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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „ATmega328p fehlerhafte UART-Anzeige mit bootloader“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „UART mit Atmega8 (Peter Fleury Library)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „AVR bootloader Probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „UART Bibliothek funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „AVR Bootloader in C - Artikel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
153157-da-01-en-TRANSISTOR_AF_BC847_B_SOT_23__INF.pdf
I CBO = ƒ(T )A IC = ƒ(V BEsat), hFE = 20 VCB = 30 V 102 EHP00364 104 EHP00415 nA ΙC mA ΙCB0 100 C max 25 C 103 -50C 101 5 5 typ 102 5 100 101 5 5 10 -1 100 0 0.2 0.4 0.6 0.8 V 1.2 0 50 100 ˚C 150 V BEsat TA 5 2011-09-09 BC847...-BC850... Transition frequency f = ƒ(I )T C Collector-base capacitance
in „Check Transistorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tsc2003.pdf
3.4MHz ) ) 900 A A (200 t 800 n n 700 r r u150 u 600 Fast Mode = 400kHz y Fast Mode = 400kHz y 500 p p u100 u 400 Standard Mode = 100kHz S S 300 50 200 Standard Mode = 100kHz 100 0 0 –40 –20 0 20 40 60 80 100 2.5 3.0 3.5 4.0 4.5 5.0 5.5 Temperature (°C) VDD(V) 2 SUPPLY CURRENT vs I C BUS FREQUENCY SUPPLY
in „Touchscreen Controller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLU2905.pdf
OPERATION IN THIS AREA LIMITED BY R (on) ) DS A ( t100.0 t 100 e e r TJ= 175°C u C C i c r 10.0 u 10 D o 100µsec s o e TJ= 25°C - e a R D 1 1msec D 1.0 , I I Tc = 25°C 10msec Tj = 175°C V GS = 0V Single Pulse 0.1 0.1 0.2 0.6 1.0 1.4 1.8 2.2 1 10 100 1000
in „Batterieschutzschaltung. Murks oder möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Ausschnitt aus einem Datenblatt mit elektrischen Kennwerten
Characteristics @ TJ = 25°C (unless otherwise specified) Parameter Min. Typ. Max. Units Conditions V(BR)DSS Drain-to-Source Breakdown Voltage 100 — — V VGS = 0V, ID = 250µA ΔV(BR)DSS/ΔTJ Breakdown Voltage Temp. Coefficient — 0.11 — V/°C Reference to 25°C, ID = 1mA RDS(on) Static Drain-to-Source On-Resistance
in „Umsetzung eines 5V Output mit ESP32 und AQY Halbleiterrelais“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
RFM12BPCmd.h
mode is determined by the 7-bit parameter R (bits r6 to r0) and bit cs. // BR = 10000 / 29 / ( R + 1) / (1 + cs * 7) [kbps] // In the receiver set R according to the next function: // R = (10000 / 29 / (1 + cs * 7) / BR) 1, where BR is the expected bit rate in kbps. // Appart
in „Rfm12B 686Mhz Bascom Testprogramm.“ · HF, Funk und Felder ·
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PDF
ltc6812-1.pdf
4mV 10 Bits P-P 14kHz ±1mVP-P 12 Bits 7kHz (Normal) ±250μVP-P 14 Bits 3kHz –0.8192V to 0.5V to 4.5V 100μV Unsigned ±150μVP-P 14 Bits 2kHz 5.7344V 0V to 5V 16 Bits ±100μVP-P 15 Bits 1kHz ±100μVP-P 15 Bits 422Hz ±100μVP-P 15 Bits 26Hz (Filtered) ±50μV 16 Bits P-P 1. Negative readings are rounded to 0V.
in „Differenzverstärker INA105“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet_TMS37F158.pdf
256-byte RAM User data flash memory 256-byte information memory Flash program and erase endurance 100 000 cycles (typ) Flash data retention 100 years (min) Program, erase, read supply voltage 2.7 V (min) I/O ports 12 Operating temperature -40 to 85°C Package 30-pin TSSOP (DBT) Copyright © 2012, Texas
in „Datenblatt für IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8312.pdf
2010–REVISED JANUARY 2014 GVDD PVDD 1 mF 330 mF DRV8332 3.3 1000 mF 1mF GVDD_B GVDD_A 10 nF OTW BST_A 100 nF FAULT PVDD_A Loc PWM_A OUT_A Rsense_A 100nF RESET_A GND_A Rsense_B M Controller PWM_B GND_B Roc_adj Loc (MSP430 OC_ADJ OUT_B C2000 or 1 GND PVDD_B Stellaris MCU) AGND BST_B 100 nF 100nF 100 nF VREG
in „Versorgung von BLDC für Logic“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm5026.pdf
Overlap Time vs vs R SET Temperature 400 120 350 115 R SETto AGND ) 300 110 ( s E 250 ( 105 I M T 200 T 100 P A L R E 150 V 95 V O O 100 90 RSET = 34.8 k: 50 85 0 80 0 20 40 60 80 100 120 -50 -25 0 25 50 75 100 125 150 RSET (k:) TEMPERATURE ( C)o Deadtime Deadtime vs vs R SET Temperature 400 120 115 350 RSETto REF 300 110 ) ) ( 250 n 105 E E I I T 200 T 100 A A E 150 D 95 D 100 90 RSET = 30.0 k: 50 85 0 80 0 20 40 60 80 100 120 -50 -25 0 25 50 75 100 125 150 RSET (k:) TEMPERATURE ( C)o Max Duty Cycle Max Duty Cycle vs vs UVLO DCL 100 100 90 90 DCL = 2.5V
in „.lib datei einbinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Modeling_BJTs_in_Multisim.pdf
Model parameters Description Units Default AF flicker noise exponent 1.0 BF ideal maximum forward beta 100.0 BR ideal maximum reverse beta 1.0 CJC base-collector zero-bias p-n capacitance farad 0.0 CJE base-emitter zero-bias p-n capacitance farad 0.0 CJS (CCS) substrate zero-bias p-n capacitance farad 0.0
in „Frage zu LTspice, Bauteile selber erstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KB.pdf
Characteristic Symbol Min Max Unit OFF CHARACTERISTICS Collector–Emitter Breakdown Voltage (Note 3.) V Vdc (BR)CEO (C = 10 mAdc, B = 0) 80 – Collector–Base Breakdown Voltage V (BR)CBO Vdc (C = 100 Adc, E = 0) 80 – Emitter–Base Breakdown Voltage (I = 10 Adc, I = 0) V 6.0 – Vdc E C (BR)EBO Collector Cutoff Current
in „Unbekanntes Bauteil - Aufschrift KB50“ · Mikrocontroller und Digitale Elektronik ·
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PDF
085cs.pdf
DESCRIPTION 10 F/16 V; −10/+50% C n p Nominal case size: 11.9 × 3.7 × 3.9 mm; h u n CR rated capacitance at 100 Hz (tolerance −10 to +50% or ±20%) i m e I rated RMS ripple current at 100 Hz, 85 °C Form BR ) e s R Catalogue number: 2222 085 25109. S l L1 max. leakage current after 1 minutR at U t c I max. leakage
in „Tantal vs Kerko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
, S = ±15V, unless otherwise noted. GAIN vs FREQUENCY COMMON-MODE REJECTION vs FREQUENCY 140 ) G = 100, 1k d120 1k ( G = 10 i 100 c G = 1k V100 j V R 80 G = 100 ( e a o 60 G 10 - n G = 10 m 40 m 1 o G = 1 C 20 0 10 100 1k 10k 100k 1M 10 100 1k 10k 100k 1M Frequency (Hz) Frequency (Hz) INPUT COMMON-MODE
in „Differnezverstärker für Strommessung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
, S = ±15V, unless otherwise noted. GAIN vs FREQUENCY COMMON-MODE REJECTION vs FREQUENCY 140 ) G = 100, 1k d120 1k ( G = 10 i 100 c G = 1k V100 j V R 80 G = 100 ( e a o 60 G 10 - n G = 10 m 40 m 1 o G = 1 C 20 0 10 100 1k 10k 100k 1M 10 100 1k 10k 100k 1M Frequency (Hz) Frequency (Hz) INPUT COMMON-MODE
in „Messen von Mikrofonpegeln“ · Mikrocontroller und Digitale Elektronik ·
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Datei
web_services.cpp
validateForm()' action = '/handleupload' enctype='multipart/form-data'> <input type='file' name='filename'><br><br> <input class="btnClass" type='submit' value='Konfiguration laden'> </form> <form method='GET' action='/downloadconfig'> <input class="btnClass" type='submit' value='Konfiguration speichern'> </form
in „Absturz beim ESP8266“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMP006_IR_temperatur_I2C__sbos518.pdf
BUF condition Hold time after repeated START condition. HDSTA After this period, the first clock is 100 100 ns generated. SUSTA Repeated START condition setup time 100 100 ns SUSTO STOP condition setup time 100 100 ns (1) (2) HDDAT Data hold time 0 0 ns t Data setup time 100 10 ns SUDAT LOW SCL clock
in „Temperaturfühler TMP006 von T, wie anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tmp006.pdf
BUF condition Hold time after repeated START condition. HDSTA After this period, the first clock is 100 100 ns generated. SUSTA Repeated START condition setup time 100 100 ns SUSTO STOP condition setup time 100 100 ns (1) (2) HDDAT Data hold time 0 0 ns t Data setup time 100 10 ns SUDAT LOW SCL clock
in „Temperaturfühler TMP006 von T, wie anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TB12To5.pdf
MJC=0.2955 XCJC=0.6193 TR=1E-32 CJS=0 + VJS=0.75 MJS=0.333 FC=0.9579 Vceo=45 Icrating=100m + mfg=Philips) .model BC327 PNP( + IS=2.69972e-13 BF=255 NF=1.02306 VAF=10 IKF=1.61069 + ISE=1.54904e-10 NE=2.52512 BR=2.08944 NR=1.06916 VAR=100 + IKR=10 ISC=8.82272e-11 NC=3.4075 RB=5.73192 IRB=0.1
in „Diskreter DC/DC-Wandler in LtSpice“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
usart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „ISR Code schneller machen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS-TWN4-MultiTech-LEGIC-42_DocRev14.pdf
°C (-49 °F up to +185 °F) RELATIVE HUMIDITY 5% to 95% non-condensing READ- / WRITE DISTANCE Up to 100 mm / 4 inch, depending on environment and transponder OPERATING MODES (USB) USB keyboard emulation – USB virtual COM port – CCID / PC/SC 2.01 MTBF 500,000 hours WEIGHT PCB approx. 12 g / 0.43 oz (no
in „Erbitte Hilfe bei RFID Projekt Tierchip von Streunerkatzen auslesen“ · Offtopic ·
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PDF
RFM12B.pdf
Quality factor of the output In 433 MHz band 13 15 17 capacitance In 868 MHz / 915 MHz bands 8 10 12 100 kHz from carrier, in 868 MHz band -80 Lout Output phase noise dBc/Hz 1 MHz from carrier, in 868 MHz band -103 BR TX FSK bit rate Via internal TX data register 172 kbps BRA TX FSK bit rate TX data connected
in „Verkaufe Hoperf - 10 rfm12b und 2 rfm12bp 868 MHz“ · Markt ·
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Datei
CAN_Init.c
**************************************************************/ void set_can_baudrate(unsigned int br) // Werte sind für F_OSZ = 16 MHz! { switch(br) { case 1000: CANBT1 = 0x00; // 1000 kBit/s = 1 MBit/s break; case 500: CANBT1 = 0x02; // 500 kBit/s break; case 250: CANBT1 = 0x06; // 250 kBit/s break; case 200: CANBT1 = 0x08; // 200 kBit/s break; case 125: CANBT1 = 0x0E; // 125 kBit/s break; case 100: CANBT1 = 0x12; // 100 kBit/s break; case 83: CANBT1 = 0x16; // 83,333 kBit/s break; case 50: CANBT1 = 0x26; // 50 kBit/s break; case 33: CANBT1 = 0x3A; // 33,333 kBit/s break; case 25: CANBT1 = 0x4E
in „AT90CAN128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRFR2307Z.pdf
e 5.5V e 5.5V u 5.0V u 100 5.0V C BOTTOM 4.5V C BOTTOM 4.5V c c u u o 10 S o o - - a a 10 4.5V D D , 1 4.5V , ID ID ≤60µs PULSE WIDTH ≤60µs PULSE WIDTH Tj = 25°C Tj = 175°C 0.1 1 0.1 1 10 100 0.1 1 10 100 V , Drain-to-Source
in „MOSFET IRFR2307Z“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
snlu184.pdf
Type B, R/A, Top Mount SMT B J2, J3 2 Header, 100mil, 4x1, Gold, TH 4x1 Header TSW-104-07-G-S Samtec J4 1 Header, 100mil, 3x1, Gold, TH 3x1 Header TSW-103-07-G-S Samtec MOSFET, N-CH, 50 V, 0.22 A, Fairchild Q1 1 50V SOT-23 BSS138 SOT-23 Semiconductor
in „Tastatur komplett selbst erstellen“ · PC Hard- und Software ·
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PDF
BCR562-INF.pdf
Symbol Values Unit min. typ. max. DC Characteristics Collector-emitter breakdown voltage V 50 - - V (BR)CEO IC = 100 µA, B = 0 Collector-base breakdown voltage V (BR)CBO 50 - - I = 10 µA, I = 0 C E Collector-base cutoff current ICBO - - 100 nA VCB = 50 V, E = 0 Emitter-base cutoff current IEBO - - 1.61
in „BRC562 direkt an uC“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Nahaufnahme einer bestückten grünen Leiterplatte
, R14, R13, R12, R11, R10, R9, R8, R7, R6, R5, R4, R3, R2, R1, U35, U39, TP15, TP11, D5, D6, Q6, FP100BR5, FP100BR5, R220, R220
in „10W Bitcoin miner mit 450GH/s für Raspberry Pi“ · Projekte & Code · · Platinenfotos
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PDF
DSA-461964.pdf
/ 20 100 Q , ACTIVE REGION d @ VBE(off) 0 V 50 A CHARGE ALL TYPES 1 2 10 20 3.0 5.0 10 20 30 50 100 200 300 3.0 5.0 7.0 10 20 30 50 70 100 200 300 P IC, COLLECTOR CURRENT (mA) IC, COLLECTOR CURRENT (mA) I Figure
in „Alternative/Vergleichstyp zu 2N5109“ · HF, Funk und Felder ·
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PDF
mmbt4401-d.pdf
Symbol Parameter Conditions Min. Max. Unit M M V Collector-Emitter Breakdown I = 1.0 mA, I = 0 40 V B (BR)CEO Voltage(5) C B T 4 V Collector-Base Breakdown I = 0.1 mA, I = 0 60 V 0 (BR)CBO Voltage C E 1 — V(BR)EBO Emitter-Base Breakdown Voltage IE= 0.1 mA, C = 0 6.0 V BL Base Cut-Off Current VCE = 35 V,
in „moderner Ersatztyp für BC550 Audio low noise gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IA4421-DS.pdf
Quality factor of the output In 433 MHz band 13 15 17 capacitance In 868 MHz / 915 MHz bands 8 10 12 100 kHz from carrier, in 868 MHz band -80 Lout Output phase noise dBc/Hz 1 MHz from carrier, in 868 MHz band -103 BR TX FSK bit rate Via internal TX data register 172 kbps BRA TX FSK bit rate TX data connected
in „Software SPI zur Chip Konfig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si_4421__RFM12B_.pdf
Quality factor of the output In 433 MHz band 13 15 17 capacitance In 868 MHz / 915 MHz bands 8 10 12 100 kHz from carrier, in 868 MHz band -80 Lout Output phase noise dBc/Hz 1 MHz from carrier, in 868 MHz band -103 BR TX FSK bit rate Via internal TX data register 172 kbps BRA TX FSK bit rate TX data connected
in „RFM12b ideale Konfiguration“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_FET-N__JCET_AO3400.pdf
Paramete r Symbol Test Condition Min Typ Max Unit Off Characteristics Drain-sourcebreakd own voltage V(BR) DSS VGS = 0V, D= 250µA 30 V Zero gate volage drain current IDSS VDS =24V,V GS= 0V 1 µA Gate-source leakage current IGSS VGS =±12V, VDS = 0V ±100 nA On ch aracteristics VGS =10V, D =5.8A 35 mΩ Drain-source
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PDF
bmpm_v2_1c_schematic.pdf
xTPWR TDO 1 a 4 2 7 0 1 TCK 1 P14 P BYP 1A 1B 1 R 1 6 P15 i A 3 EN GND 2 C9 iTXD 3 2A 2B 6 xTXD PWR_BR Q1 TMS 1 P16 p A C2 C4 5 DIR GND 4 xTPWR DMG1023UV-7 TXD 1 g 4u7 U2 C12 4 3 RXD 1 P17 P 10n 4u7 10k P18 0 1 74LVC2T45 100n 5 1 P19 1 C U5 R7 PWR_FLAG 1 8 xTPWR xRST iRST_SENSE VCCA VCCB GND iSWCLK iTCK
in „MOSFET Ersatztypen für DMG1024 u. DMG1023 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
_100us(); delay_100us(); delay_100us(); delay_100us(); delay_100us(); delay_100us(); delay_100us(); } /**************************************************/ void delay_10ms(void) { delay_1ms(); delay_1ms()
in „DOGM162 an MSP430F1232 betreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bild_Entstoerung.htm
css&maxage=18000"; /*]]>*/</style> </head> <body class="ns-6"> <table class="phpbb2bodyline" width="100%" cellspacing="0" cellpadding="0" border="0"><tr> <td> <table class="phpbb2topbkg" width="100%" cellspacing="0" cellpadding="0" border="0"> <tr> <td><a href="http://www.roboternetz.de/phpBB2/index.php
in „Wandler 24V / 220 V Schaltungsinterpretation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD_Catalog.pdf
Phi P SOT89 pnp 70V 1A 1.35W hfe 40-120 BR2 BSR31 Phi P SOT89 pnp 70V 1A 1.35W hfe 100-300 BR4 BSR33 Phi P SOT89 pnp 90V 1A 1.35W hfe 100-300 BS BCW61DR Phi R SOT23 BCY78-x BS BZX399C22 Phi I SOD323 22V 0.3W zener BS 2PB709AS Phi N SC-59 pnp
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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PDF
AN-1819.pdf
TABLE 1. Bill of Materials - N Qty Reference Value Device Part Number Manufacturer A 2 C1, C2 2.2 µF, 100V, X7R SMD 1812 C4532X7R2A225KT 3 C3, C4, C5 2.2 µF, 100V, X7R SMD 1812 C4532X7R2A225KT TDK 2 C6, C8 0.1 µF, 100V, X7R SMD 0805 GCM21BR72A104KA37L MURATA 2 C7, C20 1 µf, 25V, X7R SMD 0805 GCM21BR71E105KA56L
in „Bitte um Hilfe beim Layout Buck-Boost LM5118“ · Platinen ·
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PDF
MRF150.pdf
Characteristic Symbol Min Typ Max Unit OFF CHARACTERISTICS Drain–Source Breakdown VoltagGS(= 0,DI = 100 mA) V (BR)DSS 125 — — Vdc Zero Gate Voltage Drain CurrDSt= 50 V,GS = 0) DSS — — 5.0 mAdc Gate–Body Leakage CurrentGSV= 20 V, DS = 0) GSS — — 1.0 Adc ON CHARACTERISTICS Gate Threshold Voltage (= 10 V
in „Wärmeleitpad gesucht für POWER FET MRF150“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „AVR Bootloader in C, geht mit mega8 nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
I2CwithISR.c
// master, i2c, synchron UCB0CTL1 = UCSSEL_2 + UCSWRST; // SMCLK = 1.1MHz, usci immer noch auf UCB0BR0 = 11; // SMCLK = 1.1 MHz/11 ~ 100kHz UCB0BR1 = 0; // ... UCB0I2COA = 0x43; // msp addr UCB0CTL1 &= ~UCSWRST; // usci zu } else if(sensor==1){ //SHT21 // wird direkt über vcc und gnd versorgt P3SEL |
in „msp430f2274 bmp085 i2c ohne interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uln2003lv.pdf
nA OUTPUTS OUT1 THROUGH OUT7 PARAMETERS V = 3.3 V, I = 50 mA 0.17 0.24 INX OUTX VINX= 3.3 V, OUTX = 100 mA 0.36 0.49 VOL(VCE-SAT) OUT1–OUT7 low-level output voltage V VINX= 5.0 V, OUTX = 100 mA 0.26 0.42 VINX= 5.0 V, OUTX = 140 mA 0.40 OUT1–OUT7 ON-state continuous current (1) (2) VINX= 3.3 V, VOUTX =
in „PCF8574 ULN2003 Relais Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
part-db.diff
(best_r2, 2); + document.getElementById("ratio_error").firstChild.nodeValue = round((best_error-1)*100, 2); +} Index: tools/rechner.php =================================================================== --- tools/rechner.php (Revision 516) +++ tools/rechner.php (Arbeitskopie) @@ -6,14 +6,14 @@ <link
in „PART-DB RW 1.2“ · Projekte & Code ·
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PDF
DS_SX1261-2_V1.1-1307803.pdf
3-8: Receive Mode Specifications Symbol Description Conditions Min Typ Max Unit Sensitivity 2-FSK, BR_F = 0.6 kb/s, FDA = 0.8 kHz, BW_F = 4 kHz - -125 - dBm RXBoostedgain,seeSection 9.6 BR_F = 1.2 kb/s, FDA = 5 kHz, BW_F = 20 kHz - -123 - dBm RXS_2FB "Receive(RX)Mode"onpage57, BR_F = 4.8 kb/s, FDA =
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PDF
2N4403-82294.pdf
Min. Max. Unit M M Off Characteristics B T V Collector-Emitter Breakdown I = -1.0 mA, I = 0 -40 V 4 (BR)CEO Voltage(5) C B 0 3 V Collector-Base Breakdown I = -0.1 mA, I = 0 -40 V — (BR)CBO Voltage C E P V (BR)EBO Emitter-Base Breakdown Voltage E = -0.1 mA, C = 0 -5.0 V N IBL Base Cut-Off Current VCE =
in „moderner Ersatztyp für BC550 Audio low noise gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
P0603BDL.pdf
P0603BDL N-Channel Enhancement Mode MOSFET PRODUCT SUMMARY V (BR)DSS RDS(ON) ID 25V 6.8mΩ @V = 10V 68A GS TO-252 ABSOLUTE MAXIMUM RATINGS (T = 25 ° C Unless Otherwise Noted) A PARAMETERS/TEST CONDITIONS SYMBOL LIMITS UNITS Drain-Source Voltage VDS 25 Gate-Source Voltage VGS ±20 V TC= 25 °C 68 Continuous Drain Current D TC= 100 °C 43 2 I A Pulsed Drain Current DM 160 Avalanche Current IAS 52 Avalanche Energy L = 0.3mH EAS 135 mJ Power Dissipation TC= 25 °C P 50 W T = 100 °C D 20 C Junction & Storage Temperature Range TJ, STG
in „Am3 Mainboard Vcore instabil wenn kalt“ · PC Hard- und Software ·
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guedeAnleitung05305_ml.pdf
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