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Datei
philipsPM-LCDs.txt
a9 f9 37 S10 D8 c8 A8 b8 36 S11 k8 G8 h8 j8 35 S12 i8 l8 m8 g8 34 S13 d8 e8 a8 f8 33 S14 Z14 Z15 Z17 Z16 27! S15 Z13 Z12 Z10 Z11 26 S16 Z6 Z7 Z9 Z8 25 S17 Z5 Z4 Z2 Z3 24 S18 d7 c7 a7 b7 31! S19 P7 e7 f7 g7 30 S20 d6 c6 a6 b6 29 S21 P6 e6 f6 g6 28 S22 d5 c5 a5 b5 22! S23 P5 e5 f5 g5 21 S24 d4 c4 a4 b4 20 S25 P4 e4 f4 g4 19 S26 d3 c3 a3 b3 17! S27 P3 e3 f3 g3 16 S28 d2 c2 a2 b2 13! S29 P2 e2 f2 g2 12 S30 d1 c1 a1 b1 11 S31 Y3 e1 f1 g1 10 S32 P1 Y2 SRQ {arUp} 09 {arUp means clipping, see page 3-9 (17/114)} S33 {LoBat} Y1 REM {flash} 08 S34
in „Pjilips PM2519“ · Markt ·
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PDF
CLIPDecoder_Antoniak.pdf
GND GND AGND TL084 AGND AGND AGND AGND AGND 10k R8 C9 1k2 470n U3 VCC LCD16*2 C C C3 R19 220n LCD R17 100k 47k AGND D C A VCC G V V R R EN D D D D D D D D R20 CALL VCC 4k7 1 2 3 4 5 6 7 8 9 1 1 1 1 1 T2 BC548B C13 R18 C10 PR1 470n 47k 100n 1k GND GND GND GND GND GND U2 AT90S2313 C11 22p 5 12 XTAL1 PB0(AIN0) 13 X1 PB1(AIN1) VCC C12 10MHz PB2 14 B 22p PB3(OC1) 15 JP1 B 4 XTAL2 PB4 16 1 PB5(MOSI) 17 2 1 18 GND RESET PB6(MISO) 19 3 VIN VCC PB7(SCK) 4 D3 VCC 2 5 BAT43 U4 PD0(RXD) 3 6 78L05 20 PD1(TXD) 6 ISP IN OUT VCC PD2(INT0) CLIP_DIG CON2 GND PD3(INT1) 7 CALL GND C14 PD4(T0) 8 C17 C15 C16 C18 100n
in „Kryptischer CLIP-Decoder“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CLIPDecoder_Antoniak.pdf
GND GND AGND TL084 AGND AGND AGND AGND AGND 10k R8 C9 1k2 470n U3 VCC LCD16*2 C C C3 R19 220n LCD R17 100k 47k AGND D C A VCC G V V R R EN D D D D D D D D R20 CALL VCC 4k7 1 2 3 4 5 6 7 8 9 1 1 1 1 1 T2 BC548B C13 R18 C10 PR1 470n 47k 100n 1k GND GND GND GND GND GND U2 AT90S2313 C11 22p 5 12 XTAL1 PB0(AIN0) 13 X1 PB1(AIN1) VCC C12 10MHz PB2 14 B 22p PB3(OC1) 15 JP1 B 4 XTAL2 PB4 16 1 PB5(MOSI) 17 2 1 18 GND RESET PB6(MISO) 19 3 VIN VCC PB7(SCK) 4 D3 VCC 2 5 BAT43 U4 PD0(RXD) 3 6 78L05 20 PD1(TXD) 6 ISP IN OUT VCC PD2(INT0) CLIP_DIG CON2 GND PD3(INT1) 7 CALL GND C14 PD4(T0) 8 C17 C15 C16 C18 100n
in „Festnetzklingel mit Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schema_ESP32.pdf
IO32 IO19 31 4 GND EP GND 9 IO33 IO18 30 IO18 5 FB IO25 10 IO25 IO5 29 IO5 ON#/OFF GND IO26 11 IO26 IO17 28 IO17 IO27 12 IO27 IO16 27 IO16 +3V3 13 IO14 IO4 26 14 IO12 IO0 25 IO0 C5 D6 C10 15 24 330uF / 35V .SS34 330uF / 35V GND 16 GND IO2 23 17 IO13 IO15 22 R1 18 NC NC 21 10k▯' 19 NC NC 20 NC NC U1 GND
in „ESP32 USB - C Schema“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T.E._GPS_Receiver_A1029_V4.0.pdf
size: 1.4 x 0.9 Width including solder pads: 22 Distance between solder pads within groups 1-9, 10-17, 18-25, 26-34: 1.27 Distance between groups (1-9 to 10-17 and 18-25 to 26-34): 5.08 All dimensions in [mm] Figure 8: Mechanical outline solder side A1029-A/-C V4.0 – 03/07 User’s Manual Page 17 of 47
in „Dead Reckoning GPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fast-start-hello-world.pdf
ignore the comparison is always false.. warnings). Go into the MenuEditor folder and open menutester.bat with your favourite editor. Adapt the “SET CYGWIN” line to the path you used for the Cygwin installation. Save the file. 2. An own hello world This example shows how to build a simple test application
in „Menu Designer für Grafik LCDs inklusive grafischem Editor“ · Projekte & Code ·
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PDF
soft_clip.pdf
GND GND AGND TL084 AGND AGND AGND AGND AGND 10k R8 C9 1k2 470n U3 VCC LCD16*2 C C C3 R19 220n LCD R17 100k 47k AGND D C A VCC G V V R R E D D D D D D D D R20 CALL VCC 4k7 1 2 3 4 5 6 7 8 9 0 2 3 4 1 1 1 1 1 T2 BC548B C13 R18 C10 PR1 100n 1k 470n 47k GND GND GND GND GND GND U2 AT90S2313 C11 22p 5 12 XTAL1 PB0(AIN0) 13 B X1 PB1(AIN1) 14 VCC B C12 10MHz PB2 15 JP1 22p PB3(OC1) 4 XTAL2 PB4 16 1 PB5(MOSI) 17 2 1 RESET PB6(MISO) 18 3 GND PB7(SCK) 19 4 VIN VCC 5 D3 VCC PD0(RXD) 2 6 BAT43 U4 3 78L05 20 PD1(TXD) 6 ISP IGNDUT VCC PD2(INT0) 7 CLIP_DIG CON2 C14 PD3(INT1) 8 CALL GND PD4(T0) 9 +15...+20V C17 C15
in „CLIP Schaltplan; Protel->PDF Umwandlung bitte“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan einer Akku-Anschluss-Schaltung
Anschluss Akku TP1 7,17V 3,58V TPS +VDC Zwischen Akku, L1, L2, GND, Pinnummerierung Buchse 1 3 5 7 8 2 4 6 8 10, F100 +BATT, Gebrückt, SFJ-0812W, 10M, Q1, TP111, (3,8V), BAT-GND, C7, C7, VBATT+, GND, Schnellauslösung Sicherung
in „IC-Identifikation: Q5A + KK9“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Bild
Schaltplan einer galvanisch getrennten Schnittstelle
Slave 1 U1 IS 22LAD +5V iso C13 100n C5 100n +5V iso U8 MAX485EESA R9 10k R17 10R R25 120R PL2 BS27905013N JP1 J1 +5V GND +5V iso IC1 IN OUTB GND iso U1 IC1 IN OUTB GND iso D9 SMBJ5.0A D13 SMBJ5.0A 24V-to-5V GND_out GND_in C 0+5V_out - GND D2 BAT545 +5V R1 GND 620R U2 SN1 LL414B D5 C9 100n GND iso R4 4k GND iso C17 100n C2L 10u C25 100n C31 1nF 1kV U3 13 05D5 +Vin -Vin +Voc GND iso R29 1Meg
in „Optimierung RS485-Bus“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
b8_handbuch_1205.pdf
1/1 1/1 - - 12 18 18LF14K50 20 16 256 4 1 1 1/1 1/1 - 1 9 15 18LF23K22 28 8 256 4 2 2 2/2 2/2 - - 17 25 18LF24K22 28 16 256 4 2 2 2/2 2/2 - - 17 25 18LF25K22 28 32 256 7 5 5 2/2 2/2 - - 17 25 18LF26K22 28 64 1024 7 5 5 2/2 2/2 - - 17 25 18LF43K22 40 8 256 4 2 2 2/2 2/2 - - 28 36 18LF44K22 40 16 256
in „PIC16f628 programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic.pdf
3 IO32 8 IO32 IO19 31 4 2 1 3 IO33 9 IO33 IO18 30 IO18 IO25 10 IO25 IO5 29 IO5 GND IO26 11 IO26 IO17 28 IO17 +3V3 IO27 12 IO27 IO16 27 IO16 CN3 IO14 13 IO14 IO4 26 BM02B-SRSS-TB (LF)(SN) 14 25 15 IO12 IO0 24 IO0 R1 GND 16 GND IO2 23 IO2 10k▯' 17 IO13 IO15 22 IO15 GND 18 NC NC 21 EN 19 NC NC 20 NC NC
in „ESD32 + USB-C - Welche Bauteile müssen zusammen sein“ · Platinen ·
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PDF
SerProg.pdf
*.bat files • Example1.bat : Read FLASH memory from MB90F543 from addr FF0000 to FF0FFF (length 1000) and save it into file test.bin. The CPU is connected via serial cable (asynchronous communication) to
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SerProg.pdf
*.bat files • Example1.bat : Read FLASH memory from MB90F543 from addr FF0000 to FF0FFF (length 1000) and save it into file test.bin. The CPU is connected via serial cable (asynchronous communication) to
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD00161566.pdf
. 17 2.3.16 I²C bus . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19 2.3.17 Universal synchronous/asynchronous receiver transmitter (USART) . . 19 2.3.18
in „[F] STM32F103: Lastkondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Tadiran-Lithiumbatterien.pdf
Tadiran Lithiumbatterie hat sich in mehr als einen wichtigen Technologie-Durchbruch bei Lithium-Ionen-Bat- 35 Jahren Markterfahrung und bei mehreren 100 Millionen Bat- terien dar. terien im Feld als sicher erwiesen. Es wurden keinerlei Unfälle gemeldet. Die gesamte Produktlinie ist bei den Underwriters
in „Astabiler Multivibrator mit TLC555 (LMC555)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
arm.pdf
/ AD0.0 / I2SRX_CLK / CAP3.0 P3.16 / D16 / PWM0.1 / TXD1ID20137 D16 100n POADC1 1PID2016 PID20143 D17 PIC2901 PIC2902 ADC1 14 P0.24 / AD0.1 / I2SRX_WS / CAP3.1 P3.17 / D17 / PWM0.2 / RXD1 151 D18 POAADC2 12ID20P0.25 / AD0.2 / I2SRX_SDA / TXD3 P3.18 / D18 / PWM0.3 / CTS1PID16151 D19 PODADAC PID20P0.26
in „ARM Board Layout“ · Platinen ·
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Datei
RFM02-V9.asm
------------------------------------------------------ tx: ; 1 Datenbyte senden ldi serial,0x80 ; R17 -> Bit 7 maskieren tx1: sbis PinD,irq ; warte bis Pin NIRQ=1 rjmp tx1 tx2: sbic PinD,irq ; warte bis Pin NIRQ=0 rjmp tx2 push serial ; R17 auf Stack and serial,data ; AND R17,R18 cbi PortB,SDI ; setzt
in „Beispielprogramm für RFM12 433MHz Funk-Module“ · Projekte & Code ·
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PDF
soft_clip.sch.pdf
10k AGND TL084 AGND AGND AGND AGND AGND R8 l 1k2 C9 a 470n VCC U3 LCD16*2 n C C C3 o R19 220n LCD i R17 100k s 47k AGND D C W A VCC G V V R R EN D D D D D D D D R20 VCC CALL e 4k7 1 2 3 4 5 6 f 7 8 9 1 1 1 1 1 T2 o BC548B C10 C13 R18 470n PR1 r 100n 1k 47k P GND l GND GND GND GND GND U2 a C11 AT90S2313
in „CLIP Schaltplan; Protel->PDF Umwandlung bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1647.PDF
through D4 exceeds 4A. One possible choice forflow- tery’s ChargingVoltage( ) command. }nts using the bat- D4 is the Motorola MBRD835L 8A Schottky barrier TEMPVOLTAGE = ReadWord( SMBADDR = diode in a DPAK surface-mount package. Care must 0b00010111 = 0x17, COMMAND = 0x15 ) be taken in thermal management
in „Win98 Diagnose Notebook Akku immer 50%“ · PC Hard- und Software ·
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PDF
MAX1647_1_.PDF
through D4 exceeds 4A. One possible choice forflow- tery’s ChargingVoltage( ) command. }nts using the bat- D4 is the Motorola MBRD835L 8A Schottky barrier TEMPVOLTAGE = ReadWord( SMBADDR = diode in a DPAK surface-mount package. Care must 0b00010111 = 0x17, COMMAND = 0x15 ) be taken in thermal management
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PDF
Athlet_BCH6L2560_SCH.pdf
1 32 T T 1 O (PCINT19/OC2B/INT1)_PD3 PD2_(INT0/PCINT18) 2 2 5 2 (PCINT20/XCK/T0)_PD4 PD1_(TXD/PCINT17) 31 3 3 4 3 GND_2 PD0_(RXD/PCINT16) 30 4 VCC_2 PC6_(RESET/PCINT14) 29 SWS003 5 PC5_(ADC5/SCL/PCINT13) 28 6 GND_3 27 7 VCC PC4_(ADC4/SDA/PCINT12) 26 8 (PCINT6/XTAL1/TOSC1)_PB6 PC3_(ADC3/PCINT11) 25 10k
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sony_ht-ct260h.pdf
pièce portant le nu- HDMI board number specified. méro spécifié. BT board VFD board WS T board HT-CT260H 17 17 HT-CT260H Ver. 1.1 3-3. PRINTED WIRING BOARD - MAIN Board - • See page 17 for Circuit Boards •ocat: Uses unleaded solder. 1 2 3 4 5 6 7 8 9 10 MAIN BOARD (COMPONENT SIDE) A B C D MAIN BOARD (COMPONENT
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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PDF
MB997.pdf
USB JTJ J N J NM0IM 3V PIJP101PIJP102 PIJP301PIJP302 PI1001PIR40P2ILPILD101 U5V T T T T T S S I2 PISB17PISB1702 CN1N 1 R9R 1K5 1K414 SB17 JP2P2 LED_STLINKN R3OR3 3 4 R1R1 VCC P I C N 1 PIR11PIR1102B_DM 3V I0 PIJP201PIJP202 PI1001PIR30P2ILPILD10P40IR13V C D+-P I C N 1 PIR10PIR1002B_DP I1 SB on Solder Side
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Weidezaun_S03_4093.pdf
039-33 MT3608 SOT23-6 2-24V 4A to 28V 2A 100uA/1,6mA 1,2MHz UVLO=1,98 100mV 36x17x14mm Mark B628DC, Micro-USB PCB3017_14, ebay 1,51€ gc_supermarket, 0,38€ aliexpress.com, Step Up aerosemi.com, SX1308 1,2MHz 80mR Suosemi.com 1 2 3 P4 SX1308 P3 4 € 3 e=U^2xC2, 7Vx2200uF=0,11J (5x tau
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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PDF
ALC5000M_KM_G_111208.pdf
. üblicherweisegeringenInnenwiderständen 10Abegrenzt ist. auchnurentsprechendgeringeSpannungs- New Bat. Konfigurations-Menü Im Menü „New Bat.“ können neue, abfälle zu registrieren sind. Geringe Stro- mimpulse sind ausschließlich bei Akkus noch nicht angelegte Akkus editiert und sinnvoll, die keine hohen
in „ELV ALC 5000 - Softwarefehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
project__2_.pdf
1 2 3 4 5 6 7 8 G A J D1 i VDD MBRS140T3 / BAT254 V C1 Vishay 595D686X0010C2T C3 Rf1 U2 68uF Cap 150K 7 8 L2 33pF BOOT SW Vin A R2 4 DT1608C-682 C4 A BSS84 Res2 D2 FB 6.8uH 595D226X06R3B2T / Case C Cond. Q1 1K R3 33uF Diode GND Res2 2 EN Vin Rf2
in „LCD + nRF24L01 = EMV/HF Probleme?“ · HF, Funk und Felder ·
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PDF
si-prog-v2_2.pdf
RST VCC 19 1 8 1 C9 2 3 PD0 PB7 (SCK) 18 2 External power 7 TG GND 2 100nF 3 Xtal2 4 PD1 PB6 (MISO) 17 3 D NB External power is needed only 6 TP CE 3 4 Xtal1 5 XTAL2 PB5 (MOSI) 16 4 D R15 NC VCC 5 XTAL1 PB4 5 J9 with some consuming device like 5 CLK D 4 6 6 PD2 (INT0) PB3 15 6 10K Select power ext/int
in „Grundlagen: Teilen binär Teil 1 - Vorzeichenlose Ganzzahlen“ · Projekte & Code ·
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PDF
eeprom_progger_schaltplan.pdf
RST VCC 19 1 8 1 C9 2 3 PD0 PB7 (SCK) 18 2 External power 7 TG GND 2 100nF 3 Xtal2 4 PD1 PB6 (MISO) 17 3 D NB External power is needed only 6 TP CE 3 4 Xtal1 5 XTAL2 PB5 (MOSI) 16 4 D R15 NC VCC 5 XTAL1 PB4 5 J9 with some consuming device like 5 CLK D 4 6 6 PD2 (INT0) PB3 15 6 10K Select power ext/int
in „Eeprom-Progger unter XP will keine 24Cxx bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
agsboy_rev_g_besteuckungsplan.pdf
X3 X1 X4 X7 S7 BAT 0 X8 1 2 1 2 4 1503_09 0 0 k 1 2 2 N 1 1 1 D 1 6 2 1 5 0 C C R U1 R20 1 R19 604k R3 L R21 R23 1M C28 n 4k7 2 1M 220k U3 1 0 R10 LED2 2 C18 LT1610 C27 4u7 C13 C 1 270 T U4 22u 100u 100u R24 270 F C21
in „[V] Bausatz "agsBOY": Grafikdisplay, Beschleunigungssensor, analoger Joystick , USB“ · Markt ·
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PDF
MAX712_MAX713_MAX.pdf
TYP MAX UNITS V+ Voltage 5mA < IV+ < 20mA 4.5 5.5 V IV+(Note 1) 5 mA BATT+ Leakage V+ = 0V, BATT+ = 17V 5 µA BATT+ Resistance with Power On PGM0 = PGM1 = BATT-, BATT+ = 30V 30 kΩ C1 Capacitance 0.5 µF C2 Capacitance 5 nF REF Voltage 0mA < IREF < 1mA 1.96 2.04 V Undervoltage Lockout Per cell 0.35 0.50
in „Akku-/Batteriekapazität messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lpc2468board.pdf
4 A13 D13 49 D14 BA0 D14 BA0 D14 A14 D14 A14 21 53 D15 A14 21 53 D31 A16 3 51 D15 BA1 D15 BA1 D15 A17 54 A15 D15 / A-1 A16 15 DQML VSS 28 15 DQML VSS 28 A18 19 A17 39 41 39 41 A19 18 DQMH VSS 54 DQMH VSS 54 A20 11 A18 B VSS VSS A19 B 18 RAS 18 RAS R33 A21 12 A20 17 6 17 6 4k7 29 CAS VSSQ CAS VSSQ VIO
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq25504.pdf
voltage into VIN_DC 0.13 3 V VBAT Battery voltage range) 2.5 5.25 V CHVR Input capacitance 4.23 4.7 5.17 µF CSTOR Storage capacitance 4.23 4.7 5.17 µF CBAT Battery pin capacitance or equivalent battery capacity 100 µF CREF Sampled reference storage capacitance 9 10 11 nF ROC1 + ROC2 Total resistance for
in „CJMCU-25504 Jumper setzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ansteuerung.pdf
G D3 T GND 0 C 1 1 R 4 M B +12V MOTOR R TP29 D6 1 GND B TP15 1 M 3 2 2 J12 - B D7 J5 P 1 1 3 2 2 R BAT54 2 3 IC2 i 3 4 1 8 r 4 5 TP20 VCC VB C22 D 3 3 5 8 7 6 5 E 8 7 6 5 E G 6 6 uC_PWM_3V3 R19 2 LIN HO 7 25V C _ _ - 7 7 10R 1u T4 K - - G 1 8 8 C23 C24 C25 3 HIN VS 6 TP19 TP17 3 S R R D? 1 1 9 9 50V 35V 25V R17 D? 8 K 1 4 4 L S 10 TP35 100n 470u 1u 4 5 D T3 3 D? L 1 1 7 2 10 11 COM LO C 8 5 J J 4 11 12 GND IRS2005STRPBF 33R CDSW4448-G 1 4 Q Q X 12 S 8 S S Z 43R C Z 1 2 3 4T6 1 2 3 47 B GND R31 t B u S 1 D9
in „IRF1405PBF Mosfet wird zu heiss und verabschiedet sich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCU.pdf
, PWM or one-pulse mode output. The TIM15, TIM16 and TIM17 timers can work together, and TIM15 can also operate with TIM1 via the Timer Link feature for synchronization or event chaining. TIM15 can be synchronized with TIM16 and TIM17. TIM15, TIM16, and TIM17
in „suche die pins für flash speicher“ · Mikrocontroller und Digitale Elektronik ·
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Datei
firefly2.h
include "wave.h" /* PB0 = = InOut = LED1 PB1 = = InOut = LED2 PB2 = = InOut = LED3 PB3 = ADC3 = Input = Bat+/Solar+ PB4 = ADC2 = Input = Solar- PB5 = = InOut = LED4 PB6 = = InOut = LED5 PB7 = = InOut = LED6 PD0 = = InOut = LED7 PD1 = = InOut = LED8 PD2 = = InOut = LED9 PD3 = = InOut = LED10 PD4 = = InOut
in „Glühwürmchen in Rotkohlglas gefangen“ · Projekte & Code ·
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PDF
MINI_STM32-V3.0_SCH.pdf
DCD_N GND PB0 26 R23 0R Y1 12 CTS_N C11 C15 1K PB1 27 PB0/ADC12_IN8/TIM3_CH3/TIM1_CH2N 5 13 SHTD_N 17 104 10u LED2 R2 R5 PB1/ADC12_IN9/TIM2_CH4/TIM1_CH3N OSC_IN/PD0/CANRX Y2 EE_CLK VO_33 PA3 PB2 28 PB2/BOOT1 20P 14 EE_DATA DM 16 1K 10K JTDO PB3 55 PB3/JTDO/TIM2_CH2/SPI1_SCK OSC_OUT/PD1/CANTX 6 8M C17
in „ISP Bootloader über USART bei STM32 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JP7-T-family.pdf
I/O Description Level 15 V_BAT I Power for RTC and SRAM +3 V DC ±5% 16 GND Digital ground 17 GND Digital ground 18 GND Digital ground 19 GND Digital ground + 3.0 V DC / 20 VC3.0 O Supply voltage of RF section max. 25 mA 21 GND Digital
in „wo finde ich RX und TX an GPS-Maus SIRF II?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISL88731.PDF
17. ACKNOWLEDGE ON THE I C BUS Data Validity The data on the SDA line must be stable during the HIGH period SMBus Transactions of the SCL, unless generating a START or STOP condition. The HIGH or LOW state
in „Chip gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Stamp_sheet_V1_1.pdf
1 +3V3 22p C4 49 A2 ARESET 2 2 +5V 62 (AD2)PA2 50 A1 3 3 A18 / PE4 64 AREF (AD1)PA1 51 A0 D0 4 4 A17 PE3 100n AVCC (AD0)PA0 D1 A16 PE2 63 AGND 5 5 (OC0A/OC1C/PCINT7)PB7 17 PB7 D2 6 6 A15 VCC 16 PB6 D3 7 7 A14 21 (OC1B/PCINT6)PB6 15 PB5 D4 8 8 A13 52 VCC (OC1A/PCINT5)PB5 14 PB4 D5 9 9 A12 VCC (OC2A/PCINT4
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F107-SK-SCH-revA.pdf
TIM1_CH2N/USART3_RTS LCD_CS LCD_CS MICRO_AB VBAT PB15/SPI2_MOSI/I2S2_SD/TIM1_CH3N CS_UEXT CS_UEXT 3V_BAT D5 6 VBAT PB15 BAT54C R15 PC0/ADC12_IN10 15 TRIM WF2S HN1x3 94 BOOT0 PC1/ADC12_IN11/ETH_MII_MDC/ETH_RMII_MDC ETH_RMII_MDC ETH_RMII_MDC R145 R107 1 0 10k 17 BUT(R) 470R 100k C64 +C92 2 3 2 1 PC2/ADC12
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slvs451f.pdf
range of 500 kΩ. From that, the value of resistor R1, depending on the desired minimum battery voltagBAT,can be calculated using Equation 3. V V R1 + R2 ǒV BAT * 1Ǔ + 390 kW ǒ 500 mV * 1 Ǔ LBI*threshold (3) Copyright © 2003–2012, Texas Instruments Incorporated Submit Documentation Feedba15 Product Folder
in „Hochohmige digitale Widerstände für Boostconverter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
m128lcpu.pdf
Pag. 3 of 11 M64L/M128L Num Name Denomination 1 VCC + 3V or +3V3. Regulated power supply. 2 /RESET+BAT Reset input. A low level for more than 20msec generates a reset. Also connection for 3V Lithium Battery for Sram battery back-up. 3 SCK/PB1 Port B bitSCK /SPI BUS. 4 MISO/PB3 Port B bit 3. /MISO SPI
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PDF
ISl6298.pdf
80kΩ, VBAT = 2.0V 45 55 64 mA Constant Charge Current I V > 1.2V, V = 3.7V - 255 - mA CHARGE IREF BAT Trickle Charge Current I V > 1.2V, V = 2.0V - 52 - mA TRICKLE IREF BAT Constant Charge Current I V < 0.4V, V = 3.7V, T = 25°C 75 100 125 mA CHARGE IREF BAT A Constant Charge Current ICHARGE V IREF <
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PDF
Butterfly_Schematics.pdf
14 21 LCD21 LCD15 15 6A/6B/6C/6D S4/5F/5E/5P 20 LCD20 LCD16 16 10/7F/7E/7P 5/5H/5G/5N 19 LCD19 LCD17 17 S10/7H/7G/7N S5/COL2/S8/8 18 LCD18 7K/7J/7L/7M 7A/7B/7C/7D H4042-DL LCD[32..3] LCD[32..3] VCC R200 Connects COL1 to XC200 1 2 COL2 on the LCD C 0R C Piezo element 1 KMT-1603 R201 3 0R Q200 R202 1
in „Mikrocontroller mit Rs232 Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F405-7x.pdf
STM32F407xx Electrical characteristics (1) Table 24. Typical and maximum current consumptions in V BAT mode Typ Max T = 25 °C T = 85 °C TA= Symbol Parameter Conditions A A 105 °C Unit VBAT = V BAT= V BAT = V = 3.6 V 1.8 V 2.4 V 3.3 V BAT Backup SRAM ON, low-speed 1.29 1.42 1.68 TBD (2) TBD (2) oscillator
in „STM32 DCMI (Kamera) Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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MXB7846.pdf
is 650µW. ♦ Automatic Shutdown Between Conversions Low-power operation makes the MXB7846 ideal for bat- ♦ Low Power (External Reference) tery-operated systems, such as personal digital assis- tants with resistive touch screens and other portable 270µA at 125ksps equipment. The MXB7846 is available in
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Datei
boot.c
void loader() { DDRC |= 0xff; PORTC = ~0x02; do { asm volatile("nop"); } while(1); } /* --------- do.bat --------- echo compile... avr-gcc -g -Os -mmcu=atmega16 -c boot.c echo link... avr-gcc -g -mmcu=atmega16 -Wl,-Map,boot.map,--cref,--section-start=.bootloader=0x1c00 -o boot.elf boot.o echo creating
in „bootloader section in c“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
AHLB GND GND d 10k BAT 2 GND I 3 Pad 1 Pad 2 o C6 3 R14 C3 L CHRG PROG IC3 100nF TP1 +3V3 +3V3 4 200 100nF 5 D 1 1 G R15 7-Segment-Anzeige GND GND 2 2 10k B USB B +3V3 +3V3 Power2 Power3 CD4511BM 1 1 16 VDD 1 2 2 3 LT a 13
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Schaltplan_DMS_Messverstaerker.pdf
C28 C18 R39 4 BAT R29 5 Ilim1 LiPo 100nF 10µF 10kΩ 34.8kΩ 3 NTC C30 R51 2 CHRG 4.7µF G X4 G 1kΩ 1 CLPROG D PROG 8 + G R38 R44 C43 R34 R40 R42 5V_USB VCCIO 0Ω 10kΩ 100nF 2.2kΩ 1 3.3kΩ 1Ω Q20 NTC TPS73601 IN OUT H H Q14
in „Analog- und Digital-Teil bestmöglich trennen“ · Platinen ·
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Seiten_aus_NCP5351-D.pdf
prevents a condition where the as possible to the driver IC pins, as shown in Figure 4(a), C21 and C17. top and bottom MOSFETs conduct at the same time and short the input supply. When the top MOSFET is turning off, 5 V 12 V D32 C21 BAT54 1.0 ▯F GATE1 4 3 2 1 Q7 U3 O T G N 80NO2 C B T D Gate Driver NCP5351 N N S G G Q9 E V B P 80NO2 5 6 7 8 DRVON R33 C17 2.2 1.0 ▯F (a) (b) Figure 4. Proper Layout (a), Component Selection (b) http://onsemi.com 8
in „Diskrete H-Brücke“ · Analoge Elektronik und Schaltungstechnik ·