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mini_edison_breakout_hvm_8_26.pdf
V_SYS U1 C6 2 C8 10uF 13 11 0.1uF 20% . IN OUT2 10 6.3V 1 C5 10uF R116 20% . J1 6.3V 1 2 1 TS 10K BAT1 2 J2 5% BAT2 3 1 2 6 EN1 . 5 EN2 DS3 V_SYS R114 R5 1.62K 12 ILIM CHRG 9 1 2 3 2 576 15 ITERM PGOOD 7 GREEN Q2 R6 16 . .1% R4 1K 1 BSS138 0R ISET B NO STUFF 14 8 B 1 TMR VSS NO STUFF 2 R72 4 17 2K CE
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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01149c.pdf
went into a standby mode. During this standby mode, the MCP73837 device continues to monitor the V BAT and will recharge the Li-Ion battery, once the regulated V BAT voltage drops below 150 mV. © 2008 Microchip Technology Inc. DS01149C-page 7 AN1149 CONCLUSION REFERENCES System and battery load sharing
in „Frage zu AN1149 - Load Sharing Microchip“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LiIonCharger_BQ2057C_extMOSFETorPNP.pdf
external loads 2 4 mA (VCC) CC CC CC(min) For BQ2057 and BQ2957C, I(VCCS) VCC Sleep current 3 6 V (BAT) V(min), V(BAT) – VCC ≥ 0.8 V For BQ2057T and BQ2957W, µA 10 V(BAT) ≥ V (min)V(BAT) V CC≥ 0.8 V IIB(BAT) Input bias current on BAT pinV (BAT) V(REG) 1 µA IIB(SNS) Input bias current on SNS pinV (SNS
in „LiIon Charger BQ2057 - wozu dieser Widerstand?“ · Analoge Elektronik und Schaltungstechnik ·
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igrid_ss_3kw_plus.pdf
Figure 3.1 O/P Relay L Load N BUS INVRelay SafetyRelay + L P- PVEMI BOOST INV/REC INVEMI AC EMI N + BAT - DSP MCU PV RS232/USB BAT SPS GRID LCD Parallel connection Figure 3.1 Function block Diagram The CNTL block provides control signals to control the action of the inverter. It also provides the communication
in „PV Wechselrichter startet nicht mehr und verursacht Kurzschluss bzw. hohen Strom“ · Analoge Elektronik und Schaltungstechnik ·
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PFC_FBC.pdf
die Messung N _ T _ 3 3 + 3 IC16C 0 T LM324(SO14) 1 A D B L_SENSE 10 D18 8 R20 30k L_POLARITY 9 N BAT43 N R21 10k N L O T _ 3. 01 3 N + 91 _ R T IC16B 4 _ N LM324(SO14) T V 9 A 1 5 D B + L_SENSE R17 10k 7 L_VALUE R R16 20k 6 k IC16A 4 2 4 1 3 LM324(SO14) D k N 1 1 R18 20k 2 4 1 L_SENSE L_SENSE 10k R14
in „PFC + Vollbrücken-Gegentaktwandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Orion_Rev_3.0__1_.pdf
TDO F1 TMS E1 TDO TMS EP4CGX150F896 VERSION : 1.0 PAGE : 9 of 10 DATE : JUNE 2010 3P3VD 3 D7 3 D2 B BAT54C BAT54C B U1 R25 22E 1 2 1 2 R4 16 1 ASDO 1C 1B 1 1 DATA0 22E 15 2C 2B 2 C226 C234 NCS0 14 3C 3B 3 100NF 10NF DCLK 13 4 2 2 12 3C 4B 5 11 4C 5B 6 10 5C 6B 7 1 C28 1 C1 1 C2 1 C29 9 6C 7B 8 10PF 10PF
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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ESR_ELV.pdf
.................R30W06-10B....................................D3ung vorgenommen, registriert dies BAT43......................................D4, D5mparator IC 2 B, der über seinen 220 kΩ/SMD..................R5, R17, R25 Ausgang (Pin 7) den Elko C 5 entlädt und 330 kΩ/SMD............................
in „ESR berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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LEA-4x_Data_Sheet_GPS.G4-MS4-06143_.pdf
[881 ±4mil] Width 17.0±.1mm [669 ±4mil] Thickness 3.0 ±0.3mm [118 ±12mil] Pitch RF pins 1.1±0.1mm [43 ±4mil] Pitch Digital pins 1.1±0.1mm [43 ±4mil] Weight 2.1g Table 14: Mechanical Specification 3.2 Dimensional Diagrams 2.85 ± 0.1 mm [112 ± 4 mil] 15 GND GND 14 16 RF_IN GND 13 17 GND BOOT_INT 12 18 VCC_RF V_BAT 11 ] 19 V_ANT RESET_N 10 i (Reserved)/ 1.10 ± 0.1 mm [ 43 ± 4 mil] 4 20 AADET_N/(Reserved) GPSMODE6/PCS0_N 9 ± 1 8 3.80 ± 0.1 mm [149 ± 4 mil] m 21 8 1 EXTINT1/GPSMODE5/FWD VDD18OUT 22 NC/GPSMODE2/
in „ublox CR4 - kleine Frage RX-TX“ · Mikrocontroller und Digitale Elektronik ·
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ssd1623.pdf
...................................................................................................43 SSD1623 Rev 0.10 P 3/44 Nov 2007 Solomon Systech FIGURES FIGURE 4-1: SSD1623B LOCK DIAGRAM ............................................................................................................
in „E-Ink Display im Blutzuckermeßgerät“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_Atmega_1284p_Mini_Lora_2021-11-18.pdf
4 5 TP4056 SOLAR Optional Laderegler SOLAR AKKU HDR-M-2.54_1x2 HDR-M-2.54_1x2 HDR-M-2.54_1x2 4 VCC BAT 5 1 1 1 2 2 2 C13 VCC-IN 8 CE 9 10uF EP A CHRG A 7 CHRG# TEMP 1 C8 10uF 6 STDBY# PROG 2 D N R1 G 1.2K 3 GND SPANNUNGSREGLER U1 B ATMEGA1284P-AU B 1 44 VCC MOSI 2 PB5(PCINT13/MOSI) PB4(SS#/OC0B/PCINT12) 43 PB4 U2 MISO 3 PB6(PCINT14/OC3A/MISO) PB3(AIN1/OC0A/PCINT11) 42 PB3 HT7333-A SCK 4 PB7(PCINT15/OC3B/SCK) PB2(AIN0/INT2/PCINT10)41 PB2 VCC RESET 5 RESET# PB1(T1/CLKO/PCINT9) 40 PB1 Vout 3 100nF 6 VCC PB0
in „Hilfe bei Schaltplan 1284p, Mosfet usw, MCU neustart“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dn501f.pdf
4.7μF TG1 M1 0.1μF M4 1M 50V 499k 499k VINP w5 100 EN/UVLO SWI L1 10μH 99 OVLO BG1 M2 M3 34.2k 27.4k 43.2k INTVCC 98 BOOST BUCK LT3791 SNSP 97 200k 200k % BUCK-BOOST SHORTLED SHORTLED RSW R LED Y 96 0.004Ω 0.033Ω N 95 OPENLED OPENLED SNSN I PWM DIM PWM PGND F 94 IVINMON BG2 E 93 SW2 ISMON 92 CLKOUT TG2
in „12V Ausgangsspannung in Unabhängigkeit der Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Nahaufnahme einer Leiterplatte mit Transformator und Kondensatoren
To BAT- BAT+ EC3 CN1 HS1 HS2 12.0801.0119-00 JL2101281 2245 U14 R6 R11 R4 DS C14 R22 R23 R25 R26 R27 R28 R29 R30 R31 R32 R33 R34 R35 R36 R37 R38 R39 R40 R41 R42 R43 R44 R45 R46 R47 R48 R49 R50 R51 R52 R53
in „PDP8974 Ersatz gesucht“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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PDF
final_board.pdf
67 P2.5/PWM1.6/DTR1/TRACEDATA0 P0.29/USB_D+ 30 D3 NC 66 P2.6/PCAP1.0/RI1/TRACECLK P0.30/USB_D- VIN BAT60A C P2.7/CAN_RX2/RTS1 +3V3 C V 65 D1 GND 3 64 P2.8/CAN_TX2/TXD2 BAT60A IN K OUT + 53 P2.9/USB_CONNECT/RXD2 GND Q1 P2.10/EINT0N/NMI 52 P2.11/EINT1N/I2STX_CLK IC3 C8 C36 BCX71SMD 51 P2.12/EINT2N/I2STX_WS
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7inch-Capacitive-Touch-LCD-Schematic.pdf
VCOM VGH VDD_5V LCD_AVDD L3 10uH R72 10K R69 1.2K 1 2 LED+ D10 1N5819 C49 R76 C52 C50 C41 R70 C42 C43 C30 C31 C32 C51 C88 1 2 16V 1uF/25V 4.7K 1uF/25V 0.1uF D11 0.1uF 4.3K 1uF/25V 0.1uF 10uF/16V 0.1uF 1uF/25V 1uF/25V 0.1uF D12 U5 BAT54S/BAV99 6 IN SW 1 D 3 L_DISP 4 5 D 2 EN OV 3 LED- C44 R51 GND FB R52
in „TFT LED Backlight PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7inch-Capacitive-Touch-LCD-Schematic.pdf
VCOM VGH VDD_5V LCD_AVDD L3 10uH R72 10K R69 1.2K 1 2 LED+ D10 1N5819 C49 R76 C52 C50 C41 R70 C42 C43 C30 C31 C32 C51 C88 1 2 16V 1uF/25V 4.7K 1uF/25V 0.1uF D11 0.1uF 4.3K 1uF/25V 0.1uF 10uF/16V 0.1uF 1uF/25V 1uF/25V 0.1uF D12 U5 BAT54S/BAV99 6 IN SW 1 D 3 L_DISP 4 5 D 2 EN OV 3 LED- C44 R51 GND FB R52
in „STM32F4 I2C ACK bei 1.5V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC6802-1.pdf
SDOI SDO 0V TO 5.5V higher bandwidths – up to 50MHz and beyond. It is pos- 42.5V SCKO SDI 0V TO 5.5V 43.2V V+ SCKI 0V TO 5.5V sibletofilter theinput, but if theconverter ismultiplexed 43.2V C12 VMODE 0V TO 5.5V tomeasureseveralinputchannelsaseparatefilterwillbe 43.2V S12 GPIO2 0V TO 5.5V 39.6V C11 GPIO1
in „SPI: kein SCK bei Receive - Warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
SCK 15 PA5 /SPI-1SCK PB5 41 R18 MISO 16 PA6 /SPI-1MISO PB6 42 TxD Q3 10k MOSI 17 PA7 /SPI-1MOSI PB7 43 RxD R8 R9 BC846B TP1 29 PA8 PB8 45 4k7 PCB USB-Buchse Type B (SMD) R16 R17 30 PA9 /TxD-1 PB9 46 U4 24AA01 1k5 100k R23 31 PA10 / RxD-1 PB10 21 SCL 1 SCL WP 5 GND 1 3 D+ 1k USB_M 32 PA11 PB11 22 SDA 3
in „STM32 und USB-Bulk Transfer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISL9301_fn6435.pdf
POWER-ON RESET Rising POR Threshold VPOR V = 3.0V, use PPR to indicate the comparator 3.3 3.9 4.3 V BAT Falling POR Threshold VPOR output. 3.1 3.6 4.15 V VOUT-BAT OFFSET VOLTAGE Rising Edge V OS V = 4.0V, use CHG pin to indicate the comparator - 110 250 mV BAT Falling Edge V OS output (Note 3) 10 100
in „Handyakku (3.6V) laden per LadeIC (4,2V)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
config.h
voltage is * below 0.9V (caused by the diode's leakage current). * - uncomment to enable */ //#define BAT_EXT_UNMONITORED /* * Voltage divider for battery monitoring * - BAT_R1: top resistor in Ohms * - BAT_R2: bottom resistor in Ohms */ #define BAT_R1 10000 #define BAT_R2 3300 /* * Voltage drop by reverse
in „ComponentTester-1.42m problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEMATIC.PDF
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „LCD Hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „DS1820 Code + Atmel90S8515“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEM.PDF
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „Schaltplan für STK 200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „AVR_90S8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200S.pdf
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „SRam am Atmega162 ohne zusätzliche Bauteile betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „Schaltplan STK200 und STK500 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200_schematic.pdf
TO PB4 ON 8515 T OPD2ON8515 XTAL1 PB4 TO PB3 ON 8515 T OPD3ON8515 (INTO)PD2 PB3 TO PB2 ON 8515 D3 BAT85 T OPD4ON8515 PD3 PB2 TO PB1 ON 8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ps2.pdf
zu bestimmen, wann diese Taste losgelassen wird. 6 Alle Tasten Typematic/Make/Break. Zu Beginn des BAT schaltet die Tastatur ihre drei LEDs ein, und am Ende wieder aus. Dann wird BAT-Ende-Code gesendet, entweder 0xaa (BAT erfolgreich) oder 0xfc (Fehler). Der BAT-Ende- Code muss 500 bis 750 ms nach dem
in „Unbekannter 2-Draht Bus - Event Triggered“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1930.pdf
inexpensive CDRH5D18-100 10 124 (847) 956-0666 chip inductors can be used with the LT1930A, reducing CR43-4R7 4.7 109 3.2 2.5 2.0 www.sumida.com CR43-100 10 182 solution cost. DS1608-472 4.7 60 4.5 6.6 2.9 Coilcraft DS1608-103 10 75 (847) 639-6400 Duty Cycle www.coilcraft.com ELT5KT4R7M 4.7 240 5.2 5.2 1.1
in „Step up UND down DCDC für uC Versorgung - Empfehlung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACT2803_Data_Sheet.pdf
. Connect it to battery current sense positive terminal. Bypass to PGND with high 16,17 BAT quality ceramic capacitors placed as close to the IC as possible. Battery charge current sense input. Connect to charge sense resistor positive terminal with 18 BATS Kevin sense. 19 BATP Connect to
in „ACT2803 dual cell lipo charger - Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP73837.pdf
1 MCP73837/8 Package Types MCP73837/8 MCP73837/8 10-Lead DFN 3 mm x 3 mm 10-Lead MSOP V VAC 1 10 V BAT V AC 1 10 BAT VUSB 2 9 THERM VUSB 2 9 THERM STAT1 3 8 PG (TE) STAT1 3 8 PG (TE) STAT2 4 7 PROG2 STAT2 4 7 PROG2 V SS 5 6 PROG1 V SS 5 6 PROG1 Typical Applications MCP73837 Typical Application Ac-dc
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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PDF
toshiba_satellite_l755.pdf
M_A_DQ42 AJ9 SA_DQ[41] SA_DQS#[4] AM8 M_A_DQSN5 M_B_DQ42 AT5 SB_DQ[41] SB_DQS#[4] AP9 M_B_DQSN5 M_A_DQ43 AK9 SA_DQ[42] SA_DQS#[5] AR12 M_A_DQSN6 M_B_DQ43 AT6 SB_DQ[42] SB_DQS#[5] AK12 M_B_DQSN6 M_A_DQ44 AH8 SA_DQ[43] M SA_DQS#[6] AM15 M_A_DQSN7 M_B_DQ44 AP6 SB_DQ[43] M SB_DQS#[6] AP15 M_B_DQSN7 M_A_DQ45
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Datei
config.h
voltage is * below 0.9V (caused by the diode's leakage current). * - uncomment to enable */ //#define BAT_EXT_UNMONITORED /* * Voltage divider for battery monitoring * - BAT_R1: top resistor in Ohms * - BAT_R2: bottom resistor in Ohms * - standard values are: R1=10k, R2=3.3k */ #define BAT_R1 10000 #define
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Datei
config.h
voltage is * below 0.9V (caused by the diode's leakage current). * - uncomment to enable */ //#define BAT_EXT_UNMONITORED /* * Voltage divider for battery monitoring * - BAT_R1: top resistor in Ohms * - BAT_R2: bottom resistor in Ohms * - standard values are: R1=10k, R2=3.3k */ #define BAT_R1 10000 #define
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PDF
Beschreibung_Batteriemonitor_BM-1000.pdf
-68,75 3 0 19:41:41 4,089 -110,625 22,750 -70,75 3 0 19:42:41 4,094 -105,000 22,750 -72,50 3 0 19:43:41 4,089 -106,250 22,875 -74,50 3 0 19:44:41 4,089 -108,125 22,875 -76,25 3 0 19:45:43 4,085 -112,500 22,750 -78,25 3 0 19:46:43 4,085 -112,500 22,625 -80,00 3 0 19:47:43 4,085 -112,500 22,750 -82,00 3 0 19:48:43 4,085 -110,625 22,625 -83,75 3 0 19:49:45 4,085 -117,500 22,625 -85,75 3 0 19:50:45 4,085 -111,250 22,500 -87,75 3 0 19:51:45 4,080 -111,250 22,500 -89,50 3 0 19:52:45 4,080 -111,250 22,500 -91,50 3
in „Telit GM862-Quad Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Devices.txt
CPOL-EUE5-13 6 CPOL-EUCT6032 6 CON10 6 CNY17 6 C5 6 C-2.5-5/4 6 BC856BSMD 6 BC639 6 BC550B-NPN-TO92-EBC 6 BAT85 6 BAT81 6 BAS70-05 6 BAS70-04 6 AT89C2051P 6 74HC245DW 6 74HC14N 6 4053N 6 4029N 6 320-916 6 2N2369 6 1XRJ45_MM_JACK 5 Z80PIO 5 Z80CTC 5 XO-14 5 UDN2981AN 5 TRIM_EU-LI10 5 TPPAD1-20 5 TLC5921DAP 5
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
terminal.c
'; // Cursor an Position 0; sbi(PORTB, PB0); // Keyboard ein sei(); while(count != 0) // Warte auf BAT-Ergebnis { count--; } lcd_clrscr(); if (key_status != ready) { // Im Fehlerfall: 1) Keyboard aus cbi(PORTB, PB0); if (key_status == error) // 2) Fehlermeldung senden lcd_puts(" FEHLER Self-Test Error
in „Keyboardencoder - prob mit linkem shift“ · Mikrocontroller und Digitale Elektronik ·
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PDF
teXet_TF-127_Service_manual.pdf
the total of the supply current of the ISL1BAT )I BAT BACKUP BATAVG LKG BAT2 BAT1 plus the leakage current of the capacitor and the dioLKG.I (EQ. 7) In these calculationsLKG is assumed to be extremely small and will be ignored. If an application
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stueckliste_Zeitschaltuhr.pdf
LED Anzeige C13 = 22µF LED26 = LED Anzeige C14 = 100nF LED27 = LED Anzeige LED28 = LED Anzeige D1 = BAT85 LED29 = LED Anzeige D2 = BAT85 LED30 = LED Anzeige D3 = BZX83V003.6 LED31 = LED Anzeige D4 = BZX83V003.6 LED32 = LED Anzeige D5 = 1N4001 LED33 = LED Anzeige D6 = 1N4001 LED34 = LED Anzeige LED35 =
in „AVR, ATmega32; Schaltplan für eine Zeitschaltuhr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
velleman_hps5_oscilloscope.pdf
GND GND GND + + -V1 R33 PMBT2222A PWR 22K 100µ 100µ R32 L4 R60 D1 D2 ZD1 220µ -V2 47K R26 GND 1K 1K BAT54S BAT54S C27 R27 + C4 C5 + + C25 C26 + + 100µ 100µ 100µ 100µ 100µ 1K GND T4 GND GND GND AGND AGND PWM PMBT2222A PMBZ5240B GND Personal Scope: Power Supply Section 20 TM ANALOG SECTION PersonalScope
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PDF
b8_handbuch_1205.pdf
rad47/35 C6, C7 1nF X7R-2,5 1,0n C8 100nF Z5U-5 100n C9 100nF Z5U-5 100n C10 100nF Z5U-2,5 100n D1, D2 BAT43 BAT 43 D3 BZX97-3,3 ZF 3,3 D4 BAT43 BAT 43 IC1 PIC18F2550SP PIC18F2550-I/SP 28-polige IC-Fassung GS 28P-S IC2 40-poliger Testsockel TEX 40 JP1 Jumper Jumper 2,54 RT L1 680µH SMCC 680µ L2 10µH SMCC
in „PIC16f628 programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
partlist.txt
27p C0805 rcl (30.48 15.24) MR270 C29 100n C0805 rcl (66.675 27.94) R0 C30 100n C0805 rcl (64.135 11.43) R0 CON1 SCDA5A0201 SCDA5A0201 SCDA5A0201 (69.85 15.24) R90 D1 BAT42 DO35-10 diode (66.675 49.53) R0 IC2 AT24C512 DIL08 atmel (24.13 38.1) R0 IC3 MEGA48/88/168-AU TQFP32-08 avr-7 (39.37 20.32) R0 IC4
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
SA_DQS#5 AK9 M_A_DQS#5 M_B_DQ42 AM6 SB_DQ42 M_A_DQ40 AJ10 SA_DQ40 R SA_DQS#6 AP11 M_A_DQS#6 M_B_DQ43 AN2 SB_DQ43 - M_A_DQ41 AJ9 SA_DQ41 O SA_DQS#7 AT13 M_A_DQS#7 M_B_DQ44 AK5 SB_DQ44 M_A_DQ42 AL10 SA_DQ42 M M_B_DQ45 AK2 SB_DQ45 Y M_A_DQ43 AK12 SA_DQ43 E M_B_DQ46 AM4 SB_DQ46 R M_A_DQ44 AK8 SA_DQ44 M_B_DQ47
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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bom-v1-0.pdf
€ 0,08 € D12 1TS 4148-0805, Diode, 75V, 0.15A TS 4148-0805 0,03 € 0,03 € D20, D21, D62, D63, D64 5BAT54C, Dual schottky, 30V, 0.2A, common cathode BAT 54C NXP 0,04 € 0,20 € D22 1TS 431 BCX, 2.45V 0.5% regulator TS 431 BCX 0,25 € 0,25 € D23, D24, D90, D91, D92, D93 6BAS32, Schottky 100V 0.2A BAS 32 SMD
in „Universalplatine für STM32, grobe Fehler vor der Herstellung?“ · Mikrocontroller und Digitale Elektronik ·
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Carambola2-Base.sch.pdf
PIMO105 GPIO19 GPIO18 PIJ405 PIJ406 GPIO19 PIMD142 PIMO104 GPIO20 GPIO20 PIJ407 PIJ408 GPIO21 UART_RX 43 GND T GPIO20 3 GPIO21 GPIO 2 9 10 GPIO23 PIMD143 UART_RX U GPIO21 PIMO103 PIJ409 PIJ410 +2V_ETH UART_TX PIMD144 UART_TX _ GPIO22 PIMO102 GPIO22 +3V3_MAIN PIJ011 PIJ412 +3V3_MAIN J6OC PIMD145 T PIMO101
in „[V] Carambola2 100 Stück“ · Markt ·
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MC_product_selection_AN.pdf
During the Constant-Current mode, the programmed V > V BAT PTH charge current is supplied to the battery or load. The VBAT > VPTH charge current is established using a single resistor FAST CHARGE from PROG to V SS . Constant-Current mode is main- MODE tained
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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ATS2503.pdf
.................................................................................................. 43 6.1 Description......................................................................................................................43 7 USB2.0 OTG...................................................
in „Hilfe gesucht zum IC "ATS2503"“ · Mikrocontroller und Digitale Elektronik ·
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ksger_t12_v3.pdf
PB4 40 ENC_B 1 GND N 41 2 VCC GND JBC Mod E B 8 PB5 9 _ B C PB6 42 USART1_TX OLED_SCL 3 SCL 1 D C 0 43 4 SDA 5 Q1 I +3V3 1 PB7 45 USART1_RX OLED_SDA 5 RST B W 2 PB8 OLED_RST 1 8 S 3 PB9 46 OLED_O/C 6 O/C R12 2 S D 7 M 22 2k T PB10 OLED 3 G 6 R16 1 k S PB11 22 GND Top view 5 4k7 R 4 +3V3 25 4 PB12 26 R3
in „[V] JBC-Äquivalente: JAbe 2245-A UD, drei Spitzen, Knokoo Halter, ksger Lötstation“ · Markt ·
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datasheet.pdf
WM_PRJ_Q2400_PTS_002 - 002 24th January 2003 Electrical Characteristics Parameter Min Max Typ Unit BAT_TEMP resolution 10 bits BAT_TEMP sampling rate 90.3 Ksps/s BAT_TEMP Input Impedance ( R ) 4.7 kΩ BAT_TEMP Input Impedance ( C ) 100 nF CHG_IN Voltage (for I=Imax) 5,1* 5,5 V CHG_IN Current 800 mA BAT_TEMP
in „[Hinweis] Kostenlose Datenverbindung fürs Handy“ · Markt ·