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data.pdf
drain to source voltage — 35 V High level input voltage 4 6 V IH VIL Low level input voltage 0 0.5 ds Continuous drain current Tamb=85 C ( o o o TAmbient = 85 C, IN = 5V, rth = 60 C/W, Tj = 125 C) IPS0151 — 4.3 A (TAmbient = 85 C, IN = 5V, rth = 80 C/W, Tj = 125 C) IPS0151S— 3.8 Rin Recommended resistor
in „Problem mit MOSFET-Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP2551.pdf
voltage) VDIFF (r)(i) VDIFF(d)(i) VOL hysteresis D19 0.5 0.9 Vdiff (V) © 2007 Microchip Technology Inc. DS21667E-page 11 MCP2551 2.3 AC Characteristics Electrical Characteristics: AC Specifications Industrial (ITAMB = -40°C to +85°C VDD = 4.5V to 5.5V Extended (E): TMB = -40°C to +125°C DD = 4.5V to 5.5V
in „CAN-BUS - Nur empfangen - Was mache ich mit dem TXD Pin am Tranceiver??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
25AA128.pdf
mA voltage D005 VOL — 0.2 V IOL= 1.0 mA, CC < 2.5V D006 VOH High-level output V CC-0.5 — V IOH = -400 μA voltage D007 ILI Input leakage current — ±1 μA CS = VCC , IN= VSS TOVCC D008 ILO Output leakage — ±1 μA CS = VCC , OUT= VSS TO VCC current D009 C INT Internal Capacitance — 7 pF TA = 25°C, CLK =
in „SPI EEPROM -> Kein Page read :- O“ · Mikrocontroller und Digitale Elektronik ·
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Display.pdf
ns WRB Write pulse width (WRITE) WRW8 400 ns Data setup time DS8 D7-D0 400 ns Data hold time DH8 160 ns Read data output delay time tRDD8 C L= 15 pF D7-D0 640 ns Read data hold time tRDH8 10 ns Input signal rise and fall timR, F All of above
in „LC-Display Sharp M078CKA ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
ns WRB Write pulse width (WRITE) WRW8 400 ns Data setup time DS8 D7-D0 400 ns Data hold time DH8 160 ns Read data output delay time tRDD8 C L= 15 pF D7-D0 640 ns Read data hold time tRDH8 10 ns Input signal rise and fall timR, F All of above
in „Suche sehr dünnes Grafikdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
ns WRB Write pulse width (WRITE) WRW8 400 ns Data setup time DS8 D7-D0 400 ns Data hold time DH8 160 ns Read data output delay time tRDD8 C L= 15 pF D7-D0 640 ns Read data hold time tRDH8 10 ns Input signal rise and fall timR, F All of above
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STD5NM50.pdf
Transconductance VDS = 25Vx, D 2.5A 3.5 S Ciss Input Capacitance VDS = 25V, f = 1 MHz,GS = 0 415 pF C Output Capacitance 88 pF oss C rss Reverse Transfer 12 pF Capacitance Coss eq.) Equivalent Output VGS = 0V, DS = 0V to 400V 50 pF Capacitance RG Gate Input Resistance f=1 MHz Gate DC Bias = 0 3 Test
in „Dynamischer Wärmewiderstand => Cth Rth“ · Analoge Elektronik und Schaltungstechnik ·
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ssr2n60a.pdf
Characteristics VGS ] Top : 15V A A 10V [ [ 8.0V 0 7.0V t 0 n10 6.0V e 10 e 5.5V r r 5.0V u u Bottom : 4.5V C C n 150C n i a a r101 D 101 D o @ Notes : , , 25 C 1. V = 0 V D ID GS I @ Notes : 2. DS= 50 V 1. 250s Pulse Test - 55 C 3. 250 s Pulse Test 2. C = 25 C 102 102 101 10 10 2 4 6 8 10 VDS Drain-Source Voltage
in „Ersatz für SSR2N60A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLR7843C.pdf
(V) DS DS Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000 2.0 e I = 30A c D ) t VGS = 10V ( i t e n R r 100 n 1.5 u T J 175°C e ) e r d r o i o - al - t r t TJ= 25°C i o i 10
in „H-Brücke - 30A - MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
C17410452.pdf
Applications Typical Application ● AC/DC adapter L51 VAC BR1 T1 D51 VOUT ● White goods R54 ● Other SMPS C1 C5 R1 PC1R51 P C51 R55 D1 S R52 C53 C52 R53 8 7 6 5 D2R2 U51 R56 C4 DU1T NCST D/ST STR3A400 C2 D GND S/OCPGNDB/OLP 1 2 3 4 C3 OCP PC1 Y TC_STR3A400_1_R2 STR3A400-DSE Rev.2.4 SANKEN ELECTRIC CO., LTD
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
eeprom.pdf
OE return HIGH (whichever occurs first) to the time when the outputs are no longer driven. 7 X2816C Write Cycle Limits X2816C-90 X2816C-12,-15,-20 Symbol Parameter Min. Max. Min. Max. Units WC (5) Write Cycle Time 10 10 ms tAS Address Setup Time 5 5 ns AH Address Hold Time 80 100 ns CS Write Setup Time 0 0 ns CH Write Hold Time 0 0 ns CW CE Pulse Width 80 100 ns tOES OE HIGH Setup Time 10 10 ns tOEH OE HIGH Hold Time 5 10 ns WP WE Pulse Width 80 100 ns tWPH WE HIGH Recovery 50 50 ns DV Data Valid 100 100 s DS Data Setup 35 50 ns DH Data Hold 5 10 ns DW
in „EEPROM mit SRAM ersetzen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
si9934bdy.pdf
= −12 V, V = 0 V −1 DS GS Zero Gate Voltage Drain Current DSS V = −12 V, V = 0 V, T = 55_C −5 mA DS GS J On-State Drain Current I V = −5 V, V = −4.5 V −20 A D(on) DS GS V = −4.5 V, I = −6.4 A 0.028 0.035 Drain-Source On-State
in „P-MOS Vgs positiv?“ · Mikrocontroller und Digitale Elektronik ·
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LT1930.pdf
MBR0520 40 C3: TAIYO-YUDEN X5R LMK212BJ105MG L1, L2: MURATA LQH3C100K24 0 100 200 300 400 500 LOAD CURRENT (mA) 1930 TA02b 4-Cell to 5V SEPIC Converter with Coupled Inductors 5V to 24V Boost Converter C3 L1A 1µF
in „Step up UND down DCDC für uC Versorgung - Empfehlung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1308.pdf
2 DS1308 Low-Current I C RTC with 56-Byte NV RAM General Description Benefits and Features The DS1308 serial real-time clock (RTC) is a low-power, ●● Compatible with Crystal ESR Up to 100kΩ Allows a full
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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TOP222Y.pdf
outputtransistor.Theisolated5Voutputwindingisrectifiedby for the main supply and are not shown. The input DC rail may D2 and filtered by C2, L1 and C3. D 6 7/01 TOP221-227 D2 L1 MUR420 3.3 µH +12 V VR1 C2 C3 330 µF P6KE200 35 V 220 µF 35 V RTN BR1 D1 L2 400 V BYV26C D3 22 mH 1N4148 R1 C1 100 Ω 47 µF 400 V C4 C6 U1 0.1 µF R2 0.1 µF D TOP224P
in „Voltcraft SPS-1540 PFC defekt - Reparaturhilfe benötigt“ · Analoge Elektronik und Schaltungstechnik ·
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78f9116.pdf
tSO2 R = 1 k , VDD= 2.7 to 5.5 V 0 300 ns edgetoSO20output C = 100 pF Note 0 1 000 ns SO20 setup time tAS2 VDD= 2.7 to 5.5 V 120 ns (for SS20 when SS20 is used) 400 ns SO20 disable time (for SS20 when tDS2 VDD= 2.7 to 5.5 V 240 ns SS20 is used) 800 ns Note R and
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PDF
ADG507A.pdf
–10 V V S +10 V, DS=1 mA; Test Circuit 1 450 600 450 600 450 600 max 300 400 300 400 max V DD= 15 V ( 10%), SS= –15 V ( 10%) 300 400 max V = 15 V ( 5%), V = –15 V ( 5%) DD SS R ONDrift 0.6 0.6 0.6 %/°C typ –10 V V S +10
in „Videopfad - LM1881 -Sync-Problem“ · Analoge Elektronik und Schaltungstechnik ·
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DS1307.pdf
(150 mils) PDIP (300 mils) ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +70°C 5.0 8 SO (150 mils) DS1307 DS1307ZN+ -40°C to +85°C 5.0 8 SO (150 mils) DS1307N
in „[V] noch 2 x 10St. Dallas RTC DS1307Z (SO8) abzugeben“ · Markt ·
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PDF
DS1307.pdf
(150 mils) PDIP (300 mils) ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +70°C 5.0 8 SO (150 mils) DS1307 DS1307ZN+ -40°C to +85°C 5.0 8 SO (150 mils) DS1307N
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PDF
ds1307.pdf
(150 mils) PDIP (300 mils) ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +70°C 5.0 8 SO (150 mils) DS1307 DS1307ZN+ -40°C to +85°C 5.0 8 SO (150 mils) DS1307N
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
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CL1506-ChipLink.zh-CN.en.pdf
parameter rangbit ledOutput current@V ou=150V (Input voltage LED_1 <300 mA 175V~265V, ambient temperature80°C) ledOutput current@V ou=72V (Input voltage LED_2 <400 mA 175V~265V, ambient temperature80°C) VLED_MIN lowestledload voltage > 15 V CL1506_CN Rev. 1.0 4 www.chiplink-tech.com CL1506 Non-isolated buckledConstant
in „LED-Strahler mit CL1506IR“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1014.pdf
5V, 0V; V =+1.4V S O –55°C ≤ A ≤100°C — 80 450 — 90 480 — 100 750 V VCM = 0.1V,AT = 125°C — 120 450 — 150 480 — 200 750 V VCM = 0V, A = 125°C — 250 900 — 300 960 — 400 1500 V Input Offset Voltage Drif(Note 2) — 0.4 2.0 — 0.4 2.0
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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DS1302.pdf
to +70°C 8 PDIP DS1302 X2 1 D 8 I/O DS1302N -40°C to +85°C 8 PDIP DS1302* N.C. 2 7 N.C. DS1302S 0°C to +70°C 8 SO (200 mils) DS1302S N.C. 3 6 N.C. DS1302SN -40°C to +85°C 8 SO DS1302S* GND 4 5 CE DS1302Z 0°C to +70°C 8 SO (150 mils) DS1302Z DS1302Z+ 0°C to +70°C 8 SO (150 mils) + DS1302Z SO (300 mils) DS1302ZN -40°C to +85°C 8 SO DS1302ZN DS1302ZN+ -40°C to +85°C 8 SO + DS1302ZN DS1302S-16 0°C to +70°C 16 SO (300
in „Wiedermal ein RTC-Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sia817edj_MOSFET_SCHOTTKY.pdf
GSS V DS = 0 V, GS = ± 12 V ± 10 µA V DS = - 30 V,GS = 0 V - 1 Zero Gate Voltage Drain Current DSS V = - 30 V, V = 0 V, T = 55 °C DS GS J - 10 On-State Drain Currenta ID(on) VDS 5 V, GS = - 10 V - 8 A V = -
in „Korrekte LIPO-Ladeschaltung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS10-g0075-PID.c
include <MSP430x16x.h> // für MSP430F1611 #include <signal.h> //wird für interrupt gebraucht #include "DS10-gP12-SD_MAINTI.c" #include "DS10-g0073-LMK62-SD.h" #include "DS10-gP11-DS32C35.h" #include "DS10-g0073-DS18B20-NR1bis18-LP63-11.h" #include "DS10-g0068-SD_Karte.h" //für Karte Nr19 PLATINUM: = 528
in „Wie 2x interrupt verschachteln, MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3703fc.pdf
= 45V ( ( C OUT = 0.5A C E 85 I 85 VIN= 75V IOUT I I 2A/DIV F F E 80 E 80 75 VOUT = 12V 75 VOUT= 5V VIN= 50V 50µs/DIV 3703 G03 f = 300kHz f = 250kHz VOUT = 12V PULSE SKIP DISABLED PULSE SKIP ENABLED 1A TO 5A LOAD
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt.pdf
therwiseSpecified(Continued) 300 125 PULSE DURATION = 80µs VGS = 10V DUTY CYCLE = 0.5% MAX ) T = 25 C ( 100 ) 100 VGS = 8V C T STARTINGT = 25 C ( E J T V = 7V R E GS U R 75 C U E C C o I N 10 STARTINGT J 150 C A 50 V = 6V A R GS A , A If R = 0 I VGS = 5V ,
in „Motorensteuerung Raspberry PI“ · Mikrocontroller und Digitale Elektronik ·
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488161_1_.pdf
- 05/1969 B 600 31,0 / 5400 100 300 / 10,0 Ducellier 4291A/B DY/DL/DT nach 05/1969 DV nach 09/1972 C 1100 31,0 / 4800 100 300 / 10,0 Ducellier 4254B/C DV 05/1969-09/1972 DX/ DJ nach 09/1972 D 1000 18,0 / 2000 100 300 / 10,0 BOSCH ZV117A3A, DS-“IE“ Injection 231.177.001 E 1000 34,0 / 3500 250 400 / 10,0
in „Funktionsweise von analogen elektronischen Drehzahlmessern?“ · Analoge Elektronik und Schaltungstechnik ·
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A100_IRF3415_IF.pdf
( V DS = 75V Coss= Cds + Cgd e 16 V DS = 30V ) a p o ( 4000 V c e 12 a Ciss u c 3000 o a - a - 8 C t C 2000 Coss a , Crss S 4 1000 G V FOR TEST CIRCUIT 0 SEE FIGURE 13 1 10 100 0 0 40 80 120 160 200 VDS , Drain-to-Source
in „Suche IR 513H“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irf3708.pdf
(V) V , Drain-to-Source Voltage (V) DS DS Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000 2.5 D = 62A e ) n ( t t i 2.0 e e u R C J= 25 C n ) e e e 1.5 u r l o100 ° u m - J= 175 C S o - t N( 1.0 i n r a D D D , 0.5 I n ( V DS= 15V D 20µs PULSE WIDTH R VGS =10V 102.0 3.0 4.0 5.0 6.0 0.-60 -40 -20 0 20 40 60 80 100 120 140 160 180 ° V GS , Gate-to-Source Voltage (V) T J Junction Temperature ( C) Fig 3. Typical Transfer Characteristics
in „IRF3708 als Schalter“ · Mikrocontroller und Digitale Elektronik ·
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k9gag08u0e.pdf
20mm 35 N.C N.C 15 33 N.C ALE 16 32 I/O3 WE 18 31 I/O2 WP 19 30 I/O1 N.C 20 29 I/O0 N.C 21 28 N.C N.C 22 27 N.C N.C 23 26 N.C N.C 24 25 N.C 1.4.1 PackageDimensions 48-PIN LEAD FREE PLASTIC THIN SMALL OUT-LINE PACKAGE
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
k9f6408u0a.pdf
Address / Data input Address / Data input 50h 00h 80h 10h 80h 10h "C" area "A" area "A" area program "A" area program (2) "B" area program Address / Data input Address / Data input 00h 01h 80h 10h 80h 10h "A" area "B" area "B" area program "A" area program (3) "C" area program Address / Data input Address / Data input 00h 50h 80h 10h 80h 10h "A" area "C" area "C" area program "C" area program Table 2. Pointer Status after each operation Operation Pointer status
in „woher bekomme ich ein ähnliches flash/sram“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS99609B_IXGQ90N27PB_.pdf
V Note 1 T = 125°C 1.3 V J I = 100 A 1.67 V C TJ= 125°C 1.80 V © 2006 IXYS All rights reserved DS99609B(02/07) IXGQ90N27PB Symbol Test Conditions Characteristic Values (TJ= 25°C unless otherwise specified) Min. Typ. Max
in „Vergleichstyp IGBT IXGQ90N27PB“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2210280930_Diodes-Incorporated-AP63300WU-7_C2158012.pdf
MOSFET Low-Side MOSFET 1.0 120 110 0.9 0.8 100 ) ) 90 μ0.7 m 80 (0.6 ) D O 70 IS.5 S 60 R 50 0.4 0.3 40 30 0.2 20 0.1 -50 -25 0 25 50 75 100 125 150 -50 -25 0 25 50 75 100 125 150 Temperature (°C) Temperature (°C) Figure 5. Power MOSFET R DS(ON)vs. Temperature Figure
in „Step-Down-Wandler pfeift sehr laut, was tun?“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
93LC66.pdf
flash or protrusions shall not exceed .005” (0.127mm) per side. JEDEC Equivalent: MO-153 Drawing No. C04-086 2003 Microchip Technology Inc. DS21795A-page 17 93AA66A/B/C, 93LC66A/B/C, 93C66A/B/C NOTES: DS21795A-page 18 2003 Microchip Technology Inc. 93AA66A/B/C, 93LC66A/B/C, 93C66A/B/C ON-LINE SUPPORT
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PDF
2003161835_ZILLTEK-ZTP7192MS_C481285.pdf
Threshold VINising 3.9 V Input Under Voltage Lockout Threshold Hysteresis 650 mV Soft-Start Period C7=22nF 1.5 ms Thermal Shutdown * 150 °C * Guaranteed by design, not tested. DS-11 - 3 - 4F-3, No.5, Technology Rd., Science-Based Industrial Park, Hsinchu 30078, Taiwan Copyright © ZillTek Technology
in „Ruhe-Stromaufnahme MP2315 Ali-Board zu hoch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlml6401.pdf
I = VGS = 0V, f = 1 MHZ D -4.3A Ciss = gs+ Cgd C ds SHORTED ) V DS =-10V 1000 C = C ( rss gd e 8 Coss = Cds Cgd a F Ciss o ( 800 V c e 6 n r i 600 o a - a t 4 C t C 400 a Coss , Crss S 200 G 2 - 0 0 1 10 100 0 4 8 12 16 V , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) DS Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source Voltage 100 1000 OPERATION IN THIS AREA LIMITED BY R DS(on) A t e )100 r ( u 10 n n TJ= 150 C
in „CMOS Transistoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLML6401.pdf
I = VGS = 0V, f = 1 MHZ D -4.3A Ciss = gs+ Cgd C ds SHORTED ) V DS =-10V 1000 C = C ( rss gd e 8 Coss = Cds Cgd a F Ciss o ( 800 V c e 6 n r i 600 o a - a t 4 C t C 400 a Coss , Crss S 200 G 2 - 0 0 1 10 100 0 4 8 12 16 V , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) DS Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source Voltage 100 1000 OPERATION IN THIS AREA LIMITED BY R DS(on) A t e )100 r ( u 10 n n TJ= 150 C
in „parasitäres Glimmen beim LED-Muxing. Transistoren? Einstreuungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLML6401.pdf
I = VGS = 0V, f = 1 MHZ D -4.3A Ciss = gs+ Cgd C ds SHORTED ) V DS =-10V 1000 C = C ( rss gd e 8 Coss = Cds Cgd a F Ciss o ( 800 V c e 6 n r i 600 o a - a t 4 C t C 400 a Coss , Crss S 200 G 2 - 0 0 1 10 100 0 4 8 12 16 V , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) DS Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source Voltage 100 1000 OPERATION IN THIS AREA LIMITED BY R DS(on) A t e )100 r ( u 10 n n TJ= 150 C
in „LED Multiplexer glimmt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irl1404.pdf
VGS = 0V, f = 1MHz ID= 95A Ciss = Cgs+ Cgd , Cds SHORTED C = C ) V DS = 32V Crss = Cgd+ C ( V DS = 20V 8000 oss ds gd g 16 F t ( C iss o e V n 6000 c 12 t u c S p o a 4000 - 8 , t C G , 2000 C oss G 4 V FOR TEST CIRCUIT C rss SEE FIGURE 13 0 0 1 10 100 0 100
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS10-g0074-PID.c
include <MSP430x16x.h> // für MSP430F1611 #include <signal.h> //wird für interrupt gebraucht #include "DS10-gP12-SD_MAINTI.c" #include "DS10-g0073-LMK62-SD.h" #include "DS10-gP11-DS32C35.h" #include "DS10-g0073-DS18B20-NR1bis18-LP63-11.h" #include "DS10-g0068-SD_Karte.h" //für Karte Nr19 PLATINUM: = 528
in „Wie 2x interrupt verschachteln, MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
84123_usb_i2c_handbuch_v1_7.pdf
67 p L0005 w68 68 69 6A 6B 6C 6D 6E 6F p L0005 w70 70 71 72 73 74 75 76 77 p L0005 w78 78 79 7A 7B 7C 7D 7E 7F p L0005 w80 80 81 82 83 84 85 86 87 p L0005 w88 88 89 8A 8B 8C 8D 8E 8F p L0005w90 90 91 92 93 94 95 96 97 p L0005 w98
in „Hygrosens I2C Tmp Modul antwortet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEKTRONIX_Component_Service_Manual_TDS_520B_Mod_CM_Digitizing_Oscilloscope_070-9710-03.pdf
,+80–20%,25V,Z5U,5.9X2. TK1920 1E106ZY5U–C205M– 7MM,SM2210,SMD,T&R T A10C1205 283–5260–00 CAP,FXD,CERAMIC:MLC,10UF,+80–20%,25V,Z5U,5.9X2. TK1920 1E106ZY5U–C205M– 7MM,SM2210,SMD,T&R T A10C1206 283–5267–00
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
P14067EJ2V0DS00.pdf
V, IS= 10 mA – 0.35 0.45 dB f = 12 GHz Associated Gain G a 12.0 13.5 – dB 2 Data Sheet P14067EJ2V0DS00 NE3210S01 TYPICAL CHARACTERISTICS (T = +25 °C) A TOTAL POWER DISSIPATION vs. DRAIN CURRENT vs. AMBIENT TEMPERATURE DRAIN TO SOURCE VOLTAGE 250 100 ) W m t 200 ) 80 t A n ( t 150 I 60 a n i e i u VGS
in „Vorverstärker für magnetische Loop“ · HF, Funk und Felder ·
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PDF
DS2413.pdf
TEMP RANGE PIN-PACKAGE RPUP DS2413 DS2413P+ 0°C to +70°C TSOC LED R1 PIOA DS2413P+T&R 0°C to +70°C TSOC PX.Y IO DS2413Q+T&R 0°C to +70°C TDFN PIOB R2 + Denotes a lead(Pb)-free package/RoHS-compliant µC Local package. GND Switch Power
in „OneWire Problem DS2413“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS32kHz_-_temp-co_osci_1min_per_y.pdf
TPIN ORDERING INFORMATION VBAT 5 10 TPIN DS32kHz/BGA 36-Pin BGA 0ºC to +70ºC NC 6 9 NC DS32kHz-N/BGA 36-Pin BGA -40ºc to +85ºC NC 7 8 NC DS32kHz/DIP 14-Pin DIP 0ºC to +70ºC DS32kHz-N/DIP 14-Pin DIP -40ºc to +85ºC DS32kHz 14-Pin DIP Module (300
in „RTC mit ATMega8“ · Mikrocontroller und Digitale Elektronik ·
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B1nn.pdf
(n + 1) Data (n + 7)O T P SDA Line S1 0 1 0 x x0 P A A A A A Bus Activity Block C C C C C x = “don’t care” SBitst K K K K K © 2009 Microchip Technology Inc. DS21711J-page 9 24AA01/24LC01B 7.0 ACKNOWLEDGE POLLING Since the device will not acknowledge during a write cycle, this can
in „IPL Lampe Blitzcounter rücksetzten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS75LX.pdf
Packages Servers PIN CONFIGURATIONS ORDERING INFORMATION PART TEMP RANGE PIN PACKAGE SDA 1 8 VDD 8 SO D DS75LXS+ -55°C to +125°C (150 mils) SCL 2 L S 7 A0 8 SO X 5 DS75LXS+T&R -55°C to +125°C (150 mils), O.S. 3 6 A 2500 Piece 1 DS75LXU+ -55°C to +125°C 8 µSOP GND 4 5 A2 (µMAX) 8 µSOP SO (150 mils) DS75LXU
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PDF
irf9z34n.pdf
Voltage (V) DS Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 100 2.0 c ID = -17A ) n A t ( i n e e R 1.5 r n u TJ= 25°C O C e ) e TJ= 175°C r d r u i u 10 o a1.0 S - m - - r - i N n a
in „IRF9Z34N als Ersatz für BUZ171“ · Analoge Elektronik und Schaltungstechnik ·
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P-MOSFET_IRF9Z34N.pdf
Voltage (V) DS Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 100 2.0 c ID = -17A ) n A t ( i n e e R 1.5 r n u TJ= 25°C O C e ) e TJ= 175°C r d r u i u 10 o a1.0 S - m - - r - i N n a
in „Pegelwandler 0/5V zu 5V/-9V“ · Mikrocontroller und Digitale Elektronik ·