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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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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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Datei
cmu_bat.txt
[5;41m [5;30;42m [5;41m [0m echo [5;41m [0m echo [0m ============================================= ./B01_V5.21/TOOLS/CLEAN.BAT ============================================= @CALL CDLOG.BAT @ATTRIB *.LOG R- @ATTRIB *
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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bq51051B.pdf
Instruments Incorporated Product Folder Links: bq51050B bq51051B bq51050B bq51051B www.ti.com SLUSB42D –JULY 2012–REVISED JANUARY 2014 DEVICE INFORMATION SIMPLIFIED BLOCK DIAGRAM RECT I BAT V VREF,ILIM + _ OUT,FB VILIM _ + VOUT,REG V REF,IABS VIABS,FB _ ILIM V IN,FB V IN,DPM _ AD + _ VREF AD,OVP BOOT2
in „BQ51051B Beschaltung Widerstand Ros“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spicemodels_schottky_diodes.txt
MODEL DI_BAS70W-06 D ( IS=99.5p RS=0.600 BV=70.0 IBV=10.0u + CJO=2.00p M=0.333 N=1.70 TT=7.20n ) *SRC=BAT42;DI_BAT42;Diodes;Si; 30.0V 0.200A 5.00ns Diodes Inc. Schottky .MODEL DI_BAT42 D ( IS=2.46u RS=0.210 BV=30.0 IBV=500n + CJO=13.3p M=0.333 N=1.70 TT=7.20n ) *SRC=BAT42W;DI_BAT42W;Diodes;Si; 30.0V 0.200A 5.00ns Diodes Inc Schottky Diode .MODEL DI_BAT42W 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=BAT42WS;DI_BAT42WS;Diodes;Si; 30.0V 0.200A 5.00ns Diodes Inc Schottky Diode .MODEL DI_BAT42WS D ( IS=87.5u RS=18.1m
in „ltSpice Schottky's nicht auffindbar“ · Analoge Elektronik und Schaltungstechnik ·
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giessotomat02_sch.pdf
DUT N N 200 GND C3 G G C4 k 3 0 2 4 R 1 0,33yF 0,1yF GND GND U$7 U$10 U$13 U$16 U$25 U$28 U$31 U$34 bat42 bat42 bat42 bat42 bat42 bat42 bat42 bat42 8 1 8 1 8 1 8 1 8 1 8 1 8 1 8 1 0 4 0 2 1 0 7 0 5 2 0 0 0 8 3 0 3 0 1 4 0 7 0 5 5 0 0 0 8 6 0 3 0 1 7 0 6 0 4 8 7 1 0 1 -K 7 1 0 1 -K 7 2 0 1 -K 7 2 0 2 -
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Schaltplan mit Dioden und Drehschalter
R1 10k 3V3 D2 BAT42W-V SW_Rotary_1_1_2 D3 BAT42W-V MCP_A SW_Rotary_1_1_4 D4 BAT42W-V R6 10k 3V3 D5 BAT42W-V SW_Rotary_1_1_3 MCP_B BAT42W-V SW_Rotary_1_1_4 SW27A SW_Rotary_1_1_1 SW_Rotary_1_1_2 SW_Rotary_1_1_3 SW_Rotary
in „Kleine Diodenmatrix so ok?“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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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
in „Offene Fragen PID Temperaturregelung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronische_Last_final.pdf
5 6 7 8 +5V +10V Temp LM35 A X101-1 GND GND +10V +5V A X101-2 R101 7 1 IC102 0 D102 X101-3 3 8 1 k BAT42 + C108 1k 6 R 3 TEMP 2 R121 A 2µ2 GND C102 OP07CN 5 C104 +5V S 8 4 C109 C111 C113 C115 C118 C120 C122 C124 C126 1 C 4 5 2 1 V 100n k R 100p 1N4148 10k E 100n 100n 100n 100n 100n 100n 100n 100n 100n
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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asus-p701-unlocked.pdf
34] KSO[15:0] KSO0 GND 39 GPIO20/KSO0/TP_TEST PM_LEVELDOWN KSO1 40 GPIO21/KSO1/TP_PLL GPI38/AD0 63 BAT_ICHG [42] KR8 2 1 100KOhm KSO2 41 GPIO22/KSO2 GPI39/AD1 64 BAT_CONFIG [38,42] KSO3 42 GPIO23/KSO3/TP_ISP ADC GPI3A/AD2 65 BAT_SENSE [42] C KSO4 43 66 BAT_TS [38,42] 1 TPC26T T210 C KSO5 44 GPIO24/KSO4
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Solar_Battery_Inverter_48V_TN-1500-SPEC.pdf
PANEL INDICATOR Battery voltage level, output load level, saving mode, fault and operation status BAT. VOLTAGE 12V 24V 48V 12V 24V 48V VOLTAGERANGE(Typ.) Note.310.5 ~ 15VDC 21 ~ 30VDC 42 ~ 60VDC 10.5 ~ 15VDC 21 ~ 30VDC 42 ~ 60VDC DC CURRENT (Typ.) Note.150A 75A 37.5A 150A 75A 37.5A INPUT NO LOAD DISSIPATION
in „[V] True-Sinus-Wechselrichter Meanwell TN-1500“ · Markt ·
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EMS-ESP.pdf
S M E U 3 3 L1 V V D2 3 r 3 1 1A 1 2 + e + IN-1 S 4.7uH BAT42 7 4 2 2A K R IN-2 4 BAT42 d d d d d IN-3 3 3A 2 1 i i i i i S S S S LM393N 6 EMS SpiceOrdeD11 R 1 R 1 R 1 R 1 EMS_RX C6 JP4 0 0 0 0 7 8 1 R 1 R 1 R 1 R 9 9 9 9 5 UREF 68p r r r r IC1B SpiceOrdD5 2 p p p p T1 S S S S BC847B 100n 2 BAT42 4 T C3 C2 C1 4 4 A D B 4.7uH BAT42 2 1 1.5n 10n GND D3 3 L2 GND GND GND V GND 3 r + Oe S 7 6 K R u 4 5 0 R14 C 1 IC1A e 2 1 SpiceOrder SpiceOrder 1 3 ci 4 n 1 SR5 3 10K C 1 SpiceOrder SpiceOEMS_TX
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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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Boris_Voyager.sch.pdf
PC6 26 S5 S 4 3 4 3 4 3 4 3 4 3 4 PC7 1 2 1 2 1 2 1 2 1 2 CS_DISPLAY 40 PB0 RS_DISPLAY 41 PB1 Z4 B 42 S21 S22 S23 S24 S25 B DM_DISPLAY 43 PB2 8K x 8 F-RAM CS_SD PB3 44 PB4 1 3 42 1 3 4 2 13 4 2 13 42 1 3 4 2 MOSI/2.5B 1 PB5 MISO/2.5A 2 PB6 +3V3 Z5 3 S26 S27 S28 S29 S30 SCK/2.5A PB7 6 k R 1 S41 6 GND_
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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SMD_Catalog.pdf
N SOT23 npn 40v 1A max 41D BAT14-115D Sie CY SOT173 40GHz schottky dual 42 BAT14-025S Sie CS SOT173 4GHz schottky diode 42 BAT14-025R Sie CZ SOT173 4GHz schottky ring quad 42D BAT14-025D Sie CY SOT173 4GHz schottky dual 43 BAS40
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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XIAO_ESP32S3_Plus_V1.0_241025.pdf
GND MTDI/IO41/PDM_DATA/RX1 18 B1/A12/GND GND 1 1 1 1 1 2 2 2 2 2 2 2 2 2 GPIO41_PDM_DATA/RX1 MTMS/IO42/PDM_CLK/TX1 19 GPIO42_PDM_CLK/TX1 GND 1 IO10/XMCLK/ADC_BAT 20 S3 I 1 K GPIO10_XMCLK/ADC_BAT GND U5 T S S S S4 PY25Q128HA-DFH-IR B M MI I E C I I / Y Y Y Y D D _ GND SPICS0 1 CS# VCC 8 VDD_SPI D S S L
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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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Class-D_PWM_Amplifier_V2_0.pdf
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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SCH2.pdf
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 ·
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SMD-PHILIPS_1999.pdf
BAS17 A91 SOT23 BAS321 A7 SC-76/SOD323 BAS19 JPp; JPt SOT23 BAS516 6 SC-79/SOD523 BAS20 JRp; JRt SOT23 BAT17 A3p; A3t SOT23 BAS21 JSp; JSt SOT23 BAT54 L4p; L4t SOT23 BAS28 JTp SOT143B BAT54A L42 SOT23 BAS29 L20 SOT23 BAT54AW 42 SC-70/SOT323 BAS31 L21 SOT23 BAT54C L43 SOT23 BAS32L black SOD80C BAT54CW 43
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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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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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 ·
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MPPT_charger_20A.pdf
V_BAT_ADC LOAD_SHUNT- USB_DP USB_DP MCU DCDC_SHUNT+ USB_DM USB_DM I_DCDC_ADC DCDC_SHUNT- I_LOAD_ADC UEXT_EN UEXT_EN REF_DIFF_AMP V_SOLAR V_BUS_EN V_BUS_EN V_BAT 5V_OUT_EN 5V_OUT_EN TEMP_BAT TEMP_BAT 5V_OUT
in „EMV-Test DC/DC - Verbesserungsvorschläge gesucht“ · 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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B6_Arduino___.pdf
OK4 OK6 1 6 1 6 1 6 5 5 5 UC_GND UC_GND UC_GND 2 4 2 4 2 4 4N25 4N25 4N25 18V D5 18V D6 18V D7 2 3 4 BAT42 C BAT42 C BAT42 C 1 8 1 8 1 8 VCC VB VCC VB VCC VB 2 7 2 7 2 7 IN HO IN HO IN HO IGBT_Treiberstufe 3 6 3 6 3 6 SD/ VS SD/ VS SD/ VS 4 5 4 5 4 5 COM LO COM LO COM LO GND GND GND IGBT_Modul Gleichrichtereinheit
in „Frequenzumrichter Eigenbau mit Arduino“ · Analoge Elektronik und Schaltungstechnik ·
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118.pdf
520 100 BAT412800080 90 12 350x167x183 27 600 145 BAT412101080 110 12 330x171x220 32 800 190 BAT412121080 130 12 410x176x227 38 1000 230 BAT412151080 165 12 485x172x240 47 1200 320 BAT412201080 220 12 522x238x240
in „Blei-Vlies Akku richtig laden“ · Analoge Elektronik und Schaltungstechnik ·
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GD32F103xx_Datasheet_V2.5.pdf
, HXTAL=8MHz, System DD BAT -— 30.72 — mA clock =72MHz, all peripherals enabled VDDV BAT3.3V, HXTAL=8MHz, System — 23.05 — mA Clock =72 MHz, all peripherals disabled VDDV BAT3.3V, HXTAL=8MHz, System clock =108 MHz, CPU clock off
in „Unterschiede CS32F103C8T6 und STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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Elektronische_Last_6.pdf
2 3 4 5 6 7 8 +5V +10V Temp LM35 +10V +5V A X101-1 IC102 A X101-2 R101 7 1 0 3 D102 X101-3 3 8 R 3 BAT42 1k 6 TEMP 2 GND C102 OP07CN 0 C104 4 4 C108 C110 C113 C115 C117 C119 C121 C123 1 C 4 5 2 1 V 100n k R 100p 100n 100n 100n 100n 100n 100n 100n 100n 8 IC105P 2 C109 C111 C114 C116 C118 C120 C122 GND
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronische_Last_7.pdf
2 3 4 5 6 7 8 +5V +10V Temp LM35 +10V +5V A X101-1 IC102 A X101-2 R101 7 1 0 3 D102 X101-3 3 8 R 3 BAT42 1k 6 TEMP 2 GND C102 OP07CN 0 C104 4 4 C108 C110 C113 C115 C117 C119 C121 C123 1 C 4 5 2 1 V 100n k R 100p 100n 100n 100n 100n 100n 100n 100n 100n 8 IC105P 2 C109 C111 C114 C116 C118 C120 C122 GND
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronische_Last_8.pdf
2 3 4 5 6 7 8 +5V +10V Temp LM35 +10V +5V A X101-1 IC102 A X101-2 R101 7 1 0 3 D102 X101-3 3 8 R 3 BAT42 1k 6 TEMP 2 GND C102 OP07CN 0 C104 +5V 8 4 C108 C110 C112 C114 C117 C119 C121 C123 C125 1 C 4 5 2 1 V 100n k R 100p 1N4148 100n 100n 100n 100n 100n 100n 100n 100n 100n 8 IC106P 2 D103 C109 C111 C113
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronische_Last_5.pdf
1 2 3 4 5 6 7 8 +5V +10V Temp LM35 X101-1 +10V X101-2 R101 7 1 IC102 0 3 D102 X101-3 3 8 1 k BAT42 1k 6 R 3 TEMP A 2 A GND C102 OP07CN 5 C104 4 4 C109 C111 C113 C115 C117 C119 C121 4 5 2 1 100n k R 100p 100n 100n 100n 100n 100n 100n 100n 2 C110 C112 C114 C116 C118 C120 C122 GND -5V 6 k 1 1 1 100n
in „Elektronische Last: Referenz für ADC und DAC“ · 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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CN3722-CONSONANCE.pdf
Current FB VFB2.4V 50 3 00 nA Current Sense Voltage VBAT>66.7%×V REG 190 200 21 0 V CS mV (V CSP-V BAT) VBAT<66.7%×V REG 18 30 42 Current into BAT Pin I V =12V 5 10 15 uA BAT BAT Precharge Threshold VPRE VBAT rising 66.7% Recharge Threshold V RE VBAT falling 95.8% V REG Overvoltage Trip Level Vov VBAT
in „Auswahl Solar-Laderegler für 12V Blei-Akku“ · Analoge Elektronik und Schaltungstechnik ·
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EMS-AVR-IO-20140120Lgnd.pdf
5 5 6 3 IC1B 7 6 7 8 4 L1 5 0 K R 9 10 5 1 2 D2 R14 C 1 3 IC1A 4 5 K 6 4.7uH 10K 4 n 1 R 4 NETIO 7 BAT4242 C 1 2 8 IN-1 1 1A LM393N 1-Wire D1 R 8 K 0 K 9 K 7 IN-2 2 2A C6 6 R 4 R 1 R 0 R R 3 R 2 R 1 3 1 0 R 0 R 0 R IN-3 3 3A 68pD5 3 3 3 I 8 EMS 2 K A 100n BAT42 T _ _ C1 D B T R R 2 4.7uH 1 BAT42 8 6
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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 ·