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MC28G03G.pdf
oreproductiwithoupermissiis prohibited. 8. Interface Timing Chart 8.1 Timing Chart CL1 (240+n)xT FLM D0~D7 X1 X2 X239 X240 Dummy data CL1 T CL2 X2 X1 D7 R0 B2 G5 B314 G317 D6 G0 R3 B5 R315 B317 D5 B0 G3 R6 G315 R318 D4 R1 B3 G6 B315 G318 D3 G1 R4 B6 R316 B318 D2 B1 G4 R7 G316 R319 D1 R2 B4 G7 B316 G319
in „Farbdisplay von Pollin MC28G03A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SchaltTiny.txt
:100380007E008981882309F462C190918900898166 :100390008917D9F0898180938900CC248981282FFD :1003A00030E03F832E838E819F818130910549F01B :1003B0002E813F812230310571F48D2D8F5FD82E33 :1003C0000AC08D2D8150D82E06C08C2D8F3F19F07C :1003D0008C2D8F5FC82E8C2D863409F038C18C2D62 :1003E0008F5FC82E81E080937E008981823019F46E :1003F0008D2D805FD82E8981813019F48D2D80510B :10040000D82E80E09AE090936100809360008D2D5B :10041000282F30E03D832C838C819D818F3791057F :1004200009F4AAC02C813D81203831050CF04FC061 :100430008C819D818937910509F4D7C02C813D813C
in „Hex Code in AtTiny25 übertragen“ · Mikrocontroller und Digitale Elektronik ·
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irmp.diff
* irmp_data_p) // frame in irmp_data: // Bit 12 11 10 9 8 7 6 5 4 3 2 1 0 // V D7 D6 D5 D4 D3 D2 D1 D0 A1 A0 C1 C0 // 10 9 8 7 6 5 4 3 2 1 0 - irmp_address = (irmp_command & 0x000C) >> 2; // addr: 0 0 0 0 0 0 0 0 0 A1 A0 - irmp_command = ((irmp_command & 0x1000) >> 2)
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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ETV570G2DHU.pdf
2.5 LEDCTRL (V) 02101300-01-02 E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE TECHNOLOGIES CORPORATION E T V 5 7 0 G 2 D H U 1 14 12 .TOUCH PANEL SPECIFICATION 12.1 ELECTRICAL CHARACTERISTICS Ta
in „VGA Display am PIC24FJ256DA210 läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
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LCD_2.pdf
Ns Data hold time (read) tdhr 20 - - Ns tc y c tw IE E 0 .8 V tw h E tr tf ta s ta h R /W ta s ta h 2 .0 V C S 1 ,C S 2 ,D /I 0 .8 V td sw td h w D B 0 to D B 7 MPU Write Timing tcyc tw IE 2.0V E 0.8V tw hE tr tf 2.0V R/W 0.8V tas tah tas tah CS1,CS2,D /I 0.8V 2.0V tddr tdhr D B0 to D B7 MPU Read Timing
in „Grafik-LCD-Text“ · Mikrocontroller und Digitale Elektronik ·
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opto.pdf
o H11D3M 200 V r 4N38M 80 V O p (2) H11D1M, o VECO Emitter to Collector Voltage H11D3M, 7 V o MOC8204M u I Collector Current (Continuous) All 100 mA p C e Note: s 2. Parameters meet or exceed JEDEC registered
in „Optokoppler - Relais“ · Mikrocontroller und Digitale Elektronik ·
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GSMParkHeatingControl.pdf
VCC SIM2µC 4 A1 WP 100nF 100µF/16V NC SCL µC2SIM 4 + C703 K700 GND SDA 0 4 SIM2µC F D L 100µF/16V C N R C C C CC M DD N C D D D AT24C512 µC2SIM A G A A A A A/ / /7 G V 0 1 2 F F F FC C CD P P P R800 2 2 P P P
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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494703_DS.pdf
Timing Diagrams (continued) 9 1 4 G LOGIC +3V +5V +15V DG419 / INPUT 50% 0V 8 +10V S1 VL V+ 1 VOUT1 D VOUT 4 0.9 xOUT S2 SWITCH 0V RL CL G OUTPUT 1 IN1, IN2 300 35pF / VOUT2 0.9 xOUT LOGIC GND V- 7 INPUT SWITCH VOUT D tD -15V 1 OUTPUT 2 4 C LNCLUDES FIXTURE AND STRAY CAPACITANCE. G D Figure 4. DG419
in „Maxim DG 419“ · Mikrocontroller und Digitale Elektronik ·
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TLV2462.pdf
3 6 2IN− 8 GND 4 5 NC GND 4 7 2IN+ GND 4 5 2IN+ 1SHDN 5 6 2SHDN TLV2463 TLV2464 TLV2465 D, N, J, OR PW PACKAGE D, N, PWP, J, OR PW PACKAGE D, N, PWP, J, OR PW PACKAGE (TOP VIEW) (TOP VIEW) (TOP VIEW) 1OUT
in „frage zu einfachem uC Ohmmeter“ · Mikrocontroller und Digitale Elektronik ·
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DG441-DG442.pdf
factory for dice specifications. Pin Configurations/Functional Diagrams/Truth Tables TOP VIEW TOP VIEW D1 IN1 IN2 D2 D1 IN1 IN2 D2 IN1 1 16 IN2 IN1 1 16 IN2 16 15 14 13 16 15 14 13 D1 2 15 D2 D1 2 15 D2 S1 3 14 S2 S1 3 14 S2 S1 1 12 S2 S1 1 12 S2 V- V- 4 13 V+ 4 13 V+ GND 5 DG441 12 N.C. GND 5 DG442 12
in „Was bedeutet normaly closed switch“ · Mikrocontroller und Digitale Elektronik ·
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DeWalt_LiFePo4_Boeschuere.pdf
(inkl.Akku): 2,0 kg, von D EWALT D E WALT Stromversorgung über 12,0 Volt Zigarettenanzünder Exklusiv nur bei D E WALT ca. 400 ca. 500 › 2.000 ManganMetall-Oxid Nano-Phosphat Anzahl Ladezyklen bei 75% Restkapazität
in „DeWalt Akkubohrschrauber die mit LiFePO4 arbeiten“ · Mechanik, Gehäuse, Werkzeug ·
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hs_sed1375.pdf
MOD MOD FPSHIFT2 MOD MOD DRDY FPDAT0 driven 0 D0 LD0 driven 0 D0 D0 LD0 R2 R3 FPDAT1 driven 0 D1 LD1 driven 0 D1 D1 LD1 R1 R2 FPDAT2 driven 0 D2 LD2 driven 0 D2 D2 LD2 R0 R1 FPDAT3 driven 0 D3 LD3 driven 0 D3 D3 LD3 G2 G3 FPDAT4 D0 D4 UD0 D0 D4 D4 UD0 G1 G2 FPDAT5 D1 D5 UD1 D1 D5 D5 UD1 G0 G1 FPDAT6 D2 D6 UD2 D2 D6 D6 UD2 B2 B3 FPDAT7 D3 D7 UD3 D3 D7 D7 UD3 B1 B2 FPDAT8 GPIO1 GPIO1 GPIO1 GPIO1 GPIO1 GPIO1 GPIO1 B0
in „TFT an M16C62“ · Mikrocontroller und Digitale Elektronik ·
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Datei
s1d13700.h
MEM_END 10800 #define S1D13700_SYS_P1 0x10 | (S1D13700_IV << 5) | (S1D13700_WS << 3) | (S1D13700_M2 << 2) | (S1D13700_M1 << 1) | S1D13700_M0 #define S1D13700_SYS_P2 0x00 | (S1D13700_WF << 7) | S1D13700_FX #define S1D13700_CSRF_P2 0x00 | (S1D13700_CM << 7) | S1D13700_CRY #define S1D13700_OVLAY_P1 0x00 | (S1D13700_OV << 4) | (S1D13700_DM2 << 3) | (S1D13700_DM1 << 2) | (S1D13700_MX1 << 1) | S1D13700_MX0 #define NOP() _asm nop _endasm
in „s1d13700 die 2.“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
3 4 5 6 1 2 9 9 9 9 9 0 0 0 0 9 9 I I I I I L L L L L LF 3 3 4 2 2 4 1 1 2 2 2 2 2 B A B A B A C B C B A 3 4 8 0 1 4 1 0 0 0 0 9 9 9 9 9 9 9 T T T T D D D D D D F G G G G A A A A A A B C B B C 0 1 1 1 1 1 1 1 2 2 2 D D D D D D D D D D D 1 1 1 1 4 2 2 2 2 3 3 B B C C B C C B A B A 0 0 0 0 2 3 4 5 6 7 8 Y Y Y Y 9 9 9 9 9 9 9 C C C C D D D D D D D A A A A C C C B A B B 1 2 1 1 3 4 5 6 1 2 9 9 9 9 9 9 9 9 9 9 9 -
in „Hilfe Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dti.c
=(0.75+(int)(j/100.0)*0.75); h3=(int)d1; h1=(m<3)?0:h1; dt+=h1; dt+=h2-h3; return(dt);} long dt2(t,m,j){int y=j; long d=(long)365*j+31*m-31+t; if(m<3)j--;else d-=(int)(0.4*m+2.3); // return(d+(j>>2)-(int)(0.75+((int)(j/100.0))*0.75));} //
in „TI58 TI-58 TI59 TI-59 solid state software modul Programm 20“ · Mikrocontroller und Digitale Elektronik ·
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13504_TM_X19AQ00214.pdf
driven 0 D2 D2 LD2 LD2 R0 R1 R3 Note2 2 FPDAT3 driven 0 D3 LD3 driven 0 D3 D3 LD3 LD3 G2 G3 G5 Note FPDAT4 D0 D4 UD0 D0 D4 D4 UD0 UD0 G1 G2 G4 Note2 FPDAT5 D1 D5 UD1 D1 D5 D5 UD1 UD1 G0 G1 G3 Note2 2 FPDAT6 D2
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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Datei
sound.h
0x8c, 0x4d, 0x2b, 0x25, 0x48, 0x80, 0x7d, 0x70, 0x57, 0x35, 0x3f, 0x82, 0xa1, 0xaa, 0xab, 0xad, 0x91, 0x94, 0xa1, 0x9a, 0x9d, 0xb2, 0xb1, 0xb5, 0x91, 0x54, 0x37, 0x2d, 0x48, 0x7d, 0x82, 0x65, 0x4c, 0x3b, 0x3e,
in „Xmega Soundcheck“ · Mikrocontroller und Digitale Elektronik ·
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panasonic_tx-w32d5dpf.pdf
D1 D1107 C5 Q3006 D1 D1108 C6 Q3007 D1 D1109 D6 Q3008 D1 D1110 D6 Q3010 A3 D1111 D6 Q3011 B2 D1112 D6 Q3012 B2 D2101 B2 Q3013 B2 D2102 B2 E Q3014 D1 D2301 A2 Q3801 A5 D2302 A2 Q3990 A4 D2351 A6 Y - BOARD TNPA1353 TRAN’S Q901 C1 Q902 B1 Q903 B1 Q904 C1 Q906 C1 A Q908 D1 Q909 D1 Q3351 A2 Q3352 A2 DIODE’S D351 B3 D352 B3 D361 A2 D362 A2 D371 C3 D372 C2 D373 C3 D374 A1 B D375 B2 D387 B1 D901 C1 D902 C1 D903 C1 D910 C1 D911 D2 D3351 A2 D3352 A3 D3353 A1 D3354 C3 T.P.’S
in „Panasonic TX-W32D5DPF“ · Analoge Elektronik und Schaltungstechnik ·
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GT06_GPS_Tracker_Communication_Protocol_v1.8.1.pdf
73 65 3A 30 2E 30 30 2C 53 70 65 65 64 3A 30 2E 33 35 31 38 2C 44 61 74 65 54 69 6D 65 3A 31 31 2D 31 31 2D 31 35 20 20 31 31 3A 35 33 3A 34 33 00 02 00 23 07 AE 0D 0A - 37 - Shenzhen Concox Information Technology
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AK5388AEQ.pdf
AK5388AEQ –10 ~ +70C 44pin LQFP (0.8mm pitch) AKD5388A Evaluation Board for AK5388A ■ Pin Layout 2 2 2 2 2 6 D T 5 4 D E N I I S V E S S V P O I R R V A T V V D H M D 3 2 1 0 9 8 7 6 5 4 3 3 3 3 3 2 2 2 2 2 2 2 VREFP2 34 22 TDM1 VREFL2 35 21 TDM0 VCOM2 36 20 TDMIN LIN2+ 37 19 OVF AK5388AEQ LIN2- 38
in „Audio-ADC - Taktfrequenzen I2S“ · Mikrocontroller und Digitale Elektronik ·
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RK2705_Pin_Description.pdf
data[0] 9 LCD_D0 O lcd data[0] 10 LCD_D1 O lcd data[1] 11 LCD_D2 O lcd data[2] 12 LCD_D3 O lcd data[3] 13 VDDIO P IO POWER SUPPLY 3.3V 14 VSS P GROUND 15 XIN24M I OSC Crystal 24M input 16 XOUT24M O OSC Crystal 24M output 17 VDD P CORE POWER SUPPLY 1.2V 18 LCD_D4 O lcd data[4] 19 LCD_D5 O lcd data[5] 20 LCD_D6 O lcd data[6] 21 LCD_D7 O lcd data[7] 22 PE0/LCD_D8 IO Pull up/O GPIO E0/LCD data[8] 23 PE1/LCD_D9 IO Pull up/O GPIO E1/LCD data[9] 24 PE2/LCD_D10
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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rly.pdf
D S Q_PNP_BCE _ _ _ _ _ 12 l ? 1 Q? D D D D D 13 O0 a R 2 2 A1 S Q? 14 11 _ l ? 1 A0 U?B O1 R R_SmamlR Q_NPN_BCE R? 3 10 +5V R 74LS139 O2 L? L? L? L? 15 GND a a a a a E O3 9 3 GND m ? ?INDmCTOR_SMALL ?
in „Ansteuerung vieler bistabiler Relais“ · Mikrocontroller und Digitale Elektronik ·
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SNT7000_v3.3.pdf
3 D17 1 2 LL4148 1K 1 P4 S2b IN OUT 2 D18 2 1 LL4148 10K 1 D 3 R13 IC4 C18 10pF 2 3 G C5 1 + 2 I Einstellung 2 2 2 1 4k7 1 CA3140 1 2 IC1 LM7805 2 STROBE R17 R18 BAL 2 D21 2 Re3 1 10µF 10V K10 I_out R14
in „Suche Schaltplan für ELV SNT7000“ · Analoge Elektronik und Schaltungstechnik ·
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APT_Communications_Protocol.pdf
: 0 1 2 3 4 5 header only D2 07 01 00 d s Example: Requestthedisplayintensity TX D2, 07, 01, 00, 50, 01 GET: Commandstructure(8bytes) 6 byteheaderfollowedby2bytedatapacketas follows: 0 1 2 3 4 5 6 7 header Data
in „Thorlabs Laser-Source mit über FTDI232BM ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Platinfuchs_IIa_Schematic-and-Layout.pdf
-40YS PSMN2R4-30YLD PSMN2R4-30YLD D6 D7 C20 Main 1N4148WS 1N4148WS 4,7µF Z Z D3 35V V V * LED yellow D8 C9 N C22 C23 R4 R5 R6 R7 R8 R9 R10 R11 BZT52C13 22µF * 620K 2,2R 2,2R 620K 620K 2,2R 2,2R 620K Zener: 13V 16V
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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0fr3wdgekryxzkwteer8ge0a7f7y.pdf
2/9 USBUFxxW6 APPLICATION EXAMPLE Fig. A2: Implementation of ST' solutions for USB ports Downstream port USBUF01W6 Upstream port USBDF01W5 t D2 Gnd D1 D+ e Rt i D+ r c CABLE i n D+ in Ct Rd D+ out D+ D+ c t s o Gnd Ct Ct r p Rt Rt l S Gnd 3.3V r U h u Ct Rd D- D- Rp r / D- e s P H D- in Rt D- out D3 3.3V D4 D- FULL SPEED CONNECTION USBUF01W6 Downstream port USBDF01W5 Upstream port D+ r D2 Gnd D1 i D+ Rt c CABLE e n D+ in Ct Rd D+ out D+ D+ e r s r Ct Ct a
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Spezifikation.pdf
with 10GbE Uplink Antennas and Cables Specifications Antenna Model EXT-108 EXT-109 EXT-114 EXT-118 2.4 GHz 8 dBi 2.4 GHz 9 dBi Directional 2.4 GHz 14 dBi Directional 2.4 GHz 18 dBi Directional Omni-Directional Outdoor Patch Antenna Outdoor Panel Antenna Outdoor Panel Antenna Outdoor Antenna Product
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Datei
CRC.o.lst
53 @ frame_needed = 0, uses_anonymous_args = 0 54 @ link register save eliminated. 55 .LVL1: 56 .LBB2: 25:../CRC.cpp **** static const Tu32 CrcTable[16] = { 26:../CRC.cpp **** 0x00000000,0xB2B4BCB6,0x61A864DB,0xD31CD86D,0xC350C9B6,0x71E47500,0xA2F8AD6D,0x104C11DB, 27:../CRC.cpp **** 0x82608EDB,0x30D4326D
in „Problem mit GCC-Optimierung“ · Mikrocontroller und Digitale Elektronik ·
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Baumappe_BX-222.0.pdf
P P IC1 2 4 5 7 3 3 L P I C MIC5205 -3.3YM GND +3V3 3 3 3 3 E E D DW T +5V 1 VI VO 5 ( ( ( ( 7 5 4 2 ( ( 6 3 A AF F T / // T OET X X 1 2 56k µ D D D D S S S S D D S S D SE E A S KO I S S E T T A A 2 3 EN BY/AD
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AVRnDxBoard.pdf
pin-compatible (SOT-23-5 to SOT-23-6) C C JP1 2 D 62 JP2 N D D D XTALHF1/PA0 5V/3.3V Select C1 G N N N 3 A G G G JP3 Y1 5 7 1 7 15p 15p C9 100n 3 2 5 C8 User Leds +3.3V W2 PA1 R13 D2 J3 W1 1 PA0 2 1K DNP 3 R14 D3 4 1K Conn_01x04 R15 D4 1K R16 D5 1K
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715G6550-P0E-000-0020PV_PSU.pdf
Circuit Diagrams and PWB Layouts TPN15.1E LA 10. EN 59 10.2 A 715G6550 PSU 10-2-1 POWER POWER A01 A01 A BD9901 +18V NC BD9902 3 3 2 GBL408-C D9110 D9109 1R510-22 2 1 SR34H 2 ZD9101 +12V_A BZT52-B22 4 4 - - 1 1 D9111 1 + + SR510-22 +12VS 4 1 2 R9130 0 1K OHM H
in „Backlight Philips Flachbildschirm defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RIGOL-DSA815-TG_Unpublished-Information_2014-09-12.pdf
00 00 00 c2 00 00 00 92 01 00 00 ‚...â...Â...’... 0188b010 e2 05 00 00 d2 05 00 00 c2 05 00 00 12 00 00 00 â...Ò...Â....... 0188b020 12 00 00 00 12 00 00 00 46 41 43 54 4f 52 59 4d ........FACTORYM 0188b030 4f 44
in „Rigol DSA815 Spektrum Analyser“ · PC Hard- und Software ·
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Receiver_2.pdf
V X1 3 1 + DATA2- 2 DATA2+ 3 DATA2/4S 4 DATA4- 5 DATA4+ 6 2 4 5 7 8 7 8 9 3 7 8 DDCCLOCK 7 SCL 8 8 8 9 9 6 3 6 1 2 4 5 7 DDCDATA 8 SDA AV-SYNC 9 80 D D D D D D D D D D D D D 77 DATA1- 10 81 RX2+ V V V V V V V V V V V
in „Efahrungen mit TFP401 und TFP410 von TI“ · Mikrocontroller und Digitale Elektronik ·
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avrcp_m.pdf
1 2 3 4 5 6 +3V3 5V USB + 0 0 A C12 3 1 A 10µ R2 R4 RESET_CPM IC5 4256 Reset 1 23 /RAS D0_A0 6 1 D0_A0 4 3 D PC6(/RESET) PC0(ADC0) 24 /CAS D1_A1 7 A0 I/O1 2 D1_A1 +3V3/5 20 IC3 1 L C6 C7 100n 22 PC1(ADC1) 25 /OE D2_A2 8 A1 I/O2 18 D2_A2 VCC TXD RXD_AVR GND PC2(ADC2) /WE D3_A3 A2 I/O3 D3_A3 C9 + C1C13 4 VCCIO RXD 5 TXD_AVR 2 1 1 n 100n 21 AREF PC3(ADC3) 26 9 A3 I/O4 19 RTS 3 S G 100n 20 AVCC PC4(ADC4/SDA) 27 D4
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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82546.pdf
T1IN T1OUT 74 7 10 12 T2IN T2OUT 13 X2 RD LED 9 R2OUT R2IN 8 8 GND TD LED 9 J1 6 2 RxD 7 TxD (BR/D) 3 R1 4 DTR (Reset) Y1 9 VCC 5 Z2 Application circuit usingTFDU4100 with integrated CON9 J2 R2 1 C1 + C2 level shifter MAX3232E.When
in „Transparente, drahtlose Verbindung zweier RS232-Schnittst.“ · Mikrocontroller und Digitale Elektronik ·
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IRMS6400.pdf
3. I/O Parameters (continued) Parameter Min. Typ. Max. Unit Conditions RxD Output High 3.5 4.0 — V VCC=5.0 V,OH=24 mA RxD Output High 2.0 2.3 — V V =2.7 V, I=6.0 mA CC OH RxD Output Low — 1.0 1.5 V VCC=5.0 V,OL=24 mA RxD Ouput Low — 0.4 0.8 V VCC=2.7 V,OL=6.0 mA RxD Short Circuit
in „[V] Konvolut IRDA Bauteile 4x IRMS6400 und Decoder 6x HSDL7001 (10€)“ · Markt ·
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IRMS6400.pdf
3. I/O Parameters (continued) Parameter Min. Typ. Max. Unit Conditions RxD Output High 3.5 4.0 — V VCC=5.0 V,OH=24 mA RxD Output High 2.0 2.3 — V V =2.7 V, I=6.0 mA CC OH RxD Output Low — 1.0 1.5 V VCC=5.0 V,OL=24 mA RxD Ouput Low — 0.4 0.8 V VCC=2.7 V,OL=6.0 mA RxD Short Circuit
in „[V] Rolle mit IRDA 4 Mb/s Infrared Data Transceiver Infineon IRMS 6400“ · Markt ·
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Lab_PSU_v2.pdf
+9V TS4148 TS4148 D3 D4 IC3CE 4 2 SFH6156 IC3LED B SFH6156 B VCC 3 1 IN T1 470R VCC T2 X6 TIP137 TIP132 L2 L1 R11 2 3 L1 L1 C2 + C6 6 470µ +C13 C14 C15 3 2 L2 D B k 1 1 C19 2 0 680µ 1µ 2 0 220µ 1µ 33n 3 R 0 1 R 1 X1 R 1
in „Labornetzteil mit getakteter Vorregelung - Überschwinger“ · Analoge Elektronik und Schaltungstechnik ·
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Nano_Universal2_pcb.pdf
M5 M5 102 a e S + -+ - + 4A 12V0 5V0 1A GND RX TX ADC4_SCA0 ADC5_SCL0 10n - + - + 7 F1 F2 4 3 C 2 4 R D 2 4 2 4 7 4 I 6 3 I C A R R C R C C R C C3 10u D A - A 2K C1 10n J3 + 10n 2K J2 2K 10n BZW06-15 U n 0 C14 C13 1 2 6 A D7 C2 1 5 R D A1 C A 100n L7805 R27 1K + - 5 D24 2K l 6 9 9 4 5 + i 0 D R R R Q K 1N4733 10n i Z D - B 5 C K K K 2 8 R D 0 1 2 2 IRLZ44N C A 2 6 D + 2K - 1 a 6 2 3 3 3 + - Digital3 -+ + g 0 D R R R Q Digital12 10n D Z 2 - B 6 C K K R 1 C R A 0 1 2 2 IRLZ44N 2 6 D - + 2K
in „Arduino Nano Störungen und Durchbrennen“ · Mikrocontroller und Digitale Elektronik ·
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LM358.pdf
u u u l p A I ( S D I P O I E n n n n o u I I I I V S 2 s V C C n m B B B A A A A V / A / A U V d d d m m m m m m n p n x 0 0 a 6 1 2 5 M 0 0 2 y 0 0 0 1 0 0 0 0 7 5 0 0 M T 1 7 1 b 4 2 5 4 4 1 4 L n M 2 5 5 2 1 1 x 0 0
in „Schaltungserklärung.Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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LED5_KIN.pdf
+=)?O-,L?--,B?-.=FK-6,**=$- z#7)-"7)9,-*752.8"; 75+ "K O/K=B?-,?B-#=MKF-9-=FF=0M-E= B?+ z"7".#D,-;01- AH-E D89;9,-"D*CD69+ ;K?-/=MK-911=)=?0)2-,?B-,0B-7L,0M?--O $L)?-) * L-B?+=)?O-,L? z6959,D#-".,"729-#9DE2+ -,B?-.=FK-6,**=$--DLO?0=B?-"K O/K=B?- 0-6,**=$--"K O/K=B? z,9# DJ#9-D5E-,.669E+ 7L,0M?-
in „Rote LED kuzzeitig an 5V ohne Vorwiderstand“ · Mikrocontroller und Digitale Elektronik ·
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EMS_V2_Plan.pdf
1 2 3 4 5 6 7 8 1JP4 2 5 3 4 S 1 L4 4 DC1 M 2 4 1µ2H E GND 100n +VIN +VOUT 100n 100n 3 D 4700µH D7 V 2 3 1 3 L3 V X2-1 F 7 6 + ACM3225 C6 -VIN -VOUT C7 C8 U1P L1 C1 D EMS_TX 2 0 4 R DC/DC CONVERTER BAT54S S C F 3 IC1A VA-0505S S1 A 4700µH 68pF 4 R1 C 1 1 R7 EMS_232_RX 1 2SJ2 2 V A X2-2 D8 5 A 10K 2 4k7 1 TXD CANH 7 1 L5 4 JP2 EMS-Bus L2 D B R 2 LM393D 5 1 VDD1 VDD2 8 1 9 R m 3 4 5 + RB2 2 VOA VIA 7 4 RXD CANL 6 2 D BAT54S 3 h R R R RB3 3 VIB VOB 6 2 3 N D K 0 k 4 GND1
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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B6_Arduino___.pdf
. . N N S T F 3 1 V G R 5 A A A A A A A A R 3 D6 5 4 3 2 1 0 E V N . . V 7 6 5 4 3 2 1 0 F 3 3 I D T 5 A A A A A A A A E V 1 V N R R 3 D G <USB>GND <USB>GND <USB>ID <USB>ID NANO <USB>D- <USB>D- <USB>D+ ARDUINO <USB>D+ ICSP <USB>+V <USB>+V 1 0 T D 0 1 2 X X S N 2 3 4 5 6 7 8 9 1 1 1 T R R G D D D D D D D D D D D 1 1 T D 2 3 4 5 6 7 8 9 0 1 2 X X S D D D D D D D D 1 1 1 T R R N D D D G e e e e e e i i i i i i S S S S S S 7 8 9 0 1 2 R R R 1 1 1 R R R
in „Frequenzumrichter Eigenbau mit Arduino“ · Analoge Elektronik und Schaltungstechnik ·
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sch_lay.pdf
3 0 0 0 0 0 0 7 0 0 P P P P P P 0 P P P0D402 P D5 2 P0D60206 0 P 32 3P0R330D3 2 2 0 0P0R3301 0 0 P0D101 P0D201 P0D301P P R00 0 R11 2 R0 0 3 3 1 1 3 3 R27 R28 RP0D102R RP0D202R RP0D302 P P 0 0 R19 2P QP P0R2701 P0R28021 P P 9 9 P0Q102 R R P0Q103
in „signal- bzw. funktionsgenerator mit OPs“ · Analoge Elektronik und Schaltungstechnik ·
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bindec.inc
max. 1495 c, Durchschn. 1073 c ; min.-36028797018963968 = 0x80000000000000 532 bytes ; B6 B5 B4 B3 B2 B1 B0 ; S D8 D7 D6 D5 D4 D3 D2 D1 D0 ; R12 R10 R9 R8 R7 R6 R5 R4 R3 R2 #define _BINDEC64_ ; bin 8 byte -> dec 10 byte ; bindec64 - unsigned, max. 18446744073709551615 = 0xFFFFFFFFFFFFFFFF max. 1866 c
in „Multiplikation_in_Assembler“ · Mikrocontroller und Digitale Elektronik ·
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S65_Adapter.pdf
7 7 6 4 l l v 8 bcc V 1 2 l v 8 bcc V 1 2 + B B v 6 bcc V + B B N 5 RI D DNG 4 N + B D 5 RI D DNG 4 D o G G RI D DNG D l GN G 5 acc V 1 2 l 5 2 G v acc V 1 2 . 1 A A v acc V . 1 A A + 8 1 A + + 2 T 2 3 E 3 _ S E A S L _ _ _ _ _ Y Y Y Y Y L L L L L S S P P P D D I I I D D D 4 4 r n Z D D A K 2 1 + - L L _ _ D D o o L L 5 5 2 2 + + T A 5 F S 1 K T 2 8 µ S E S L A C 0 1 D t _ _ _ _ _ + - N o A A A A A L L G 5 L L L L L D _ _ L 2 I I I I I N D D _ + V D D D D
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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tlc5620.pdf
SLAS081E – NOVEMBER 1994 – REVISED NOVEMBER 2001 CLK su(DATA-CLK) tv(DATA-CLK) DATA A1 A0 RNG D7 D6 D5 D4 D3 D2 D1 D0 su(LOAD-LDAC) LOAD t w(LDAC) LDAC DAC Update Figure 2. LDAC-Controlled Update CLK Low CLK DATA A1 A0 RNG D7 D6 D5 D4 D3 D2 D1 D0 ÎÎÎÎÎÎ ÎÎÎ ÎÎÎ LOAD LDAC Figure 3. Load-Controlled Update Using 8-Bit Serial Word (LDAC = Low) CLK Low CLK DATA A1 A0 RNG D7 D6 D5 D4 D3 D2 D1 D0 ÎÎÎÎÎÎÎ ÎÎÎÎ ÎÎÎÎ LOAD LDAC Figure 4. LDAC-Controlled Update Using 8-Bit Serial Word Table 2 lists the A1 and A0 bits and the selection of the updated DACs. The RNG bit controls
in „DAC Schieberegister“ · Mikrocontroller und Digitale Elektronik ·
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AAT3113.pdf
full scale AAT3114-20 6 Diode outputs, 20mA full scale Pin Configuration 16 LD 4x4mm QFN (Top View) D1EN/SET VIN NC 1 1 1 1 D2 1 12 GND D3 2 11 C2- D4 3 10 C2+ (D5) 4 9 OUT 5 6 7 8 (D6) C1+ C1- NC 2 3113.2002.06.0.6 AAT3113/4 High Efficiency 1.5X Fractional Charge Pumps For White LED Applications Absolute
in „LCD Hintergrundbeleuchtung dimmen mit PWM“ · Mikrocontroller und Digitale Elektronik ·
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ETQ570G2DH6.pdf
E T Q 5 7 0 G 2 D H 6 3 0-1 DOC . FIRST ISSUE JAN.23, 2009 R E C O R D S OF R E V I S I O N REVISED D A T E PAGE S U M M A R Y NO. MAR.04, 2009 1 2. MECHANICAL SPECIFICATIONS (9) COLOR ------ 16.7M → 262K 3 4. ELECTRICAL
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tanke_bus_6.pdf
GND IC10 7 9 IC12 D0 Q 6 D1 Q0 3 5 D2 Q1 2 4 D3 Q2 4 3 D4 Q3 7 2 10 1 D5 14 Q4 1 15 D6 CLK Q5 5 14 D7 Q6 6 13 D8 Q7 9 e D9 Q8 Si 12 D10 13 ENA Q9 11 re GND 11 D11 p 15 RES CO 12 D 1 10 O/E 5 4017N V 3 4531N OrD IC11 Si8 2 11 r 1 3 D1 S0 9 IC17 Si4 D2 S1 IC14 - 1 21 D3 S2 10 IC23 IC24 IC25 IC26 IC27 1 I1 O1 16 r 0 3 22 D4 S3 8 1 I1 O1 18 1 14 1 14 1 14 1 14 1 14 2 I2 O2 15 pi- O S4 7 2 I2 O2 17 2 13 2 13 2 13 2 13 2 13
in „Daten zu Ferranti-Display/Tanksäulenanzeige gesucht“ · Mikrocontroller und Digitale Elektronik ·