-
PDF
InduktveFunkAnwendgVfg1_2010Aendrg4_2010_280410pdf.pdf
Funkanwendungen“, veröffentlicht im Amtsblatt der Regulie- rungsbehörde für Telekommunikation und Post (Reg TP) Nr. 1/05 vom 12.01.05, S. 3, geändert durch die Amtsblattverfügung 39/2005, Amtsblatt Nr. 11/05 vom 15.06.05, S. 946, wird aufgehoben. 1. Frequenznutzungsparameter Frequenzbereich Maximale magnetische
in „RFID Spulen für Leistungsübertragung?“ · HF, Funk und Felder ·
-
PDF
InduktveFunkAnwendgVfg1_2010Aendrg4_2010_280410pdf.pdf
Funkanwendungen“, veröffentlicht im Amtsblatt der Regulie- rungsbehörde für Telekommunikation und Post (Reg TP) Nr. 1/05 vom 12.01.05, S. 3, geändert durch die Amtsblattverfügung 39/2005, Amtsblatt Nr. 11/05 vom 15.06.05, S. 946, wird aufgehoben. 1. Frequenznutzungsparameter Frequenzbereich Maximale magnetische
in „Frage zur Frequenzzuteilung bei 125kHz / Pegelabsenkung pro Oktave > 30kHz“ · HF, Funk und Felder ·
-
PDF
ac_ac-at_ac-ni.pdf
SERIES (t = pulse duration; t = repetition time) i p 10 000 10 000 ) ) t /t = 1000 ( ( p i R10 x x a tp i = 1000 1R0 a 1R0 ˆP 1000 ˆPm1000 p it = 200 10R R10 110R tp i = 200 10R 4K7 100R p it = 50 100 2K0 100 tp i = 50 p it = 10 t /t = 10 10 p i 10 t /t = 2 p i tp i = 2 1 1 10 -6 10 -5 10 -4 10 -3 10 -
in „Miele Trockner ELP305 Ladekondensator defekt“ · Haus & Smart Home ·
-
PDF
XBSM6T_DATA_E.pdf
P Power dissipation on infinite heatsink T = 50 °C 5 °C amb Non repetitive surge peak forward IFSM tp = 10 ms 100 °C current for unidirectional types T jinitial amb Tstg Storage temperature range -65 to 175 T -55 to 150 °C j Operating junction temperature range T L Maximum lead temperature for soldering
-
PDF
EL817.pdf
= 5mA, V CE = 5V) 2. Cathode • High isolation voltage between input 3. Emitter and output (Viso = 5000Vrms) 4. Collector • Creepage distance > 7.62mm • Operating temperature up to +110°C • Compact small outline package •The product itself will remain within RoHS compliant version • Compliance with EU
in „230V erkennen - Modul?“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
UTouch_Calibration1111.ino
myGLCD.drawLine(x-5, y, x+5, y); myGLCD.drawLine(x, y-5, x, y+5); } void readCoordinates() { int iter = 5000; int failcount = 0; int cnt = 0; uint32_t tx=0; uint32_t ty=0; boolean OK = false; while (OK == false) { myGLCD.setColor(255, 255, 255); myGLCD.print("* PRESS *", CENTER, text_y_center); while (myTouch.dataAvailable
in „2.8 TFT von egeloo“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Transistortester094k.pdf
) Idealwert: 0 0 0 0 Test 6 RH1+ RH2+ RH3+ 470kΩ (Isolation) 4995 4995 4995 Idealwert: 5001 Test 7 TP1- RL1+ TP2- RL2+ TP3- RL3+ Pinwiderstand Low 132 132 137 Test 8 TP2+ RL1- TP2- RL2+ TP3- TP3+ Pinwiderstand High 151 151 151 (VCC - Spannung)= Test 1 Mega168 @ 8MHz Bandgap Ref 1090mV Referenzspannung
-
PDF
SANMOTION_R_M0006890N.pdf
0.1 0.05 0.1 0.2 0.2 *Rated speed N R min-1 3000 3000 3000 3000 3000 3000 *Maximum speed Nmax min-1 5000 5000 5000 5000 5000 5000 *Rated torque T N・m 0.191 0.318 0.159 0.318 0.637 0.637 R *Continuous stall torque TS N・m 0.216 0.353 0.167 0.353 0.686 0.686 *Peak armature current at stall TP N・m 0.65 1 0.518
in „Servoregler/Servoverstärker Verständnislücke“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BTS462T_20040127.pdf
2004-01-27 BTS 462 T Typ. transient thermal impedance Typ. transient thermal impedance 2 Z thJA =f(tp) @ 6cm heatsink area Z thJA =f(tp) @ min. footprint Parameter: D=t /T p Parameter: D=t /T p 10 2 10 2 K/W K/W D=0.5 D=0.5 D=0.2 1 D=0.2 1 D=0.1 10 10 D=0.1 D=0.05 J J t D=0.05 t Z Z D=0.02 0 D=0.02 0
in „Schaltregler-Diskussion“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TLP251.pdf
specified) Test Characteristic Symbol Cir Test Condition Min. Typ.* Max. Unit cuit Propagation L→H tpLH ― 0.25 1.0 I = 8mA delay time H→L tpHL F ― 0.25 1.0 6 V CC1 = +15V, EE1 = 15V µs Output rise time r R = 200 Ω ― ― ― L Output fall time f ― ― ― Common mode transient V CM = 600V, F = 8mA, immunity at high level CMH 7 V = 30V, Ta = 25℃ 5000 ― ― V / µs output CC Common mode transient V CM = 600V, F = 0mA, immunity at low level C ML 7 5000 ― ― V / µs output V CC = 30V, Ta = 25℃ *All typical values are at ℃a=25 4 2002-09-25 TLP251 Test Circuit
in „Suche Bauteilersatz für TLP251“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PHOTOTRANSISTOR_-_OPTOCOUPLER_IL5.pdf
CTR CB 0.25 % F =10 mA, CB =9.3 V Isolation and Insulation Common Mode Rejection Output High CMH 5000 V/ s V =50 V , R =1 k , I =0 mA CM P-P L F Common Mode Rejection Output Low CML 5000 V/ s VCM=50 V P-P L =1 k ,FI =10 mA Common Mode Coupling Capacitance C CM 0.01 pF Package Capacitance C I-O 0.6 pF
in „Merten Dimmaktor (6470 29) keine 0-10V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Testboard_KK32F7.PDF
POUSART2_RX PIMOD600028/UART0_TX VPP +3V3_GSM POUSART3_RX 2 POUSART2_CTS 29 GPIO25/UART0_RTS TP6050 POUSART3_TX PI160102 POUSART2_TX P30OD6GPIO0/UART0_RX 15 PIX60101 POUSART2_RTS PIMOD6GPIO24/UART0_CTS VIN_3V3 PIMOD600015 FH12-06S-05SH Service-Buchse 22 52 62 GND TP6060PITP601 P21OD6GPIO35/SDIO_CLK/ SPI0_CLK C60505 C6060 TP6070PITP6071 P23OD6GPIO34/SDIO_CMD/ SPI0_DIN 51100nF/50V 612,2µF/10V TP6080PITP6081 P24OD6GPIO36/SDIO_DAT0/ SPI0_DOUT TP6090PITP6091 P19OD6GPIO37/ SDIO_DAT1_INT 40 TP6101PITP6101 P20OD6GPIO32/SDIO_DAT2
in „STM32F7 Discovery Board“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
hp-6236B.pdf
-0.7V, check CR26 for short. b. If TP10 is -1.0 to -1.4V, proceed to step (4). 4. Measure voltage at TP14. a. If TP14 is approx. +0.7V, replace U2. b. If TP14 is zero volts, check for shorted CR22 or CR23. c. If TP14 is approx. -0.7V, check
in „Problem mit Simulation von HP/Agilent Tracking LNG“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LSV196.pdf
Löten preconditioning: acc. to JEDEC Level 2 Vorbehandlung: nach JEDEC Level 2 taping: 8 mm tape with 5000/reel, ø180 mm Gurtung: 8-mm Gurt mit 5000/Rolle, ø180 mm ESD-withstand voltage: up to 2 kV acc. to ESD-Festigkeit: ESD-sicher bis 2 kV nach JESD22-A114-B JESD22-A114-B Anwendungen Applications Flache
in „Welche Bauform hat diese LED“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Littelfuse_Thyristor_Kxxxzy.pdf
brandThyristors Standard Bidirectional SIDACs Soldering Parameters Reflow Condition 1C▯o▯'SFF▯BTTFNCMZ tP TP -Temperature Min (T s(min) 150°C e Ramp-up Pre Heat -Temperature Max (T ) 200°C u TL s(max) a tL -Time (min to max) (t ) 60 – 180 secs e TS(max) s p Ramp-down Average ramp up rate (LiquidusTemp) m
in „OLYMP Gastherme GasStar Compact 8-27kW Zündgerät defekt.“ · Haus & Smart Home ·
-
PDF
2005281534_SART-Nanjing-Sart-Tech-S0603-S-3-0A_C553913.pdf
Profile Feature Pb-Free Assembly • Temperature: 260℃ • Time: 5sec Max. Average Ramp-up Rate(Tsmaxto Tp) 3℃/sec Max. • Recommend Reflow profile Preheat Temperature Min.(Ts ) 150℃ min 200℃ Temperature Max.(Ts max 60sec~120sec Time(Tsminto Tmax) Peak Temperature(Tp) 260℃ Time within 5℃ of actual 5sec Peak Temperature(Tp) Melting tin timeLT ) 20sec~30sec Ramp-down Rate 6℃/sec Max. Time 25℃ to peak 8minutes Max. Temperature 2. Wave soldering 3.Hand Soldering • Reservoir Temperature: 260℃ • Temperature: 350℃ • Time in
-
PDF
OptoTriac.pdf
≥ 25°C) ΔIT/ °C −0.67 mA / °C 1: Anode e 3: Cathode D Peak on−state current (100μs pulse, 120 pps) TP 2 A 4: Terminal 1 6: Terminal 2 Peak nonrepetitive surge I 1.2 A current (PW=10ms, DC=10%) TSM Junction temperature T j 115 °C Storage temperature range T stg −55~125 °C Operating temperature range T
in „Opto Triac schaltet nicht aus!!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ttester_eng104k.pdf
PB4 PB5 0 k 0 k 6 R 7 R Rx 8 R 7 R 4 TP1 TP3 6 4 Figure 5.8: Measurement type 1 with 680 VCC 9 9 9 9 9 9 1 2 1 2 1 2 GND 1 2 1 2 1 2 ADCMUX ADCMUX PC0 PB0 PB1 PC2 PB4 PB5 0 k 0 k 6 R 7 R Rx 6 R 7 R 4 TP1 TP3 4 Figure 5.9: Measurement type
-
PDF
BUW84.PDF
operation. III - Area of permissible operation during turn-on in single transistor converBEr≤ 100ovand tp≤ 0.6 s. IV - Repetitive pulse operation in this region is permissiblBEp≤ 0 andpt ≤ 2 ms. (1) Ptot maxine. (2) Second breakdown limits. Fig.4 Forward bias SOAR. 1997 Aug 14 4 Philips Semiconductors Product
in „Hochspannung Regeln für eine Bildverstärker Röhre“ · Analoge Elektronik und Schaltungstechnik ·
-
Bild
Diagramm zur EMI-Absorptionsleistung verschiedener Materialien
EMI absorbing performance EMI noise reduction EM25TP AB8000 AB7000E/HF AB5000HF/SHF AB3000 0 GHz 1 GHz 2 GHz 4 GHz 6 GHz 10 GHz Key technologies WiFi2.4/Bluetooth WiFi5 WiFi6 4G LTE 5G FR1 (C-baud)
in „EMV 2026 – Vorträge, Verbrauchsmaterial und Architekturales“ · Mikrocontroller und Digitale Elektronik · · Fotos
-
PDF
Make_your_own_software_for_the_PCSGU250.pdf
Voltage1(Volts:Longint) Set V/div scale of Ch1 Voltage2(Volts:Longint) Set V/div scale of Ch2 Time(TpDiv:Longint) Set Time/div scale TrgLevel(TrgLevel:Longint) Set trigger level TrgEdge(Positive_Negative:Longint) Set trigger edge TrgOn(trg_on: Boolean) Set trigger on or off TrgSource(CH1_CH2_Ext:Longint
in „Bediensoftware für PCSU01 (Mini PC Scope von Velleman) unter Linux“ · PC Hard- und Software ·
-
PDF
tcrt5000_application_note.pdf
selected for this frequency www.vishay.com DocumentNumber 80107 02-02 5 Vishay Semiconductors a) TCRT5000 c) TCRT1000 b) CNY 70 Figure 12. Working diagram of reflex sensors TCRT5000, CNY70 and TCRT1000 Resolution, Trip Point The behavior of the sensors with respect to abrupt dark range, not at the point
in „Alten Stromzähler elektronisch auslesen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
A4989-Datasheet-1.pdf
55 to 150 ºC stg 115 Northeast Cutoff, Inc. 2 Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com Dual Full-Bridge MOSFET Driver A4989 with Microstepping Translator Functional Block Diagram +5 V VMOTOR VDD VBB VREG Bandgap Regulator CREG P VREG Phase 1A Bridge1 C1A CBOOT1A
in „Masseflächen?“ · Platinen ·
-
PDF
TLP3041.pdf
TLP3043) ▯ On−state current: 100mA(max.) ▯ UL recognized: UL1577, file no. E67349 Isolation voltage: 5000Vrms(min.) ▯ Option (D4) type TOSHIBA 11−9A2 VDE approved: DIN VDE0884 / 08.87, certificate no. 68329 Weight: 0.44 g Maximum operating insulation voltage: 630V PK Pin Configuration(top view) Highest
in „Weichenantrieb steuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ps42p3sx_ch._d58a.pdf
,DA,TP,1608 4 R532 2007-000070 R-CHIP;0ohm,5%,1/16W,DA,TP,1608 4 R1227 2007-000070 R-CHIP;0ohm,5%,1/16W,DA,TP,1608 4 R533 2007-000070 R-CHIP;0ohm,5%,1/16W,DA,TP,1608 4 R1228 2007-000070 R-CHIP;0ohm,5%,1/16W
in „Netzteil prüfen wie stelle ich das richtig an?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MW-RSP150-Pollin-352477.pdf
500VDC / 25℃/ 70% RH (Note 4) EMC EMISSION Compliance to EN55032 (CISPR32) Class B, EN61000-3-2,-3, EAC TP TC 020, GB9254 Class B, GB17625.1,CNS13438 Class B EMC IMMUNITY Compliance to EN61000-4-2,3,4,5,6,8,11, EN55024, light industry level, criteriaA, EAC TP TC 020 MTBF 290.7K hrs min. MIL-HDBK-217F (25℃
in „10W Bitcoin miner mit 450GH/s für Raspberry Pi“ · Projekte & Code ·
-
Datei
armbian_modules.txt
adv7604 tvp7002 dw9807-vcm tvp514x ov772x ak881x uda1342 ov2680 saa7185 tea6415c saa7110 tuner-types xc5000 tuner-xc2028 fc0011 qm1d1c0042 mxl301rf si2157 mt2063 tuner-simple max2165 mt2131 tea5767 tda18212 tea5761 e4000 fc0012 mt20xx qm1d1b0004 msi001 fc0013 r820t xc4000 tda9887 tua9001 tda8290 fc2580 it913x
in „Samba auf Banana Pi Pro installieren“ · PC Hard- und Software ·
-
PDF
X100-LE_AB_A2A.pdf
cycle D = parameter, T board= 85°C 1 chip operated 1 chip operated OHL02595 OHL02597 2.1 t 2.1 A t P A tP IF D = P IF IF D = tP F T T T 1.9 1.9 T 1.8 1.8 D = D = 1.7 0.005 1.7 0.005 0.01 0.01 0.02 1.6 0.02 1.6 0.05 0.05 0.1 1.5 0.1 1.5 0.2 1.4 0.2 1.4 0.3 0.3 0.5 1.3 0.5 1.3 1.2 1.2 1.1 1.1 1.0 1.00.5 1.5
in „[V] Hochleistungs-LED-Module auf Metallkernplatine“ · Markt ·
-
PDF
DatenblattOriginalLEDAiptekt20.pdf
XLAMP XP-E LEDS RELATIVE SPECTRAL POWER DISTRIBUTION Relative Spectral Power ) 100 ( r 80 e w o t 60 5000K - n 10000K CCT i 3700K - d 40 5000K CCT a 2600K - R 3700K CCT v t 20 l e R 0 400 450 500 550 600 650 700 750 Wavelength (nm) White 100 XP Color Graph 1 ) % ( 100 e Blue w r 80 e 6 Green w Royal Blue
in „Abstrhlfläche LED“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
FirTP.h
/*------------------------------------------------------------------------------- * FirTP.h: Coefficients of FIR Deep Pass ( Ripple ) * Compiler: C6700 Code Composer Studio * * written for: Digital Signal Processing Laboratory * University of Applied Science Mittweida * H.-J. Thomanek, 8.11. 2003 * * fA = 48000 Hz * fPass = 4000 Hz at 1dB * fSperr = 5000 Hz at -40dB * 69 filter coefficients *------------------------------------------------------------------------------*/ #define NumCoef 69 short Coef[] = { 0.0018834732496523746, -0.0073305682170829228
in „TI 6711 DSK AM-Demodulation“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
-
PDF
TransistorTester_eng_094k.pdf
best value: 0 0 0 0 Test 6 RH1+ RH2+ RH3+ 470kΩ (Isolation) 4995 4995 4995 best value: 5001 Test 7 TP1- RL1+ TP2- RL2+ TP3- RL3+ Pin resistance Low 132 132 137 Test 8 TP2+ RL1- TP2- RL2+ TP3- TP3+ Pin resistance High 151 151 151 (VCC - voltage)= Test 1 Mega168 @ 8MHz Band gap Ref 1090mV Reference voltage
-
PDF
Ethernet_Hub_LXT914PE.pdf
SENO DON i Twisted-Pair Control Management Port SDI DIN F Port #1 (Serial I/F) SDO SCLK DO/DI 4 F TP Port #2 4 IRENA DO/DI 4 F TP Port #3 IRDEN DO/DI F TP Port #4 Repeater Inter-Repeater IRCFS (State Machine, Timing Backplane Port IRCOL DOP Recovery, FIFO, etc.) IRDAT DON BCLKIO DIP AUI Port 4 DIN (
in „Ethernet Transceiver und Hub auf einer Platine verbinden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RSP-150-spec.pdf
25℃/ 70% RH EMC (Note 4) EMC EMISSION Compliance to EN55032 (CISPR32) Class B, EN61000-3-2,-3, EAC TP TC 020, GB9254 Class B, GB17625.1,CNS13438 Class B EMC IMMUNITY Compliance to EN61000-4-2,3,4,5,6,8,11, EN55024, light industry level, criteriaA, EAC TP TC 020 MTBF 290.7K hrs min. MIL-HDBK-217F (25℃
in „Sicherer Einbau eines MeanWell RSP-150-5 in ein Aluminiumgehäuse“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
max5056.pdf
20 34 ns SWITCHING CHARACTERISTICS FOR V DD = 4.5V (Figure 1) CL= 1000pF 7 OUT_ Rise Time tR CL= 5000pF 37 ns CL= 10,000pF 85 CL= 1000pF 7 OUT_ Fall Time tF CL= 5000pF 30 ns CL= 10,000pF 75 Turn-On Delay Time D-ON CL= 10,000pF (Note 2) 18 35 70 ns Turn-Off Delay Time tD-OFF CL= 10,000pF (Note 2) 18
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TransistorTester_eng_095k.pdf
best value: 0 0 0 0 Test 6 RH1+ RH2+ RH3+ 470kΩ (Isolation) 4995 4995 4995 best value: 5001 Test 7 TP1- RL1+ TP2- RL2+ TP3- RL3+ Pin resistance Low 132 132 137 Test 8 TP2+ RL1- TP2- RL2+ TP3- TP3+ Pin resistance High 151 151 151 (VCC - voltage)= Test 1 Mega168 @ 8MHz Band gap Ref 1090mV Reference voltage
-
PDF
LCW_CQ7P.CC.pdf
80 100 120 140 TS[°C] Zulässige Impulsbelastbarkeit I = f(t ) Zulässige Impulsbelastbarkeit IF = f(tp) F p Permissible Pulse Handling Capability Permissible Pulse Handling Capability Duty cycle D = parameter, T S = 25 °C Duty cycle D = parameter, T S = 85 °C OHL04611 OHL04611 2.2 2.2 t A tP A t P IF
-
PDF
349_529-15.pdf
3600 Striche Striche Striche EQN 425 ERN 420 ERN 460 ERN 430 ERN 480 16 Positionen/U: 13 bi250 bis 5000 250 bis 5000 250 bis 5000 1000 bis 5000 4096 Umdrehungen Striche Striche Striche Striche – ERN 420 ERN 460 ERN 430 ERN 480 20 250 bis 5000 250 bis 5000 250 bis 5000 1000 bis 5000 Striche Striche Striche
in „Wie entsteht das Sinusförmige Signal eines Drehgebers/ Vermutung“ · Offtopic ·
-
PDF
snlu184.pdf
4 CS SPI Chip Select J4, Pin 3 GND Ground Table 4. Test Point Connections Component Name Comments TP1 GND Ground TP2 +3.3V +3.3 V Output SNLU184–September 2015 5 Submit Documentation Feedback Copyright © 2015, Texas Instruments Incorporated Quick Start Guide www.ti.com 6 Quick Start Guide The DPS-DONGLE-EVM
in „Tastatur komplett selbst erstellen“ · PC Hard- und Software ·
-
PDF
68641_1_.pdf
2700K 0.43 3000K 8C 0.42 3500K 8B 0.41 7B 7C 4000K 6C 0.40 8A 8D 4500K 6B 7D 0.39 5C 7A 5B 6D 0.38 5000K 4C B1 5D 6A 0.37 5700K 3C 4B 5A 0.36 WH 4D 3B 4A y 0.35 6500K WG 3D C WJA C 0.34 WF 8000K WD 0.33 0.32 WE A1 WC WP 0.31 10000K WB WN 0.30 WM WA 0.29 WK 0.28 0.27 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3
in „Wieviel LEDs brauche ich?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HCPL-0500.pdf
V ISO 8-Pin DIP 2500 V rms RH < 50%, 6,14 Momentary SO-8 t = 1 min., Withstand T = 25°C Widebody 5000 A 6, 15 Voltage** 8-Pin DIP 5000 6, 12, (Option 020) 15 II-O 8-Pin DIP 1 A 45% RH, t = 5 s, 6, 16 VI-O= 3 kVdc, TA= 25°C 12 Input-Output R I-O 8-Pin DIP 10 VI-O= 500 Vdc 6 Resistance SO-8 12 13 Widebody
-
PDF
15121.pdf
V ISO 8-Pin DIP 2500 V rms RH < 50%, 6,14 Momentary SO-8 t = 1 min., Withstand T = 25°C Widebody 5000 A 6, 15 Voltage** 8-Pin DIP 5000 6, 12, (Option 020) 15 II-O 8-Pin DIP 1 A 45% RH, t = 5 s, 6, 16 VI-O= 3 kVdc, TA= 25°C 12 Input-Output R I-O 8-Pin DIP 10 VI-O= 500 Vdc 6 Resistance SO-8 12 13 Widebody
in „Optokoppler HCPL 4504/4503/4502“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datasheet.pdf
Source ADR440/ADR441/ADR443/ADR444/ADR445 FEATURES PIN CONFIGURATIONS Ultralownoise (0.1Hzto10 Hz) TP 1 ADR440/ 8 TP ADR440: 1μV p-p ADR441/ ADR441: 1.2 μVp-p VIN 2 ADR443/ 7 NC ADR444/ ADR443: 1.4 μVp-p NC 3 ADR445 6 VOUT ADR444: 1.8 μVp-p TOP VIEW GND 4 (Not to Scale)TRIM ADR445: 2.25 μVp-p NOTES 0 Superbtemperaturecoefficient 1. NC = NO CONNECT 4 AGrade: 10ppm/°C 2. TP = TEST PIN (DO NOT CONNE0T) Figure1.8-LeadSOIC_N(R-Suffix) BGrade: 3ppm/°C Lowdropoutoperation:500 mV Inputrange:(V OUT +500mV) to18V TP 1 ADR440/ 8 TP Highoutputsourceand sinkcurrent:+10mA and−5mA ADR441
in „Datenblatt richtig lesen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Panasonic_AG-7350-7150_Service_Manual.pdf
LOCATION OF TEST POINTS & CONTROLS VIDEO Cl l C.B.A. CVEP03877A:AG-7350/VEP03877B:AG-7150l VR4 & & TP5• TP2 &TPG1 e TP3 TPVR2 & & & & eTP6 VR1 IVHSI VRB VR7 VR5 ~ , V R :, [D ill ~ [LK] ICoSllvHsl ~ ~ eTP10 e TPB IS.LIMI VR6 eTP9 TP1 & TP3 eTP7 e TP11 eTP2 REF.N0.3000 SERIES eTP1 REF.N0.4000 SERIES VIDEO
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IPP120P04.pdf
characteristics 2) C Input capacitance iss - 11380 15000 pF V GS=0V, V DS=-25V, Output capacitance C oss - 3410 5000 f=1MHz Reverse transfer capacitance C rss - 135 270 Turn-on delay time td(on) - 21 - ns Rise time tr V DD=-20V, - 16 - V GS=-10V, ID=-120A, Turn-off delay time t - 85 - d(off) R G3.5W Fall time tf -
in „Highside, FET wird heiß“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
M43T.pdf
ofthiscomponenttopreventdamageand/ordegradationwhichmaybeinducedbyESD. OrderingInformation Option UL5000Vrms Part RoHS NonRoHS Surface Gull Tape /1Minute IEC/EN/DIN number Compliant Compliant Package Mount Wing &Reel rating EN60747-5-2 Quantity ACPL-M43T -000E No option SO-5 X 100 per tube -500E -500 X
in „Optokoppler Berechnung max. Übertragungsfrequenz“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tidu533.pdf
OSTTC022162 10µF D4 GND Green 2 R14 R10 560 2.49k V3.3 U2 1 6 V3.3 VDD H GND C15 0.1µF 5 R13 W 4.7k GND TP4 3 SCL V3.3 4 SDA GND 2 R15 TP5 J4 4.7k 1 2 TP6 eFuse_ctrl3 TPL0401A-10DCKR GND 3 4 5 6 7 8 9 10 11 12 13 14 eFuse_ctrl2 15 16 TP7 17 18 eFuse_ctrl1 TP8 19 20 TP9 eFuse_ctrl0 PEC10DAAN TP10 GND GND TP11
in „Hilfe bei der Berechnung (Voltage Divider)“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
modules_install_file_list_LK5.2-RC2.txt
INSTALL net/ipv6/tunnel6.ko INSTALL net/ipv6/xfrm6_tunnel.ko INSTALL net/kcm/kcm.ko INSTALL net/l2tp/l2tp_core.ko INSTALL net/l2tp/l2tp_ip.ko INSTALL net/l2tp/l2tp_eth.ko INSTALL net/l2tp/l2tp_ip6.ko INSTALL net/l2tp/l2tp_netlink.ko INSTALL net/l2tp/l2tp_ppp.ko INSTALL net/mac802154/mac802154.ko INSTALL
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
-
PDF
LT.pdf
V Error Amplifier Voltage Gain (Note 6) 1V ≤V C 4V 2000 V/V Error Amplifier Transconductance 3700 5000 8000 mho Error Amplifier Source and Sink Current Source (VFB 2V) 100 140 225 A Sink (VFB 2.5V) 0.7 1 1.6 mA Feedback Pin Bias Current V FBV REF 0.5 2 A Reference Voltage V C 2V 2.155 2.21 2.265 V Reference
in „Prinzipielle Fragen zum Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LT1074.pdf
V Error Amplifier Voltage Gain (Note 6) 1V ≤V C 4V 2000 V/V Error Amplifier Transconductance 3700 5000 8000 mho Error Amplifier Source and Sink Current Source (VFB 2V) 100 140 225 A Sink (VFB 2.5V) 0.7 1 1.6 mA Feedback Pin Bias Current V FBV REF 0.5 2 A Reference Voltage V C 2V 2.155 2.21 2.265 V Reference
in „LT1074HV wozu Pin VC Datenblatt strange“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
3v6.pdf
0.12 4.8 BZX55C 91PT 91 1 85~96 450 2000 0.1 0.1 10 68 0.05~0.12 4.4 BZX55C 100PT 100 1 94~106 450 5000 0.1 0.1 10 75 0.05~0.12 4.0 BZX55C 110PT 110 1 104~116 600 5000 0.1 0.1 10 82 0.05~0.12 3.6 BZX55C 120PT 120 1 114~117 800 5500 0.1 0.1 10 91 0.05~0.12 3.3 BZX55C 130PT 130 1 124~141 950 6000 0.1 0.1
in „Falsche Spannung bei Zenerdiode?“ · Mikrocontroller und Digitale Elektronik ·