - Revision A14 W24257A DC CHARACTERISTICS Absolute Maximum Ratings PARAMETER RATING UNIT Supply Voltage
in „Frage zu SRAM Timing“ · Mikrocontroller und Digitale Elektronik ·
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z80_peripherie.sch.pdf
SV1 RD in 22 w 14 in 0 Q8 out 07 14 in 0 pas 1 pas 0 pas 0 20pas 1 in 23 RD 18 in 0 p D5 15 in 0 QH D 13 in 0 pas 1 D6 19 D5 WR WR CLK2 D4 Q7 C D7 18 19pas 1 D6 A0 in 19 A0 GATE2 16 in 0 D3 1 in 0 Q6 B 12 in 0 pas 1 LED4
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ccpneu.h
P_MEM_ROM and P_MEM_RAM to support M16C Mitsubishi. | 2003-10-14 1.38.00 Tri - version skipped due to special version for TMS320 | 2003-10-14 1.39.00 Tri - version skipped due to special version for TMS320 | 2003-10-14 1.40.00 Tri - merge of versions: 1.37.03, 1.37.02
in „XC16 Compiler Error“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NMEA_manual_for_Fastrax_IT500_Series_GPS_receivers_V1_8.pdf
revision 2009-06-02 1.1 Added chapters 2.9.1 and 2.92. Fixed some 2009-06-09 typos. Added notes to 2.14.2 and 2.14.3 1.2 Added numbering into command title. Removed 2009-09-15 chapter 2.14.2 and 2.14.3 1.3 Added description of default output messages 2009-10-09 1.4 Some changes to command 300 text 2009
in „GPS - Shield von Antrax mit 10hz betreiben [Arduino Mega]“ · Mikrocontroller und Digitale Elektronik ·
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Datei
code.txt
sRES) { sRES=sRES*32; unsigned char i = 23; unsigned char Slot = 25; short x = 0; short y = 0; short ssRES[25]; ssRES[0]=17723; ssRES[1]=17471; ssRES[2]=17204; ssRES[3]=16932; ssRES[4]=16648; ssRES[5]=16354; ssRES[6]=16041; ssRES[7]=15722; ssRES[8]=15388; ssRES[9]=15041; ssRES[10]=14672; ssRES[11]=14293; ssRES[12]=13896; ssRES[13]=13480; ssRES[14]=13036; ssRES[15]=12578; ssRES[16]=12094; ssRES[17]=11588; ssRES[18]=11045; ssRES[19]=10482; ssRES[20]=9885; ssRES[21]=9255; ssRES[22]=8573; ssRES[23]=7863; ssRES
in „ATtiny45 mit Obdev USB wird nicht erkannt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l6599.pdf
value): start ---------------------------------------------------------- 3⋅CF ⋅ ( ( min||RSS )) The C SS capacitor is progressively charged until its voltage reaches the reference voltage (2V) and, consequently, the current through R SS goes to zero. This conventionally takes 5 time constants R SS ·CSS
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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DC02EN.pdf
r i S 10 C E S 10 C Ef 500 5 500 0 0 0 0 0 10 20 30 40 50 60 70 0 10 20 30 40 50 60 70 80 0 (7.1) (14.2) (21.2) (28.3) (35.3) (42.4) (49.5) 0 (7.1) (14.2) (21.2) (28.3) (35.3) (42.4) (49.5) (56.6) Torque / oz-in (Ncm) Torque / oz-in (Ncm) DP20-20 NL Speed = 2540 rpm, LRT = 93 oz-in. DP20M-14 DP20-20V12 (Imperial) DP20M-14V12 (Metric) 3000 DP20M-14V24 (Metric)) 70 P D 2500 60 50 2000 40 ) m 1500 % r 30 A y d t n e 1000 20 e i p r i S 500 C E 10 0 0 0 10 20 30 40 50 60 70 80 90 100 0 (7.1) (14.2) (21.2) (28.3) (35.3) (42.4
in „[V] 2 Elektromotoren“ · Markt ·
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PDF
Datasheet_ILI9225DS_V022.pdf
Control 3 W 1 x x x x x x x x (0) (0) (0) (0) (0) (0) (0) (0) Partial Driving Position SE17 SE16 SE15 SE14 SE13 SE12 SE11 SE10 34h W 1 x x x x x x x x -1 (1) (1) (0) (1) (1) (0) (1) (1) Partial Driving Position SS17 SS16 SS15 SS14 SS13 SS12 SS11 SS10 35h W 1 x x x x x x x x -2 (0) (0) (0) (0) (0) (0) (0)
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1306-Revision_1.1__Charge_Pump__1_.pdf
Pin Name (8 bit) (8 bit) BS0 0 0 0 0 1 BS1 1 0 1 0 0 0 0 BS2 1 1 0 Note (1)0 is connected to V (2) SS 1 is connected to VDD Solomon Systech Apr 2008 P 14/59 Rev 1.1 SSD1306 8 FUNCTIONAL BLOCK DESCRIPTIONS 8.1 MCU Interface selection SSD1306 MCU interface consist of 8 data pins and 5 control pins. The
in „5V an den Datenleitungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1306.pdf
Pin Name (8 bit) (8 bit) BS0 0 0 0 0 1 BS1 1 0 1 0 0 0 0 BS2 1 1 0 Note (1)0 is connected to V (2) SS 1 is connected to VDD Solomon Systech Apr 2008 P 14/59 Rev 1.1 SSD1306 8 FUNCTIONAL BLOCK DESCRIPTIONS 8.1 MCU Interface selection SSD1306 MCU interface consist of 8 data pins and 5 control pins. The
in „OLED Grafik Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marantz-sr8200-9200-service-manual.pdf
APSV221J, OF15221540 RF74-RF75[/S/U] 220pF(TP)100VPP CE25 996500005891 FILM,APSV471J, OF15471540 PF14-SEMICONDUCTORS 470pF(TP)100VPP DF51 /S/U DIODE,1SS176,MA165,1SS254 HD20002000 CE26 996500005891 FILM,APSV471J, OF15471540 30V0.1A 470pF(TP)100VPP DF52 /S/U DIODE,1SS176,MA165,1SS254 HD20002000 CE41 482212422698
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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ICM7213.pdf
6 9 3 ÷ 2 ÷2 ÷ 2 4 ÷ 22 ÷ 22 R F 5 OSC OUT ( 60Hz) ( 2 Hz) (1Hz) (2Hz) n ÷ (5 x 3 x 2) ÷2 ÷2 ÷2 n 14 n OUT 4 n 2 10 VDD OUT 3 n n V WIDTH 1 4 SS 3 11 13 12 INHIBIT TEST OUT 2 OUT 1 OR RESET 13-17 Specifications ICM7213 Absolute Maximum Ratings Thermal Information Supply Voltage (DD - SS). . . . . . .
in „Aus Platinen-Layout Schaltplan mit Fritzing erstellen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
multimec-5-series-switches.pdf
/2B min. 15.24 x 15.24.16min. switch spa15.1 x 15.1 10.1 12.7 x 12min.W15.5 x 15.5 10.54ø9.6 ø10.0 14.3 x 14min. panel cut-out 14.7 x 14.7 1B/1C+1D/1E/1F 1K 15.24 12.7 x 12.7 1KA 15.24 x 15.24.6 15.24 x 15.24x 14.3ø10.0 10.16 14.3 x 14.37 x 14.75.0 x 10.1 14.7 x 14.75 25.7 x 10.5 1A 1D/1E/1FF1C+2A/2B
in „[S] Beleuchtete Navimec Navigationskreistaster für Prototypenherstellung“ · Markt ·
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PDF
Atmel_Evaluations-Board_Version_2.0.pdf
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „ISP über RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810038B.PDF
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „Pollin Board unzuverlässig-Hilfe bei der Fehlersuche!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pollin_Board.pdf
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „AVR: UART Pollin Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810038B.PDF
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
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PDF
D810038B.pdf
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
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PDF
AVR-Board20_810038B.PDF
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „Atmel Evaluationboard V2.01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810038B.PDF
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „LCD Fusebits für Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pollin_board.PDF
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „Atmega32 Evaluationsboard pollin mysmartusb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810038b_3.pdf
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „richtige Hard und Software für Anfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pollin_board.PDF
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „Interrupt und PortC Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pollin_AVR_Evalutationsboard.pdf
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „External Interrupt Atmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pollin_Atmel_Evaluationsboard_2.0.1.pdf
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „suche PDF zu einem älteren Pollin Eval. Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810074B.pdf
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „Probleme beim Einstieg in die wunderbare Welt der Microcontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Evaluationsboard.PDF
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „Atmega16 UART empfängt nicht - senden klappt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Unterlagen_Pollinboard.pdf
AIN0/PCINT0) 10 2 PB1 (T1) PB1 (T1) n.c. - 13 PB1 (AIN1/PCINT1) 11 3 PB2 (INT2/AIN0) PB2 (INT2/AIN0) 14 PB0 (ICP1) 14 PB2 (OC0A/PCINT2) 12 4 PB3 (OC0/AIN1) PB3 (OC0/AIN1) 15 PB1 (OC1A) 15 PB3 (OC1A/PCINT3) 13 5 PB4 (SS) PB4 (SS) 16 PB2 (SS/OC1B) 16 PB4 (OC1B/PCINT4) 14 6 PB5 (MOSI) PB5 (MOSI) 17 PB3 (MOSI
in „Atmega16 keine Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schem3.pdf
SCK1/SCL1 RB2/INT2 BCD1.1 LT1 3 QE 15 R? 9 e + F-153 O G J? DG3 RC4/SDI1/SDA1 RB3/INT3 BCD1.2 4 LT QF 14 R? 10 f e d c A J? D? J? 1 8 DG4 RC5/SDO1 RB4/KBI0 V5VCC 5 BI N QG 5 g dp A - C? C? C? R? C? 7 RF7/SS1 LE G dp 2 6800uF 5 3 3 51k 3.3nF 2 6 RC1/T1OSI/ECCP2/P2A BCD1.3 V5VCC 3 Kathode Kathode 8 12VAC
in „2 versch. Spannungen messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3800.pdf
MBR520 L1 R1 3.3μH 100k C10 R2 BURST_EN V CC 1% 100pF 169k C4 1μF 1% 16V X7R M2 DS1 VFB BG Si7884DP SS14 ×2 VC PGND R3 C3 82k 100pF SENSE– SENSE + C2 SGND 330pF RS 0.01Ω VOUT C7 3.3V AT 10A 10μF + C6 C6: SANYO POSCAP 4TPD470M 470μF L1: IHLP-5050FD-01 6.3V ×2 X7R 3800 TA03a Efficiency and Power Loss 92
in „LT3800 Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8 RAM8 Row16 RAM16 Row8 RAM16 Row8 RAM8 Row16 RAM16 Row8 RAM16 COM9 Row9
in „Spannungsversorgung Arduino läuft nicht über Vin oder 5V-Pin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8 RAM8 Row16 RAM16 Row8 RAM16 Row8 RAM8 Row16 RAM16 Row8 RAM16 COM9 Row9
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
SSD1306.pdf
Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8 RAM8 Row16 RAM16 Row8 RAM16 Row8 RAM8 Row16 RAM16 Row8 RAM16 COM9 Row9
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8 RAM8 Row16 RAM16 Row8 RAM16 Row8 RAM8 Row16 RAM16 Row8 RAM16 COM9 Row9
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8 RAM8 Row16 RAM16 Row8 RAM16 Row8 RAM8 Row16 RAM16 Row8 RAM16 COM9 Row9
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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mech_eng_hc_hc2-hp-dc24v.pdf
Schematic (Bottom view) Standard type 20.8 1.7 .811.7 0.6 27.2 .067 .067 .024 1.071 2 7 12 13 35.2 14 1.386 1 LED AC type LED DC type .039 6.4 .252 2 7 2 7 12 12 2.54 0.5 .100 .020 13 13 13.35 (∼) 14 (−) 14 .526 ∼ ) (+) 4.45 4.41 .175 .174 2 4.06 7 .160 6.35 12 .250 13 14 6.35 .250 General tolerance:
in „[V] Printrelais Spule 24 VDC (2xUM 250V AC / 7A)“ · Markt ·
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S8254A_E.pdf
and Overdischarge Detection V CUn V CLn Batteryvoltage V DUn V DLn (n = 1 to 4) V DD DOPpinvoltage V SS V EB+ COPpinvoltage High-Z High-Z V SS V EB+ V DD 39 / 40×V DD VMPpinvoltage 1 / 2×VDD V SS Chargerconnection Loadconnection Overchargeconnectiondelaytime(t ) CU OverdischargeconnectiondelaytimDLt )
in „18650 protection charger board Frage“ · Analoge Elektronik und Schaltungstechnik ·
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3642fc.pdf
nA I Soft-Start Pin Pull-Up Current V < 1.5V 4.5 5.5 6.5 µA SS SS tINTSS Internal Soft-Start Time SS Pin Floating 0.75 ms IPEAK Peak Current Trip Threshold SET Floating l 100 115 130 mA 500k Resistor fromSET to GND 55 mA SET Shorted to GND 20 25 32 mA R ON Power
in „Bauteil LDYM N188 817“ · Analoge Elektronik und Schaltungstechnik ·
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slaa148.pdf
0.3 R1min+ R2max R1max+R2 min 1.26MΩ 5.5V × < 2.7V +0.3 → 2.8875 V< 3.0V the condition is true. 1.14MΩ+ 1.26M Ω 1.14MΩ 0.0V × > −0.3V → +0.0V > − 0.3 V the condition is also true. 1.26MΩ+ 1.14M Ω The last two equations are not important if the current into the MSP430 input is far below ±2 mA (the absolute
in „MSP430 5V in I/O?“ · Mikrocontroller und Digitale Elektronik ·
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st7565r.pdf
FR signal produces the liquid wave form. M VDD COM0 VSS COM1 V0 V1 COM2 V2 COM0 V3 COM3 V4 V COM4 SS V0 COM5 V1 COM1 V2 COM6 V3 V4 COM7 VSS V0 COM8 V1 V2 COM9 COM2 V3 V4 COM10 VSS COM11 V0 V1 COM12 V2 SEG0 V3 COM13 V4 VSS COM14 V0 COM15 V1 V2 SEG1 V3 SEG 0 1 2 3 4 V4 VSS V0 V1 V2 V3 COM0 V4 to VSS -
in „Neue DOG LCD-Grafikmodule SPI ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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db_lcd-controller-ST7565R.pdf
FR signal produces the liquid wave form. M VDD COM0 VSS COM1 V0 V1 COM2 V2 COM0 V3 COM3 V4 V COM4 SS V0 COM5 V1 COM1 V2 COM6 V3 V4 COM7 VSS V0 COM8 V1 V2 COM9 COM2 V3 V4 COM10 VSS COM11 V0 V1 COM12 V2 SEG0 V3 COM13 V4 VSS COM14 V0 COM15 V1 V2 SEG1 V3 SEG 0 1 2 3 4 V4 VSS V0 V1 V2 V3 COM0 V4 to VSS -
in „G-LCD ST756-Controller , Schriftart und einzelne Pixel ansteuern.“ · Mikrocontroller und Digitale Elektronik ·