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AD_Frontend8.pdf
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 J4-10 D11 CH1 (ch1) LM3578 R23 ??? 3k3 D 220uH/300mA + C20 J4-3 BAT54S k 7 C18 A K 1 R C35 4n7 M 470uF J4-11 D12 CH2 (ch2) 1n2 R24 3k3 J4-4 BAT54S A K
in „ADC Vref auf Ground“ · Mikrocontroller und Digitale Elektronik ·
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Strommessung.pdf
_{DC/DC} ~{ENABLE_{RTC}} ~{ENABLE_{RTC}} ~{ENABLE_{SDCARD}} ~{ENABLE_{SDCARD}} POWERSAVE POWERSAVE BAT DIVIDER BAT DIVIDER C C STAT1 STAT1 STAT2 STAT2 ~{CE} ~{CE} V_{TEMP} V_{TEMP} V_{BACKUPBAT} V_{BACKUPBAT} GPOUT GPOUT SCL SCL SDA SDA GND GND File:mcu.kicad_sch File:power.kicad_sch D D E E H101 MountingHole
in „Prüfung Schaltplan Power Profiler“ · Mikrocontroller und Digitale Elektronik ·
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SSD1315.pdf
COM36 Row36 RAM36 Row44 RAM44 Row36 RAM44 Row36 RAM36 Row44 RAM44 Row36 RAM44 COM37 Row37 RAM37 Row45 RAM45 Row37 RAM45 Row37 RAM37 Row45 RAM45 Row37 RAM45 COM38 Row38 RAM38 Row46 RAM46 Row38 RAM46 Row38 RAM38 Row46 RAM46 Row38 RAM46 COM39 Row39 RAM39 Row47 RAM47 Row39 RAM47 Row39 RAM39 Row47 RAM47 Row39
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·
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SSD1315.pdf
COM36 Row36 RAM36 Row44 RAM44 Row36 RAM44 Row36 RAM36 Row44 RAM44 Row36 RAM44 COM37 Row37 RAM37 Row45 RAM45 Row37 RAM45 Row37 RAM37 Row45 RAM45 Row37 RAM45 COM38 Row38 RAM38 Row46 RAM46 Row38 RAM46 Row38 RAM38 Row46 RAM46 Row38 RAM46 COM39 Row39 RAM39 Row47 RAM47 Row39 RAM47 Row39 RAM39 Row47 RAM47 Row39
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·
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ec0e6f47-c1bb-4675-a7a3-18d434f2b127.pdf
nation de l’appareil gez-le. et protection de l’envi- • La température de ronnement»). stockage de la bat- terie se situe entre Rangement -20 °C et 45 °C pour 3 mois, entre 0 et • En cas de stockage 25 °C pour un an. plus long (par Évitez une chaleur exemple, hivernage) ou un froid extrême retirez l’accumulateur
in „Makita 18V Akku Kapazitätsmessung“ · Mechanik, Gehäuse, Werkzeug ·
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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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Schaltplan eines PV-Laderegulators und Kennlinie
PV-Generator 12-60V, + PV, - PV, L1 7 µH, D1, D2, C1 1000µF/63V, T2, Q45N10N, R1 0.1 Ω, C2 470µF/100V, C3 470µF/100V, + (Bat), - (Bat), R2 0.1 Ω, Q45N10N, C4, Masse der Steuerelektronik, Kurzschlussstrom Ik, I=f(U), MPP, P=f(U*I), U-Leerlauf, PV-Spannung, NCE8580
in „Funktion MPP Lademodul“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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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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Benutzeroberfläche ESP32 Multiplus ESS mit Messwerten
ESP32 Multiplus ESS Upload Graph Settings Refresh PowerMeter: -45 W EstBatVolt: 53.04 V ESSPower: 0 W Bat Volt: 53.04 V Bat Amp: 0.00 A AC Power: 3 W SoC: 76.72 % Manual Charge only Wakeup Sleep AutoWakeup
in „StateOfCharge anzeige basteln“ · Haus & Smart Home · · Screenshots
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PDF
bat60a.pdf
BAT 60A Silicon Schottky Diode • Rectifier Schottky diode with extreme Fow V drop for mobile communication 2 • For power supply • For clamping and proptection in low voltage application • For detection
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Class-D_PWM_Amplifier_V2_0.pdf
Output Voltage GND GND 6 1 7 2 B B +5V_1 +5V_1 4 2 2 U2A 470R 3 OPA1656 2 R10 +12V D3 3 3 D4 0 1 J2 BAT54S BAT54S 3 + 1 R 3,69V D28 D31 Conn_01x02_Female 1 U5 2 BC856 SN74LVC1G14DBV C82 C10 BAS21 BAS21 13,8V_Ext_Int 1 8 A2 1 1 - k 3 1 0 1 J3 1 R1 R 1 Q1 +5V R16 D5 þÿ10µF 100nF R131 R138 C11 C83 Conn_Coaxial
in „Class D Amp. Schaltplan überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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SW6007.pdf
超过此范围的电压电流及温度等条件可能导致器件永久损坏。 7. 推荐参数 Parameters Symbol MIN Typical MAX UNIT 输入电压 VBUSB/VBUSC 4.5 5.5 V 电池电压 BAT 2.8 4.5 V Mode: iSW_Release_DS066_v1.0 www.ismartware.com 第 5 页 共 19 页 珠海智融科技有限公司 ZHUHAI ISMARTWARE TECHNOLOGY CO., LTD. 8. 电气特性 (V IN5V, V BAT 3.7V, A = 25°C除特别说明。 ) Parameters Symbol Test Conditions
in „I2C: Li/ion Mobile Power Shield SW6007<->SW6115“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12.inc
rfm_com_send ; Duty Cycle ldi YH, 0xc8 ldi YL, 0x00 rcall rfm_com_send ; Low Bat & Clock divider ldi YH, 0xc0 ; Low Bat @ 3,3V ldi YL, 0x40 ; 1MHz: 600b / 2MHz: c06b / 2,5MHz: c08b / 5MHz: c0cb rcall rfm_com_send pop YL pop YH ret ;-----------------------------------------------
in „RFM12 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
easymx4_traegerboard_parts.txt
C0805K rcl 1 77-VJ0805A221JXAPBC CN1 500mA USB_TYPEAPTHFML USB_HOST-PTH microbuilder 1 571-292303-5 D1 BAT43 DIODESOD-123 SOD-123 microbuilder 1 78-BAT43W-V D2 BAT43 DIODESOD-123 SOD-123 microbuilder 1 78-BAT43W-V D3 1N4007-MELF 1N4007-MELF DMELF diodes_1 1 625-BYG21M-E3 D4 1N4007-MELF 1N4007-MELF DMELF
in „Schaltungsentwurf benötige Meinungen und Verbesserungsvorschläge.“ · Platinen ·
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PDF
GD32F350xx_DS_v1.1.pdf
with — 1.38 — μA BAT Battery supply external crystal, RTC on, Higher driving current VDD not available,BAT3.6 V, LSE on with — 1.07 — μA external crystal, RTC on, Lower driving VDD not available,BAT3.3 V, LSE on with —
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F350xx_DS_v1.1.pdf
with — 1.38 — μA BAT Battery supply external crystal, RTC on, Higher driving current VDD not available,BAT3.6 V, LSE on with — 1.07 — μA external crystal, RTC on, Lower driving VDD not available,BAT3.3 V, LSE on with —
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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TimerPumpe_S01_CMOS4060.pdf
1,1WFan40x40x20 PCB3_Timer1_4060 D 1 X0 S1 PS1_IP65 LiFePo4 12,8V 9,2Ah 2 +Vin AC1 4 2 +Vin AC1 4 NC D 8 3 Bat1_LiFePo4 MBR2045 Diode switch Akku Bat1 or Netzteil PS1 7 3 SW-1EIN AC1 OUT+ 4 0/13,8V DC1 049-29 NO Timer 8-20min 12V 4-34mA 16A 1xUm Relais -OK-out 0 2 AC2 OUT- 1 -IN AC2 3 1 -IN AC2 3 COM C 1 PE
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
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DS3231_DATASHEET.pdf
PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Active Battery Current IBATA EOSC = 0, BBSQW = 0, V BAT= 3.63V 70 μA SCL = 400kHz (Note 4) V BAT= 5.5V 150 EOSC = 0, BBSQW = 0, V BAT= 3.63V 0.84 3.0 EN32kHz = 1, Timekeeping Battery Current BATT SCL = SDA = 0V or μA V BAT= 5.5V 1.0 3.5 SCL = SDA = V BAT
in „RTC DS3231 Pull Up Widerstände berechnen“ · Mikrocontroller und Digitale Elektronik ·
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MC_product_selection_AN.pdf
Kowloon India - New Delhi Denmark - Copenhagen Fax: 480-792-7277 Hong Kong Tel: 91-11-4160-8631 Tel: 45-4450-2828 Technical Support: Tel: 852-2401-1200 Fax: 45-4485-2829 http://support.microchip.com Fax: 91-11-4160-8632 Web Address: Fax: 852-2401-3431 India - Pune France - Paris Australia - Sydney Tel:
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan einer Ladeelektronik mit Li-Ion-Laderegler
U4 ME8211A3M3G-N, VIN, VOUT, VCC3.3, C7 1uF, VSS, GND, R2 330ohm, LED1 SF45W1NAMS(RA2), Q4 SS8080_C2150, U1 5022W, R7 1k, TOUCH, OPT2, OPT1, KEY, VDD, VSS, C1 10uF, C3 33nF, R1 1k, C12 10uF, C13 10uF, U2 SQ2407RGTR, DW01A-G, C4 100nF, R5 1k, Q3 FS8205A, D1, D2, D3, D4, R4 100ohm
in „Touch LED Lampe mit 18650er Batterie Hilfe (8022W)“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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ds1308.pdf
FA Output Logic 0 (SDA, SQW/ I VCC R VCCMIN 3.0 mA CLKIN), VOL = 0.4V OL V R 1.3V R V + 0.2V 250 FA BAT CC -33 2.70 2.82 3.00 Power-Fail Trip Point V PF -3 2.45 2.55 2.70 V -18 1.45 1.62 1.70 Maxim Integrated 2 www.maximintegrated.com DS1308 Low-Current I C RTC with 56-Byte NV RAM DC Electrical Characteristics
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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nightsky_arx15.pdf
AJ1 FBD_DQM0 FBD_WCKB45 H7 FBD_WCK45# 23 C . FBC_WCK45 J27 FBC_WCK45 FBC_WCKB23# 20 22 FBD_DBI0 FBD_DBI1 AG1 FBD_DQM1 FBD_WCKB45 H6 FBD_WCKB45 23 40ȍ_NETCLASS1 < 2.7" H27 FBC_WCK45# FBC_WCK45 21 22 FBD_DBI1 FBD_DBI2 AA7 P8
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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Layout_v2.7.pdf
TOP 0 9 10k IC6 3 k 2 3,3k LED2 OK2 1 R GND R32 R 5 1 1 6 R5 20 RESET (AD7)PA7 44 R8 5 5V (AD6)PA6 45 100k PLC 23 XTAL2 (AD5)PA5 46 2 2 4 100µH (AD4)PA4 47 4 0 C11 24 (AD3)PA3 48 R27 R 5 CNY17 GND 5V L1 GND XTAL1 49 100nF62 (AD2)PA2 50 5 100k 64 AREF (AD1)PA1 51 ISP-AVRISPMKII 4 0 GND 5 63 AVCC (AD0)
in „Schematic + Board“ · Mikrocontroller und Digitale Elektronik ·
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m128lcpu.pdf
battery or a Supercap condenser. ▯ ▯ Some models include a pair of 128KB Dataflash memories (Atmel AT45DB011), adding 256kb of data or a 4Mb Dataflash memory ( Atmel AT45DB0321), both connected using the SPI bus. ▯ An optional socket on the top of the board is available to hold a Multimedia Card with a
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LC-R123R4PG.pdf
2.452.0e2.0e C 240 20 3.00CA a h 400 0 2 2 4 4CharCharg current0CA 12 4.0 a -15 -15 0 0 15 15 30 30 45 45 0 002 0 0 Charge time (h) 25°C(77°F) 0.0 0.0B 0 Battery temperature (°C) C 20 Charge time (h) 2.0 20 0 Battery temperature (°C) 0 0 2 2 4 4 Chargecurrent 1012 12 -15 -15 0 0 15 15 30 30 45 45 0 0 CharCharge time (h) 0.0 0 BattBat ry t mperature (°C) 0 2 4 6 8 10 12 -15 0 15 30 45 Charge time (h) Battery temperature (°C) 20.0 DISCHARGECHARACTERISTICS 20.0 20.0 )15.15.0 ( V 20.0 e e )t5a) 15.0 o l( l10ve050 t Vtg 3.4A3.4A 0.850.85A
in „Autoradio mit externem Netzteil +Pufferakku sowie ladegerät für Akku.“ · Analoge Elektronik und Schaltungstechnik ·
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CIII_Schematic.pdf
(DQS4B/CQ5B,DPCLK4) 100 PIN100 IO, VREFB1N0 14 PIN14 nCS_AS IO, DIFFIO_L19p, (DQS1L/CQ1L#,DPCLK1) 45 PIN45 IO, PLL1_CLKOUTn 71 PIN71 IO, DIFFIO_B22p, (DQ5B) 101 PIN101 B2 J2 IO, (FLASH_nCE, nCSO) 18 PIN18 IO, DIFFIO_L19n, (DQ1L) 46 PIN46 IO, DIFFIO_B7p 72 PIN72 IO, DIFFIO_B22n 102 PIN102 POWER_IN 1
in „fragen zu User/KOnfigurationsmodus von Cyclon“ · FPGA, VHDL & Co. ·
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bq76940.pdf
Absolute Maximum Ratings Over-operating free-air temperature range (unless otherwise noted) MIN MAX UNIT (BAT–VSS) bq76920 V Supply voltage (BAT–VC5x), (VC5x–VSS) bq76930 –0.3 36 V BAT (BAT–VC10x), (VC10x–VC5x), (VC5x–VSS) bq76940 (VCn–VSS) where n = 1..5 bq76920 (VCn–VSS) where n = 1..5, (VCn-VC5x) where n
in „Schaltung für aktiven 3s Balancer gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2006111335_Texas-Instruments-BQ7692003PWR_C601650.pdf
Absolute Maximum Ratings Over-operating free-air temperature range (unless otherwise noted) MIN MAX UNIT (BAT–VSS) bq76920 V Supply voltage (BAT–VC5x), (VC5x–VSS) bq76930 –0.3 36 V BAT (BAT–VC10x), (VC10x–VC5x), (VC5x–VSS) bq76940 (VCn–VSS) where n = 1..5 bq76920 (VCn–VSS) where n = 1..5, (VCn-VC5x) where n
in „bq76940 balancing“ · Mikrocontroller und Digitale Elektronik ·
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teXet_TF-127_Service_manual.pdf
the total of the supply current of the ISL1BAT )I BAT BACKUP BATAVG LKG BAT2 BAT1 plus the leakage current of the capacitor and the dioLKG.I (EQ. 7) In these calculationsLKG is assumed to be extremely small and will be ignored. If an application
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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Carambola2-Base.sch.pdf
10V Capacitor C9, C12 CAPC0805 CAP 0805 2 MLCC Ceramic 10p Capacitor C15, C16 CAPC0603 CAP 0603 2 BAT54C SOT-23 Plastic- BAT54C Encapsulated Diode D1 SOT23-3 BAT54C 1 FB_0805 Ferrite Bead SMD FB1, FB2, FB3, FB4 FB_0805 FB_0805 4 CONN PWR JACK PJ-036AH-SMT-TR 2X5.5MM SOLDER J1 PJ-036AH-SMT-TR PJ-036AH-SMT-TR
in „[V] Carambola2 100 Stück“ · Markt ·
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PDF
brenner8p.pdf
10k 1 0 10k 24 17 R1 R1 25 16 26 15 C9 27 14 220nF 28 13 29 12 0 1 LSP1 30 11 330 R19 D4 1 P D1 Q7 BAT43 2 1 2 J 31 10 BC328-25 R 680µH BAT43 32 9 33 8 R17 0 L1 7 34 7 H 3 C4 4 35 6 0 10k + 10µF + C5 36 5 1 0 6 10k 4 37 4 2 D2 2 IC1 1 47µF R 38 3 L BAT43 VDD R R3 39 2 28 RB7 MCLR#/VPP 1 40 1 27 2 Q2
in „Brenner8P von Sprut- Programmierspannungs Probleme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS3231.pdf
Active Supply (see Table 1A, T MIN to MAX , unless otherwise noted.) (Typical values aCC =t V 3.3V, BAT = 3.0V, and A = +25°C, unless otherwise noted.) (Notes 2, 3) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Output Frequency fOUT VCC = 3.3V or BAT = 3.3V 32.768 kHz Frequency Stability vs. VCC = 3.3V
in „18650 Zelle zu 5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS3231.pdf
Active Supply (see Table 1A, T MIN to MAX , unless otherwise noted.) (Typical values aCC =t V 3.3V, BAT = 3.0V, and A = +25°C, unless otherwise noted.) (Notes 2, 3) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Output Frequency fOUT VCC = 3.3V or BAT = 3.3V 32.768 kHz Frequency Stability vs. VCC = 3.3V
in „DS3231 vs PCF8573, hilfe gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS3231_S_SN_Crystal.pdf
Active Supply (see Table 1A, T MIN to MAX , unless otherwise noted.) (Typical values aCC =t V 3.3V, BAT = 3.0V, and A = +25°C, unless otherwise noted.) (Notes 2, 3) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Output Frequency fOUT VCC = 3.3V or BAT = 3.3V 32.768 kHz Frequency Stability vs. VCC = 3.3V
in „(empfindlicher) GPS Modul gesucht“ · Mikrocontroller und Digitale Elektronik ·
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MCP73871-Data-Sheet-20002090E__2_.pdf
? VOUT State + e l h i IO a VI N a T B n D C V B y S 1 0 Shutdown OFF 2 V > V 0 0 1 — Battery OFF BAT IN powered ON system 3 V IN> VBAT 0 0 X — Shutdown OFF 4 0 Shutdown OFF 5 Battery ON 0 1 — powered ON OFF system 6 V < V Standby OFF BAT OUT 7 0 IN + BAT OFF V BAT> V OUT powered ON V IN> VBAT 1 system 8 1 IN powered, ON ON V BAT< V OUT Charge OFF ON/OFF possible 1 9 IN + BAT V > V powered ON OFF BAT OUT system With the SEL input active-high, the MCP73871 device 4.1 UnderVoltage Lockout (UVLO) limits the total supply current
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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Datei
souce_code_esrM.txt
1, the pass mark. command, or further rjmp bat_check3; On bat_check3 inc z1; increase z1 1 rjmp bat_check4; On bat_check4 bat_check3: inc z2; increase z2 1 bat_check4: cpi temp, 0, temp comparison with 0 brne bat_check2; If temp <> 0, then bat_check2
in „Lcd zweite zeile wird nicht angesprochen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
esr_messgeraet.asm
1, the pass mark. command, or further rjmp bat_check3; On bat_check3 inc z1; increase z1 1 rjmp bat_check4; On bat_check4 bat_check3: inc z2; increase z2 1 bat_check4: cpi temp, 0, temp comparison with 0 brne bat_check2; If temp <> 0, then bat_check2
in „Lcd zweite zeile wird nicht angesprochen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CSR1010_Data_Sheet_CS-231985-DS.pdf
7.1. Synthesiser and Oscillator Lead Pad Type Supply Domain Description XTAL_32K_OUT 2 Analogue VDD_BAT Drive for sleep clock crystal. XTAL_32K_IN 3 Analogue VDD_BAT 32.768kHz sleep clock input. XTAL_16M_OUT 9 Analogue VDD_ANA (b) Drive for crystal. XTAL_16M_IN 10 Analogue VDD_ANA Reference clock input
in „I²C Daten über Bluetooth übertragen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISP1301.pdf
output V BAT = 3.0 V to 4.5 V 3.0 - 3.6 V V BAT = 2.7 V to 3.0 V 2.7 - 3.0 V VTRIP power-on reset trip voltage 1.5 - 2.5 V BAT operating supply current transmitting and receiving at [2]- 4 8 mA 12 Mbit/s; C = 50
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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DS1307.pdf
Current CCA 1.5 mA (SCL = 100kHz) Standby Current I (Note 3) 200 CCS µA V Leakage Current I 5 50 nA BAT BATLKG 1.216 x 1.25 x 1.284 x Power-Fail Voltage (BAT = 3.0V) VPF V VBAT VBAT V BAT DC ELECTRICAL CHARACTERISTICS (VCC = 0V, V BAT= 3.0V; T A 0°C to +70°C, T = A40°C to +85°C.) (Notes 1, 2) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS V Current (OSC ON); BAT BAT1 300 500 nA SQW/OUT OFF VBAT Current (OSC ON); BAT2 480 800 nA SQW/OUT ON (32kHz) VBAT Data-Retention Current IBATDR 10 100 nA (Oscillator Off) WARNING: Negative undershoots below -0.3V while the
in „[V] noch 2 x 10St. Dallas RTC DS1307Z (SO8) abzugeben“ · Markt ·
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PDF
DS1307.pdf
Current CCA 1.5 mA (SCL = 100kHz) Standby Current I (Note 3) 200 CCS µA V Leakage Current I 5 50 nA BAT BATLKG 1.216 x 1.25 x 1.284 x Power-Fail Voltage (BAT = 3.0V) VPF V VBAT VBAT V BAT DC ELECTRICAL CHARACTERISTICS (VCC = 0V, V BAT= 3.0V; T A 0°C to +70°C, T = A40°C to +85°C.) (Notes 1, 2) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS V Current (OSC ON); BAT BAT1 300 500 nA SQW/OUT OFF VBAT Current (OSC ON); BAT2 480 800 nA SQW/OUT ON (32kHz) VBAT Data-Retention Current IBATDR 10 100 nA (Oscillator Off) WARNING: Negative undershoots below -0.3V while the
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PDF
ds1307.pdf
Current CCA 1.5 mA (SCL = 100kHz) Standby Current I (Note 3) 200 CCS µA V Leakage Current I 5 50 nA BAT BATLKG 1.216 x 1.25 x 1.284 x Power-Fail Voltage (BAT = 3.0V) VPF V VBAT VBAT V BAT DC ELECTRICAL CHARACTERISTICS (VCC = 0V, V BAT= 3.0V; T A 0°C to +70°C, T = A40°C to +85°C.) (Notes 1, 2) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS V Current (OSC ON); BAT BAT1 300 500 nA SQW/OUT OFF VBAT Current (OSC ON); BAT2 480 800 nA SQW/OUT ON (32kHz) VBAT Data-Retention Current IBATDR 10 100 nA (Oscillator Off) WARNING: Negative undershoots below -0.3V while the
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
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ibm_thinkpad_t42_apollo_rev0.49_sch.pdf
SOLENOID_ON# EVENT# 226 OUT 5 47 LPT_D3 LPT_SLIN#107 4 LPTD<7..0> 54.7L<> 81.7E> 78.5N<> RJ45_TXD0N 167 RJ45_LED2_YLN# GND 227 RJ45_TXD0P 78.5N<> 7 48 LPT_D5 LPT_D4 108 6 IN 81.5E> 78.7N<> BI RJ45_TXD2N 168 RJ45_TD- RJ45_TD+ 228 BI 81.7E> 58.3B> 54.6L> LPTBUSY 49 LPT_D7 LPT_D6 109 -LPTACK 54.5L> 81.5E> 78.7N<> BI RJ45_TXD2P 169 RJ45_TERM2 RJ45_RD+ 229 RJ45_TXD1P 78.5N<> 81.6E> 58.3B> 54.6L> IN LPTSLCT 50 LPT_BUSY LPT_ACK#110 LPTPE IN 54.6L> 58.3B> 81.3E> 76.8P> BI -RJ45_LINKUP 170 RJ45_TERM1 RJ45_RD- 230 BI IN LPT_SLCT
in „Lenovo T42 Ladeelektronik spielt verrückt“ · Mikrocontroller und Digitale Elektronik ·
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bq24618.pdf
/V pin) V ITERM= 20 mV –4% 4% Termination current accuracy V ITERM= 5 mV –25% 25% V ITERM= 1.5 mV –45% 45% Deglitch time for termination (both 100 ms edges) QUAL Termination qualification time V BAT> VRECH and CHG < ITERM 250 ms I Termination qualification current Discharge current once termination is
in „Li-Ion - Charger & Balancing“ · Analoge Elektronik und Schaltungstechnik ·
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Dali_Geraet_mit_sehr_niedrigem_Standby-Verbrauch.pdf
tc (°C) 50 60 70 EVG Lebensdauer (h) 100000 100000 100000 EVG Umgebungstemperatur (ta) 40 50 60 HO 45 W ES Temperatur am Messpunkt tc (°C) 50 60 70 EVG Lebensdauer (h) 100000 100000 100000 EVG Umgebungstemperatur (ta) 40 50 60 HO 49 W Temperatur am Messpunkt tc (°C) 50 60 70 EVG Lebensdauer (h) 100000
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MAX712-MAX713.pdf
) ) ( ) ( ( ΔV R ( R G 1.50 V CUTOFF 35 T G1.55 ΔV 35 T T Δt R T V Δt CUTOFF R O P O P V E V E E 1.45 T 30 T E1.50 30 T C E C T E C C 1.40 25 1.45 25 0 30 60 90 0 30 60 90 CHARGE TIME (MINUTES) CHARGE TIME (MINUTES) MAX713 MAX713 NiCd BATTERY-CHARGING NiMH BATTERY CHARGING CHARACTERISTICS AT C/2 RATE
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TP5000-TopPower.pdf
南京拓微集成电路有限公司 NanJing Top Power ASICCorp. Absolute Maximum Ratings ■ input supply voltage (VIN): 10V ■ BAT:-4.2V ~ 9V ■ BAT short duration: continuous ■ Maximum Junction Temperature: 145 ° C ■ Operating ambient temperature range: -40 C to 85 ℃ ■ Storage temperature range: -65 ℃ ~ 125 ℃ ■ Lead Temperature
in „Solarzelle fuer Mikrokontroller“ · Analoge Elektronik und Schaltungstechnik ·
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TP5000-TopPower.pdf
南京拓微集成电路有限公司 NanJing Top Power ASICCorp. Absolute Maximum Ratings ■ input supply voltage (VIN): 10V ■ BAT:-4.2V ~ 9V ■ BAT short duration: continuous ■ Maximum Junction Temperature: 145 ° C ■ Operating ambient temperature range: -40 C to 85 ℃ ■ Storage temperature range: -65 ℃ ~ 125 ℃ ■ Lead Temperature
in „LiFePo4 3,2V Ladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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cy3210_7_miniprog1.pdf
V3.3 R1 V3.3 V3.3 1 IN1V+ 8 20K TGT_VCC P1 VR1 2 IN2IN6 7 1 Vcc VBUS LM3480 D1 3 IN3IN5 6 2 GND 2 1 BAT54A C1 4 V- IN4 5 3 XRES Vin Vout D3 4 A n 4.7V,1.5W 0.1uF 5 P1[1] A G VREF 220 R2 P1[0] VBUS TGT_RST PROG_CON 3 R3 2.7K 3.3V C2 C8 C3 0.1uF 1.0uF,6.3 0.1uF R4 D2 2.7K BAT54A 8 8 R5 R6 C4 Y1 U2 4 2 47
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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 2 JS1S1 11TSMD_BGND PICK1201 PICKSSP02IUA3GNDP I U A GND 7 1TSMD_B GND BAT PI12206 0CT8T8 PIJS1*2tpads GND 100n 1 GNDP 5 U A GND 6 GND TS PIUA2012 01µ 0805PIUA301EN GNDPIUA305 GND NLnPG 18 13 1TSMD_B I3 ADP1716 POSTAT1 G NLSTAT PIUA2STAT1 ISET1PIUA2010 PIPIRK902 GND 3 POSTAT2
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