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Datei
cmu_bat.txt
/1 30 Nov 2005 11:01:15 SCHARL_P REM info menu is also switched on REM REM /main/4.20/2 5 Dec 2005 13:06:07 SCHROE_R REM REM /main/4.20/wp_scharl_chkb_on_off_bat/1 30 Nov 2005 11:01:15 SCHARL_P REM info menu is also switched
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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bat54.pdf
footprint dimensions in mm (inches) ▯▯▯▯ ▯▯▯▯ ▯▯▯▯▯▯▯ ▯▯▯▯▯▯▯ ▯▯▯▯ ▯▯▯▯▯▯▯ ▯▯▯▯ ▯▯▯▯ ▯▯▯▯▯▯▯ ▯▯▯▯▯▯▯ 10/15 DocID5505 Rev 12 BAT54 Package information Figure 19. SOT-323 dimension definitions $ ( H E ' $▯ F ș / + DocID5505 Rev 12 11/15 15 Package information BAT54 Table 10. SOT-323 dimension values Dimensions
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
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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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1510fc.pdf
TOP VIEW TOP VIEW SW 1 8 V NUMBER NUMBER CC **GND 1 16 GND** **GND 1 16 GND** BOOST 2 7 PROG SW 2 15 VCC2 LT1510CGN SW 2 15 VCC2 LT1510CN GND 3 6 V C BOOST 3 14 VCC1 LT1510IGN BOOST 3 14 VCC1 LT1510CS SENSE 4 5 BAT GND 4 13 PROG LT1510-5CGN GND 4 13 PROG LT1510IN OVP 5 12 V OVP 5 12 V S8 PACKAGE C LT1510
in „Problem mit LT1510“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spicemodels_schottky_diodes.txt
BV=30.0 IBV=500n + CJO=8.88p M=0.333 N=3.51 TT=7.20n ) *SRC=BAT43W;DI_BAT43W;Diodes;Si; 30.0V 0.200A 5.00ns Diodes Inc Schottky Diode .MODEL DI_BAT43W D ( IS=87.5u RS=18.1m BV=30.0 IBV=500n + CJO=8.88p M=0.333 N=3.51 TT=7.20n ) *SRC=BAT43WS;DI_BAT43WS;Diodes;Si;
in „ltSpice Schottky's nicht auffindbar“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TC4056.pdf
7.62 7.87 8.26 E1 6.10 6.35 7.11 e 2.54 eA 7.62 eB 10.92 L 2.92 3.30 3.81 3 4 十一、典型应用 Vcc =5V 0.4Ω Bat+ R1 VCC BAT 10 uF Bat- 10 uF CE T C 4056 NTC GND TEMP GND GND PROG R2 RPROG 不需要电池温度监测功能的应用 第 14 页 共 15 页 深圳市富满电子有限公司 SHENZHEN FUMAN ELECTRONICS CO., LTD. TC4056 (文件编号:S&CIC1007) 1A 线性锂离子电池充电器 TC4056
in „Frage zu 5V-Mini-USB-1A-Lithium-Li-ion-Akku-Lademodul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ltc4010.pdf
.........................–0.3V to 36V FAULT 1 16 READY FAULT, CHRG, V CELL , VCDIV , SENSE, CHRG 2 15 VCC BAT or READY to GND..................... –0.3V to V CC + 0.3V CHEM 3 14 TGATE SENSE to BAT........................................................ ±0.3V GND 4 17 13 PGND CHEM, V TEMP or TIMER to
in „NiMH-Ladeschaltung mit LTC4010 lädt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Data_Schottky___HF_Dioden.pdf
18 GHz) 6 - 12 03W-02W GHz pair BAT 15-099 , BAT 62…. BAT 15 099 – MA4E 501 quad HSMS 8207 + 8209 HP5082.2277, HSCH 6812 single 5082-2202, 2751, DC1304A, DH363 up to 18 GHz pair HSMS 8202 - MA4E1245 ( 2 sel. diodes ) MA4E522, DH 340 up
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PDF
nacrt_main_board_rev10a_coulomb.pdf
10n C62 5 39n 147n R205 R215 10k 3 2 3 420n NP 0R15 1M 2 R225 CH - CH - CH - CH - CH - CH - CH - CH - CH - CH - U13 COSMO 1010 CH - U8 COSMO 1010 CH - 1k CH - CH - GND GND GND CH - W10 +5V-P BAT - BAT - BAT - BAT - BAT - +12V R269 2k5 R222 2k From pro
in „SUCHE Transistor KGF75N65KDF“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX1551.pdf
rising, 430mV hysteresBAT V 3V (Note 1) 3.75 3.95 4.15 V Threshold DC Supply Current 1.75 3 mA DC to BAT On-Resistance VDC = 3.7V, BAT = 3.6V 1 2 Ω When charging stops, BAT= 4V, DC to BAT Dropout Voltage DC falling, 200mV hysteresis
in „Schaltplan überprüfen gerne auch Verbesserungen“ · Mikrocontroller und Digitale Elektronik ·
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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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PDF
4088fb.pdf
Voltage (Battery Charger Disabled) 1.0 0.25 4.50 INTERNAL IDEAL DIODE V = 4V VBUS = 5V WITH SUPPLEMENTAL BAT 5x MODE EXTERNAL VISHAY 0.8 Si2333 PMOS 0.20 4.25 INTERNAL IDEAL ( ) Ω DIODE E ( 0.6 E0.15 A4.00 N C L E INTERNAL IDEAL A V R DIODE ONLY I T V BAT= 3.4V C 0.4 E0.10 P3.75 R INTERNAL IDEAL DIODE U WITH
in „[EAGLE Anfänger] Package finden oder herstellen“ · Platinen ·
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4011fb.pdf
SHUTDOWN 18 CHEM 4 TGATE 5 GND THERMISTOR 17 INTERFACE V PGND 6 RT 16 V CHARGER BGATE 7 TEMP STATE PWM 15 V A/D CONTROL BAT 8 CELL CONVERTER LOGIC 12 SENSE 11 BATTERY DETECTOR V CDIV INTVDD 9 VOLTAGE 14 REGULATOR TIMER CHARGE TOC 10 13 TIMER VOLTAGE INTERNAL REFERENCE VOLTAGE REGULATOR 4011 BD 4011fb 10
in „Ladeabschaltung beim LTC 4011“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BA6162.pdf
A 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
in „DS1210 als Ersatz für BA6162?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CN3722-CONSONANCE.pdf
www.Datasheet4U.com CONSONANCE Typical ApplicationCircuit: Input Power Supply D1 L RCS M1 C1 C5 C6 BAT D2 16 1 VG DRV 15 VCC 13 CSP R1 R5 14 BAT D3 D4 CN3722 NC 12 R7 C7 FB 10 4 CHRG R8 COM2 9 5 DONE 8 7 COM1 MPPT 11 R4 COM3 R6 6 TEMP R2 C2 C3 C4 R3 GND PGND NTC 3 2 Figure 1 T ypicalApplication Circuit
in „Auswahl Solar-Laderegler für 12V Blei-Akku“ · Analoge Elektronik und Schaltungstechnik ·
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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 CC • PROG:-0.3V~V +0.3VCC
in „LiFePo4 3,2V Ladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bq2057w.pdf
Excluding external loads 2 4 mA For bq2057 and bq2957C, V ≥ V , V – V ≥ 0.8 V 3 6 I V Sleep current (BAT) (min) (BAT) CC µA (VCCS) CC For bq2057T and bq2957W, V(BAT)≥ V(min) V(BAT) – VCC ≥ 0.8 V 10 IB(BAT) Input bias current on BAT pin V(BAT)= V(REG) 1 µA I Input bias current on SNS pin V( = 5 V 5 µA IB
in „LiPo Lader BQ2057 schaltet nicht ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_for_IP5568_POWERBANK_V1.0.pdf
PII14 V_DET LED_G V_DET 48 FOD_DET CO1 CR1 13 FOD_DET 5240UPG TE2 PI91 PI92PIC11 LED_G UPGATE2 PII15 NLNAT2 PC4 PC4 P2 100R DNGATE2 53501CIIPE2 C15 NC/2nF QQ IP21 UPGATE1 PII15 UPG TE1 PC15A PI101 BSS138 IP5PIC11 LED_R DNGATE1 PII15 DN ATE1 TP TP P2 T PC15B PI1G0 PT3 PT0 TP5 23 A S X X X X X TP6 PIC12
in „Kann mir jemand bei der Fehlersuche von meiner Platine helfen?“ · Platinen ·
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PDF
DS32kHz.pdf
industrial device. TOP VIEW A B C D GND 1 1 GND 32kHz 1 16 N.C. N.C. 1 14 N.C. GND 2 DS32kHz 2 VCC V CC 2 15 N.C. 2 13 VCC GND 3 3 VCC N.C. 3 z 14 V BAT z H 3 k 12 32kHz V BAT 4 4 32kHz N.C. 4 3 13 GND GND 4 3 11 N.C. S S V BAT 5 5 32kHz N.C. 5 D 12 N.C. V BAT 5 D 10 N.C. N.C. 6 11 N.C. GND 6 6 GND N.C. 6 9
in „ds32kHz von Maxim“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS32kHz.pdf
industrial device. TOP VIEW A B C D GND 1 1 GND 32kHz 1 16 N.C. N.C. 1 14 N.C. GND 2 DS32kHz 2 VCC V CC 2 15 N.C. 2 13 VCC GND 3 3 VCC N.C. 3 z 14 V BAT z H 3 k 12 32kHz V BAT 4 4 32kHz N.C. 4 3 13 GND GND 4 3 11 N.C. S S V BAT 5 5 32kHz N.C. 5 D 12 N.C. V BAT 5 D 10 N.C. N.C. 6 11 N.C. GND 6 6 GND N.C. 6 9
in „Genaue Frequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS32kHz.pdf
industrial device. TOP VIEW A B C D GND 1 1 GND 32kHz 1 16 N.C. N.C. 1 14 N.C. GND 2 DS32kHz 2 VCC V CC 2 15 N.C. 2 13 VCC GND 3 3 VCC N.C. 3 z 14 V BAT z H 3 k 12 32kHz V BAT 4 4 32kHz N.C. 4 3 13 GND GND 4 3 11 N.C. S S V BAT 5 5 32kHz N.C. 5 D 12 N.C. V BAT 5 D 10 N.C. N.C. 6 11 N.C. GND 6 6 GND N.C. 6 9
in „32 KHz Quarz - lange Anlaufzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Li-Ion_Charger_TP4054.pdf
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 = 10k, Current Mode ● 90 100 110 mA R = 1.66k, Current Mode PROG ● 250 400 450 mA Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 µA BAT Shutdown Mode (RPROGNot ±1 ±2 µA Connected) -1 -2 µA Sleep Mode,V CC= 0V I Trickle Charge Current V <V , R =10K ● 15 25 35 mA TRIKL BAT TRIKL PROG Trickle Charge ThresholdR PROG10K, VBATRising 2.8 2.9
in „ESP32-H2 will nicht schlafen“ · Mikrocontroller und Digitale Elektronik ·
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bq24070.pdf
INFORMATION bq24070/1RHL RHL PACKAGE (TOP VIEW) E D V G STAT1 2 19 GND 1 20 STAT2 3 18 PG IN 4 17 OUT BAT 5 16 OUT BAT 6 15 OUT ISET2 7 14 TMR MODE 8 13 DPPM CE 9 10 11 12 TS 1 E S I V TERMINAL FUNCTIONS TERMINAL I/O DESCRIPTION NAME NO. IN 4 I Charge input voltage PG 18 O Power-good status output (open-drain
in „Akku-Typ Entscheidung“ · Mikrocontroller und Digitale Elektronik ·
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LT1734.pdf
in Constant Current Mode Pass PNP Beta > 50 VCM1 Current Monitor Voltage on PROG Pin IBAT= 10%of I BAT1 RPROG = 7500 , 0.045 0.15 0.28 V 4.55V V CC 8V, Pass PNP Beta > 50, 0°C T 85°C A VCM2 Current Monitor Voltage on PROG Pin IBAT= 10%of I BAT2 RPROG = 2100 , 0.10 0.15 0.20 V 4.55V V CC 8V, Pass PNP
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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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 ·
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PDF
asus-p701-unlocked.pdf
Adapter AC_BAT_SYS +1.8V_DUAL 7 +3VSB SUSC_ON APM7120 VTT_DDR 2 MAX8724ETI 8 13 +5V RT9173 BAT_CON VSUS_GD Battery 2*PMBS3904 APM7120 7 +2N7002 6 VSUS_ON +5VSB +5VSB 7 15 +5V AP2301 3 14 SUSB_ON AC_BAT_SYS 7 AC_VCC
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bq24072.pdf
BAT (Discharge mode) 5 A O (Continuous) BAT (Charging mode) 1.5(2) A Output Sink Current CHG, PGOOD 15 mA T J Junction temperature –40 150 °C T Storage temperature –65 150 °C stg (1) Stresses beyond those
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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Datei
R-S_CMU_HD-Files.txt
_V5.21/TOOLS/CMU_B.BAT ./R-S_CMU_HD/CMU/B01_V5.21/TOOLS/ULH_MEM.BAT ./R-S_CMU_HD/CMU/B01_V5.21/TOOLS/INFO_ON.BAT ./R-S_CMU_HD/CMU/B01_V5.21/TOOLS/LOADFPGA.BAT ./R-S_CMU_HD/CMU/B01_V5.21/TOOLS/AUDIO.EXE ./R-S_CMU_HD/CMU/B01
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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PDF
AD_Frontend8.pdf
100uH/1A 8 9 3 3 D3 + C12 C39 S-S COMP R k R k + 6 3 3 1200uF/16V 1 0,1uF C47 R15 C SG3525A D4 10uF 220E F u + C17 1 D5 L2 470uF/16V C40 C C AGND D6 0,1uF 100uH/1A +5V BAT54S -12V A K (ch nummern mit linearer DSP adressierung) C30 4n7 M D7 CH3 R19 (ch3) 3k3 BAT54S A K C31 4n7 M D8 CH4 R20 (ch4) +12V 3k3 BAT54S A K C32 4n7 M D9 CH7 (ch7) R21 39k 3k3 R16 J4-1 BAT54S A K C33 4n7 U13 0E15 +5V J4-9 M CH8 (ch8) 1 8 R18 R22 D10 2 -IN VIN 7 3k3 C19 +IN CL J4-2 BAT54S 3 OSC C 6 B A K 4 GND E 5 L1 B C34 4n7 M 22p
in „ADC Vref auf Ground“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73811_2.pdf
CONTROL V BAT 6 µA G=0.001 PROG 0.5 µA + CA REFERENCE MCP73831 GENERATOR - ONLY 43.6 kΩ VREF(1.22V) 361 kΩ 3.9 kΩ VDD + 89 kΩ - PRECONDITION 182.3 kΩ 111 kΩ + 15 kΩ STAT - TERMINATION + - 7 kΩ CHARGE VA + - 190 kΩ
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP_73831.pdf
CONTROL V BAT 6 µA G=0.001 PROG 0.5 µA + CA REFERENCE MCP73831 GENERATOR - ONLY 43.6 kΩ VREF(1.22V) 361 kΩ 3.9 kΩ VDD + 89 kΩ - PRECONDITION 182.3 kΩ 111 kΩ + 15 kΩ STAT - TERMINATION + - 7 kΩ CHARGE VA + - 190 kΩ
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
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SMD-PHILIPS_1999.pdf
-B13 SOD27 (DO35) BAT86 BAT86 SOD68 (DO34) B15 PH BZX79-B15 SOD27 (DO35) BAV10 PH BAV10 SOD27 (DO35) B16 PH BZX79-B16 SOD27 (DO35) BAV20 PH BAV20 SOD27 (DO35) B18 PH BZX79-B18 SOD27 (DO35) BAV21 PH BAV21 SOD27 (DO35) B20
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TJA1020.pdf
resistance standby; low slope or − 30 50 between pins BAT and normal slope mode; INH IINH= −15 mA; V BAT= 12 V LH HIGH-level leakage sleep mode; −5 0 +5 A current V INH= 27 V; BAT = 27 V Pin LIN Vo(reces) LIN recessive output V TXD= 5 V; LIN= 0 mA 0.9VBAT
in „[S] MCP2004 LIN Tranceiver oder andere gesucht“ · Markt ·
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PDF
MCP738312.pdf
Diagram V DD 6 µA DIRECTION CONTROL V BAT 6 µA G=0.001 PROG 0.5 µA + CA REFERENCE MCP73831 GENERATOR - ONLY 43.6 k VREF(1.22V) 361 k 3.9 k VDD + 89 k - PRECONDITION 182.3 k 111 k + 15 k STAT - TERMINATION + - 7 k CHARGE VA + - 190 k
in „MCP73832 Beschaltung für die Auswertung mit µC“ · 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
MCP73832T.pdf
Technology Inc. DS21984E-page 1 MCP73831/2 Functional Block Diagram V DD 6 mA DIRECTION CONTROL V BAT 6 mA G=0.001 PROG 0.5 mA + CA REFERENCE MCP73831 GENERATOR - ONLY 43.6 kΩ VREF(1.22V) 361 kΩ 3.9 kΩ VDD + 89 kΩ - PRECONDITION 182.3 kΩ 111 kΩ + 15 kΩ STAT - TERMINATION + - 7 kΩ CHARGE VA + - 190 kΩ
in „LiPo-Charger mit MCP73832T“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP73831-2_ENG_TDS.pdf
Technology Inc. DS21984E-page 1 MCP73831/2 Functional Block Diagram V DD 6 mA DIRECTION CONTROL V BAT 6 mA G=0.001 PROG 0.5 mA + CA REFERENCE MCP73831 GENERATOR - ONLY 43.6 kΩ VREF(1.22V) 361 kΩ 3.9 kΩ VDD + 89 kΩ - PRECONDITION 182.3 kΩ 111 kΩ + 15 kΩ STAT - TERMINATION + - 7 kΩ CHARGE VA + - 190 kΩ
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2006111335_Texas-Instruments-BQ7692003PWR_C601650.pdf
34 VC6 NC 12 19 VC7 NC 12 44-TSSOP 33 VC7 TS2 13 18 VC8 TS2 13 32 VC8 CAP2 14 17 VC9 CAP2 14 31 VC9 BAT 15 16 VC10 VC10x 15 30 VC10 NC 16 29 VC10B NC 17 28 VC11 TS3 18 27 VC12 CAP3 19 26 VC13 BAT 20 25 VC14 NC 21 24 VC15 NC 22 23 NC bq76920: 3–5 Series Cells (20-TSSOP) • 6.5 mm x 4.4 mm x 1.2 mm bq76930
in „bq76940 balancing“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq76940.pdf
34 VC6 NC 12 19 VC7 NC 12 44-TSSOP 33 VC7 TS2 13 18 VC8 TS2 13 32 VC8 CAP2 14 17 VC9 CAP2 14 31 VC9 BAT 15 16 VC10 VC10x 15 30 VC10 NC 16 29 VC10B NC 17 28 VC11 TS3 18 27 VC12 CAP3 19 26 VC13 BAT 20 25 VC14 NC 21 24 VC15 NC 22 23 NC bq76920: 3–5 Series Cells (20-TSSOP) • 6.5 mm x 4.4 mm x 1.2 mm bq76930
in „Schaltung für aktiven 3s Balancer gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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BMS-Platine.pdf
1 2 3 4 R1 5 6 7 8 BAT+ BAT+ Bat+ 105 PIN9 U2 CS3 CS4 R2 MM3474 C C 474 D3 R12 DTV3 CO1 1 OV SOC 20 0 0 RVDD2 D 2 19 V- SDC RB10 R C 3 CS VDD 18 102 RB9 4 17 102 A DCHG V5 RB8 A CO2 5 COV V4 16 RB7 102 6 15 102 R7 7 CDC V3
in „Defekte BMS-Platine Rasenmäher-Roboter - Ursachenforschung“ · Platinen ·
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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 ·
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MPPT_charger_20A.pdf
M VDD_1 PC13-TAMPER-RTC SSEL R 1 36 VDD_2 PC14-OSC32_IN 3 UEXT_EN 2 Tight tolerance GND 48 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
in „EMV-Test DC/DC - Verbesserungsvorschläge gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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TJA1041.pdf
VI/O 0.3 V VINH DC voltage on pin INH −0.3 VBAT+ 0.3 V V DC voltage on pin WAKE −0.3 V + 0.3 V WAKE BAT WAKE DC current on pin WAKE − −15 mA VCANH DC voltage on pin CANH 0 < VCC < 5.25 V; no time limit−27 +40 V VCANL DC voltage on pin CANL 0 < VCC < 5.25 V; no time limit−27 +40 V VSPLIT DC voltage on
in „I2C vs CAN vs Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bosch_Athlet_DIY_240416.ino
registers, but dont write to eeprom I2C_8Bit_writeToModule(0x10, 2, 0b00000010); //IGAIN=10, VGAIN=0.15, 0, 0, 0, 0, HOST=1, SHDN=0 ->switch to host-mode if (NUM_OF_CELLS==9){ I2C_8Bit_writeToModule(0x10, 3, 0b01010011); //CBAL10=0, CBAL9=1, TOUT=0, BAT=1, PACK=0, IACAL=0, IAEN=1, VAEN=1 I2C_8Bit_writeToModule
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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Datasheet-GEL-and-AGM-Batteries-DE.pdf
BAT212200084 22 12 181x77x167 5,8 400 Zyklen bei 80% Entladung 600 Zyklen bei 50% Entladung BAT412350084 38 12 197x165x170 12,5 1500 Zyklen bei 30% Entladung BAT412550084 60 12 229x138x227 20 280 80 BAT412600084 66 12 258x166x235 24 300 90 BAT412800084 90 12 350x167x183 27 400 130 BAT412101084 110 12 330x171x220 32 500 170 BAT412121084 130 12 410x176x227 38 550 200 BAT412151084 165 12 485x172x240 47 600 220 BAT412201084 220 12 522x238x240
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ACT2803_Data_Sheet.pdf
Directly connect this pin to IC thermal PAD and connect 22uF high quality capacitors 12 PGND from BAT to PGND on the same layer with IC. 13 HSB High side bias pin. Connect a 47nF ceramic capacitor from HSB to SW. 14,15 SW Internal switch connected to a terminal of the output inductor. BAT connection
in „ACT2803 dual cell lipo charger - Problem“ · Analoge Elektronik und Schaltungstechnik ·