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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Fragen zu zwei Micro-USB Ladegeräte mit TP4056 für 18650 Zellen bei 1 A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „PCB Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Softwareoberfläche zur UART-Kommunikation und Statusanzeige
1129W Grid: 108.0W PU: 15V WR stop:10 low:29 restart:30 5_2 10100000 0x05, 0x03, 0x00, 0x00, 0x01, 0x85, 0x8e button3 0, 3, 6, 0, 10, 30, 0, 0 Result: 10 wr_bat_volt Slave5 set time wr_bat_pow Slave5 set date wr_soc Slave5 write eep grid_pw Slave5 bat_off pvolt Slave5 bat_on wr_off Slave5 grid_on wr_on Slave5 grid_off bat_on bat_off WR_115to_45_57_56 WR_115to_05_17_16 WR_115to_05_09_10 WR_115to_10_30_29 copy code to avr make program C:\Users\karl\Desktop\uart_fleury testen 2 0 3 6 0 10 30 0 29 20 235
in „c# avr_simulator für modbus Steuerung“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
TJA1054A_3.pdf
CONDITIONS MIN. TYP. MAX. UNIT VCC supply voltage on piCCV 4.75 − 5.25 V V battery voltage on pin BAT no time limit −0.3 − +40 V BAT operating mode; note 1 5.0 − 27 V load dump − − 40 V BAT battery current on pin BAT sleep mode; CC = 0 V; − 30 50 A V = 12 V BAT VCANH CANH bus line voltage VCC = 0 to
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Anhang3.pdf
V 充电模式,R PROG1.2K ● 150 500 μA 待机模式(充电终止) ● 55 100 μA ICC 输入电源电流 停机模式(R 未连接, ● 55 100 μA PROG VCCV BAT,或 V <CC) UV 55 100 VFLOAL 稳定输出(浮充)电压 0℃≤ TA≤ ℃, 4.158 4.2 4.242 V RPROG2.4K ,电流模式 ● 450 500 550 mA BAT 引脚电流 : RPROG1.2K ,电流模式 ● 950 1000 1050 mA BAT 电流模式测试条件是 待机模式, V BAT4.2V ● 0 - 2.5 - 6 μ A VBAT=
in „sichere Umsetzung Schutzabschaltung Akku“ · Analoge Elektronik und Schaltungstechnik ·
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nacrt_main_board_rev10a_coulomb.pdf
L4 8 C46 D45=L4 8 C47 D4 8 C45 D44=L4 D D R196 155 832HA-1A-F-C 230V-N 22uF 22uF MMSZ5248 ACPL-T350 BAT54 ACPL-T350 BAT54 ACPL-T350 820nF BAT54 C32 ACPL-T350 8,2uF BAT54 C34 ACPL-T350 8,2uF BAT54 665K Ohm 12 V relay C122 R10 50V 5 50V 18V U3 C37 SOT-23 U1 C1 SOT-23 U4 SOT-23 U2 L4,SOT-23 U12 SOT-23 Q31
in „SUCHE Transistor KGF75N65KDF“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SW6007.pdf
超过此范围的电压电流及温度等条件可能导致器件永久损坏。 7. 推荐参数 Parameters Symbol MIN Typical MAX UNIT 输入电压 VBUSB/VBUSC 4.5 5.5 V 电池电压 BAT 2.8 4.5 V Mode: iSW_Release_DS066_v1.0 www.ismartware.com 第 5 页 共 19 页 珠海智融科技有限公司 ZHUHAI ISMARTWARE TECHNOLOGY CO., LTD. 8. 电气特性 (V IN5V, V BAT 3.7V, A = 25°C除特别说明。 ) Parameters Symbol Test Conditions
in „I2C: Li/ion Mobile Power Shield SW6007<->SW6115“ · Mikrocontroller und Digitale Elektronik ·
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teXet_TF-127_Service_manual.pdf
sections of this specification is not implied. DC Operating Characteristics – RTC Temperature = -40°C to +85°C, unless otherwise stated. TYP SYMBOL PARAMETER CONDITIONS MIN (Note 4) MAX UNITS NOTES V Main Power Supply 2.7 5.5 V DD V Battery Supply Voltage 1.8 5.5 V BAT I Supply Current V = 5V 2 6 µA 1, 2 DD1
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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DS1307.pdf
Pin SOIC (150-mil) mode with oscillator running § Optional industrial temperature range: -40°C to +85°C § Available in 8-pin DIP or SOIC PIN DESCRIPTION V CC - Primary Power Supply § Underwriters Laboratory (UL) recognized X1, X2 - 32.768kHz Crystal Connection V - +3V Battery Input BAT GND - Ground ORDERING
in „Real-Time Clock (ds1307)“ · Mikrocontroller und Digitale Elektronik ·
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bq24780s.pdf
OP) VCC/ACP/ACN operating voltage 4.5 24 V CHARGE VOLTAGE REGULATION V Battery voltage 1.024 19.2 V BAT(REG_RNG) ChargeVoltage() = 0x41A0 16.8 V –10°C-85°C –0.4% 0.4% –40°C-125°C –0.5% 0.5% ChargeVoltage() = 0x3130 12.592 V –10°C-85°C –0.4% 0.4% –40°C-125°C –0.5% 0.5% VBAT(REG_ACC) Charge voltage regulation
in „Widerstand Bestimmung“ · Mikrocontroller und Digitale Elektronik ·
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Schottky_crossreference.pdf
SEMI SENSITRON 1N5818 1N5818 SB360 31DQ06 1N5819 1N5819 SB5100 50SQ100 1N5822 1N5822 SB580 50SQ080 BAT54 BAT54 SS12 CMSH1-20M BAT54A BAT54A SS14 10MQ040N BAT54C BAT54C SS16 10MQ060N BAT54S BAT54S SS22 CMSH2-20 FMKA140 10MQ040N SS24 CMSH2-40 FMKA140 CMSH1-40M SS26 CMSH2-60 FYP1504DN 15CTQ040 SS34 30BQ040
in „Ersatztyp für Schottky Diode 11dq06“ · Mikrocontroller und Digitale Elektronik ·
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DS1210.pdf
SOIC surface mount package NC 7 10 NC ▯ Optional industrial temperature range of GND CE -40°C to +85°C 8 9 DS1210S 16-pin SOIC (300-mil) See Mech. Drawings Section PIN DESCRIPTION V CCO - RAM Supply V BAT1 - + Battery 1 TOL - Power Supply Tolerance GND - Ground CE - Chip Enable Input CEO - Chip Enable
in „Suche Chip aus Mega-Drive-2-Spielplatine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1210.pdf
SOIC surface mount package NC 7 10 NC ▯ Optional industrial temperature range of GND CE -40°C to +85°C 8 9 DS1210S 16-pin SOIC (300-mil) See Mech. Drawings Section PIN DESCRIPTION V CCO - RAM Supply V BAT1 - + Battery 1 TOL - Power Supply Tolerance GND - Ground CE - Chip Enable Input CEO - Chip Enable
in „DS1210 als Ersatz für BA6162?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TimerPumpe_S01_CMOS4060.pdf
1,1WFan40x40x20 PCB3_Timer1_4060 D 1 X0 S1 PS1_IP65 LiFePo4 12,8V 9,2Ah 2 +Vin AC1 4 2 +Vin AC1 4 NC D 8 3 Bat1_LiFePo4 MBR2045 Diode switch Akku Bat1 or Netzteil PS1 7 3 SW-1EIN AC1 OUT+ 4 0/13,8V DC1 049-29 NO Timer 8-20min 12V 4-34mA 16A 1xUm Relais -OK-out 0 2 AC2 OUT- 1 -IN AC2 3 1 -IN AC2 3 COM C 1 PE
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
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Bild
Schaltplan einer Spannungsversorgung mit Zener-Diode und Kleindioden
12V_Bordspannung D5 SMBJ24CA_C143157 R7 47k R8 10k 3.3V D6 BAT85S-TR D7 BAT85S-TR uC C1 0.1u GND
in „KFZ Bordspannung messen, Schutzbeschaltung ADC richtig?“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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SMD_Catalog.pdf
DTC114WUA Rho N SC70 npn dtr 10k + 4k7 50V 100mA 84 DTC114WKA Rho N SC59 npn dtr 10k + 4k7 50V 100mA 85 MMBD1701 Nat C - Fast Si diode 30V 50mA 85 MA4CS102A M/A B SOT23 dual cc schottky diode 8V 30mA 85s BAT68-05 Sie B SOT23 gp dual cc Schottky 8V 130mA 85s BAT68-05W Sie B SOT323 gp dual cc Schottky 8V
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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pid_einstellregeln.pdf
Spezialgebiete der Steuer- und Regelungstechnik WS 2008/2009Boulent Bate PID - Einstellregeln Spezialgebiete der Steuer- und Regelungstechnik WS 2008/09 FH Dortmund Schriftliche Ausarbeitung Thema: PID - Einstellregeln Verfasser: Boulent Bate Betreuer: Dr.-Ing. Jörg Kahlert Seite 1 von 23 Spezialgebiete der Steuer- und Regelungstechnik WS 2Boulent Bate PID - Einstellregeln Inhaltsverzeichnis 1. Einleitung……………………………………………………………………………….3 1.1 Regler und Regelkreis...………………………………………………………………..3 1.2 Der PID – Regler ………………………………………………………………………4 2. Dimensionierung
in „Offene Fragen PID Temperaturregelung“ · Mikrocontroller und Digitale Elektronik ·
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QF5252F.pdf
suitable for a single AA battery or a Solar Landscape single Ni-H battery. Typical Application L1 SBAT BAT L1 2 BAT 2 R1 5 X LS 5 Q X VSS LX R2 Q SBATVSSLX (a)Uses solar panel to achieve light control (b) Uses photo-resistor to achieve light control Figure 1:TypicalApplication Circuit Diagrams of QX5252
in „[V] Induktivitäten 4,7µH bis 560µH (Aliexpress-Bestellung teilen)“ · Markt ·
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QX5252F_EN.pdf
suitable for a single AA battery or a Solar Landscape single Ni-H battery. Typical Application L1 SBAT BAT L1 2 BAT 2 R1 5 X LS 5 Q X VSS LX R2 Q SBATVSSLX (a)Uses solar panel to achieve light control (b) Uses photo-resistor to achieve light control Figure 1:TypicalApplication Circuit Diagrams of QX5252
in „Elektronik einer Solargartenleuchte defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ADC.asm
,ADCL ldi rawhigh,ADCH lsr rawhigh ;zur Berechnung ror rawlow ; /2 sbiw rawlow,4 ;-8 ret Bat_low: tst rawhigh ;MSB gesetzt? brne Bat_low_end ;dann raus (gross genug) cpi rawlow,200 ;vergleiche mit 200 (~2V) brsh Bat_low_end ;wenn grösser/gleich dann raus sbr Flag,(1<<Battery) ;Flag setzen ret Bat_low_end: cbr Flag,(1<<Battery) ;Flag zurücksetzen ret Bin_dec: ldi accu,'0'-1 ; Ziffernzähler direkt als ASCII Code Bin_dec5: inc accu subi rawlow,low(100) ; -100 sbci rawhigh,high(100) ; 16 Bit brcc
in „ADC hat immer den gleichen Wert“ · Mikrocontroller und Digitale Elektronik ·
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4412f.pdf
back to the primary power, otherwise the WALL ADAPTER INPUT * AUXILIARY TO LOAD P-CHANNEL MOSFETS BAT1 * * LTC4412 COUT AUXILIARY POWER 1 VIN SENSE 6 VCC SOURCE INPUT 2 5 470k GND GATE 470k STATUS IS HIGH 3 CTL STAT 4 WHEN BAT1 IS MICROCONTROLLER PRIMARY LOAD CURRENT P-CHANNEL MOSFETS * * WHEN BOTH
in „Akku_bei_MP3-Player“ · Analoge Elektronik und Schaltungstechnik ·
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bq24070.pdf
LOW, 200 after (CE-HOLDOFF)delay μA Total current into BAT pin with input present and chip disabled; I BAT standby current Excludes all loads, CE=LOW, 45 65 CC(BAT-STDBY) after (CE-HOLDOF(1)elay, 0°C ≤ T J 85°C IIB(BAT) Charge done current, BAT Charge DONE,
in „Akku-Typ Entscheidung“ · Mikrocontroller und Digitale Elektronik ·
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Li-Ion_Charger_TP4054.pdf
0.3V~10V ·Soft-Start Limits Inrush Current ·PROG:-0.3V~V +0.3VCC ·Available in 5-Lead SOT-23 Package ·BAT:-0.3V~7V APPLICATIONS · CHRG:-0.3V~10V ·BAT Short-Circuit Duration:Continuous ·Cellular Telephones, PDAs, MP3 Players ·BAT Pin Current:800mA ·Charging Docks and Cradles ·Blue tooth Applications ·PROG
in „ESP32-H2 will nicht schlafen“ · Mikrocontroller und Digitale Elektronik ·
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LEA-4x_Data_Sheet_GPS.G4-MS4-06143_.pdf
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 ±
in „ublox CR4 - kleine Frage RX-TX“ · Mikrocontroller und Digitale Elektronik ·
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MAX1758.pdf
switch delivers Safely Precharges Near-Dead Cells 7 a programmable current of up to 1.5A to charge the bat- 5 tery. The built-in safety timer automatically terminates Continuous Voltage and Temperature Monitoring charging once the adjustable time limit has been 8 0.1µA Shutdown Battery Current reached. The
in „Verständnisfrage Strom für MAX1758“ · Mikrocontroller und Digitale Elektronik ·
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TJA1041.pdf
UVNOM is set again. BUS FAILURE FLAG The bus failure flag is set if the transceiver detects a bus UV BAT FLAG line short-circuit condition tBAT, VCC or GND during four consecutive dominant-recessive cycles on pin TXD, when UV BAT is the VBAT undervoltage detection flag. The flag is set when the voltage on pin V BAT drops below V BAT(stb) trying to drive the bus lines dominant. In normal mode the When UV is set, the transceiver will try to enter standbybus failure flag can be made available on pin ERR. The BAT
in „I2C vs CAN vs Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan eines Audio-Wattmeters
15V R16 15V R10 82k R14 1M5 R19 680n P4 100k P5 250k R12 22M JP4 R14 1M5 C16 100n IC5 3 1 15V D3 D4 BAT85 1N4148 IC5a BAT85 15V 930018 - 13
in „Gibt es einen Ringkern mit der Bezeichnung G2-3/FT16?“ · HF, Funk und Felder · · Schaltpläne
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Datei
Bosch_Athlet_DIY_v0_1.ino
0b00000110); //MOSFETs CHG=1, DSG=1 ->manually switch on mosfets again delay(50); //stabilize voltages BAT = analogRead(VBAT); BAT = BAT*50.0*3.3/1023.0; //VBAT=VOUT*50 Serial.print("VBAT="); Serial.print(BAT,2); I_CHG_BRUSH = IBAT_ZERO - analogRead(IBAT); //compensate offset voltage I_CHG_BRUSH = I_CHG_BRUSH
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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Class-D_PWM_Amplifier_V2_0.pdf
Output Voltage GND GND 6 1 7 2 B B +5V_1 +5V_1 4 2 2 U2A 470R 3 OPA1656 2 R10 +12V D3 3 3 D4 0 1 J2 BAT54S BAT54S 3 + 1 R 3,69V D28 D31 Conn_01x02_Female 1 U5 2 BC856 SN74LVC1G14DBV C82 C10 BAS21 BAS21 13,8V_Ext_Int 1 8 A2 1 1 - k 3 1 0 1 J3 1 R1 R 1 Q1 +5V R16 D5 þÿ10µF 100nF R131 R138 C11 C83 Conn_Coaxial 5 BAT42W-V 5R6 GND GND 4 3 2 C 10R 5R6 100nF þÿ10µF 1 k 2 1 - 33R 2 D 4 2 2 R 1 0 2 1 R15 G 1 1 1 C12 R14 20k R17 1 R 3 + 3 GND GND Q2 Q3 GND GND 100R R19 n.p. IXTH60N20X4 IXTH60N20X4 þÿ1µF V_Ref U6A 3 2
in „Class D Amp. Schaltplan überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SerProg.pdf
85 4800 9600 MB90F543GPF UART1 21 24 86 85 4800 9600, 19200, 38400 MB90F546GPF UART1 21 24 86 85 4800 9600, 19200, 38400 MB90F548PF UART1 21 24 86 85 4800 9600 MB90F548GPF UART1 21 24 86 85 4800 9600, 19200
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SerProg.pdf
85 4800 9600 MB90F543GPF UART1 21 24 86 85 4800 9600, 19200, 38400 MB90F546GPF UART1 21 24 86 85 4800 9600, 19200, 38400 MB90F548PF UART1 21 24 86 85 4800 9600 MB90F548GPF UART1 21 24 86 85 4800 9600, 19200
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bosch_Athlet_DIY_240416.ino
{ //display blinking led-bar for battery-status depending of battery voltage and charge-levels if (BAT>VBAT_CHG_LOW || toogle) digitalWrite(LED_LOW, HIGH); else digitalWrite(LED_LOW, LOW); if (BAT>VBAT_CHG_LOW && ( BAT>VBAT_CHG_MID || toogle )) digitalWrite(LED_MID, HIGH); else digitalWrite(LED_MID,
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CIII_Schematic.pdf
PIN84 IO, RDN2 112 PIN112 PIN199 17 18 PIN200 PIN199 17 18 PIN200 13IO EP3C16Q240C8N IO, DIFFIO_B17p 85 PIN85 IO, (DQS0B/CQ1B,CDPCLK3) 113 PIN113 19 20 19 20 19,20 86 PIN86 114 PIN114 A PIN201 21 22 PIN202 PIN201 21 22 PIN202 15IO IO, DIFFIO_B17n 87 PIN87 IO, VREFB4N0 117 PIN117 A PIN203 23 24 PIN207 PIN203
in „fragen zu User/KOnfigurationsmodus von Cyclon“ · FPGA, VHDL & Co. ·
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PDF
AIC1896.pdf
Fig. 10 Feedback Pin Voltage 90 90 85 V IN.2V 85 V =2.7V VIN3.6V ) IN V IN.3V ) V =4.2V % 80 VIN2.5V % 80 IN V =5.0V y y IN c c VIN3.6V i 75 i 75 V =3.3V i i IN f f E 70 E 70 65 V =5.0V 65 VOUT =12V OUT L1: GTSK-51-100M L1: SLF6025-220MR
in „Stepup von 5V auf 12V mit AIC1896“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Solar_Battery_Inverter_48V_TN-1500-SPEC.pdf
selectable Front panel indicator for operation status Thermostaticallycontrolled coolingfan Protections: Bat. low alarm / Bat. low shutdown / Over voltage / Over temp. / Outputshort/Inputpolarityreverse/Overload /ACcircuitbreaker Application:Homeappliance,powertools,officeand portable equipment,vehicleand
in „[V] True-Sinus-Wechselrichter Meanwell TN-1500“ · Markt ·
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PDF
tsc2003.pdf
PRODUCT (LSB) (LSB) PACKAGE-LEAD DESIGNATOR RANGE MARKING NUMBER TSC2003 ±2 ±4 TSSOP-16 PW –40°C to +85°C TSC2003I TSC2003IPW TSC2003 ±2 ±4 TSSOP-16 PW –40°C to +85°C TSC2003I TSC2003IPWT TSC2003 ±2 ±4 TSSOP-16 PW –40°C to +85°C TSC2003I TSC2003IPWR TSC2003 ±2 ±4 TSSOP-16 PW –40°C to +85°C TSC2003I TSC2003IPWRG4 TSC2003 ±2 ±4 VFBGA-48 ZQC –40°C to +85°C BC2003 TSC2003IZQCT TSC2003 ±2 ±4 VFBGA-48 ZQC –40°C to +85°C BC2003 TSC2003IZQCR NOTE: (1) For the most current package and ordering information, see the Package Option Addendum located at the end
in „Touchscreen Controller“ · Analoge Elektronik und Schaltungstechnik ·
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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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Datei
Bosch_Athlet_DIY_240619.ino
{ //display blinking led-bar for battery-status depending of battery voltage and charge-levels if (BAT>VBAT_CHG_LOW || toogle) digitalWrite(LED_LOW, HIGH); else digitalWrite(LED_LOW, LOW); if (BAT>VBAT_CHG_LOW && ( BAT>VBAT_CHG_MID || toogle )) digitalWrite(LED_MID, HIGH); else digitalWrite(LED_MID,
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Values.txt
5 MEGA8515-P 5 MEGA16-A 5 MEGA128-A 5 JTAG 5 FERRIT0805 5 Err 5 Display 5 BC517 5 BC516 5 BC237 5 BAT85 5 BAS70 5 BAS16 5 AT90S8535P 5 8,8k 5 8,87k 5 860 5 8,2k 5 820 Ohm 5 75 5 74LS74N 5 74LS20N 5 74LS138N 5 74LS10N 5 74LS03N 5 74LS00N 5 74HC595D 5 74HC154N 5 6MHz 5 6k8 5 68k 5 620 5 5V1 5 5.6n 5 50k
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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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
TSC2003.pdf
ON during the sample period which occurs after control bits C3 = 0, C2 = 0, C1 = 0, and C0 = 1 (V BAT1) or C3 = 0, C2 = 1, C1 = 0, and C0 = 1 (V ) are received. See Tables I and BAT2 II for the relationship between the control bits and configura- tion of the TSC2003. Measure X-Position X+ Y+ Touch DC
in „Hilfe mit Touchscreen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
asus-p701-unlocked.pdf
GPXIOA10 107 OP_SD# [31] SPI_MODE# R111 1 2 4.7KOhm B [21] LCD_SCL 83 GPIO4A/PSCLK1/P80_CLK GPXIOA11 108 BAT_LERAN 1 TPC26T T185 [21] LCD_SDA 84 85 GPIO4B/PSDAT1/P80_DAT [21] LCD_CSB 86 GPIO4C/PSCLK2 PS2 109 BATSEL_2P# 1 TPC26T T179 GND [21] LCD_VSYNC 87 GPIO4D/PSDAT2 I/F GPXIOD0/SDIDI 110 NC_GPXIOD1 1 TPC26T
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LT1513_data_en.pdf
specificationscarefullybeforemakingafinalchoiceforthe (I ) (R )(V +V )(V ) switching diode. Be aware that diode manufacturers want PSW = CHRG SW BAT IN BAT (VIN2 to specify a maximum leakage current that is ten times higherthanthetypicalleakage.Itisverydifficulttogetthem R =OutputswitchONresistance tospecifyalowleakagecurrentinhighvolumeproduction
in „6V Bleigel-Akku mit 12V/230mA Solarpanel laden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
Wednesday, January 13, 2010 Sheet 78 of 88 5 4 3 2 1 5 4 3 2 1 HOLE: SSID = EMI H16 H1 H6 H7 H8 H10 HT85B85X925R29-S-GP HT85B85X925R29-S-GP H2 HT925X85BE95R29-L-5-S-GP HT85BE85R29-U-5-GP HT85BE85R29-U-5-GP HT85BE85R29-U-5-GP HOLE256R115-GP SC-1204-1 EMI Request add EMI caps 1 1 1 1 1 1 1 +PWR_SRC +PWR_SRC
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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PDF
LTC4414_Power_Manegement.pdf
to the V pin. IN 2 CTL STAT 1 WHEN BAT1 IS SUPPLYING LOAD CURRENT * WHEN BOTH STATUS LINES ARE BATTERY TO LOAD OR HIGH, THEN BOTH BATTERIES ARE CHARGER PowerPath * SUPPLYING LOAD CURRENTS. WHEN INPUT BAT1 CONTROLLER BOTH STATUS LINES ARE LOW, THEN 7 LTC4414 6 V WALL ADAPTER IS PRESENT VIN SENSE CC BAT2 3 GND GATE 8 470k 7 LTC4414 6 VCC 2 1 STATUS IS HIGH VIN SENSE CTL STAT WHEN BAT1 IS 3 GND GATE 8 47k STATUS IS HIGH 0.1µF CHARGING 2 1 WHEN BAT2 IS * TO LOAD OR CTL STAT 4414 F0SUPPLYING PowerPath
in „P-Mosfet als Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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bq24725.pdf
QUIESCENT CURRENT Battery BATFET OFF STATE Current, V VBAT= 16.8V, VCC disconnect from battery, BATFET BAT_BATFET_OFF BATFET off, ISRP + SRN + PHASE + ACP + charge pump off, BATFET turns off, J = 0 to 85° 5 µA IACN Battery BATFET ON STATE Current, V VBAT= 16.8V, VCC connect from battery, BATFET BAT_BATFET_ON BATFET on, I SRP + SRN + PHASE + VCC + charge pump on, BATFET turns on, T = 0 to 85°C 20 µA IACP + ACN J I Standby quiescent current,VCC + IACP+ V VCC> UVLO, V ACDET > 0.6V, charge disabled, 0.5 1 mA STANDBY IACN T J 0 to 85°C Adapter bias current during charge, V VCC> UVLO, 2.4V <
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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MXB7846.pdf
-40°C to +85°C 16 QSOP Pagers MXB7846EUE -40°C to +85°C 16 TSSOP Touch-Screen Monitors Cellular Phones Pin Configuration Typical Application Circuit appears at end of data sheet. TOP VIEW VDD 1 16 DCLK TransZorb
in „OLED Sammelbestellung“ · Markt ·
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MM1026AD_to_MM1245CF.pdf
Symbol Measurement conditions Min. Typ. Max. Units MM1026 2.0 mA Consumption MM1245 ICC VCC=5V, V BAT=3V, IO1=0mA 0.6 1.0 1.4 mA current MM1080 60 120 µA MM1134 1.4 2.2 mA I/O voltage difference 1 V SA1 VCC=5V, V BAT=3V, IO1=1mA 0.03 0.05 V Output voltage 1 VO1 VCC=5V, V BAT=3V, IO1=1mA 4.95 4.97 V
in „Suche Chip aus Mega-Drive-2-Spielplatine“ · Mikrocontroller und Digitale Elektronik ·
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Tadiran-Lithiumbatterien.pdf
normalerweise bei Temperaturen von –55 °C Die Tadiran Batteries GmbH beschäftigt etwa 120 Mita rbeiter bis +85 °C eingesetzt werden. Eine der Baureihen besitzt einen und hat ihren Prod uktionsstandort in Büdingen. Die Firma erweiterten Temperaturbereich bis +130 °C. Weitere Einzel- ist führend bei der Entwicklung
in „Astabiler Multivibrator mit TLC555 (LMC555)“ · Analoge Elektronik und Schaltungstechnik ·
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LC-R123R4PG.pdf
0 0 2 2 4 4 Chargecurrent 1012 12 -15 -15 0 0 15 15 30 30 45 45 0 0 CharCharge time (h) 0.0 0 BattBat ry t mperature (°C) 0 2 4 6 8 10 12 -15 0 15 30 45 Charge time (h) Battery temperature (°C) 20.0 DISCHARGECHARACTERISTICS 20.0 20.0 )15.15.0 ( V 20.0 e e )t5a) 15.0 o l( l10ve050 t Vtg 3.4A3.4A 0.850.85A 0.10.17A m eo 10.10.2A e10al 10.0 n Tn0 3.4A 3.4A 0.850.85A 0.170.17A m li10.0 10.210.2A e ar 3.4A 0.85A 0.17A T 5.0 5.0 10.2A r 0T0 5.0 0 0 1 1 2 2 3 3 5 5 7 7 10 10 20 20 40 40 60 60 2 2 4 4 6 68 18 10 20 20 40 40 (min.) (h) 0.0 0.0 (min.) (h) 0 0 1 1 2 2
in „Autoradio mit externem Netzteil +Pufferakku sowie ladegerät für Akku.“ · Analoge Elektronik und Schaltungstechnik ·