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Pollin_Fehlerbehebung.pdf
Stückliste der Montageanleitung wurden 3 . die Dioden D1 und D3 vertauscht. D1 = Z-Diode 5,1V D3 = BAT85
in „Einstieg in die programmierung“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan zweier Operationsverstärker-Schaltungen
C2 100 nF U2A TL082 Invert Voltage +15 R6 44k R7 22k In_V D3 1N4148 D4 1N4148 -15 GND U2B TL082 D2 BAT85 Out_V_2
in „OPV Schaltung mit OVP durch Dioden“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
SCH_ESP32-Ethernet-Kit_A_V1.2_20200528.pdf
TP20 GPIO17 TP21 D4 GND EN_KEY 1 VDD33 3 R67 0R(5%) EN EN_AUTO 2 GPIO0 R69 20K(5%) ON OFF BOOT MODE: BAT54A GPIO2 R70 10K(5%)(NC) SW2 J7 D5 MTMS R60 0R(5%) MTMS_1 5 5 4 4 GPIO14 1 1 2 2 MTDO R63 0R(5%) MTDO_1 6 3 GPIO15 IO0_KEY 1 GND MTDI R61 0R(5%) MTDI_1 7 6 3 2 GPIO12 3 R71 0R(5%) GPIO0 MTCK R62 0R(5%) MTCK_1 8 7 2 1 GPIO13 3 4 IO0_KEY IO0_AUTO 2 8 1 3 4 CON2X4_1P27 R72 BAT54A 1K(1%) GND A A Title <ESP32-Ethernet-Kit_A> Size Page Name Rev A3 <03 : MAC_ESP32> V1.2 Confidential and Proprietary Date: Thursday, May 28, 2020 Sheet 3 of 4 5 4 3 2 1 5 4 3 2 1 Please place these
in „Arduino Library für Netzwerkchip W5500?“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan LCD Timing Circuit und LCD Interface
Data 4 Data 5 Data 6 Data 7 A14 WR PA0 PA1 PA2 PA3 PA4 PA5 PA7 74HC00 U3C 12 11 13 8 9 10 33pF D2 BAT85 Clock Generation Circuit U3B 4
in „Probleme mit 74LS00 und 74HCT04“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Verdrahtungsschema eines Batteriekapazitätstesters
positive) C- (charging- Negative) P- (Output- Negative) B+ Battery B- Sampler 400A 75mV ATORCH Vol:0019.85 Full V:022.00V Cur:0003.63 Zero V:003.00V Pwr:0072.05 Res:0003.50a Enp:0006.60 Cap:0062.05h 80% Runtime:000.36:08 Ext:000.36:08 BatRes: 0% BATTERY CAPACITY TESTER ON/OFF Independent power supply 9-12V
in „PV-Leistung direkt am Modulausgang messen“ · Haus & Smart Home · · Diagramme
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M41T94.pdf
WDI 4 13 THS M41T94 NC 7 M41T94 22 NC RSTIN1 5 12 SDI WDI 8 21 NC RSTIN2 6 11 SQW RSTIN1 9 20 SCL V BAT 7 10 SCL RSTIN2 10 19 NC VSS 8 9 SDO NC 11 18 RST AI03684 NC 12 17 SDI NC 13 16 SDO VSS 14 15 NC AI03685 5/32 M41T94 Figure 6. Block Diagram E REAL TIME CLOCK CALENDAR SDO 44 BYTES USER RAM SDI SPI
in „ST M41T94 SPI Timing“ · Mikrocontroller und Digitale Elektronik ·
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Smartphone-Screenshot eines Terminals mit Log-Dateien
u (uint) - 24u) & 0xFF; 30 - 32 - 33 - 43 - 44 - 62 - 63 - 77 - 78 - 79 - 80 - 81 - 82 - 83 - 84 - 85 - 86 - shift) & mask; /sdcard/Download $ ls *.log bat-sens_poll-0x0d_ign_light.log battery_reset.log motor-start_run_front-rear-heating_voltage14.log no-action.log no-batsensor_no-action.log only-charger-connected.log
in „Reverse Engineering eines LIN Bus“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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AiMS2000.pdf
USB_D+ 29 3 13 NC LED_1 67 P2.6/PCAP1.0/RI1/TRACECLK P0.30/USB_D- 30 VIN D3 V C 66 P2.7/CAN_RX2/RTS1 BAT60A + C 65 D1 GND 64 P2.8/CAN_TX2/TXD2 BAT60A IN K OUT 53 P2.9/USB_CONNECT/RXD2 GND 52 P2.10/EINT0N/NMI IC3 C8 A 51 P2.11/EINT1N/I2STX_CLK C31 LD1117S33 10uF B 7 50 P2.12/EINT2N/I2STX_WS 100nF V 83 VSS
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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AiMS2000.pdf
P0.29/USB_D+ 29 3 13 NC 67 P2.6/PCAP1.0/RI1/TRACECLK P0.30/USB_D- 30 VIN D3 V C 66 P2.7/CAN_RX2/RTS1 BAT60A + C V 65 D1 GND + 64 P2.8/CAN_TX2/TXD2 BAT60A IN K OUT 53 P2.9/USB_CONNECT/RXD2 GND Q1 52 P2.10/EINT0N/NMI IC3 C8 A BCX71SMD 51 P2.11/EINT1N/I2STX_CLK C31 LD1117S33 10uF B 50 P2.12/EINT2N/I2STX_WS
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS7846.pdf
PRODUCT ERROR (LSB) PACKAGE-LEAD DESIGNATOR RANGE MARKING NUMBER ADS7846E ±2 SSOP-16 DBQ –40°C to +85°C ADS7846E ADS7846E " " " " " " ADS7846E/2K5 ADS7846N ±2 TSSOP-16 PW –40°C to +85°C ADS7846N ADS7846N " " " " " " ADS7846N/2K5 " " " " " " ADS7846N/2K5G4 ADS7846I ±2 VFBGA-48 GQC –40°C to +85°C ADS7846 ADS7846IGQCR ADS7846I ±2 QFN-16 RGV –40°C to +85°C ADS7846 ADS7846IRGVT " " " " " " ADS7846IRGVR NOTE: (1) For the most current package and ordering information, see the Package Option Addendum located at the end of this data sheet, or see the TI web
in „Frage zu ADS7846“ · Mikrocontroller und Digitale Elektronik ·
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MCU.pdf
consumptions in Stop and Standby modes Typ (1) Max Symbol Parameter Conditions V /V V /V V /V T = T = Unit DD BAT DD BAT DD BAT A A = 2.0 V = 2.4 V = 3.3 V 85 °C 105 °C Regulator in Run mode, Low-speed and high-speed internal RC oscillators and high- 23.5 24 190 350 speed oscillator OFF (no Supplycurrent independent
in „suche die pins für flash speicher“ · Mikrocontroller und Digitale Elektronik ·
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Pr__zisionsstrommessung.pdf
mV Strom 3 ± 300 A 16 bit 0,5 % 1 kHz <3 mV Strom 4 +500/–1500 16 bit 2 % 16 kHz <10 mV A externe U 85 db 0,5 % 1 kHz <1 mV Spannung bat Spg. über 0,4 mV bei 14 V Spannungsteiler externe 0,01 K bis 0,2 K 62,5 Hz Temperatur (abh. vom Fühler) interne –50 bis 0,05 K 2 K 125 Hz Temperatur +85 °C 85 bis 150
in „Batteriestrommessung +-50A“ · Analoge Elektronik und Schaltungstechnik ·
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AVR450_BattCharger.pdf
voltage range from A A (3.67V). The output voltage () from the op-amp has to be within this range:. REF BAT2 Ra VBAT2 = *(V1-V2 ) Rb Where: V BAT2is the output voltage from the op-amp to the AVR A/D. V1 is the positive pole of the battery. V2 is the negative pole of the battery. Ra and Rb are the resistors
in „Pb-Akku Ladegerät mit µP Selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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l200.pdf
ADJUSTABLE OUTPUT CURRENT UP TO 2 A (GUARANTEED UP TO T = 150 j) ° ADJUSTABLE OUTPUT VOLTAGE DOWN TO 2.85 V INPUT OVERVOLTAGE PROTECTION (UP TO 60 V, 10 ms) SHORT CIRCUIT PROTECTION OUTPUT TRANSISTOR S.O.A.PROTECTION THERMAL OVERLOAD PROTECTION LOW BIAS CURRENT ON REGULATION PIN Pentawatt® TO-3 (4 lead)
in „L200 Beschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST__L200.pdf
ADJUSTABLE OUTPUT CURRENT UP TO2 A (GUARANTEEDUP TOT j= 150⋅C) ADJUSTABLE OUTPUT VOLTAGE DOWN TO 2.85V INPUT OVERVOLTAGE PROTECTION (UP TO 60 V, 10 ms) SHORT CIRCUIT PROTECTION OUTPUT TRANSISTORS.O.A.PROTECTION THERMAL OVERLOADPROTECTION LOWBIAS CURRENT ON REGULATIONPIN Pentawatt∪ TO-3(4 lead) LOWSTANDBY
in „liegender einstellbarer Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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AD815.pdf
COMPLIANT WITH JEDEC STANDARDS MS-013-AD Figure57.24-LeadBatwingSOIC,ThermallyEnhancedw/FusedLeads[SOIC_W_BAT] (RB-24) Dimensionsshowninmillimeters ORDERING GUIDE 1 Temperature Package Model Range PackageDescription Option AD815ARBZ-24 –40°C to +85°C 24-Lead Batwing SOIC, Thermally Enhanced w/Fused Leads [SOIC_W_BAT] RB-24 AD815ARBZ-24-REEL –40°C to +85°C 24-Lead Batwing SOIC, Thermally Enhanced w/Fused Leads [SOIC_W_BAT] RB-24 1Z = RoHS Compliant Part. REVISION HISTORY 6/15—Rev. C to Rev. D Changes to Figure 34, Figure 38, and Figure 40............
in „Zusammenschalten möglich? OPV!“ · Analoge Elektronik und Schaltungstechnik ·
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AD815_Rev_D.pdf
COMPLIANT WITH JEDEC STANDARDS MS-013-AD Figure57.24-LeadBatwingSOIC,ThermallyEnhancedw/FusedLeads[SOIC_W_BAT] (RB-24) Dimensionsshowninmillimeters ORDERING GUIDE 1 Temperature Package Model Range PackageDescription Option AD815ARBZ-24 –40°C to +85°C 24-Lead Batwing SOIC, Thermally Enhanced w/Fused Leads [SOIC_W_BAT] RB-24 AD815ARBZ-24-REEL –40°C to +85°C 24-Lead Batwing SOIC, Thermally Enhanced w/Fused Leads [SOIC_W_BAT] RB-24 1Z = RoHS Compliant Part. REVISION HISTORY 6/15—Rev. C to Rev. D Changes to Figure 34, Figure 38, and Figure 40............
in „Ausgangsstufe Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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STM32F405-7x.pdf
STM32F407xx Electrical characteristics (1) Table 24. Typical and maximum current consumptions in V BAT mode Typ Max T = 25 °C T = 85 °C TA= Symbol Parameter Conditions A A 105 °C Unit VBAT = V BAT= V BAT = V = 3.6 V 1.8 V 2.4 V 3.3 V BAT Backup SRAM ON, low-speed 1.29 1.42 1.68 TBD (2) TBD (2) oscillator
in „STM32 DCMI (Kamera) Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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Screenshot eines Online-Shops für ein NiMH Lademodul
value of RCS be 1-10 ohms. The larger the value, the smaller the charging current. 15 is not welded 25-85 10.5K RCS NIUP11TA VIN R1 VOI BAT+ 1S-8S Zelle NiMH NiC 6S 7S 1,2V 2,4V 3,6V 5.0 27 B Gegenwärtig: 8S 1S 2S 8S Changing the value of R1 can change the charging voltage. Input voltage DC 4.5-5.5V R1 10K
in „Ladeplatine für 2 NiMH Akku wie für 2S beschalten“ · Platinen · · Screenshots
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12V-330V_20W.pdf
C10 C11 voir texte P1 Ω Ω * CW 2 2 100n 220µ siehe Text 100k C9 25V * L2 K2 C7 C8 47mH R1 10n TR1 * BAT85 0 100n C14 330V 1 25Vµ T2 R14 2 6 30mA ) D3 D1 2µ2 D5 R8 R7 R2 4 15 13 0 ( 450V 0 k 0 1 12 ) 6 6 1 OSC OUT VI VC BUZ11 0 3 ( 1 INV IN OUT A 11 C12 ) IC1 ( D4 D2 3 SYNC SG3525A 4n7 11 7 R15 2 L3 10
in „Netzteil für Röhrenvorverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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12V_to_350V.pdf
C10 C11 voir texte P1 Ω Ω * CW 2 2 100n 220µ siehe Text 100k C9 25V * L2 K2 C7 C8 47mH R1 10n TR1 * BAT85 0 100n C14 330V 1 25Vµ T2 R14 2 6 30mA ) D3 D1 2µ2 D5 R8 R7 R2 4 15 13 0 ( 450V 0 k 0 1 12 ) 6 6 1 OSC OUT VI VC BUZ11 0 3 ( 1 INV IN OUT A 11 C12 ) IC1 ( D4 D2 3 SYNC SG3525A 4n7 11 7 R15 2 L3 10
in „Spannungswandler 12 Vdc auf 350 Vdc (max. 50mA)“ · Analoge Elektronik und Schaltungstechnik ·
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PowerSupply_TL494.pdf
C10 C11 voir texte P1 Ω Ω * CW 2 2 100n 220µ siehe Text 100k C9 25V * L2 K2 C7 C8 47mH R1 10n TR1 * BAT85 0 100n C14 330V 1 25Vµ T2 R14 2 6 30mA ) D3 D1 2µ2 D5 R8 R7 R2 4 15 13 0 ( 450V 0 k 0 1 12 ) 6 6 1 OSC OUT VI VC BUZ11 0 3 ( 1 INV IN OUT A 11 C12 ) IC1 ( D4 D2 3 SYNC SG3525A 4n7 11 7 R15 2 L3 10
in „Schaltnetzteil selber bauen mit TL494“ · Analoge Elektronik und Schaltungstechnik ·
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Datenblatt_NVSRAM_23LCV1024.pdf
5.5V, 20 MHz lines. Access to the device is controlled through a Chip - Standby Current: 4 A at +85°C Select (CS) input. Additionally, SDI (Serial Dual Inter- • Unlimited Read and Write Cycles face) is supported if your application needs faster data rates. • External Battery Backup Support • Zero Write
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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Datei
boot.c
void loader() { DDRC |= 0xff; PORTC = ~0x02; do { asm volatile("nop"); } while(1); } /* --------- do.bat --------- echo compile... avr-gcc -g -Os -mmcu=atmega16 -c boot.c echo link... avr-gcc -g -mmcu=atmega16 -Wl,-Map,boot.map,--cref,--section-start=.bootloader=0x1c00 -o boot.elf boot.o echo creating
in „bootloader section in c“ · Mikrocontroller und Digitale Elektronik ·
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partlist.txt
rcl (66.675 27.94) R0 C30 100n C0805 rcl (64.135 11.43) R0 CON1 SCDA5A0201 SCDA5A0201 SCDA5A0201 (69.85 15.24) R90 D1 BAT42 DO35-10 diode (66.675 49.53) R0 IC2 AT24C512 DIL08 atmel (24.13 38.1) R0 IC3 MEGA48/88/168-AU TQFP32-08 avr-7 (39.37 20.32) R0 IC4 PCF8574T SO16W micro-philips (78.74 40.64) R180
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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HP_MSA-0520.pdf
• High Output Power: MMIC is designed for use as a general purpose 50 gain block. +23dBmTypicalP 1dBat Typical applications include 1.0GHz narrow and broad band IF and RF • LowDistortion: amplifiers in industrial and 33dBmTypicalIP at130 GHz military applications. • 8.5 dB Typical Gain at 1.0 GHz The
in „[S] RF-Transistor AT-64020 oder einen adäquaten Ersatz“ · Markt ·
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Grüne Leiterplatte mit Drähten auf Holzuntergrund
BAT+, C1, C2, C3, C4, C5, C6, C7, C8, C9, C10, C11, C12, C13, C14, C15, C16, C17, C18, C19, C20, C21, C22, C23, C24, C25, C26, C27, C28, C29, C30, C31, C32, C33, C34, C35, C36, C37, C38, C39, C40, C41,
in „Fehlersuche am Rain Point Bodenfeuchtsensor“ · Platinen · · Platinenfotos
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Schaltplan eines Netzteils
J8 VSB_Private_Power_Ctrl_BP, R11, U1, VCC, BAT+, C11, C12, C13, C14, C15, C16, C17, C18, C19, C20, C21, C22, C23, C24, C25, C26, C27, C28, C29, C30, C31, C32, C33, C34, C35, C36, C37, C38, C39, C40, C41, C42, C43, C44, C45, C46, C47, C48, C49, C50
in „Lipo ladesxhaltung für esp32c3“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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nightsky_arx15.pdf
10K_04 2 NC_D 28 6-52-55001-021 9 VSS_2 NC_F 29 . 32 VSS_4 NC_G 30 S 33 GND NC_H 31 SLB9670VQ F/W 7.85 VDD_TPM D33 GREEN/YELLOW TPM c R424 220_04BAT_CHG_LED 1 2 GND 50 LED_BAT_CHG LED_BAT_CHG Y GPIO h C D28 BAT LED R727 C Sheet 48 of 73 *ESD73034D R425 220_04BAT_FULL_LED 3 SG 4 10W/ TPM H: W / TPM (ᶲ
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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Nahaufnahme einer bestückten Leiterplatte
BAT2 RTOS J1 MIC J10 C3 R155 C1469 C96 C95 C18 R81 R12 R813 R811 C185 C118 R119 C117 C116 C115 C114 C113 C112 C111 C110 C109 C108 C107 C106 C105 C104 C103 C102 C101 C100 C99 C98 C97 C96 C95 C94 C93 C92 C91 C90 C89 C88 C87 C86 C85 C84 C83 C82 C81 C80 C79 C78 C77 C76 C75 C74 C73 C72 C71 C70 C69 C68 C67 C66 C65 C64 C63 C62 C61 C60 C59 C58 C57 C56 C55 C54 C53 C52 C51 C50 C49 C48 C47 C46 C45 C44 C43 C42 C41 C40 C39 C38 C37 C36 C35
in „Batteriesuche CR927“ · Haus & Smart Home · · Platinenfotos
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Foto einer grünen Leiterplatte mit elektronischen Bauteilen
KEY, POWER, BAT, 220, C10, C11, C12, C13, C14, C15, C16, C17, C18, C19, C20, C21, C22, C23, C24, C25, D1, D2, D3, D4, R1, R2, R3, R4, R5, R6, R7, R8, R9, R10, R11, R12, R13, R14, R15, R16, R17, R18, R19, R20, R21,
in „Küchenwaage ohne Funktion“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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NUD4001.pdf
1 8 1 8 7.0 W, 1/4 W 7.0 W, 1/4 W 2 7 2 7 3 NUD4001 6 3 NUD4001 6 4 5 4 5 V + bat 13.5 Vdc − R3 27 W, 2.0 W LED1 Luxeon Emitter 220 mA 0 Figure 8. Dome light automotive circuit using the NUD4001 device to drive one LED (220 mA). http://onsemi.com 5 NUD4001, NSVD4001 Q1 1 8 Rext1 2 7 2.0 W, 1/4 W 3 NUD4001 6 4 5 Rext2 110 k, 1/4 W LED1 LXHL−MW1D V bat+ 12 Vdc − Q2 LED2 2N2222 LXHL−MW1D PWM LED3 LXHL−MW1D 0 Figure 9. NUD4001 Device Configuration for PWM R2 Q2 D1 D2 2.0 W, 1/4 W 1 8 MURA105T3 MURA105T3 2 7 3 NUD4001 6 4 5 LED1 12 Vac from: Luxeon Emitter
in „LED-Leuchtmittel reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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MCP79521.pdf
SUPPLY VOLTAGE SUPPLY VOLTAGE 5.5 1.8 1.6 1.40 -40= -40°C 1.6 4.5 2TA= 25°C°C 250A= -40°C )A14.0 8TA== 85°C )1.4 85 A= 25°C (( 3.5 μ1.2 T A= 85°C tn1.0 t ee 3.0 n 1.0 ru2.5 r C 2.0 u0.8 TT T0.6 AB0.45 C II 1.0 I0.4 00.5 0.2 00.0 0.0 11.3 11.9 12.5 23.1 23.7 24.3 34.9 35.5 1.80 2.10 2.40 2.70 3.00 3.30 3.60
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
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Leiterplatte mit USB, Audio-Anschlüssen und integrierten ICs
R12 R15 D4 C21 R16 R7 C27 R28 C29 U1R R13 U3 U6 BAT1 LB2 LB4 C3 R4 R3 U4 C1 R26 C9 C10 C20 C25 C26 C27 C28 C29 C30 C31 C32 C33 C34 C35 C36 C37 C38 C39 C40 C41 C42 C43 C44 C45 C46 C47 C48 C49 C50 C51 C52 C53 C54 C55 C56 C57 C58 C59 C60 C61 C62 C63 C64 C65 C66 C67 C68 C69 C70 C71 C72 C73 C74 C75 C76 C77 C78 C79 C80 C81 C82 C83 C84 C85 C86 C87 C88 C89 C90 C91 C92 C93 C94 C95 C96 C97 C98 C99 C100 C101 C102 C103 C104 C105 C106 C107 C108 C109 C110 C111 C112 C113 C114 C115 C116 C117 C118 C119 C120 C121 C122 C123 C124 C125 C126 C127 C128
in „Micro USB Ladebuchse, Kontakte abgerissen - Wo anlöten?“ · Platinen · · Platinenfotos
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PDF
MC33290-single-wire.pdf
40 to 125°C SO-8 8.0 kV ESD Protection Attainable with Few Additional Components Standby Mode: No V BatCurrent Drain with VDD at 5.0 V Low Current Drain During Operation with V DD at 5.0 V 33290 Simplified Application Diagram On-Board Diagnostic Link +V Bat Service Scan Tool 45 V(2) or End of Production
in „RX und TX auf einer Leitung“ · Mikrocontroller und Digitale Elektronik ·
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LTC1174.pdf
100 95 95 95 VIN= 6V V = 6V V = 6V IN ) 90 ) 90 IN ) 90 ( ( ( Y VIN= 9V Y VIN= 9V Y VIN= 9V N N N I 85 I 85 I 85 I I I E E E 80 L = 50 H 80 80 L = 50 H L = 100 H VOUT = 5V VOUT = 5V VOUT = 5V 75 PGM = 0V 75 I = V 75 I = V COIL = CTX50-4 COIL = CTX50-4 COIL = CTX100-4 70 70 70 1 10 100 200 1 10 100 400
in „DC/DC Wandler LTC1174 Verhalten bei Shutdown?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TransceiverIC.pdf
American ISM band applications. q Automotive temperature range Integrated functions as stand by mode, low bat q TQFP32 Package and Die control, RSSI output, level detector, locked loop detection, and clock output for µC offer features Applications for universal applications. q Intelligent keyless entry q Security
in „Transceiver IC“ · Mikrocontroller und Digitale Elektronik ·
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Feuerhand_Beat_Lantern_Masterplan.pdf
direkt auf die LED-Platine. Kabel entlang einer hinteren Seitenstrebe unauffaellig nach oben fuehren: BAT+, GND und FLASH_GATE. Fuer BAT+/GND AWG22-24 Silikonkabel; Steuerleitung AWG28-30. Feuerhand Beat Lantern - Masterplan | Stand 14.09.202Seite 4 4. Elektrische Architektur 4.1 Leistungszweige Der Akku
in „Auftragsarbeit gesucht: ESP32 / RGBW / Audio-Reactive Feuerhand-Umbau“ · Markt ·
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stm32f405rg.pdf
. BAT When PDR_ON pin is not connected to V DD (internal reset OFF), thBAT functionality is no more available and V pin should be connected to V . BAT DD 2.2.21 Timers and watchdogs The STM32F405xx and STM32F407xx
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PDF
TIM-LF_Prod_Summary_GPS.G3-MS3-03003_.pdf
clock suitable for handheld and battery-operated devices. • Industrial operating temperature range –40…85°C • Small size: 25.4 x 25.4 x 3 mm, weight: 3g Small Form Factor Support Products Innovative packaging technologies enable high integration of a GPS receiver in a small module measuring just 25.4 x 25.4
in „Projekt Navigationssystem ?“ · Mikrocontroller und Digitale Elektronik ·
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2706_SCH.pdf
LCD_D0 LADC_AIN2 88 1 A LCD_D1 10 LCD_D1 LADC_AIN1 87 CHARGE_OK U4 _ N LCD_D2 11 LCD_D2 LADC_AIN0 86 BAT_DET 2 T Q1 T LCD_D3 12 85 USB_DET E / R10 R8 S R9 100K APM2306 C25 0.1uF VCC 13 LCD_D3 VBUS_DET 84 SDT_D11 C20 0.1uF VCC 1 54 GND S 2 GND 14 VDDIO SDT_D11 83 SDT_D12 SDT_D0 2 VDD1 VSS3 53 SDT_D15 E
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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MEGA_1284P_Xplained_Schematic.pdf
Top White Gloss 27 PCB1 1 MEGA-1284P Xplained PCB, 4- MEGA-1284P Xplained PCB, 4-layer, size 54mm x 85mm layer, size 54mm x 85mm 28 Q200 1 2N7002 Fairchild 2N7002 N-Channel MOSFET. 60V, 0.115A continuous, 0.8A Peak. RDS(ON) = 7.5Ohm@VGS=5.0V, VGS(th)<3V 29 Q500 1 TEMT6000 vishay TEMT6000 light sensor
in „MEGA1284P XPLAINED über USB mit avrdudue programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3703fc.pdf
28-Lead Plastic SSOP –40°C to 85°C LEAD BASED FINISH TAPE AND REEL PART MARKING PACKAGE DESCRIPTION TEMPERATURE RANGE LTC3703EGN LTC3703EGN#TR 3703 16-Lead Narrow Plastic SSOP –40°C to 85°C LTC3703IGN LTC3703IGN#TR 3703I 16-Lead Narrow
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
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diodesgroupbodymarking.pdf
top View from top BAV TZX Cathode ring unwind Cathode ring unwind V TZX BAV 9V1 21 B DO-35 SCHOTTKY BAT, SD MARKING DO-35 1N4148 MARKING Marking: type and cathode Marking: type and cathode View from top BAT Cathode ring unwind Cathode ring unwind V BAT 1 85 4 8 s DO-35 ZENER BZX55 MARKING DO-35 ZENER
in „Suche Datenblatt zu S422“ · Mikrocontroller und Digitale Elektronik ·
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ISL88731.PDF
4.163 4.192 4.221 V -0.7 0.7 % Battery Undervoltage Lockout Trip Point for TriVFB rising 2.55 2.7 2.85 V Charge Battery Undervoltage Lockout Trip Point Hysteresis 100 250 400 mV CHARGE CURRENT REGULATION CSOP to CSON Full-Scale Current-Sense Voltage 78.22 80.64 83.06 mV Charge Current and Accuracy RS2
in „Chip gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PWM.pdf
Potentiometer P1 regulieren Sie sie Spannung am Ausgang der Schaltung. ◼ Stückliste R1 1k D1,D2 dioda BAT85, 1N4148 R2 47R D3 dioda 1N4007 R3 2,7k D4 dioda 1N5822 C1 10nF IC1 układ NE555 C2,C3 100nF IC2 Spannungsregler 7808L C4 470pF oder 1nF LED1 LED C5 470uF Elektrolytkondensator P1 Potentiometer 100K
in „Hilfe bei Schaltplan unstimmigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
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AiMS2000.pdf
NC D _ LED_1 67 P2.6/PCAP1.0/RI1/TRACECLK P0.30/USB_D- 30 VIN D3 V C L D 66 P2.7/CAN_RX2/RTS1 4 3 BAT60A + C L 65 2 1 SDA2 D1 64 P2.8/CAN_TX2/TXD2 BAT60A IN K OUT 53 P2.9/USB_CONNECT/RXD2 I2C0 SCL2 GND 52 P2.10/EINT0N/NMI IC3 C8 A CAN_STBY/3.4C 51 P2.11/EINT1N/I2STX_CLK SDA0/3.6A LD1117S33 100nF B 7
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Artikel_Flashboard.PDF
C9 P1.2 P3.2 18 17 COM1 P1.3 P3.3 +5V A8 16 15 RD A15 10µ P1.4 P3.4 D3 R5 A9 14 13 WR 63V P1.5 P3.5 BAT85 K A10 12 11 PSEN +5V 1 P1.6 P3.6 P1 A11 10 9 ALE P1.7 P3.7 8 C6 A12 8 7 +5V 11 A13 6 5 14 C3 14 K7 IC5.C 10k IC2 = 74HC126 IC2 IC5 & IC5.D & 100n A14 4 3 A15 2 1 IC5 = 74HCT00 7 100n 7 12 13 9 10
in „AT89C51AC2 ISP aber wie?“ · Mikrocontroller und Digitale Elektronik ·
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50002370A.pdf
connections between the RN4677 and FIGURE 2-2: EXTERNAL PROGRAMMING HEADER CONNECTIONS RN4677 Module BAT_IN GND LED1 J1 8 P24 7 GND SW_BTN P37 TXD 6 LDO33_O P36 5 RXD VDD_IO 4 5V_USB NC LDO18_O P34 3 EAN 2 BAT_IN 1 P20 WAKEUP P33 PMULDO_O P32 P04 P31 P15 P12/SCL TXD P13/SDA RXD 1 0 N / / _ T 0 T 2 2 A
in „[V] 2St. Microchip Bluetooth4.0 Module RN4677“ · Markt ·
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MT6252_Design_Notice.pdf
Copyright © MediaTek Inc. A30 rights reserved Reference design - Schematic IC Protection: PWRKEY and BAT_ON Please reserve 1k resistor on phone PCB to protect PWRKEY no matter if PWRKEY connect to any I/O connector or not. Please reserve 1k resistor on phone PCB to protect BAT O_ pin if BAT_ON is used
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