-
Datei
spicemodels_schottky_diodes.txt
DI_SDM03U40 D ( IS=16.5u RS=2.20 BV=30.0 IBV=500n + CJO=2.59p M=0.333 N=2.92 TT=1.44n ) *SRC=SDM10M45SD;DI_SDM10M45SD;Diodes;Si; 45.0V 0.100A 5.00ns Diodes Inc. Schottky .MODEL DI_SDM10M45SD D ( IS=290n RS=0.420 BV=45.0 IBV=1.00u + CJO=10.6p M=0.333 N=1.28 TT=7.20n ) *SRC=SDM10P45;DI_SDM10P45;Diodes;Si; 45.0V 0.100A 5.00ns Diodes Inc. Schottky .MODEL DI_SDM10P45 D ( IS=745n RS=0.792 BV=45.0 IBV=1.00u + CJO=11.2p M=0.333 N=1.39 TT=7.20n ) *SRC=SDM10U45;DI_SDM10U45;Diodes;Si; 40.0V 0.300A 5.00ns Diodes Inc
in „ltSpice Schottky's nicht auffindbar“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
cmu_bat.txt
* $Log: chkb_on.bat $ REM REM /main/5.20/1 8 Dec 2008 17:04:49 schro_ra REM REM /main/5.00/1 18 Feb 2008 12:45:55 schro_ra REM REM /main/4.60/1 9 Nov 2007 18:38:45 schroe_r REM REM /main/4.50/2 24 Sep 2007 12:44:24 schroe_r
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
-
PDF
Data_Schottky___HF_Dioden.pdf
1.4 60 0.38 up to 2 GHz , mixer and detector BAT 83 0,40 0,36 0,33 1 6 0.35 up to 2-3 GHz , mixer and detector BAT 45 0,50 0,45 0,40 very good power detector up to 4 GHz, and mixer up to 1 4 0.35 2.5 GHz BA 481 0,50 0,45 0,40 0.7 3 0,26 very good
-
PDF
ltc4010.pdf
Charge State, No Gate Load l 5 9 mA l VUVLO Undervoltage Threshold Voltage VCC Increasing 3.85 4.2 4.45 V VUV(HYST) Undervoltage Hysteresis Voltage 170 mV VSHDNI Shutdown Threshold Voltage VCC – BAT, CCIncreasing l 45 65 90 mV V Shutdown Threshold Voltage V – BAT, V Decreasing l 15 35 60 mV SHDND CC CC
in „NiMH-Ladeschaltung mit LTC4010 lädt nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Li-Ion_Charger_TP4054.pdf
Voltage ● 4.0 5 9.0 V Input Supply Current Charge Mode, RPROG= 10k ● 150 500 µA StandbyMode(Charge ● 45 100 µA I Terminated) ● 45 100 µA CC Shutdown Mode (RPROGNot 45 100 Connected,VCC < BAT, orCC < V UV Regulated Output (Float)0℃≤T ≤A5℃,I BAT=40mA 4.15 4.2 4.242 V VFLOAL Voltage 8 BAT Pin Current R PROG
in „ESP32-H2 will nicht schlafen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
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 ·
-
PDF
MPPT_charger_20A.pdf
VDD_3 PC15-OSC32_OUT 4 V_BUS_EN for CAN interface BOOT0 1 7 RESET 0 VBAT NRST R 1 k PA0-WKUP 10 TEMP_BAT GND 4 . OSC_IN 5 RESET R 2 Equations: PD0-OSC_IN C36 tau = R39 * C36 = 2.2 s BOOT0 44 BOOT0 PB0 18 I_LOAD V(t) = Vmax * (1-exp(-t/tau)) PB1 19 I_DCDC 3 2.2u --> t = -tau * ln(1-V/Vmax) 11 20 C29 R45
in „EMV-Test DC/DC - Verbesserungsvorschläge gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Anhang3.pdf
CHRG V STDBY 引脚输出低电平 ISTDBY=5mA 0.3 0.6 V 80 82 %Vcc VTEMP-H TEMP 引脚高端翻转电压 VTEMP-L TEMP 引脚低端翻转电压 43 45 %Vcc Δ VRECHRG 再充电电池门限电压 V FLOATVRECHRG 100 150 200 mV TLIM 限定温度模式中的结温 145 ℃ 功率 FET“导通”电阻 RON 650 mΩ (在 V CC与 BAT 之间) t 软启动时间 I =0 至 I =1200V/R 20 μs ss BAT BAT PROG RECHARGE 再充电比较器滤波时间 VBAT高至低 0.8 1.8
in „sichere Umsetzung Schutzabschaltung Akku“ · Analoge Elektronik und Schaltungstechnik ·
-
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 ·
-
PDF
DS3231_M_MZ_Mems.pdf
Typical Operating Circuit Ordering Information +3.3V +3.3V PART TEMP RANGE PIN-PACKAGE DS3231MZ+ -45NC to +85NC 8 SO DS3231MZ/V+ -45NC to +85NC 8 SO DS3231M+ -45NC to +85NC 16 SO SCL +Denotes a lead(Pb)-free/RoHS-compliant package. I/O PORT SDA /V denotes an automotive qualified part. 32KHZ BAT INT/
in „(empfindlicher) GPS Modul gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
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 ·
-
PDF
TC4056.pdf
线性锂离子电池充电器 五、完整的充电循环(1000mAh 电池) D 六、封装/订购信息及功能 TEMP 1 8 CE PROG 2 TC4056 7 GND GND 3 6 GND VCC 4 5 BAT TEMP(引脚 1:电池温度检测输入端。将 TEMP 管脚接到电流的 NTC 传感器的输出端。如果 TEMP 管脚的 电压小于输入电压的 45%或者大于输入电压的 80%,意味着电池温度过低或过高,则充电被暂停。 如果 TEMP 直接接 GND,电池温度检测功能取消,其他充电功能正常。 C PROG(引脚 2:恒流充电电流设置和充电电流监测端。从 PROG 管脚连接一个外部电阻到地端可以对充电
in „Frage zu 5V-Mini-USB-1A-Lithium-Li-ion-Akku-Lademodul“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
1510fc.pdf
be recommended. Instead, a moderate I V 2 1+ VBAT levelofcurrentisusedonapulsebasis(≈1%to5%duty (BAT ( BAT 30 cycle) with the time-averaged value substituting for a PDRIVER = 55 ( IN constant low trickle. 2 (BAT ) RSW ( BAT Thermal Calculations PSW = + (OL ( IN (BAT () IftheLT1510isusedforchargingcurrentsabove0.4A
in „Problem mit LT1510“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
bat54.pdf
11. SOD123 dimension definitions + $▯ $▯ E ( ' $ F * DocID5505 Rev 12 5/15 15 Package information BAT54 Table 6. SOD123 dimension values Dimensions Ref. Millimeters Inches Min. Typ. Max. Min. Typ. Max. A 1.45 0.057 A1 0 0.10 0 0.004 A2 0.85 1.35 0.033 0.053 b 0.55 0.022 c 0.15 0.039 D 2.55 2.85 0.1
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
nacrt_main_board_rev10a_coulomb.pdf
Ohm 12 V relay 250ns 250ns O/P-N 3 40A ZD1 3 3 3 3 P2 J3=18V C2 7 C24 ZD8=J3 8 D8=L4 8 D7=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
in „SUCHE Transistor KGF75N65KDF“ · Analoge Elektronik und Schaltungstechnik ·
-
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 ·
-
PDF
4011fb.pdf
sense LTC4011 is paused. If VTEMP is above 200mV but below resistor connected between the SENSE and BAT pins. 2.85V,theLTC4011verifiesthatthesensedtemperatureis The CHRG status output is active during fast charge. If between5°Cand45°C.Ifthesetemperaturelimitsarenot metorifitsowndietemperatureistoohigh
in „Ladeabschaltung beim LTC 4011“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
bq51051B.pdf
PGND PGND 1 20 A1 A2 A3 A4 PGND PGND PGND PGND A21 A19 B1 B2 B3 B4 BOOT1 RECT 3 18 AC2 AC2 AC1 AC1 BAT BOOT2 4 17 C1 C2 C3 C4 BOOT2 RECT RECT BOOT1 CLMP1 CLMP2 5 16 D1 D2 D3 D4 BAT BAT BAT BAT COMM1 COMM2 6 15 E1 E2 E3 E4 COMM2 CLMP2 CLMP1 COMM1 CHG FOD 7 14 F1 F2 F3 F4 AD-EN TS/ TS/CTRL FOD AD-EN CHG
in „BQ51051B Beschaltung Widerstand Ros“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Siemens_CrossRef_1998.pdf
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 ·
-
PDF
Siemens_CrossRef_1998.pdf
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 ·
-
PDF
Siemens_CrossRef_1998.pdf
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 ·
-
PDF
Siemens_CrossRef_1998.pdf
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 ·
-
PDF
Siemens_CrossRef_1998.pdf
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 ·
-
PDF
asus-p701-unlocked.pdf
EAR_POP 22KOhm 22KOhm 100PF/50V 100PF/50V 100PF/50V AUDIO JACK 2 /X 2 /X 2 /X PHONE_JACK_6P B 1 1 B AC_BAT_SYS change from DIP to SMD GND_AUDIO GND_AUDIO 2 R45 AC_BAT_SYS 1MOhm MIC_JACK use 12G14040106G 2 1 EAR_POP R46 L41 120Ohm/100Mhz +3V 100KOhm 3 3 [30] MIC_SW# 1 2 MIC_JACK D 1 C53 L19 120Ohm/100Mhz
-
PDF
bat42_bat43_datasheet.pdf
BAT 42 ∪ BAT 43 SMALLSIGNAL SCHOTTKY DIODES DESCRIPTION Generalpurpose, metal to silicon diodes featuring very low turn-on voltage fast switching. DO 35 These devices have integrated protection against
in „Frage zur Masseführung, Datenblatt verwirrt mich“ · Analoge Elektronik und Schaltungstechnik ·
-
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
in „SMD Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LTC4054-4.2.pdf
Not Connected, 25 50 A VCC< VBAT, or CC< VUV VFLOAT Regulated Output (Float) Voltage 0°C ≤ A ≤ 85°C,BAT = 40mA 4.158 4.2 4.242 V I BAT Pin Current R = 10k, Current Mode 93 100 107 mA BAT PROG RPROG = 2k, Current Mode 465 500 535 mA Standby Mode, BAT = 4.2V 0 –2.5 –6 A Shutdown Mode (RPROG Not Connected
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
-
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
-
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 ·
-
PDF
SMD_Catalog.pdf
series BAS40 44 BAS40-04W Sie D SOT323 dual series BAS40 44 2SC5009 Nec N - npn RF fT 12GHz @3V 5mA 45 BAS40-05 Sie A SOT23 dual ca BAS40 45 BAS40-05W Sie A SOT323 dual ca BAS40 45 BAT14-055S Sie CS SOT173 8GHz schottky diode 45 BAT14-055R Sie CZ SOT173 8GHz schottky ring quad 45 DTC124XE Roh N EMT3 npn dtr 22k+47k 50V 50mA 45 DTC124XUA Roh N SC70 npn dtr 22k+47k 50V 50mA 45 DTC124XKA Roh N SC59 npn dtr 22k+47k 50V 50mA 45D BAT14-055D Sie CY SOT173 8GHz schottky dual 46 BAS40-06 Sie B SOT23 dual cc BAS40 46 BAS40-06W Sie B
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
-
PDF
TP4067.pdf
500 3.90E A 3.75Y ( V N400 3.60LO E 3.45A R300 3.30G C 4.35V 3.15V E ) R200 4.20V 3.00 A 3.70V 2.85 C100 2.70 IBAT 2.55 0 2.40 0 0.25 0.5 0.75 1.0 1.25 1.5 1.75 2.0 TIME(HOURS) 绝对最大额定值 • BAT 引脚电流:700mA • 输入电源电压(V ) :-6.5V~12V • PROG 引脚电流:2mA
in „LiFePo4 3,2V Ladegerät“ · Analoge Elektronik und Schaltungstechnik ·
-
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 ·
-
PDF
MCP73831.pdf
Charging — 53 200 μA Charge Complete, No Battery — 25 50 μA PROG Floating — 1 5 μA V < (V - 50 mV) DD BAT — 0.1 2 μA VDD < VSTOP UVLO Start Threshold VSTART 3.3 3.45 3.6 V VDD Low-to-High UVLO Stop Threshold V 3.2 3.38 3.5 V V High-to-Low STOP DD UVLO Hysteresis VHYS — 70 — mV Voltage Regulation (Constant-Voltage
in „Akku Ladetechnik“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
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 ·
-
PDF
SCH2.pdf
D15 A1 A1 A2 A2 A1 A1 A2 A2 D51 A1 A1 A2 A2 D65 A1 A1 A2 A2 D8 A3 A4 D30 A3 A4 D44 A3 A4 D58 A3 A4 BAT60J A3 A4 BAT60J A3 A4 BAT60J A3 A4 BAT60J A3 A4 BAT60J D16 B1 B2 BAT60J D38 B1 B2 BAT60J D52 B1 B2 BAT60J D66 B1 B2 D9 B3 B1 B2 B4 D31 B3 B1 B2 B4 D45 B3 B1 B2 B4 D59 B3 B1 B2 B4 C BAT60J B3 B4 BAT60J B3 B4 BAT60J B3 B4 BAT60J B3 B4 C BAT60J D17 BAT60J D39 BAT60J D53 BAT60J D67 D10 C1 C1 C2 C2 D32 C1 C1 C2 C2 D46 C1 C1 C2 C2 D60 C1 C1 C2 C2 BAT60J C3 C3 C4 C4 BAT60J C3 C3 C4 C4 BAT60J C3 C3 C4 C4 BAT60J C3
in „Fehlersuche Code Arduino IDE ESP32 - Timer Interrupt - NTP-Client“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP73832T.pdf
1500 µA Charging SS — 53 200 µA Charge Complete, No Battery — 25 50 µA PROG Floating — 1 5 µA VDD < (BAT - 50 mV) — 0.1 2 µA VDD < VSTOP UVLO Start Threshold VSTART 3.3 3.45 3.6 V VDD Low-to-High UVLO Stop Threshold V 3.2 3.38 3.5 V V High-to-Low STOP DD UVLO Hysteresis V HYS — 70 — mV Voltage Regulation
in „LiPo-Charger mit MCP73832T“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP73831-2_ENG_TDS.pdf
1500 µA Charging SS — 53 200 µA Charge Complete, No Battery — 25 50 µA PROG Floating — 1 5 µA VDD < (BAT - 50 mV) — 0.1 2 µA VDD < VSTOP UVLO Start Threshold VSTART 3.3 3.45 3.6 V VDD Low-to-High UVLO Stop Threshold V 3.2 3.38 3.5 V V High-to-Low STOP DD UVLO Hysteresis V HYS — 70 — mV Voltage Regulation
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ACT2803_Data_Sheet.pdf
to GND -0.3 to +12 V VIN, VOUT and VREG to GND -0.3 to +6 V CSP to CSN, CSP to VOUT -0.3 to +0.3 V BAT to BATS, BATS to BATP -0.3 to +0.3 V BATC to BATN -0.3 to +6 V BAT to BATC -0.3 to +6 V BATN to GND -0.3 to +0.3 V CBD to BAT -6 to +0.3 V BATN to CBD -6 to +0.3 V SW to PGND -0.3 to +12 V HSB to SW
in „ACT2803 dual cell lipo charger - Problem“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
GD32F103xx_Datasheet_V2.5.pdf
characteristics (for GD32F103x4/6/8/B devices) Symbol Parameter Conditions Min Typ. Max Unit VDDV BAT3.3V, HXTAL=8MHz, System — 45.5 — mA clock=108 MHz, all peripherals enabled VDDV BAT3.3V, HXTAL=8MHz, System — 33.96 — mA Supply current clock =108 MHz, all peripherals disabled (Run mode) V =V =3.3V
in „Unterschiede CS32F103C8T6 und STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BA6162.pdf
Detection voltage temperature characteristic VS – 0.05 — + 0.05 % / °C — Switching voltage VB 3.15 3.30 3.45 V V CC= H L, V BAT = 3V, RO = 200k Switching hysteresis voltage V BH — 100 — mV V CC= L H, V BAT = 3V, RO = 200k Switching voltage temperature characteristic VB – 0.05 — + 0.05 % / °C — Backup current
in „DS1210 als Ersatz für BA6162?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SMD-PHILIPS_1999.pdf
-05 45p; 45t SOT23 BAT81 BAT81 SOD68 (DO34) BAS40-05W 65 SC-70/SOT323 BAT82 BAT82 SOD68 (DO34) BAS40-06 46p; 46t SOT23 BAT83 BAT83 SOD68 (DO34) BAS40-06W 66 SC-70/SOT323 BAT85 BAT85 SOD68 (DO34) BAS40-07 47p SOT143B BAT86 BAT86 SOD68 (DO34) BAS45A 45A PH SOD68 (DO34) BAT120A AT120A SC-73/SOT223 BAS45AL black SOD80C BAT120C AT120C SC-73/SOT223 BAS56 L51 SOT143B BAT120S AT120S SC-73/SOT223 BAS70 73p; 73t SOT23 BAT140A
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TJA1020.pdf
Thermally protected. QUICK REFERENCE DATA SYMBOL PARAMETER MIN. TYP. MAX. UNIT VBAT supply voltage on pin BAT 5 12 27 V BAT supply current on pin BAT in sleep mode 1 3 8 A supply current on pin BAT in standby mode; bus recessive 100 400 1000 A supply current on pin BAT in normal slope mode; bus recessi100 400
in „[S] MCP2004 LIN Tranceiver oder andere gesucht“ · Markt ·
-
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 ·
-
PDF
60W_Lampe_Sch.pdf
1 4 2 1 F4T751 2 1 4 2 1 4 P3 C71 P2 3 U17 3 U27 3 U37 3 U47 3 U57 3 U67 D5 1 1 BAT2 Ref 2 Ref 2 Ref 2 Ref 2 Ref 2 Ref 2 2 10u + 1 ZR431 1 ZR431 1 ZR431 1 ZR431 1 ZR431 1 ZR431 4 1 R71 R19 R29 R39 R49 R59 R69 Q71 1 - 2 P1 1 2.4k 12.4k 1 2.4k 12.4k 1 2.4k 12.4k FZT651 22k 3 D6 1 BAT3 + GND - 2 1 BAT4 1 + D7 8V - 2 ES1D 2 U1 1 LM7808C 3 R3 IN OUT 1 220R 8 1 BAT5 GND U2 + 2 1 Vcc 7 -4V nc OSC - 2 2 CAP+ LV 6 4 5 C5 CAP- Vout Q11 Q21 Q31 Q41 1 GND BAT6 BSP318/SIE BSP318/SIE BSP318/SIE BSP318/SIE 10u
in „LiIon Balancer - Hilfe bei Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
60W_Lampe_Sch.pdf
1 4 2 1 F4T751 2 1 4 2 1 4 P3 C71 P2 3 U17 3 U27 3 U37 3 U47 3 U57 3 U67 D5 1 1 BAT2 Ref 2 Ref 2 Ref 2 Ref 2 Ref 2 Ref 2 2 10u + 1 ZR431 1 ZR431 1 ZR431 1 ZR431 1 ZR431 1 ZR431 4 1 R71 R19 R29 R39 R49 R59 R69 Q71 1 - 2 P1 1 2.4k 12.4k 1 2.4k 12.4k 1 2.4k 12.4k FZT651 22k 3 D6 1 BAT3 + GND - 2 1 BAT4 1 + D7 8V - 2 ES1D 2 U1 1 LM7808C 3 R3 IN OUT 1 220R 8 1 BAT5 GND U2 + 2 1 Vcc 7 -4V nc OSC - 2 2 CAP+ LV 6 4 5 C5 CAP- Vout Q11 Q21 Q31 Q41 1 GND BAT6 BSP318/SIE BSP318/SIE BSP318/SIE BSP318/SIE 10u
in „LED Videolicht ohne PWM“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
60W_Lampe_Sch.pdf
1 4 2 1 F4T751 2 1 4 2 1 4 P3 C71 P2 3 U17 3 U27 3 U37 3 U47 3 U57 3 U67 D5 1 1 BAT2 Ref 2 Ref 2 Ref 2 Ref 2 Ref 2 Ref 2 2 10u + 1 ZR431 1 ZR431 1 ZR431 1 ZR431 1 ZR431 1 ZR431 4 1 R71 R19 R29 R39 R49 R59 R69 Q71 1 - 2 P1 1 2.4k 12.4k 1 2.4k 12.4k 1 2.4k 12.4k FZT651 22k 3 D6 1 BAT3 + GND - 2 1 BAT4 1 + D7 8V - 2 ES1D 2 U1 1 LM7808C 3 R3 IN OUT 1 220R 8 1 BAT5 GND U2 + 2 1 Vcc 7 -4V nc OSC - 2 2 CAP+ LV 6 4 5 C5 CAP- Vout Q11 Q21 Q31 Q41 1 GND BAT6 BSP318/SIE BSP318/SIE BSP318/SIE BSP318/SIE 10u
in „Lithium Akkus "einfach" laden“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
60W_Lampe_Sch.pdf
1 4 2 1 F4T751 2 1 4 2 1 4 P3 C71 P2 3 U17 3 U27 3 U37 3 U47 3 U57 3 U67 D5 1 1 BAT2 Ref 2 Ref 2 Ref 2 Ref 2 Ref 2 Ref 2 2 10u + 1 ZR431 1 ZR431 1 ZR431 1 ZR431 1 ZR431 1 ZR431 4 1 R71 R19 R29 R39 R49 R59 R69 Q71 1 - 2 P1 1 2.4k 12.4k 1 2.4k 12.4k 1 2.4k 12.4k FZT651 22k 3 D6 1 BAT3 + GND - 2 1 BAT4 1 + D7 8V - 2 ES1D 2 U1 1 LM7808C 3 R3 IN OUT 1 220R 8 1 BAT5 GND U2 + 2 1 Vcc 7 -4V nc OSC - 2 2 CAP+ LV 6 4 5 C5 CAP- Vout Q11 Q21 Q31 Q41 1 GND BAT6 BSP318/SIE BSP318/SIE BSP318/SIE BSP318/SIE 10u
in „LiPo Akku als Puffer“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
SermultiChip.pdf
Display Controller …. Atmega48 Display Software 232 7905 DCDC Conv. 5->9 Optische Trennung Attiny45 USB Stack USB Buchse Mini Platinenlayout USB Mini ATtin y45 RX DC opto opto AVR ATmega48 RX TX DC D3 E2 F2 A2 B2 C2 D2 E1 G1 F1 A1 16 17 19 20 21 22 23 24 25 26 27 B3 15 28 B1 F3 14 29 C1 E3 13 30 D1 B/C4 12 + G4 11 Back1,2,3 G3 9 A3 8 C3 7 G2 6 10 BAT
in „Multimeter mit serieller Schnittstelle für unter 10€“ · Projekte & Code ·
-
PDF
TJA1055_4.pdf
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 VRTL = VWAKE = VINH= V BAT = 14 V Tamb = −40 °C to +125 °C low power mode at VRTL = VWAKE = VINH= V BAT Tamb = −40 °C to +125 °C VBAT = 5 V to 8 V 10 - 100 A VBAT = 8 V to 40 V 10 - 75 A normal operating mode at - 150 220 A VRTL = VWAKE = VINH= V BAT= 5 V to 40 V V pof(BAT) power-on flag voltage on low
in „TJA1055T VBAT und VCC - CAN Bus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BAT43.pdf
BAT42/BAT 43 ELECTRICALCHARACTERISTICS STATIC CHARACTERISTICS Symbol Test Conditions Min. Typ. Max. Unit VBR Tj = 25⋅C IR= 100 A 30 V VF* Tj= 25⋅C IF= 200mA All Types 1 V Tj= 25⋅C IF= 10mA BAT42 0.4 Tj= 25⋅C IF= 50mA 0.65 I = 2mA BAT43 0.26 0.33 Tj= 25⋅C F T = 25 C I = 15mA 0.45 j ⋅ F I * T = 25⋅C V = 25V 0.5 A R j R T = 100⋅C 100 j DYNAMIC CHARACTERISTICS Symbol Test Conditions Min. Typ. Max. Unit C Tj= 25⋅C V R 1V f = 1MHz 7 pF
in „Trafos parallel schalten“ · Analoge Elektronik und Schaltungstechnik ·