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ESP8266_1.txt
":"2023-12-13T21:04:22","Uptime":"0T00:23:49","UptimeSec":1429,"Heap":20,"SleepMode":"Dynamic","Sleep":50,"LoadAvg":19,"MqttCount":1,"Wifi":{"AP":1,"SSId":"Experimentelles Atomlabor","BSSId":"2C:91:AB:B7:E0:2E","Channel":11,"Mode":"11n","RSSI":100,"Signal":-48,"LinkCount":1,"Downtime":"0T00:00:03"}} 21:04:22.438 MQT: tele/tasmota_DA373B/SENSOR = {"Time":"2023-12-13T21:04:22","SML":{"Total_in":0.1264,"Total_out":0.0000,"Power_curr":0,"Meter_number":"090145425a010008ec4e"}} 21:04:35.425
in „eBZ Stromzähler liefert plötzlich keinen Verbrauch mehr“ · Haus & Smart Home ·
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ag172d.pdf
LED_G G GPIO_P06 27 R422 4.7K 1/16W R421 0 1/16W GPIO_P07 28 R423 4.7K 1/16W 29 Volume 1 ASM810MEURF-T PWM0/GPIO_P26 30 AUDIO_MUTE Reset GPIO_P13 31 AUDIO_STBY GPIO_P14 VCC3.3 Circuit 77 VCC3.3 GPIO_P10/I2C_MCL 76 N N N N N N GPIO_P11/I2C_MDA C425 G G G G G G 3 8 1 7 6 1 R424 R425 R426 U403 0.22uF R474
in „Geplatzte 25V-Elkos im 12V-Netzteil gegen 16V Low ESR austauschen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sound.c
libnerdkits/io_328p.h" #include "../mylibs/matrix_keypad_eval_brd.c" // Global Variables volatile uint8_t number; volatile uint8_t okay_button; volatile int32_t finish_count; volatile int32_t level_count = 0; volatile uint8_t lv1_var = 0; // Prototypes void play_tone(uint16_t, uint8_t); void play_button_ton
in „Ton hört sich an wie bei Slow Motion“ · Mikrocontroller und Digitale Elektronik ·
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4121_60503B.pdf
(0.25Hzto1kHz) 3to97%(0.25Hzto1kHz) 3to97%(0.25Hzto1kHz) 3to97%(0.25Hzto1kHz) 3to97%(0.25Hzto1kHz) t d 6to94%(1to10kHz) 6to94%(1to10kHz) 6to94%(1to10kHz) 6to94%(1to10kHz) 6to94%(1to10kHz) i i Resolution 4% 4% 4% 4% 4% V / Currentlevelhighrange 60-Arange: 10-Arange: 30-Arange: 120-Arange: 60-Arange:
in „Elektronische Last EA-EL 200“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tiny1.ino
)) #define N_256 (_BV(CS02)) #define N_1024 (_BV(CS02) | _BV(CS00)) static void setPrescaler(uint8_t mode) { cli(); CLKPR = bit(CLKPCE); CLKPR = mode; sei(); } uint8_t onoff = 1; volatile uint16_t seccount = 0; volatile uint16_t lastsec = 0; uint8_t daycount = 0; static void pwm_init(void) { DDRB |=
in „AtTiny13: Watchdog Interrupt dauert lange“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bus_Buffer_P82B96_4_datasheet.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 29 4 Philips Semiconductors
in „I2C EEPROM Störung bei 15m mit BusBuffer P82B96“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bus_Buffer_P82B96_4_datasheet.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 29 4 Philips Semiconductors
in „I2C EEPROM Störung bei 15m mit BusBuffer P82B96“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P82B86.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 26 4 Philips Semiconductors
in „Wie Die Richtung bei einem 2-Draht-Bus erkennen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bus_Buffer_P82B96_4_datasheet.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 29 4 Philips Semiconductors
in „Kondensatoren bei I2C + BusBuffer, wofür?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bus_Buffer_P82B96_4_datasheet.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 29 4 Philips Semiconductors
in „Kondensatoren bei I2C + BusBuffer, wofür?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
wechselrichter.c
Author: thomas */ #include <avr/io.h> #include <avr/pgmspace.h> #include <avr/interrupt.h> uint16_t sinuscount; const uint16_t sinus[] PROGMEM={0,8,16,24,31,39,47,55,63,70,78,86,94,101,109,116,124,132,139,147,154,162,169,176,184,191,198,205,212,220,227,233,240,247,254,261,267,274,280,287,293,300,306,312,318,324,330,336,342,347,353,358,364,369,374,379,384,389,394,399,404,408,413,417,421,425,430,433,437,441,445,448,452,455,458,461,464,467,469,472,475,477,479,481,483,485,487,489,490,492,493,494,495,496,497,497,498,498,499,499,499,499,499,498,498,497,497,496,495,494,493,492,490,489,487,485,483,481,479,477,475,472,469,467,464,461,458,455,452,448,445,441,437,433,430,425,421,417,413,408,404,399,394,389,384,379,374,369,364,358,353,347,342,336,330,324,318,312,306,300,293,287,280,274,267,261,254,247,240,233,227,220,212,205,198,191,184,176,169,162,154,147,139,132,124,116,109,101,94,86,78,70,63,55,47,39,31,24,16,8
in „Wechselrichter Sinus Form“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CNY17-2.pdf
s o r Package Dimensions (0.4”Lead Spacing) Recommended Pad Layout for O Surface Mount Leadform p t 0.350 (8.89) (White Package Only) o 0.320 (8.13) c PIN 1 ID o u l 0.260 (6.60) 0.070 (1.78) e 0.240 (6.10) s 0.060 (1.52) 0.070 (1.77) 0.040 (1.02) 0.014 (0.36) N 0.010 (0.25) L 0.425 (10.79) 0.100 (2.54) G T 0.305 (7.75) E 0.115 (2.93) 0.030 (0.76) S 0.100 (2.54) 0.015 (0.38) 0.100 [2.54] 0.012 (0.30) 0.016 (0.41) 0.008 (0.21) 0.425 (10.80) 0.400 (10.16) NOTE All dimensions are in inches (millimeters) 10
in „Optokoppler CNY17“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Viahay__BZX84.pdf
www.vishay.com/doc?91000 BZX84-Series www.vishay.com Vishay Semiconductors TYPICAL CHARACTERISTICS (T amb = 25 °C, unless otherwise specified) mA 3 Ω 10 100 TJ= 25 °C 10 2 5 4 IF 10 3 zj 33 T J 100 °C 2 1 22 10-1 10 T = 25 °C 18 J 10-2 15 4 -3 12 10 3 2 10 10-4 6.8/8.2 -5 6.2 10 1 0 0.2 0.4 0.6 0.8 1V
in „Spannungsteiler: niedrigere Ausgangsspannung bei 90 °C“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tlc1549_.pdf
at I/O CLOCK (see Note 3) 0 2.1 MHz Setup time, CS low before first I/O CLOCK⇓su(CS) (see Note 4) 1.425 s Hold time, CS low after last I/O CLOCK≠, t 0 ns h(CS) Pulse duration, I/O CLOCK high,wH(I/O) 190 ns Pulse duration, I/O CLOCK low,wL(I/O) 190 ns Transition time, I/O CLOCK,t(I/O)see Note 5 and Figure
in „10 Bit ADC (seriell) wie TLC1549 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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ppt_schematic.pdf
R22 .1uF 10k J2 21 3 Debug PIC16F873 4 RJ11 1 28 C16 5 Port 2MCLR RB7 27 .1uF 6 3RA0 RB626 4RA2 RB425 5RA3 RB324 R7 6RA4 RB223 47k 8RA5 RB121 9Vss RB020 5v 10OSC2 Vss 19 +V 11RC0 RC718 12RC1 RC617 U3 14RC2 RC515 C18 78M05 RC3 RC4 .1uF U8 1IN OUT3 U5 C20 J1 1 MAX232 16 .1uF COM XTAL1 2V++ Gnd15 5 9 2 3C1- T1o14 4 8 Serial 10uF 1uF R9 20Mhz C22 4C2+ R1i13 2 7 Port 10k C5 C6 .1uF 6C2- R1o11 1 6 20pF20pF 7V- T1i10 C19 8T2o T2i9 .1uF R2i R2o D7 R1k LED1 C21 2 1 .1uF D6 R12 LED1 1k 2 1 D5 U4 R15 LED1 1 2 Title
in „solar laderegler“ · Platinen ·
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PDF
Quarz_differentiell_152-01193-0-EG-2121CA.pdf
Offset Voltage VOS V 1.125 1.25 1.375 VOS1,VOS2 Change to V OS dV OS mV 150 dV OSV OS1- VOS2 Duty tw/t % 48 52 V version: <=175MHz at outputs crossing point 45 55 53.125M to 350MHz 40 60 >350M Output Rise time t ps 400 20-80% of V TLH OD Output Fall time tTHL ps 400 80-20% of V OD Phase Jitter *2 T PJ
in „Korrekter Abschluss differentieller Leitungen“ · Mikrocontroller und Digitale Elektronik ·
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K4B4G1646Q-Samsung.pdf
Preliminary Rev. 0.5 K4B4G1646Q datasheet DDR3LSDRAM 13.3.1SpeedBinTableNotes Absolute Specification {T OPER ; VDDQ = V DD = 1.35V(1.28V~1.45V) & 1.5V(1.425V~1.575V)}; NOTE : 1. The CL setting and CWL setting result in tCK(AVG).MIN and tCK(AVG).MAX requirements. When making a selection of tCK(AVG), both
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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Netzteile.pdf
n n . r t n t t t k 1 2 h / N T u A i i o o o e i i z i a z U U I P m B B A r B B B P 1 Netzteil Einbau AC/DC ESP500-27 230VAC 27V 18A 500W Lässt sichüberPoti einstellen 25,00€ 24Vmöglich 2 Netzteil Einbau AC/
in „Verkaufe Stromversorgungen, Bauteile u. Sonstiges“ · Markt ·
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Siba.pdf
A 10 160 A 2 125 A 2 0 100 A 6 80 A C D 50 A 63 A u u o c 35 A f l 30 A u s 25 A r s 20 A n r 16 A t m 10 0 4 A 10 A e c k h t 2 A 6 A l e t 10 -1 8 6 U 4 R 3 D D 2 C u a u c R - h g o a R f s -2 -1 0 1 2 3 u s 5 10 2 3 4 6 810 10 10 kA 10 10 r t 0 unbeeinflusster Kurzschlussstrom e o 0 prospective short-circuit-current (Sym. r.m.s.) n m V t 51 UR-Katalog / UR-Catalogue © 2014-04 SIBA GmbH • www.siba.de • info@siba.de
in „Sicherungen - Welches Abschaltvermögen braucht es für eine 230V Netzsicherungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
calculated for this example. t1 t2 t3 t4 Tmb 180 s 170 s 150 s 20 s 0 20 40 60 80 100 Repetitive δ 0.450 0.425 0.375 0.050 Fig. 13 Single Shot Pulse T=400 s Z 0.900 0.850 0.800 0.130 th Single Shot δ 0.000 0.000 0.000 0.000 T=∞ Zth
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
calculated for this example. t1 t2 t3 t4 Tmb 180 s 170 s 150 s 20 s 0 20 40 60 80 100 Repetitive δ 0.450 0.425 0.375 0.050 Fig. 13 Single Shot Pulse T=400 s Z 0.900 0.850 0.800 0.130 th Single Shot δ 0.000 0.000 0.000 0.000 T=∞ Zth
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
korgT3power.txt
Korg T1, T2, T3 Netzteil-Platine KLM-1376A 220/240V KK2494V-0 The difference between 1374 (110/120Vac Japan, UL), 1375 (117Vac CN China) and 1376 (220-240Vac UK, EU) is the white silkscreen printing and the
in „Benötige Hilfe bei Reparatur: Schaltnetzteil von Korg T3 Keyboard“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hdsp_a103.pdf
Hand Decimal S N100 20 mm Common Anode Left Hand Decimal Q N101 20 mm Common Anode Right Hand Decimal T N103 20 mm Common Cathode Right Hand Decimal U N105 20 mm Common Cathode Left Hand Decimal V N106 20 mm Universal ±1. Overflow W Note: 1. Universal pinout brings the anode and cathode of each segment
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Datei
korgT3power.txt
Korg T1, T2, T3 Netzteil-Platine KLM-1376A KLM1376 220/240V KK2494V-0 The difference between 1374 (110/120Vac Japan, UL), 1375 (117Vac CN China) and 1376 (220-240Vac UK, EU) is the white silkscreen printing
in „Benötige Hilfe bei Reparatur: Schaltnetzteil von Korg T3 Keyboard“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vti_sca100t-2.pdf
SCA100T Series Data Sheet THE SCA100T DUAL AXIS INCLINOMETER SERIES The SCA100T Series is a 3D-MEMS-based dual axis inclinometer family that provides instrumentation grade performance for leveling applications
in „MSP430 SPI 11BIT !?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCA100T_inclinometer_datasheet_8261800A.pdf
SCA100T Series Data Sheet THE SCA100T DUAL AXIS INCLINOMETER SERIES The SCA100T Series is a 3D-MEMS-based dual axis inclinometer family that provides instrumentation grade performance for leveling applications
in „HCS12 - SPI Schnittstelle programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCA100T_inclinometer_datasheet_8261800A.pdf
SCA100T Series Data Sheet THE SCA100T DUAL AXIS INCLINOMETER SERIES The SCA100T Series is a 3D-MEMS-based dual axis inclinometer family that provides instrumentation grade performance for leveling applications
in „SCA100T-D02 SPI Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt-1184984-stmicroelectronics-le50abz-ap-spannungsregler-linear-to-92-3-positiv-fest-100-ma.pdf
for TO-92 mechanical data mm. inch. Dim. Min. Typ. Max. Min. Typ. Max. A1 4.80 0.189 T 3.80 0.150 T1 1.60 0.063 T2 2.30 0.091 d 0.48 0.019 P0 12.5 12.9 0.492 0.508 P2 5.65 7.05 0.222 0.278 F1, F2 2.44 2.54 2.94 0.096 0.100 0.116 delta H ±2 0.079 W 17.5 18.00 19.0 0.689 0.709 0.748 W0 5.7
in „Spannungsregler Schaltung funzt nit?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HF152F_data_e.pdf
] 844T@B 844T@B.LM/ KYp2 koal[`af_ [mjj]fl 7 6269 427 72: 69 p .5 54,/ 64@ 5:@ KYp2 koal[`af_ hgo]j 8;44T@ 8444T@ 9 72<4 429 :24 ;4 p .5 54,/ K][`Yfa[Yd ]f\mjYf[] 5 p 54MNQ : 8294 42: ;26 544 p .5 54,/ 9 Dd
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PDF
4804.pdf
-600D T0505MH BT136-600E T410-600T 2N6405 TYN816 2N6504 TYN225 BT136-600F T410-600T 2N6505 TYN225 BT136-600G T435-600T BT136-700 T435-700T 2N6506 TYN225 2N6507 TYN425 BT136-700E T410-700T 2N6508 TYN625 BT136
in „Ersatztyp für Thyristo TYN408G“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Micrel.pdf
(Continued) MIC29152/302/502 MIC29153/303/503 5-Lead TO-220 Adjustable Voltage (T) 5-Lead TO-220 Adjustable with Flag (T) (Top View) (Top View) 5 ADJ 5 ADJ 4 OUT 4 OUT T 3 GND T 3 GND 2 IN 2 IN 1 EN 1 FLG MIC29751 MIC29150/300 3-Lead TO-263 (D Pak) (UT) 5-Lead TO-247 Fixed Voltage
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Bild
Offenes Elektronikgerät mit Leiterplatte und Elektrolytkondensator
6,3µF 425V~ 475V~ EN 60283-1 PIC16F877A-I/P MICROCHIP finder 11.9.012.0000 T29
in „BEST Dunstabzugshaube - kennt jemand die Platine und hat Unterlagen?“ · Haus & Smart Home · · Platinenfotos
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PDF
Heizleiterlegierungen-Handbuch-GER.pdf
t E ü s e a n r r e l t e d n F e e m a T ß x . d t n t m r h a ( R m c n m i a a M m n n t m n . 2 u u d . e .t ü r M l i t , g e t ß k e l l o p s 5 0 m m L t s h O ne s r p b m g n a o s m e r a 0 F
in „Heizelement aus Widerstandsdraht herstellen.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Configuration_adv.h
bang-bang control #if ENABLED(BED_LIMIT_SWITCHING) #define BED_HYSTERESIS 2 // Only disable heating if T>target+BED_HYSTERESIS and enable heating if T>target-BED_HYSTERESIS #endif #endif /** * Thermal Protection provides additional protection to your printer from damage * and fire. Marlin always includes
in „Marlin 2.0.72 lässt sich nicht compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM94022.pdf
Unless otherwise noted, these specifications apply for +V= +1.5V to +5.5V. Boldface limits apply for T = T = T to 2 DD A J MIN L TMAX ; all other limitA T =JT = 25°C. M Symbol Parameter Conditions Typical Units 9 Limits (Note 7) 4 (Note 6) (Limit) 0 2 Sensor Gain GS1 = 0, GS0 = 0 -5.5 mV/°C Q GS1 = 0,
in „Suche nach einem Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Liste integrierter Schaltungen mit Typenbezeichnungen
Integrated circuits: 1710.605 IC A MC 120 18 P MOTOROLA 1826.425 IC B T8 B 146 SIEMENS 1865.323 IC C MC 120 09 MOTOROLA 1398.393 IC D 1336.193 IC E 74 LS 08 N 1570.676 IC F 74 LS 393 P 1665.030 IC G 74 NC 08 1570.676 IC H 74 LS 393 P 1847.740 IC J TCXO 10 MHz 97
in „Controller PLL TBB146“ · Markt · · Screenshots
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PDF
MT6252_Design_Notice.pdf
1.1A LOUD SPEAKER C61 100p LS2 2 SPKP0 B B L8 BLM18PG221SH1 2 SPKN0 A A L10 BLM18PG221SH1 C54 C55 T T 33p 33p 8 8 REC C C 0 V 0 V 1 1 M M T4 T5 7FOEPS 1▯/ 3ED PIN 3BUF▯DVSSFOU N" #-.▯▯1(▯▯▯4)▯ ▯▯▯ ▯▯▯▯ #-.▯▯1%▯▯▯4/▯ ▯▯▯▯ ▯▯▯▯ #-.▯▯,(▯▯▯4/▯ ▯▯▯▯ ▯▯▯▯ .VSBUB #-.▯▯,(▯▯▯4/▯ ▯▯▯▯ ▯▯▯▯ #-.▯▯4(▯▯▯5/▯ ▯▯▯▯
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR2130.pdf
Test Conditions ton Turn-On Propagation Delay 11 500 675 850 toff Turn-Off Propagation Delay 12 300 425 550 VIN= 0 & 5V r Turn-On Rise Time 13 — 80 125 VS1,2,3 0 to 600V tf Turn-Off Fall Time 14 — 35 55 t ITRIP to Output Shutdown Prop. Delay 15 400 660 920 ns V , V = 0 & 5V itrip IN ITRIP bl ITRIP Blanking
in „Wie gross muss C für Ladungspumpe IR2130 sein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
= 0.015 for T 100 ms T = 1/ of pulse width (seconds) = 0.02 for 100 ms > T 1000 ms (7) = (LC) 0.5 = 0.025 for T > 1000 ms 0.5 2 (8) total pulse duration = 3(LC) at 10% current points A = cross sectional area of lamp
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
= 0.015 for T 100 ms T = 1/ of pulse width (seconds) = 0.02 for 100 ms > T 1000 ms (7) = (LC) 0.5 = 0.025 for T > 1000 ms 0.5 2 (8) total pulse duration = 3(LC) at 10% current points A = cross sectional area of lamp
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bd139.pdf
Collector Current 1.5 A C ICM Collector Peak Current 3 A IB Base Current 0.5 A P tot Total Dissipation ac T 25 C 12.5 W o P tot Total Dissipation aamb 25 C 1.25 W T stg Storage Temperature -65 to 150 C o Tj Max. Operating Junction Temperature 150 C September 2001 1/4 BD135 / BD139 THERMAL DATA R thj-caseThermal Resistance Junction-case Max 10 oC/W o ELECTRICAL CHARACTERISTICS (T case= 25 C unlessotherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit CBO Collector Cut-off V CB= 30 V 0.1 A Current (E = 0) V CB= 30 V TC= 125 Co 10 A EBO Emitter Cut-off Current
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Datei
code.c
T State5=T State4=T State3=T State2=T State1=T State0=T PORTC=0b00000000; DDRC= 0b00001111; // Port D initialization // Func7=In Func6=In Func5=In Func4=In Func3=In Func2=In Func1=In Func0=In // State7=T State6=T State5=T State4=T State3=T State2=T State1=T State0=T PORTD=0b10001100; DDRD=0b01110001; // Timer/Counter 0 initialization // Clock source: System Clock // Clock value: Timer 0 Stopped TCCR0
in „C-Datei in hex“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Smart_Switch.pdf
-0.5V Data Hold Time tDHD 50ns Low Level Output Voltage VOL OL = 500µA 0.5V Data Output Delay Time tPDO 25ns High Level Output Latch Setup Time tDSL 50ns Leakage Current LOH VO= V DD 10µA Latch Hold Time tDHL 50ns Low Level Output Leakage Current I V = 0V –10µA Latch High Level Width t 200ns LOL O LWH Supply Current I f = 1.0MHz 500µA FLM Setup Time t 50ns DD SCP DSF LCD Drive Current I 500µA 2,000µA FLM Hold Time t 50ns LC LP= 2.4kHz DHF V = 7.4V SCP, LP Rise/Fall Time t /t 15ns LC
in „[V] 4 Stück Smart Switch“ · Markt ·
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LCW_CQ7P.CC.pdf
lt airce ae 0 ˚ O S emic CHNO 1 234 TY:20 Ni s InO R S % r ik0 a f< 3 S P)BAT 23G H (Q) IO nta SITC T < 9 ed poea n s o r ). ours r ( NO:1 425 U Tg c SE NoDU a d j ci ( ditgn ˚C, o cod e 2 H H ouou rsrs 1T)LOT 100 1 M A s bUiR IC OE ˚C scbes co n ± 5 ate e 7 48 4 H H o u ( NO:1 C T ISTS EM 0 lb p<.i
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Abracon-32k.pdf
25°C ppm -30 ----- +30 Other frequencies Capacitance Ratio (C0/C1) ----- 450 ----- 32.768kHz ----- 425 to 800 ----- Other frequencies Frequency Coefficient (ß) -0.035±0.01 ppm/ºC 2 Equivalent series resistance (R1) ----- ----- 50 k ----- 1.35 ----- pF 32.768kHz Shunt capacitance (C0) 0.8 to 1.7 pF Other
in „Welches Bauteil ist das? Antennenmessgerät Kathrein MSK 120“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_HIP_4081A.pdf
BHS NO-LOAD CHARGE PUMP FIGURE 11. UPPER DISABLE TURN-OFF PROPAGATION VOLTAGE vs TEMPERATURE DELAY T DISHIGHvs TEMPERATURE 525 80 s ) 70 (500 n Y Y L A E E 60 D D N N T475 I A A G G 50 P A O O P450 R P 40 425 30 -50 -25 0 25 50 75 100 125 150 -40 -20 0 20 40 60 80 100 120 JUNCTION TEMPERATURE (°C) JUNCTION TEMPERATURE (°C) FIGURE 12. DISABLE TO UPPER ENABLE, T UEN, FIGURE 13. LOWER DISABLE TURN-OFF PROPAGATION PROPAGATION DELAY vs TEMPERATURE DELAY T DISLOW vs TEMPERATURE 450 80 ) 70 s s ( 425 ( H Y 60 T L I E W N S 400 O 50 L T P A H A 40 S P R 375 R F P
in „HIP 4081 Verständnisprobleme“ · Mikrocontroller und Digitale Elektronik ·
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HSMS282x.PDF
ESD WARNING: Handling Precautions Should Be Taken To Avoid Static Discharge. 4 Typical Performance, T = 25 °C (unless otherwise noted), Single Diode C 100 100,000 1 T = +125°C ) A A TA = +75°C ) ( TA = +25°C )0,000 F 0.8 N 10 T = –25°C A ( E A ( E R T1000 N 0.6 U E A C 1 R I D R A A C 100 P 0.4 W E C
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AO4459.pdf
Characteristics (Note E) Figure 2: Transfer Characteristics (Note E) 80 1.8 e V GS10V 70 n ID=-6.5A t1.6 60 VGS-4.5V i ) e m 50 -1.4 17 ) n ( d 5 D 40 z1.2 VGS-425V R l D =-5A 30 m 10 VGS-10V o 1 20 N 10 0.8 0 2 4 6 8 10 0 25 50 75 100 125 150 175 -D (A) Temperature (°C) 0 Figure 3: On-Resistance vs.
in „P-Mosfet sperrt nicht“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Leiterplatten-Layout einer Platine
1 2 3 A B L100 C171 TP172 C208 L105 T225 CR149 CR253 R202 Q205 CR246 CR261 C275 C277 R278 C279 G2 R311 CR205 C306 C320 R234 R238 C248 C258 R352 E269 Focus TP352 C362 R353 R392 R395 R374 C390 R346 L354 C365 F1 R340 C342 U438 C346 C340 C330
in „Tektronix TDS 510A CRT Video Display Unit defekt“ · Analoge Elektronik und Schaltungstechnik · · Layouts
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Produktdatenblatt__4114_N_2H4P.pdf
N F Blockierschutz Elektronischer Wiederanlauf Blockierstrom bei U N Iblocka. 800 mA Blockiertakt t3/ 4 typisch: 0,5 s / 5,0 s Der Blockierstrom ist als Peak-Strom angegeben. Blockierstrom @ 24 V (I = 200mA/div ; t = 1s/div) 10.05.2017 Seite 7 von 12 Produktdatenblatt 4114 N/2H4P Anlaufstrom @ 24 V (I = 500mA/div ; t = 2s/div) Laufstrom @ 24 V (I = 500mA/div ; t = 1ms/div) Interne Sicherung: Littelfuse NANO2(R) FUSE; Very fast acting 451 Series; 3 A (Art.-Nr.: 451003.MRL) 10.05.2017 Seite 8 von 12 Produktdatenblatt
in „Ansteuerung / Strombegrenzung PWM Lüfter“ · Analoge Elektronik und Schaltungstechnik ·