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PDF
ESR_ELV.pdf
...............C18ft mit Lötöse.............. BU1, BU2 rator durch. 1nF/63 V/MKT.............C14, C15, C17 9-V-Batterieclip..........................BAT1 4 IC-Buchsenleisten, 1 x 20-polig Nachbau 10nF/SMD.....................................C16 22nF/63 V/MKT...................C22, C23 1 Softline-Gehäuse
in „ESR berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ME4056.pdf
Standby mode(charge end) - 55 100 μA ICC-IBAT static current ●Shutdown mode(R PROG not connected, VCCV BAT, or - 55 100 μA VCCV )UV V FLOAL Regulated output voltage 0℃≤T A85℃ I BAT40mA 4.158 4.2 4.242 V ●RPROG =2.6KΩ, current mode 450 500 550 mA ●RPROG =1.3KΩ,current mode 950 1000 1050 mA BAT pin current
in „Eine sehr kleinen Akku laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SL13A_Datasheet.pdf
measurements, which are outside predefined limits. Figure SL13A – 28: Typical Application Battery 1 V BAT VEXT 3 1.5V or 3V 12V SS A Optional 2 3 SEXT 16 External TEST 1 Sensor L S 5 ANT1 DIN 11 D Antenna OUT 15 Coil CLK 14 6 ANT2 CE 10 Passive Mode Figure 29 shows a typical application without battery
in „SL13A temperatur auslesen Arduino UNO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SW6007.pdf
灯显示接口 3,可复用为中断信号。 9 LED2/SDA LED 灯显示接口 2,可复用为 I2C 数据信号。 10 LED1/SCK LED 灯显示接口 1,可复用为 I2C 时钟信号。 11 BAT 电池电压检测引脚。 12 NTC/WLED 电池温度检测及照明输出。 13 VCC 内部工作电源。 14 KEY/BSET 机械按键输入及电池目标电压设置。 15 GATEC Type-C 口通路控制。 Mode: iSW_Release_DS066_v1.0 www.ismartware.com 第 3 页 共 19 页 珠海智融科技有限公司 ZHUHAI ISMARTWARE TECHNOLOGY
in „I2C: Li/ion Mobile Power Shield SW6007<->SW6115“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1308.pdf
VBAT > VPF VPF Switchover Voltage V SW V VBAT < VPF VBAT > VCC V = 3V 250 Battery Current, SQW Off I BAT nA (Note 5) BAT1 VBAT = VBATMAX 600 Battery Current, SQW On VBAT = 3V 550 (Note 6) BAT2 nA VBAT = VBATMAX 1100 Data-Retention Current (Note 7) I V = 3V 25 100 nA BATDAT BAT AC Electrical Characteristics
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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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 ·
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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 ·
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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 ·
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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 ·
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PDF
Grasshopper_Adapter_Rev.A.pdf
GND GNDNDDND GND B B ****** TFT Backlight ****** COL1 VCC_BAT PIL101 PIL102 VCC_BAT C COR1 220uH2812 C 20 02 2 I2 PI180RPIR102 0COC212COC154.74.74.4.74COR5 0 10uI0100nF 8 COU2 6 21 01 1 I1 PIU20IPKCOLL VCCPIU206 COD1 PIU205N- SW COLPIU201 PID101 PID102 NLBacklight0
in „Grasshopper und TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Li-ION Akku laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Unbekanntes IC XT2058“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Lipo Ladeelektronik“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056_Kopie.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „0,4 OHM SMD Widerstand woher ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056_1_LIIOn_charger.pdf
Supply Voltage V IN is the power supply to the internal circuit. When V INdrops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws
in „TC4056 LiPo-Lader-Chip mehr Versorgung real möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Wer hat praktische Erfahrung mit dem Laden nackter Li-Ion Akkus?“ · Offtopic ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Stromwandler als Stromversorgung denkbar?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „einzelne LiIonen Zelle laden - Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Laderegler Li-Ion 3s“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Lithium-Polymer Zellen richtig Laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Strommessschaltung für Akkuladung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „Akkuschonen 80% Ladebegrenzung, wie ist das zu verstehen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
used to measure the charge current as follows: I =V PROG×1200 (V PROG=1V) GND(Pin3): Ground Terminal BAT R PROG Vcc(Pin 4): Positive Input Supply Voltage V INis the power supply to the internal circuit. When VIN drops to within 30mv of the BAT pin voltage, TP4056 enters low power sleep mode, dropping BAT pin’s current to less than 2uA. BAT(Pin5): Battery Connection Pin. Connect the positive terminal of the battery to BAT pin. BAT pin draws less than 2uA current in chip disable mode or in sleep mode. BAT pin provides charge current to
in „LiPo Ladegerät was einstellbar nur bis ca. 80 Prozent lädt“ · Analoge Elektronik und Schaltungstechnik ·
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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 „Fragen zu zwei Micro-USB Ladegeräte mit TP4056 für 18650 Zellen bei 1 A“ · 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 „PCB Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_F4VE_SCHEMATIC.PDF
USART3_RTS/PB14 PIU2053 NLT0MSI NLFSMC0APIJ101919 20 PIJ10NLFSMC0 E1 BCEIQ201PIR300PIR3002 供电指示灯 PA15/TDI PIU2077PA15/JTDI/I2S3_WS/SPI3_NSS/(TIM2_CH1_ETR/SPI1_NSS) SPI2_MOSI/TIM1_CH3N/PB15 PIU2054 PB15 T_MO I ZET6 使用的是 A6 FSMC_A18 FSMC_A18PIJ102121 22 PIJ1022C_N FSMC_NE1 P121.5K B T_SCK T_SCK PIJ102323
in „Neues Entwicklungsboard STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_F4VE_SCHEMATIC.PDF
USART3_RTS/PB14 PIU2053 NLT0MSI NLFSMC0APIJ101919 20 PIJ10NLFSMC0 E1 BCEIQ201PIR300PIR3002 供电指示灯 PA15/TDI PIU2077PA15/JTDI/I2S3_WS/SPI3_NSS/(TIM2_CH1_ETR/SPI1_NSS) SPI2_MOSI/TIM1_CH3N/PB15 PIU2054 PB15 T_MO I ZET6 使用的是 A6 FSMC_A18 FSMC_A18PIJ102121 22 PIJ1022C_N FSMC_NE1 P121.5K B T_SCK T_SCK PIJ102323
in „STM32F407 Black und Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
SB130 19 P1-13 19 1uF 18 TPSTP10SQ 18 OR 18 LF351N 18 FT232RL 18 BC337 18 B 18 27p 18 1N4148DO35-10 18 15p 18 15k 17 BC847 17 560 17 47n 17 200k 16 SE14 16 60R 16 470pF 16 22 16 12 Ohm 16 12k 16 10-XX 16 1,0 uF 16 10 nF 16 100nf 15 HDSP-B56Z 15 74164N 15 47p 15 47K 15 470n 15 3k3 15 390 15 18p 15 100u 15
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
SermultiChip.pdf
answer/request adapter für pc umprogrammieren Übersicht Display Pinbelegung A HV 4 3 2 F 1 B G E C BAT D Backplane 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 09 08 07 06 05 04 03 02 01 Pinbelegung am Chip 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
in „Multimeter mit serieller Schnittstelle für unter 10€“ · Projekte & Code ·
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PDF
MM1026AD_to_MM1245CF.pdf
Symbol Measurement conditions Min. Typ. Max. Units MM1026 2.0 mA Consumption MM1245 ICC VCC=5V, V BAT=3V, IO1=0mA 0.6 1.0 1.4 mA current MM1080 60 120 µA MM1134 1.4 2.2 mA I/O voltage difference 1 V SA1 VCC=5V, V BAT=3V, IO1=1mA 0.03 0.05 V Output voltage 1 VO1 VCC=5V, V BAT=3V, IO1=1mA 4.95 4.97 V
in „Suche Chip aus Mega-Drive-2-Spielplatine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IP5306_datasheet_v1.31.pdf
hysteresis VUVLO 200 mV Boost system Battery operation voltage V BAT 3.0 4.4 V VBAT=3.7V , VOUT=5.1V , 3 mA Battery operation current BAT fs=500KHz VIN=5V,Device not switching 100 uA DC-DC output voltage V VBAT=3.7V 5.0 V OUT VBAT=3.7V , VOUT=5.0V , Output voltage ripple
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PDF
MCP73837.pdf
Current I — 0.1 2 µA Standby (PROG1 or PROG2 DISCHARGE Floating) — 0.55 2 µA Shutdown (V < V - DD BAT 100 mV or DD < VSTOP) — -6 -15 µA Charge Complete Status Indicators - STAT1, STAT2, PGP73837) Sink Current ISINK — 16 35 mA Low Output Voltage V — 0.3 1 V I = 4 mA OL SINK Input Leakage Current ILK
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schema_stm32_primer2_1_2.PDF
.2008 A V1.1 ISSUED SCALE SHEET 2 of 8 VCC5_USB VBAT VCCS VCCS VCCS VCCIN VCC2V8 L2 4.7µH 1 1 2 U12 R15 U15 5 2 470K 5 U9 1 1 1 1 BAT60 BAT60 PBUTTON VE 1 R16 R17 D6 D7 1 1A 1A 7 5 1 SYNC LX 470K 560K C20 4 1Y 4 6 VCC L6928D PGOOD 8 2 2 2 2 1Y 1 RUN P VFB 3 2 10µF 2 M D VCCS 2 1B 1B C G 3 74V1G02STR 3
in „STM32 USB Virtual COM Port“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Wasser-Alarm_3.pdf
V - DD A 0V B MINI-USB-SCHIELD-32005-301 4 R 0 1 TEMP CE 8 R8 R10 560 Bat+ 2 PROG CHRG 7 4k (300mA) B R17 R4 R3 1-2M(?) 3 GND STDBY 6 R11 560 B 1k 100k + 4 VCC BAT 5 1 H2 2,8mm Bat+ F 3 4 D D Bat+ 0 C U$20 + E E 3 1 TP4056 L L D 7 1 IC1 0V 1N4148-MINIMELF 3 5 6 k 6 2.8mm R18 R2 2 8 R H1 TLC271D 7 1k k 2 100k C7 3 4 8 Osmose-Wasser 2 3 R k 2 k 5 ~15k-Ohm (70µS) D 1µF 1 0 8 R R 2 1 7 7 2 1 k 7 Bat+ J , R E Bat+ 3 I C I C ) 0V - + n 4 D 2 t BAT48 (50µA <0,2V) D 0V 4 U AL11P_STOCK-MJ e 1 +2V U$5 1 - ( R 1 5 1 Lautstärke Testen ~ 6 VDD GP0/AN0/ICSPDAT
in „Wasser-Sensor, Schaltung kontrollieren Bitte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
teXet_TF-127_Service_manual.pdf
VCOM2 LCD_10V ग़ 20mA@10V 1 R29 33 AT080TN03_2 3 LCD_10V LCD_3.3V R127 B 2 AGND B R113 Open 4.7k INV BAT54C C191 C53 ZD9 R114 0 4.7uf/16V 10v/0.5w GND 10uF/25V EDGSL R115 Open LCD Interface 1 4.1V LCD_5V R116 0 VCOM GND GND VGH_15V COM R34 1K GND RL_D R120 0 2 VGH_15V R122 Open L1 6.8uH C56 D2 C14 C163
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Boris_Voyager.sch.pdf
A 100n 29 AREF PD3 12 +3V3+3V3 Z1 RESET/2.4A 4 13 +3V3 C1 S6 S7 S8 S9 S10 ~RESET PD4 14 100n 8 PD5 15 2 1 3 4 3 4 3 4 3 4 3 4 XTAL1 XTAL1 PD6 0 R 0R IC1 1 2 1 2 1 2 1 2 1 2 PD7 16 L 1 1 FM24CL64B Z1 37 PA0 C 8 Z2 Z2 36 19 S I2C-Bus 6 VCC S11 S12 S13 S14 S15 d 35 PA1 PC0 20 7 SCL p Z3 34 PA2 PC1 21 SDA
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
igrid_ss_3kw_plus.pdf
.....13 5. Function explanations for each PCB .....................................................15 5.1 MAIN board ..........................................................................................................15 5.2 CNTL board.............................................................
in „PV Wechselrichter startet nicht mehr und verursacht Kurzschluss bzw. hohen Strom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
technische-broschuere-ltc-batterien.pdf
ausgesetzt wird, die bei der Entsorgung von Haushaltsmüll auftreten, z.B. bei der Müllverdichtung. 15 Tadiran Batteries Technische Broschüre Eine Prüfbatterie wird zwischen zwei Platten gequet- Batterien nicht verpolen; die + und – Zeichen auf Bat- scht. Die Kraft wird durch einen Schraubstock oder terie
in „Welche Batterie für VW Funkschlüssel?“ · Fahrzeugelektronik ·
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PDF
ISL9301_fn6435.pdf
POWER-ON RESET Rising POR Threshold VPOR V = 3.0V, use PPR to indicate the comparator 3.3 3.9 4.3 V BAT Falling POR Threshold VPOR output. 3.1 3.6 4.15 V VOUT-BAT OFFSET VOLTAGE Rising Edge V OS V = 4.0V, use CHG pin to indicate the comparator - 110 250 mV BAT Falling Edge V OS output (Note 3) 10 100
in „Handyakku (3.6V) laden per LadeIC (4,2V)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bgi593.pdf
Mo berechnet) 14 Titandioxid 3 A/6 A MAK (DFG) 4 4 ⋅ MAK 15 min, MiW 2.2 Toxisch Barium-Verbindungen, 0,5 E MAK (DFG, 4 4 ⋅ MAK 15 min, MiW lösliche EU) Bleioxid 0,1 E MAK (DFG) 4 4 ⋅ MAK 15 min, MiW BAT Calciumoxid 5 E MAK (DFG) = 1 = MAK 15 min, MiW Fluoride 2,5 E MAK (DFG) 4 4 ⋅ MAK 15 min, MiW BAT ZH 1/161 (als Fluor berechnet) Kupferoxid 0,1 A MAK (DFG) 4 4 ⋅ MAK 15 min, MiW Manganoxide 0,5 E MAK (DFG) 4 15 min, MiW 4 ⋅ MAK Molybdän-Verbindungen, 5 E MAK (DFG) 4 4 ⋅ MAK 15 min, MiW
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PDF
Layout_v2.7.pdf
V 2 2 1 5 EXT1 BAT54S (A10)PC2 36 5 5 6 R38 (A9)PC1 35 D0ND7R=1SE57-=1465 1 D6 (A8)PC0 k 4 k 3 4 0 C 2 4 1 0 1 0 R 36 4 2 0 8 6 4 2 LGND F 4 (T2)PD7 32 0 0 1 1 1 1 CNY17 GND n C (T1)PD6 31 R R 1 (XCK1)PD5 30 J1 V D 10k
in „Schematic + Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
> 220V max 300k 55k76-502k=> 25V min U7 Uin IN OUT Uin GND C6 C10 R20 R22 R23 R24 LM7812-1 10µ 10µ 15k 15k 15k 15k 5 U7 R21 D1 2.5V 6 LM393 1k BAT54 D6 NSCW100 3 U4 R13 D5 D2 TL431A R15 0.18V 1 380V+ 2 LM393 1k BAT54 D C4 C8 15k L2 R19 C9 R14 5k6 10µ 1k2 L C U6 10µ L1 100µ U1 L3 C5 8 VREF VDD 7 L C D3
in „40-390V HV DC-DC-Wandler vom Chinamann“ · Analoge Elektronik und Schaltungstechnik ·
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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 ·
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Bild
Softwareoberfläche zur UART-Kommunikation und Statusanzeige
Form1 stop timer 21:51:02 SA 06:32 18:08 Akku: 5268u 49% 1129W Grid: 108.0W PU: 15V WR stop:10 low:29 restart:30 5_2 10100000 0x05, 0x03, 0x00, 0x00, 0x01, 0x85, 0x8e button3 0, 3, 6, 0, 10, 30, 0, 0 Result: 10 wr_bat_volt Slave5 set time wr_bat_pow Slave5 set date wr_soc Slave5 write eep grid_pw Slave5 bat_off pvolt Slave5 bat_on wr_off Slave5 grid_on wr_on Slave5 grid_off bat_on bat_off WR_115to_45_57_56 WR_115to_05_17_16 WR_115to_05_09_10 WR_115to_10_30_29 copy code to avr make program C:\Users\karl
in „c# avr_simulator für modbus Steuerung“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
media32.pdf
Date: 18.04.2009 Sheet of File: C:\Altium\media32\media32.SchDoc Drawn By: 1 2 3 4 1 2 3 4 COUA2 V_BAT COUA3 V_USB 4 UA2 BQ24070 15 2 UA3 3 A 2 PIUA2IN OUT PI162015 P I U AIN 0 2 OUTP I U A 3 0 3 VCC A COCT6 PIUA2VREF OUT PIUA2017 1 22 02 110µ I0 COCT4 CK1212 4 GNDP I U A GND 8 COCT5 TSMD_B BAT PIUA205
in „MP3 Player mit Clickwheel und S65“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ADC.asm
ldi rawlow,ADCL ldi rawhigh,ADCH lsr rawhigh ;zur Berechnung ror rawlow ; /2 sbiw rawlow,4 ;-8 ret Bat_low: tst rawhigh ;MSB gesetzt? brne Bat_low_end ;dann raus (gross genug) cpi rawlow,200 ;vergleiche mit 200 (~2V) brsh Bat_low_end ;wenn grösser/gleich dann raus sbr Flag,(1<<Battery) ;Flag setzen ret
in „ADC hat immer den gleichen Wert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEMATIC.PDF
D D D D D D D AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9
in „LCD Hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
D D D D D D D AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
D D D D D D D AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9
in „DS1820 Code + Atmel90S8515“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEM.PDF
D D D D D D D AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9
in „Schaltplan für STK 200“ · Mikrocontroller und Digitale Elektronik ·