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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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MCP73831.pdf
Constant-Current Mode) Precondition Current IPREG /REG 7.5 10 12.5 % PROG = 2.0 kΩ to 10 kΩ Ratio 15 20 25 % PROG = 2.0 kΩ to 10 kΩ 30 40 50 % PROG = 2.0 kΩ to 10 kΩ — 100 — % No Preconditioning TA = -5°C to +55°C Precondition Voltage V / V 64 66.5 69 % V Low-to-High PTH REG BAT Threshold Ratio 69 71.5
in „Akku Ladetechnik“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bosch_Athlet_DIY_240619.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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Datei
Athlet_V1_4_32_4.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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PDF
giessotomat02_sch.pdf
20_D15_(A1) 19 9 6 Y4 10 R 1 3 13 D5 12_D9 19_D14_(A0) 87k G1 Y5 D6 11 13 13_D10_[SS] 18_REV 18 10 87k 4 G2A Y6 9 R2 U$2 12 D7 12 14 14_D11_[MOSI] 17_3.3V 17 11 R5 5 G2B Y7 7 2N7002_WO 13 15 15_D12_[MISO] 16
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Datenblatt_bq27441.pdf
unless otherwise noted) (Force Note1) (1) A A REGIN PARAMETER TEST CONDITIONS MIN TYP MAX UNIT VIN(BAT) BAT pin voltage measurement range Voltage divider enabled 2.45 4.5 V ADC_CONV Conversion time 125 ms Effective resolution 15 bits (1) Specified by design. Not tested in production. 8.10 Integrating
in „Zustandsdaten Lithium Batterie“ · Analoge Elektronik und Schaltungstechnik ·
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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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SMD_Catalog.pdf
schottky ring quad 51D BAT15-115D Sie CY SOT173 40GHz schottky dual 51V PZM51NB Phi C SOT346 51V 0.3W zener 51Y BZV49-C51 Phi O SOT89 51V 1W zener 52 BAT15-025S Sie CS SOT173 4GHz schottky diode 52 BAT15-025R Sie CZ SOT173 4GHz
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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PDF
GD32F103xx_Datasheet_V2.5.pdf
Remap: TIMER8_CH0 (3) Default: PE6 PE6 5 I/O 5VT Alternate:TRACED3, EXMC_A22 Remap: TIMER8_CH1 (3) V BAT 6 P Default:BAT PC13- Default: PC13 TAMPER- 7 I/O Alternate: TAMPER-RTC RTC PC14- 8 I/O Default: PC14 OSC32IN Alternate: OSC32IN PC15- Default: PC15 9 I/O OSC32OUT Alternate: OSC32OUT Default: PF0 PF0
in „Unterschiede CS32F103C8T6 und STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC4054-4.2.pdf
) 25 20 22 V = 5V VCC = 4V 18 BAT 20 20 VCHRG = 1V 16 18 ) ) 14 ) m 15 m µ 16 ( ( 12 G R R H I 10 I I 14 10 12 8 5 VCC= 5V V = 5V V = 4V 6 10 VCC = 4.3V TB= 25°C BAT A TA = 25°C 0 4 8 0 1 2 3 4 5 6 7 –50 –25 0 25 50 75 100 125 0 1 2
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
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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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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TJA1055_4.pdf
pin [2] I(WAKE) input current on pin WAKE −15 - mA V voltage on pin INH −0.3 V + 0.3 V INH BAT VRTH voltage on pin RTH with respect to any −58 +58 V other pin VRTL voltage on pin RTL with respect to any −58 +58 V other pin R termination resistance
in „TJA1055T VBAT und VCC - CAN Bus“ · Mikrocontroller und Digitale Elektronik ·
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SCH2.pdf
1 2 3 4 5 6 7 8 9 A A B B S10R_L S10S_L H1R_L H1S_L H10R_L H10S_L S1R_L S1S_L 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
in „Fehlersuche Code Arduino IDE ESP32 - Timer Interrupt - NTP-Client“ · Mikrocontroller und Digitale Elektronik ·
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Tab_ArduMicro.pdf
$2ia0s R35 pas 5V_ADC + U$2 + U$3 LED i0 $6 3 A2 P$1ia0s R34 pas ADC_CURR i0 $7 4 A1 P$1ia0s nn pas V_BAT_ADC TPE_TT APNET_ATLADT4ATP_ED4TPE pas 1R2 pa0s$8 P$1ia0s 132 pas 3_3V_1ADC 0 0 FET1 pas 1R6 pa0s$9 5 A0 P$1i0 nn p p FET2 nn o $10 6 15 P$1i0 nn nR7 7 14 u u B A pas 1 pso$11 8 Pro 16 P$1i0 R13 s s
in „Anleitung - Bedienpanel - 10Zoll fullHD (FIRE HD10 Mod)“ · Haus & Smart Home ·
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touch-controller.pdf
_TO92 1n4007 R14 +5V 1 3 VO VI H1 C11 N C12 47k, 2W MountingHole G J3 C1 C3 100n 2 100n Phase R17 R15 2 H2 R1 D3 D5 C13 D12 1 AC MountingHole 1n, 1kV, 21n, 1kV, 200877 1n4007 BAT46 140365, 24V, 1.3W50k 750k 2k7 470µF, 50V, RM5 C14 A In1 220nBornier, 450856 A GND D1 C7 R3 D6 1n4007 100n 2k7 BAT46 GND GND 1 2 INPUT +5V +5V Bornier, 450856 J1 +5V +5V C15 C2 C4 100n R2 D4 D7 1n, 1kV, 21n, 1kV, 200877 1n4007 BAT46 2k7 GND In2 D9 R16 8 1.5M C D2 C8 R4 D8 BAT46 C 5 V 1n4007 100n 2k7 BAT46 Phase AREF/PB0 In2 6 PB1 D10 In1 7 BAT46 +5V PB2 U2 B Out1 2 XTAL1
in „Touch-Controller für Lampe“ · Analoge Elektronik und Schaltungstechnik ·
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Protel_Schematic.pdf
1 2 3 4 5 6 7 8 Bat+ Bat+ GPIO1 GPIO2 C3 C4 GPIO3 4 3 1 0 9 5 5 3.3V GND 2 2 2 2 2 1 U1 150uF GND L1 U2 150uF GND L2 U7 3.3V 3.3V I 22uH 5V 3.3V I 22uH 3.3V 1 2 3 1 B 8 1 B 8 N N N O O O SHDN L LX V1 SHDN L LX V2 C19 C20
in „Bidirektinaler Level Shifter 3.3V - 5V gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Strommessung.pdf
MCU Power and Battery V_{IN} V_{IN} 3V3 3V3 V_{BAT} V_{BAT} 3V3_{OLED} 3V3_{OLED} 3V3_{SDCARD} 3V3_{SDCARD} BUTTON_{OK} BUTTON_{OK} ENABLE_{DC/DC} ENABLE_{DC/DC} ENABLE_{RTC} ENABLE_{RTC} ENABLE_{OLED} ENABLE_{OLED} ENABLE_{SDCARD} ENABLE_{SDCARD} STAT1
in „Prüfung Schaltplan Power Profiler“ · Mikrocontroller und Digitale Elektronik ·
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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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MCP73871-Data-Sheet-20002090E__2_.pdf
DS20002090E-page 1 MCP73871 Package Types MCP73871 20-Lead QFN* E N S T T U E B O I NI C V 20 19 18 17 16 OUT 1 15 VBAT VPCC 2 14 V EP BAT SEL 3 21 13 PROG1 PROG2 4 12 PROG3 THERM 5 11 VSS 6 7 8 9 10 S P T B T S T / V S 1 A S * Includes Exposed Thermal Pad (EP); see Table 3-1. Typical Application Circuit MCP73871
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CN3795.pdf
the battery voltage. Negative Input for Charge Current Sensing. This pin and the CSP pin measure 7 BAT the voltage drop across the sense resistor RCS to provide the current signals required. Positive Input for Charge Current Sensing. This pin and the BAT pin measure 8 CSP the voltage drop across the
in „5V Solarmodul zu 5V USB - Optimierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CN3795-CONSONANCE.pdf
the battery voltage. Negative Input for Charge Current Sensing. This pin and the CSP pin measure 7 BAT the voltage drop across the sense resistor RCS to provide the current signals required. Positive Input for Charge Current Sensing. This pin and the BAT pin measure 8 CSP the voltage drop across the
in „Auseinandergenommene Geräte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CN3795-CONSONANCE.pdf
the battery voltage. Negative Input for Charge Current Sensing. This pin and the CSP pin measure 7 BAT the voltage drop across the sense resistor RCS to provide the current signals required. Positive Input for Charge Current Sensing. This pin and the BAT pin measure 8 CSP the voltage drop across the
in „cn3795 Richtige Werte für FB und MPPT“ · Analoge Elektronik und Schaltungstechnik ·
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DS32kHz_-_temp-co_osci_1min_per_y.pdf
respectively. 1 of 8 100801 DS32kHz The DS32kHz requires four pins for operation: 1) V , 2) GCC, 3) V BAT , and 4) 32kHz OUT. (See Figures 1, 2, and 3 for connection schemes.) Power is applied via V and GND, while V is used to CC BAT maintain the 32kHz output in the absence of power. The output is accurate
in „RTC mit ATMega8“ · Mikrocontroller und Digitale Elektronik ·
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Strommessung.pdf
SHIELD DET_B 53 PC11 PB3 56 4 s C217 10u PC12 PB4 o BAT DIVIDER 2 PC13 PB5 57 ~{BUTTON_{DOWN}} 5 u 3 58 6 B C218 100n F202 R212 R213 PC14 PB6 T 4 PC15 PB7 59 ~{BUTTON_{OK}} 7 1A 5k1 5k1 D 61 8 _ PB8 62 MP D PB9 GND S PB10 29 F201 30 ~{BUTTON_{OK}} 1A PB11
in „Prüfung Schaltplan Power Profiler“ · Mikrocontroller und Digitale Elektronik ·
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TJA1054A_3.pdf
and CANL VWAKE DC input voltage on pin WAKE − VBAT+ 0.3 V WAKE DC input current on pin WAKE note 2 −15 − mA V DC output voltage on pin INH −0.3 V + 0.3 V INH BAT VRTH DC voltage on pin RTH −0.3 VBAT+ 1.2 V VRTL DC voltage on pin RTL −0.3 VBAT+ 1.2 V RRTH termination resistance on pin RTH 500 16000 RRTL
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Elektronische_Last_final.pdf
D D BAT42 13 1Y1 GND E A 0 0 7 V A 2 1 1 1 1 1 1 1 1 1 1 2 2Y0 S2 10 3 2 2 2 2 2 2 2 2 2 2 1 2Y1 - X X X X X X X X X X 2 AR205 C204 5 3Y0 S3 9 S 100n 3 3Y1 GND D202 E 6 N +5V BAT42 E10k G 2 14 2 1 1Z 15 R201
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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LT1513_data_en.pdf
that this load does not 0.1 F R3 0.2 1513 F05 Figure 5 MODULATOR SECTION P V1 gm =V1 =V 4+ VN C ** IN BAT 3pF VIN= DC INPUT VOLTAGE R1* VBAT= DC BATTERY VOLTAGE 71.5k C1 C1 R P* RCAP RBAT 1M – FB 0.15Ω 0.1Ω VC EACH EA + + C1 BATTERY + 22µF R5 RG gm R2 EACH 330Ω 330k 1500µmho 1.245V 12.5k 0.1µF 1513 F06
in „6V Bleigel-Akku mit 12V/230mA Solarpanel laden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bosch_Athlet_DIY_v0_1.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 (TYPE=="BBH7360K"){ 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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PDF
pid_einstellregeln.pdf
können direkt zur Streckenanalyse übergehen indem wir auf die Palette Analyse klicken (Bild 4). Seite 15 von 23 Spezialgebiete der Steuer- und Regelungstechnik WS 2008/2009 Boulent Bate PID - Einstellregeln Bild 4: Analyse der Strecke Wie im Bild 4 zu sehen ist, können nun die Kennwerte unserer Regelstrecke
in „Offene Fragen PID Temperaturregelung“ · Mikrocontroller und Digitale Elektronik ·
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HO.pdf
ADC-BATT GND P G P E 1 TS EN1 6 EN1 Stückliste T 0 k C1 + 15 1 0 8 5 1 A 2 SYSOFF SYSOFF R 1 10n Bat-Anschluss B 3 BAT 4 - BAT T CE CE T M M E GND B C14 T I I GND 4,7µ 4 2 6 C 1 1 1 V GND a SV2 B o 10 9 U 2 9 t MISO C C R o 8 7 SCK V C N 6 5 RESET V G 4 3 IC6
in „Projekt Handsender mit RFM12, GLCD, Navimec, Li-ion zum überprüfen“ · Mikrocontroller und Digitale Elektronik ·
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DS3231_M_MZ_Mems.pdf
lead(Pb)-free/RoHS-compliant package. I/O PORT SDA /V denotes an automotive qualified part. 32KHZ BAT INT/SQW INTERRUPTS RST CPU DS3231M Underwriters Laboratories is a registered certification mark of Underwriters Laboratories Inc. 19-5312; Rev 7; 3/15 DS3231M ±5ppm, I C Real-Time Clock Absolute Maximum
in „(empfindlicher) GPS Modul gesucht“ · Mikrocontroller und Digitale Elektronik ·
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2_updated_pcb_design.pdf
SCL 4 Conn_01x05 GNDREF 2 C 12 I2C0_SDA NFC2 1 GNDREF NFC2/P0.10 NFC2 R? 5 35 XC2 P0.11 14 SPI0_SCLK 15 4.7k 1 P0.12 16 SPI0_MOSI 2 4 P0.13 SPI0_MISO 32MHZ Y1 P0.14 17 SPI1_SCLK 3 18 P0.15 SPI1_MOSI RST 24 P0.21/RESET P0.16 19 SPI1_MISO F 25 20 2 ? SWDCLK SWDCLK P0.17 UART0_TX GNDREF 1 C SWDIO 26 SWDIO
in „Schaltplan für mein erstes Dev board“ · Mikrocontroller und Digitale Elektronik ·
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pcb_design.pdf
SCL 4 Conn_01x05 GNDREF 2 C 12 I2C0_SDA NFC2 1 GNDREF NFC2/P0.10 NFC2 R? 5 35 XC2 P0.11 14 SPI0_SCLK 15 4.7k 1 P0.12 16 SPI0_MOSI 2 4 P0.13 SPI0_MISO 32MHZ Y? P0.14 17 SPI1_SCLK 3 18 P0.15 SPI1_MOSI RST 24 P0.21/RESET P0.16 19 SPI1_MISO F 25 20 2 ? SWDCLK SWDCLK P0.17 UART0_TX GNDREF 1 C SWDIO 26 SWDIO
in „Schaltplan für mein erstes Dev board“ · Mikrocontroller und Digitale Elektronik ·
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bq24780s.pdf
CCrising 2.4 2.6 2.8 V V Input undervoltage falling hysteresis 200 mV VCC(UVLO_HYS) QUIESCENT CURRENT V BAT= 16.8 V, VCC disconnected from battery, REG0x12[15] = 1 5 Current with battery only, V BAT= 16.8 V, VCC connected from battery, T = 0 to 85°C, REG0x12[15] = 1 25 44 BAT J μA ISRN + SRP + BATSRC + PHASE
in „Widerstand Bestimmung“ · Mikrocontroller und Digitale Elektronik ·
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DS3231.pdf
-40°C to +85°C 16 SO 32kHz 1 16 SCL #Denotes an RoHS-compliant device that may include lead VCC 2 15 SDA (Pb) that is exempt under RoHS requirements. The lead finish INT/SQW 3 14 BAT is JESD97 category e3, and is compatible with both lead-based and lead-free soldering processes. A “#” anywhere on the
in „18650 Zelle zu 5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS3231.pdf
-40°C to +85°C 16 SO 32kHz 1 16 SCL #Denotes an RoHS-compliant device that may include lead VCC 2 15 SDA (Pb) that is exempt under RoHS requirements. The lead finish INT/SQW 3 14 BAT is JESD97 category e3, and is compatible with both lead-based and lead-free soldering processes. A “#” anywhere on the
in „DS3231 vs PCF8573, hilfe gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS3231_S_SN_Crystal.pdf
-40°C to +85°C 16 SO 32kHz 1 16 SCL #Denotes an RoHS-compliant device that may include lead VCC 2 15 SDA (Pb) that is exempt under RoHS requirements. The lead finish INT/SQW 3 14 BAT is JESD97 category e3, and is compatible with both lead-based and lead-free soldering processes. A “#” anywhere on the
in „(empfindlicher) GPS Modul gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test7.c
10Bit ADC */ /* ADCW = 1024 * 1.1 / Vcc */ if(messwert >= ((1024*11)/24)) { if(PassCount_bat % LED_TOGGLE_CYCLE_bat == 0) // wenn Rest der Teilung genau 0 { if(byToggle_bat == 0) { PORTB |= LED_BAT; // LED-Bat.Status ein byToggle_bat = 1; // Variable auf 1 setzen } else { PORTB &= ~LED_BAT; // LED-Bat.Status aus //_delay_ms(4000); // 4s warten byToggle_bat = 0; // Variable auf 0 setzen } } } } /******************************************************************/ /* Feuchtemessung mit Signalisierung
in „Tasterabfrage“ · Mikrocontroller und Digitale Elektronik ·
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LTC4067.pdf
ΔI RDIO,ON On-Resistance BAT to OUT VILIM0= 0V, ILIM1= 5V, BAT = 4.3V,OUT = –1A 220 mΩ VFWD Voltage Forward Drop (BAT– VOUT) V ILIM0= 0V, ILIM1= 5V, BAT = 4.3V,OUT = –1mA ● 10 25 40 mV VILIM0= 0V, ILIM1= 5V, BAT = 4.3V,OUT = –200mA
in „LTC4067 Vout“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DevConfigSMLPE.txt
getAcEhSf(); int getAcMode(); int getAcPAddr(); int getAcPFc(); int getAcPNum(); int getAcPSf(); int getBatPAddr(); int getBatPFc(); int getBatPNum(); int getBatPSf(); int getBatSocAddr(); int getBatSocFc(); int getBatSocNum(); int getBatSocSf(); int getBatteryEn(); int getBaudBd(); int getBuyPAddr(); int
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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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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byteblasterIIschematic.pdf
5 U1A R28 10k LT1720CMS8 - 2 VCC2 7 + 1 P2 1 2 3 4 C6 10n 8 D5A BAT721C 5 6 VCC2 VCC1 7 8 C7 10n D5B BAT721C 9 10 VCC2 C5 8 P1 DSUB 25M U1B 4.7uF LT1720CMS8 + 4 13 Sel 6 25 - 3 12 PapEnd 24 5 R29 C4 11 BUSY 5.6k 10n 23 10 ACK D4A BAT721C 22 VCC1 9 D7 D4B BAT721C 21 D6 8 20 Switch5 7 D5 D3A BAT721C 19 VCC1 6 D4 D3B BAT721C 18 5 D3 D2A BAT721C 17 Switch4 4 D2 D2B BAT721C 16 Switch3 3 D1 Err 15 Switch2 D0 VCC1 2 VCC2 d 14 e 1 Switch1 VCC2 R27 F VCC2 R26 10k u 1k A R4 1k R3 1k BF570 D1A D1B QP1
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Altera_Byteblaster_Ii_Schematic.pdf
5 U1A R28 10k LT1720CMS8 - 2 VCC2 7 + 1 P2 1 2 3 4 C6 10n 8 D5A BAT721C 5 6 VCC2 VCC1 7 8 C7 10n D5B BAT721C 9 10 VCC2 C5 8 P1 DSUB 25M U1B 4.7uF LT1720CMS8 + 4 13 Sel 6 25 - 3 12 PapEnd 24 5 R29 C4 11 BUSY 5.6k 10n 23 10 ACK D4A BAT721C 22 VCC1 9 D7 D4B BAT721C 21 D6 8 20 Switch5 7 D5 D3A BAT721C 19 VCC1 6 D4 D3B BAT721C 18 5 D3 D2A BAT721C 17 Switch4 4 D2 D2B BAT721C 16 Switch3 3 D1 Err 15 Switch2 D0 VCC1 2 VCC2 d 14 e 1 Switch1 VCC2 R27 F VCC2 R26 10k u 1k A R4 1k R3 1k BF570 D1A D1B QP1
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Wasser-Alarm_2.pdf
6 DATA+ E T 1 a 0 ID H B M B JP2 0V 0V 4 5 C Steckverbinder VCC BAT GND - U$20 S T TP4056 X1S - B +5V/1 +4.1V N M ~1k zum wach halten 0V Bat+ R8 LED2 L ~1k zum wach halten M B I R4 R3 R9 B - LED3 4 100k 1-2M(?) ~1k zum wach halten 2,8mm 4 +5V 1 R10 H2 0 1 ~1k zum wach halten Osmose-Wasser 0V D 1 R IC1 ~15k-Ohm (70µS) 7 1 R11 3 5 Bat+ 2.8mm R2 6 ~1k zum wach halten 0V 2 TLC271D H1 100k 4 8 R13 C7 3 0 1 2 4 0 2 1 R 2 1 1N4148-MINIMELF 1µF R 2 1 +2V , R 7 D5 F Bat+ E Lautstärke Testen C BAT48 (50µA <0,2V
in „Wasser-Sensor, Schaltung kontrollieren Bitte“ · Analoge Elektronik und Schaltungstechnik ·
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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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PCB_Fan_Control.pdf
+3.3V 2 1 15pF 15pF 2 3 4 C37 C36 7 A D D D A RESET NRST B V V V D D GNDPWR GNDPWR GNDPWR V V BOOT0 44BOOT0 2 U3 1 3 OSC_IN 5 PF0 STM32F302CBTx OSC_OUT 6 Y1 PF1 4 Crystal_GND24 2 3 PC13 PC14 4 PC15 B PWM_OUT_6 18PB0
in „STM32 F303 Quarz Instabil“ · Mikrocontroller und Digitale Elektronik ·
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DS3231_DATASHEET.pdf
TEMPERATURE vs. TEMPERATURE vs. AGING VALUE 1.0 o 60 o V CC= 0, EN32kHz = 1, BSY = 0, 2 2 SDA = SCL = V BAT OR GND D 50 D m 8 0.9 ( 40 -33 N 30 ) T A I 20 0 T 0.8 E I Y 10 N U 0 E -10 0.7 F -20 32 127 -30 0.6 -40 -40 -15 10 35 60 85 -40 -15 10 35 60 85 TEMPERATURE (°C) TEMPERATURE (°C) ___________________
in „RTC DS3231 Pull Up Widerstände berechnen“ · Mikrocontroller und Digitale Elektronik ·
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STK200SCHEMATIC_SMALL.PDF
4 PB2 VREF T2OUT T2IN 11 12 PD2 5 6 8 R2IN R2OUT 9 6 PD6 13 14 PB3 7 8 1 PD7 15 16 PB4 9 10 PB3 C20 MAX202CPE PB5 100nF PD3 PB6 11 12 AGND RS232 HEADER 8X2 PB7 13 14 15 16 PB4 1K TXD PD4 Resnet HEADER 8X2 RXD PB5 PD5 PB6 PD6 PB7 PD7 Active 0 on LEDs Active 0 on Switches LCD Interface
in „LCD wie externen Speicher anspr.“ · Mikrocontroller und Digitale Elektronik ·
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ISP1301.pdf
Maximum value characterized only, not tested in production. [3] Excluding any load current to the 1.and 15 k pull-up and pull-down resistors (200 A typical). Table 44: Static characteristics: digital pins V = 2.7 V to 4.5 V; V = 1.65 V to 3.6 V; T = −40 °C to +85 °C; unless otherwise specified. BAT DD_LGC
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·