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PDF
S8264A_B_C_E.pdf
_00 Battery Protection IC Connection Example (1) 4-serial cell SCP VDD EB+ R VDD C VDD SENSE R1 BAT1 C1 VC1 R2 S-8264A/B/C BAT2 C2 Series VC2 FET R3 BAT3 C3 VC3 CO D R4 P BAT4 C4 VSS CTL External RCTL input1 EB− Figure 13 *1. Refer to Table 14 for setting on external input. Table 15 Constants for
in „IC-Identifikation: Q5A + KK9“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC4067.pdf
OUT (Note 8) 0.3 mA/μs Battery Charger V Regulated Output Voltage I = –2mA 4.185 4.2 4.215 V FLOAT BAT (0°C – 85°C);BAT= –2mA 4.167 4.2 4.234 V ICC-CHG Constant-Current Mode Charge RPROG = 2k, No Load at OUT ● 470 500 530 mA Current R = 1k, No Load at OUT, R = 1k ● 940 1000 1060 mA PROG CLPROG ICHG(MAX
in „LTC4067 Vout“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STK200SCHEMATIC_SMALL.PDF
OC1B 1 2 ALE 3 74HC00 74HC00 74HC00 PA0PA1PA2PA3PA4PA5PA6PA7 D6 7 8 D7 ADC6 7 8 ADC7 ICP 3 4 RESET BAT85 GND VCC AGND AREF VCC D2 A14 WR 9 10 9 10 GND 5 6 Clock Generation Circuit Brownout Detector Circuit Decoupling Capacitors U3B 4 R15 6 VCC D1 BAT85 VCC 5 CLOCK R11 R12 P-RESET 100R 10K 10K 74HC00
in „LCD wie externen Speicher anspr.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TJA1055_4.pdf
mode; 3 13 21 mA V = 0 V (dominant); no load TXD low power modes at VTXD = VCC Tamb = −40 °C to +85 °C 0 0 5 A Tamb = +85 °C to +125 °C 0 0 25 A V BAT battery supply voltage no time limit −0.3 - +40 V operating mode 5.0 - 40 V load dump - - 58 V I battery supply current sleep mode at - 25 40 A BAT
in „TJA1055T VBAT und VCC - CAN Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ME4056.pdf
Standby mode(charge end) - 55 100 μA ICC-IBAT static current ●Shutdown mode(R PROG not connected, VCCV BAT, or - 55 100 μA VCCV )UV V FLOAL Regulated output voltage 0℃≤T A85℃ I BAT40mA 4.158 4.2 4.242 V ●RPROG =2.6KΩ, current mode 450 500 550 mA ●RPROG =1.3KΩ,current mode 950 1000 1050 mA BAT pin current
in „Eine sehr kleinen Akku laden“ · Analoge Elektronik und Schaltungstechnik ·
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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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PDF
TP4056_Current.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 „Lademodul TP4056“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bq51051B.pdf
QUIESCENT CURRENT Active chip quiescent current consumption from RECT IBAT= 0, 0°C ≤ TJ≤ 85°C 8 10 mA IRECT (in the prswireless power is present) IBAT= 300mA, 0°C ≤ T ≤J85°C 2 3 mA I Quiescent current at the BAT when wireless power is V = 4.2V, 0°C ≤ T ≤ 85°C 12 20 µA Q disabled(Standby) BAT
in „BQ51051B Beschaltung Widerstand Ros“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CN3058.pdf
Voltage. VIN is the power supply to the internal circuit. 4 VIN When VIN drops to within 10mv of the BAT pin voltage, CN3058 enters low power sleep mode, dropping BAT pin’s current to less than 3uA. Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than
in „Solarzelle fuer Mikrokontroller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
152998-da-01-en-Schottky_Diode_BAT64_04.pdf
BAT 64-04 BAT64-05 BAT64-06 ESD: ElectroStatic Discharge sensitive device, observe handling precautions! Type Marking Ordering Code Pin Configuration Package BAT 64 63s Q62702-A879 1 = A 3 = C SOT-23 BAT
in „Frage zum Überspannungsschutz am µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSE-CN3058E.pdf
Voltage. VIN is the power supply to the internal circuit. 4 VIN When VIN drops to within 10mv of the BAT pin voltage, CN3058E enters low power sleep mode, dropping BAT pin’s current to less than 3uA. Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than
in „LIFEPO4 zum Laden isolieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IP2312.pdf
输入电压 VIN 4.5 5 5.5 V 充电电流 ICHRG 0 2.1 3 A *超出这些工作条件,器件工作特性不能保证。 7 电气特性 除特别说明,TA=25℃,L=1uH,V INV,V BAT3.7V 参数 符号 测试条件 最小 典型 最大 单位 值 值 值 充电系统 输入电压 VIN 4.5 5 5.5 V 充电目标电压 VTRGT 4.15 4.2 4.23 V 默认充电电流 ICHRG- IN=5V,BAT3.7V,ICHGC 1.8 2.1 2.4 A 充电开关频率 f 650 750 850 KHz s I 50 100 300 mA 涓流充电电流 TRKL IN=5V,BAT2.7V
in „TP4056 zuwarm (72+C) dumm verlötet und schlechte Idee ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
33963.pdf
Alogic0iswrittenbybringingtheV pinlowforatleast LSB to MSB. To commit the data to the nonvolatile BAT 60 s, but not more than 120 s. A logic 1 is written by memory the V BAT pin is brought to 12V, witCCVat 8V, bringing the BAT pin low for at least 1 s, but not more for at least 250 ms. When VBAT is
in „[V] 2St Dallas DS1633 Ladechip TO220 3 Pin für“ · Markt ·
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PDF
technische-broschuere-ltc-batterien.pdf
eine entladene normen, sind in Kapitel 5 angegeben. Batterie in Reihe mit weiteren, nicht entladenen Bat- terien verbunden wird. Äußerer Kurzschluß Jede Prüfbatterie wird bis zu einer Entladetiefe von 50% Diese Art von Fehlgebrauch kann beim Umgang mit Bat- vorentladen. Sie wird dann in Reihe mit drei
in „Welche Batterie für VW Funkschlüssel?“ · Fahrzeugelektronik ·
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PDF
DS1643-DS1643P.pdf
RANGE PART TEMP RANGE PIN-PACKAGE TOP MARK (V) DS1643-85+ 5.0 0°C to +70°C 28 EDIP (0.740) DS1643+85 DS1643-100+ 5.0 0°C to +70°C 28 EDIP (0.740) DS1643+100 DS1643P-85+ 5.0 0°C to +70°C 34-PowerCap* DS1643P+85 DS1643P-100+ 5.0 0°C to +70°C 34-PowerCap* DS1643P
in „parallele SRAM Bausteine (nennt man das so ?) in Bascom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_CrossRef_1998.pdf
BAS125W BAS125 BAS125-07 BAS125-07W BAS125-04 BAS125-04W BAS125-05 BAS125-05W BAS125-06 BAS125-06W BAT14-098 BAT14-03W BAT15-098 BAT15-03W BAT17W BAT17 BAT17-04 BAT17-04W BAT17-05 BAT17-05W BAT17-06 BAT17-06W BAT16-046 BAT62-03W BAT62-02W BAT62 BAT62-07W BAT63-03W BAT63 BAT63-099R BAT85 BAT64-03W BAT64-02W BAT64 BAT64-07 BAT64-07W BAT64-04 BAT64-04W BAT64-05 BAT64-05W BAT64-06 BAT64-06W BAT65 BAT165 BAT68-03W BAT68 BAT68-07 BAT68W BAT68-07W BAT68-04 BAT68-04W BAT68-05 BAT68-05W BAT68-06 BAT68-06W BAV19 BAS19
in „1N4001und BC574C ==> SMD?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
BAS125W BAS125 BAS125-07 BAS125-07W BAS125-04 BAS125-04W BAS125-05 BAS125-05W BAS125-06 BAS125-06W BAT14-098 BAT14-03W BAT15-098 BAT15-03W BAT17W BAT17 BAT17-04 BAT17-04W BAT17-05 BAT17-05W BAT17-06 BAT17-06W BAT16-046 BAT62-03W BAT62-02W BAT62 BAT62-07W BAT63-03W BAT63 BAT63-099R BAT85 BAT64-03W BAT64-02W BAT64 BAT64-07 BAT64-07W BAT64-04 BAT64-04W BAT64-05 BAT64-05W BAT64-06 BAT64-06W BAT65 BAT165 BAT68-03W BAT68 BAT68-07 BAT68W BAT68-07W BAT68-04 BAT68-04W BAT68-05 BAT68-05W BAT68-06 BAT68-06W BAV19 BAS19
in „Suche NPN Transistor Low Noise SMD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_CrossRef_1998.pdf
BAS125W BAS125 BAS125-07 BAS125-07W BAS125-04 BAS125-04W BAS125-05 BAS125-05W BAS125-06 BAS125-06W BAT14-098 BAT14-03W BAT15-098 BAT15-03W BAT17W BAT17 BAT17-04 BAT17-04W BAT17-05 BAT17-05W BAT17-06 BAT17-06W BAT16-046 BAT62-03W BAT62-02W BAT62 BAT62-07W BAT63-03W BAT63 BAT63-099R BAT85 BAT64-03W BAT64-02W BAT64 BAT64-07 BAT64-07W BAT64-04 BAT64-04W BAT64-05 BAT64-05W BAT64-06 BAT64-06W BAT65 BAT165 BAT68-03W BAT68 BAT68-07 BAT68W BAT68-07W BAT68-04 BAT68-04W BAT68-05 BAT68-05W BAT68-06 BAT68-06W BAV19 BAS19
in „SMD - Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
BAS125W BAS125 BAS125-07 BAS125-07W BAS125-04 BAS125-04W BAS125-05 BAS125-05W BAS125-06 BAS125-06W BAT14-098 BAT14-03W BAT15-098 BAT15-03W BAT17W BAT17 BAT17-04 BAT17-04W BAT17-05 BAT17-05W BAT17-06 BAT17-06W BAT16-046 BAT62-03W BAT62-02W BAT62 BAT62-07W BAT63-03W BAT63 BAT63-099R BAT85 BAT64-03W BAT64-02W BAT64 BAT64-07 BAT64-07W BAT64-04 BAT64-04W BAT64-05 BAT64-05W BAT64-06 BAT64-06W BAT65 BAT165 BAT68-03W BAT68 BAT68-07 BAT68W BAT68-07W BAT68-04 BAT68-04W BAT68-05 BAT68-05W BAT68-06 BAT68-06W BAV19 BAS19
in „BC337-40 in Pspice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
BAS125W BAS125 BAS125-07 BAS125-07W BAS125-04 BAS125-04W BAS125-05 BAS125-05W BAS125-06 BAS125-06W BAT14-098 BAT14-03W BAT15-098 BAT15-03W BAT17W BAT17 BAT17-04 BAT17-04W BAT17-05 BAT17-05W BAT17-06 BAT17-06W BAT16-046 BAT62-03W BAT62-02W BAT62 BAT62-07W BAT63-03W BAT63 BAT63-099R BAT85 BAT64-03W BAT64-02W BAT64 BAT64-07 BAT64-07W BAT64-04 BAT64-04W BAT64-05 BAT64-05W BAT64-06 BAT64-06W BAT65 BAT165 BAT68-03W BAT68 BAT68-07 BAT68W BAT68-07W BAT68-04 BAT68-04W BAT68-05 BAT68-05W BAT68-06 BAT68-06W BAV19 BAS19
in „SMD-Vergleichstypen von Transistoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISP1301.pdf
voltage on 0 - 3.6 V pins SCL, SDA and INT_N T ambient temperature −40 - +85 °C amb [1] VDD_LGC should be less than or equaBAT. V 9397 750 14337 © Koninklijke Philips Electronics N.V. 2005. All rights reserved. Product data Rev. 02 Ñ 04 January 2005 32 of 47 Philips Semiconductors
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73837.pdf
while maintaining the device System” for Standard Options reliability. • Temperature Range: -40°C to 85°C • Packaging: The MCP73837/8 are fully specified over the ambient temperature range of -40°C to +85°C. - 10-Lead 3 mm x 3 mm DFN - 10-Lead MSOP* The MCP73837/8 devices are available in a 10-Lead, *
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tidud83.pdf
0 - Buck; 1 - Boost 13 AGND Analog Ground OUT_EN Output on/off. 1 - on; 0 - off 12V Aux 12V VS_N V bat - Input 14 15 12V+ 12V power input VS_P V bat + Input 16 12V+ 12V power input VS_P V bat + Input 17 12V+ 12V power input VS_N V bat - Input 18 GND Power Ground IN_EN Input on/off. 1 - on; 0 - off 19
in „DC/DC-Wandler von 2.4 V auf 15 V mit 25 Watt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STK200SCHEMATIC.PDF
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „LCD Hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „DS1820 Code + Atmel90S8515“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEM.PDF
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „Schaltplan für STK 200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „AVR_90S8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200S.pdf
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „SRam am Atmega162 ohne zusätzliche Bauteile betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „Schaltplan STK200 und STK500 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200_schematic.pdf
AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BAT54.pdf
Diagrams Below L 0.45 0.61 · Weight: 0.008 grams (approx.) · Marking Code: See Diagrams Below M 0.85 0.80 a 0° 8° · Ordering Information: See Page 3 All Dimensions in mm BAT54 Marking: KL1 BAT54A Marking: KL2 BAT54C Marking: KL3 BAT54S Marking: KL4 Maximum Ratings @ T A 25°C unless otherwise specified
in „SMD Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F350xx_DS_v1.1.pdf
DDA3.3V, LSE off, LSI on, RTC off — 7.54 — μA (Standby mode) VDDV DDA3.3V, LSE off, LSI off, RTC off — 6.85 — μA VDD not available,BAT3.6 V, LSE on with — 1.74 — μA external crystal, RTC on, Higher driving VDD not available,BAT3.3 V, LSE on with — 1.59 — μA external crystal, RTC on, Higher driving VDD not
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F350xx_DS_v1.1.pdf
DDA3.3V, LSE off, LSI on, RTC off — 7.54 — μA (Standby mode) VDDV DDA3.3V, LSE off, LSI off, RTC off — 6.85 — μA VDD not available,BAT3.6 V, LSE on with — 1.74 — μA external crystal, RTC on, Higher driving VDD not available,BAT3.3 V, LSE on with — 1.59 — μA external crystal, RTC on, Higher driving VDD not
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slvs451f.pdf
-40 to 85 BDS & no Sb/Br) TPS61024DRCRG4 ACTIVE SON DRC 10 3000 Green (RoHS CU NIPDAU Level-2-260C-1 YEAR -40 to 85 BDS & no Sb/Br) TPS61025DRCR ACTIVE SON DRC 10 3000 Green (RoHS CU NIPDAU Level-2-260C-1 YEAR
in „Hochohmige digitale Widerstände für Boostconverter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps61032.pdf
OUTPUT VOLTAGE NO-LOAD SUPPLY CURRENT INTO VBAT vs vs OUTPUT CURRENT INPUT VOLTAGE 5.2 16 5.15 A 14 85°C - T 25°C 5.1 A 12 V V e o -40°C g 5.05 n 10 l t V e t 5 VBAT = 3.3 V r 8 t C u l - 4.95 p 6 u VO S 4.9 a 4 L o 2 4.85 N 4.8 0 1 10 100 1000 10000 2 3 4 5 IO- Output Current - mA VI- Input Voltage -
in „DC DC Converter Problem!“ · 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 „Li-ION Akku laden“ · 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 „Unbekanntes IC XT2058“ · 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 „Lipo Ladeelektronik“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056_Kopie.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 „0,4 OHM SMD Widerstand woher ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056_1_LIIOn_charger.pdf
Supply Voltage V IN is the power supply to the internal circuit. When V INdrops 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
in „TC4056 LiPo-Lader-Chip mehr Versorgung real möglich?“ · 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 „Wer hat praktische Erfahrung mit dem Laden nackter Li-Ion Akkus?“ · Offtopic ·
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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 „Stromwandler als Stromversorgung denkbar?“ · 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 „einzelne LiIonen Zelle laden - Schaltung“ · 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 „Laderegler Li-Ion 3s“ · 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 „Lithium-Polymer Zellen richtig Laden“ · 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 „Strommessschaltung für Akkuladung“ · 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 „Akkuschonen 80% Ladebegrenzung, wie ist das zu verstehen?“ · 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 „LiPo Ladegerät was einstellbar nur bis ca. 80 Prozent lädt“ · Analoge Elektronik und Schaltungstechnik ·