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BZX85C.PDF
) n 1.6 p t e i n 100 i i D 1.2 a VR=0V e l=4mm a VR=2V o C VR=5V P 0.8 d VR=20V t i 10 VR=30V T l=20mm l=10mm – – D t 0.4 C P f=1MHz Tamb=25⋅C 0 1 –50 0 50 100 150 200 0 10 20 30 40 50 60 95 9612 Tamb – Ambient Temperature ( ⋅C ) 95 9616 VZ– Z-Voltage ( V ) Figure 1. Total Power Dissipation vs. Ambient
in „Defekte DCF platine“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BZX85C.PDF
) n 1.6 p t e i n 100 i i D 1.2 a VR=0V e l=4mm a VR=2V o C VR=5V P 0.8 d VR=20V t i 10 VR=30V T l=20mm l=10mm – – D t 0.4 C P f=1MHz Tamb=25⋅C 0 1 –50 0 50 100 150 200 0 10 20 30 40 50 60 95 9612 Tamb – Ambient Temperature ( ⋅C ) 95 9616 VZ– Z-Voltage ( V ) Figure 1. Total Power Dissipation vs. Ambient
in „Defekte DCF platine“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
K20102_Oxone_Technical_Bulletin.pdf
program, the percent loss on drying will be displayed. magnetic stir bar: 75 mL deionized water, 10 mL 20% (v/v) sulfuric acid, and 10 mL 25% (w/w) potassium iodide solution. 4. Remove the specimen and cool to room temperature. Repeat measurement on second specimen. Report the average of (Deionized water
in „H2O2 in hoher Konzentration verboten -> Aktivsauerstofftabletten?“ · Platinen ·
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LCD_Controller.pdf
) 19 s , 24 G1 R2 R2 (23) 18 0 3 G2 R1 R1 (24) 4 W 23 G3 R0 (25) 17 ( 8 22 16 D B 21 G4 (26) 15 L L 20 G5 L/R-8 DE (27) 14 m p (28) a h 19 D L/R-8 (29) 13 t l 18 X5 N 12 t o 17 B0 L/R G U/D-8 (30) 11 o 8 16 B1 (31) 10 K B2 PCLK (32) 15 B3 U/D-8 (33) 9 14 8 13 B4 +3,3V GND (34) 7 12 B5 X6 D (35) 6 HSYNC
in „STECCY - ZX-Spectrum-Emulator mit STM32“ · Projekte & Code ·
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TCST230.pdf
/ off Time vs. Collector Current 110 100 0 A=0.25mm e 90 r C 80 o c 70 s l 60 C e 50 t 40 e R 30 l 20 C I 10 0 –0.5–0.4–0.3–0.2–0.1–0.0 0.1 0.2 0.3 0.4 0.5 96 12007 s – Displacement ( mm ) Figure 13. Relative Collector Current vs. Displacement TCST110. up to TCST230. Vishay Telefunken Dimensions of
in „Gabel Lichtschranke“ · Mikrocontroller und Digitale Elektronik ·
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CNY37_CNY36_VIS.pdf
i Operation r T 15 V S5V C 80 o R L100W o r c 70 s u l 60 / 10 C o e 50 r t 40 u ton e – R 30 f 5 l 20 to toff C /n I 10 to 0 0 0 2 4 6 8 10 –0.5–0.4–0.3–0.2–0.1–0.0 0.1 0.2 0.3 0.4 0.5 96 12006 s – Displacement ( mm ) 95 11086 IC– Collector Current ( mA ) Figure 10. Turn on / off Time vs. Collector
in „CNY37 - Gabellichtschranke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
motor.pdf
Bipolar 200 0.195 1800 0.050 100 - / 12 PM20 S 20 18 0.600 Unipolar 200 0.530 1400 0.090 50 - / 12 L 20 18 0.850 Unipolar 100 0.600 700 0.050 100 - / 12 PM25 S 24 15 1.420 Unipolar 200 0.950 1600 0.380 70 - / 24 48 7.5 2.380 Bipolar 200 1.590 2750 0.500 14 0.6 / ( 24 ) L 24 15 2.030 Bipolar 200 1.560
in „schrittmotor Steuerung“ · Platinen ·
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PDF
L9473.pdf
G 2.40 2.54 2.68 0.094 0.10 0.105 G1 17.64 17.78 17.92 0.69 0.70 0.71 H1 19.6 0.772 H2 20.2 0.795 L 20.35 20.65 0.80 0.81 L2 17.05 17.20 17.35 0.67 0.68 0.68 L3 17.25 17.5 17.75 0.679 0.689 0.699 L4 10.3 10.7 10.9 0.406 0.421 0.429 L7 2.65 2.9 0.104 0.114 S 1.9 2.6 0.075 0.102 S1 1.9 2.6 0.075 0.102
in „Suche Bauteil L9473“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CFAG320240CFMIT.pdf
RES 20 2 17 Vee 19 1 20- 1.0PTH 1.6 18 FGND . . 20- 1.8PAD 19 NC 2 5 22.86 21.06 (P2.54*9) CCFLB/L 20 NC 148.02 0.5 Thenon-specifiedtoleranceofdimensionis 0.3mm. 0.36 0.34 6 3 0 0 DOTSIZE CCFLB/Ldrivedirectly fromconnector. E CL1 D C R/W M v 1 A0 FLM r 0 DB0~DB7 SED1335 C t CS / v B/L RES Controller
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CFAG320240CFMIT.pdf
RES 20 2 17 Vee 19 1 20- 1.0PTH 1.6 18 FGND . . 20- 1.8PAD 19 NC 2 5 22.86 21.06 (P2.54*9) CCFLB/L 20 NC 148.02 0.5 Thenon-specifiedtoleranceofdimensionis 0.3mm. 0.36 0.34 6 3 0 0 DOTSIZE CCFLB/Ldrivedirectly fromconnector. E CL1 D C R/W M v 1 A0 FLM r 0 DB0~DB7 SED1335 C t CS / v B/L RES Controller
in „Sammelbestellung Grafik-LCD 320x240 blau/weiß“ · Markt ·
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PDF
Natriumhydroxid.pdf
Farbe farblos Geruch geruchlos Geruchsschwelle Keine Information verfügbar. pH-Wert ca. 14 bei 50 g/l 20 °C Schmelzpunkt 323 °C Siedepunkt/Siedebereich 1.390 °C bei 1.013 hPa Flammpunkt nicht anwendbar Verdampfungsgeschwindigkeit Keine Information verfügbar. Entzündbarkeit (fest, gasförmig) Keine Information
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HausAutoTest.pdf
100uF D Q C31 S C33 D9 R18 0 330uF 1 V 0 5 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R19 1 2 7 2 D7 LED JUMPER 2 1 R R20 GND U17 0 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 2 1 R 9 1 2 O 17 R15 QB 2B C 2C D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 2 1 R
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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HausAutoTest.pdf
100uF D Q C31 S C33 D9 R18 0 330uF 1 V 0 5 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R19 1 2 7 2 D7 LED JUMPER 2 1 R R20 GND U17 0 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 2 1 R 9 1 2 O 17 R15 QB 2B C 2C D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 2 1 R
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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HausAutoTest.pdf
100uF D Q C33 S C35 D9 R24 0 330uF 1 V 0 5 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R25 1 2 7 2 D7 LED JUMPER P8 2 1 R 1 R26 GND U17 0 2 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 3 2 1 R 9 1 2 O 17 4 1 R21 QB 2B C 2C 1 D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 5 1 LED I 7 5V 10 SRCLR QD
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
100uF D S C32 S C34 D9 R24 S 330uF 1 V 0 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R25 1 2 7 2 D7 LED JUMPER P8 2 1 R 1 R26 GND U17 0 2 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 3 2 1 R 9 1 2 O 17 4 1 R21 QB 2B C 2C 1 D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 5 1 LED I 7 5V 10 SRCLR QD
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
100uF D S C32 S C34 D9 R24 S 330uF 1 V 0 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R25 1 2 7 2 D7 LED JUMPER 2 1 R R26 GND U17 0 11 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 10 2 1 R 9 1 2 O 17 9 R21 QB 2B C 2C D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 8 1 LED I 7 5V 10 SRCLR QD 3 4 4B
in „Layout prüfen“ · Platinen ·
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PDF
HausAutoTest.pdf
100uF D S C32 S C34 D9 S 330uF 1 V LED 0 U11 2 1 R JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko C4GND 1 5 R L 20mA D7 R25 1 2 7 2 LED 100n 2 1 JUMPER D8 GND U17 1ULN2803 11 LED 1 18 10 2 1 14 SER QA 15 1B M 1C R 1 2 2B C 2C 17 9 D6 R21 QB 3 3B 3C 16 8 1 LED 1 N 11 SRCLK QC 2 4 15 7 X 2 1 2 G 5V 10 SRCLR QD 3 4B
in „Layout prüfen“ · Platinen ·
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5082-2350.pdf
frequency in 50 n line.. 15082-2200, -2700 seriesl. .30 500 t ·9.37~ Glit I I .25 400 iii "0- -w :!! C.l .20 z.l 300 a: . . Cl> I- .15 ~ w: ~ 200 ., C.l ~ X·BAND DEVICES ~ z J: .10 C.l KU'r ND DfVIOES! 100 .05 -12 -8 o 2.5 3.0 -4 12 o 0.5 1.0 1.5 2.0 LOCAL OSCILLATOR POWER (dBm) REVERSE VOLTAGE IV) Figure
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PDF
0900766b81364822.pdf
0.25 0.4 0.55 V Output voltage difference between Output voltage differential ΔV O 1.8 2.05 2.3 V L=20cm and L=150cm (Note 1) * L : Distance to reflective object Note 1 : Using reflective object : White paper (Made by Kodak Co., Ltd. gray cards R-27・white face, reflectance; 90%) ■Recommended operating
in „Entprellung von Sensoren“ · Mikrocontroller und Digitale Elektronik ·
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LPF_40_D.pdf
CONTROL O.V.P. Derating Curve Static Characteristics 100 100 90 80 80 70 60 ) ) ( 40 ( 60 D D O A 50 L 20 L 40 -40 -30 0 15 30 40 50 60 70 (HORIZONTAL) 90 100 125 135 145 155 165 175 180 200 230 305 AMBIENT TEMPERATURE ( ) INPUT VOLTAGE (V) 60Hz File Name:LPF-40D-SPEC 2011-12-27 40W Single Output Switching
in „High Power LED dimmen - PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TD_Meanwell_-_RSP-500-24__PSU_Powersupply_Stromumformer_Creality_3D-Drucker_Mean_Well_.pdf
O.V.P. RC+ RC- Derating Curve Static Characteristics 100 100 90 80 80 60 70 ) ) ( ( 60 D 40 D A A 50 L 20 L 40 -30 0 10 20 30 40 50 60 70 (HORIZONTAL) 85 90 95 100 115 135 155 175 195 230 264 AMBIENT TEMPERATURE (℃) INPUT VOLTAGE (VAC) 60Hz File Name:RSP-500-SPEC 2020-09-18 500W Single Output with PFC Function
in „Verkabelung eines 3D-Druckers“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
penhub.pdf
GPIO13 2k 9 GND 36 R39 RTS-RPI_L 45 14 GND CTS0 CTS1 SPI1_CE2 GPIO16 PA12 RTS1 GND R38 2k CTS-RPI_L 20 GND RTS0 RTS1 SPI1_CE1 GPIO17 11 44 PA11 CTS1 RPI-RESET_H V9 25 GND 2k R8 BC846 30 GND RXD0 RXD1 GPIO15 10 TXD-RPI_L 42 PA9 TXD1-BOOT 34 GND R43 2k 2 9 39 GND TXD0 TXD1 GPIO14 8 RXD-RPI_L 43 PA10 RXD1
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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bk_2610_2636_datasheet.pdf
weighting networks v 0.2 dB ing Amplifiers. These are supplied as selected and permit detailed investi- l–20 n standard accessories with the 2636. gation of the frequency composition i–30 of signals. See “Examples of Use”. S Overload Warning –40 + 0.7 –0dB For a reliable overload warning, the Rectifier and
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Datei
DeviceList.txt
bottom) A25L10P(bottom SOP8) A250L10P(bottom QFN8) A25L10P(top) A25L10P(top SOP8) A250L10P(top QFN8) A25L20P(bottom) A25L20P(bottom SOP8) A25L20P(bottom QFN8) A25L20P(top) A25L20P(top SOP8) A25L20P(top QFN8) A25L40P(bottom) A25L40P(bottom SOP8) A25L40(bottom QFN8) A25L40P(top) A25L40P(top SOP8) A25L40P(top
in „[V] Genius G540 EPROM/Flash/uC Programmer (USB)“ · Markt ·
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Datei
EB1_XC3S10004FG456.ucf
NET SRAM1_nWE LOC = U21; ##NET SRAM1_nOE LOC = L19; ##NET SRAM1_nLB LOC = M19; ##NET SRAM1_nUB LOC = L20; #################### # PC like peripherie #################### # # VGA # ##NET VGA_RED<2> LOC = D6; ##NET VGA_RED<1> LOC = D7; ##NET VGA_RED<0> LOC = D9; ##NET VGA_GREEN<2> LOC = E11; ##NET VGA_GREEN
in „.ucf file erstellen für Altium Eval-Board“ · FPGA, VHDL & Co. ·
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TCST_2103.pdf
i Operation r T 15 V S5V C 80 o R L100W o n c 70 s u l 60 / 10 C o e 50 r t 40 u ton e – R 30 f 5 l 20 to toff C /n I 10 to 0 0 0 2 4 6 8 10 –0.5–0.4–0.3–0.2–0.1–0.0 0.1 0.2 0.3 0.4 0.5 96 12006 s – Displacement ( mm ) 95 11086 IC– Collector Current ( mA ) Figure 10. Turn on / off Time vs. Collector
in „Lichtschranke TCST 2103“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Gabellichtschranke.pdf
i Operation r T 15 V S5V C 80 o R L100W o n c 70 s u l 60 / 10 C o e 50 r t 40 u ton e – R 30 f 5 l 20 to toff C /n I 10 to 0 0 0 2 4 6 8 10 –0.5–0.4–0.3–0.2–0.1–0.0 0.1 0.2 0.3 0.4 0.5 96 12006 s – Displacement ( mm ) 95 11086 IC– Collector Current ( mA ) Figure 10. Turn on / off Time vs. Collector
in „Strom für Gabellichtschranke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_SJDP120R085_rev1.3.pdf
D2 1.063 1.317 0.042 0.052 e 5.450 0.215 E 15.773 16.027 0.621 0.631 E1 13.893 14.147 0.547 0.557 L 20.053 20.307 0.789 0.799 L1 4.168 4.472 0.165 0.175 Q 6.043 6.297 0.238 0.248 ØP 3.560 3.660 0.140 0.144 ØP1 7.063 7.317 0.278 0.288 SJDP120R085 Rev 1.3 6/7 February 2011 Silicon Carbide PRELIMINARY SJDP120R085
in „Siliziumkarbid-JFETS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HausAutoTest1808.pdf
100uF D S C32 S C34 D9 S 330uF 1 V LED 0 U11 2 1 R JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko C4GND 1 5 R L 20mA D7 R25 1 2 7 2 LED 100n 2 1 JUMPER D8 GND U17 1ULN2803 11 LED 1 18 10 2 1 14 SER QA 15 1B M 1C R 1 2 2B C 2C 17 9 D6 R21 QB 3 3B 3C 16 8 1 LED 1 N 11 SRCLK QC 2 4 15 7 X 2 1 2 G 5V 10 SRCLR QD 3 4B
in „Layout prüfen“ · Platinen ·
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PDF
datasheet.pdf
0.051 H1 6.20 6.60 0.244 0.256 J1 2.40 2.72 0.094 0.107 L 13 14 0.511 0.551 L1 3.50 3.93 0.137 0.154 L20 16.40 0.645 L30 28.90 1.137 ∅P 3.75 3.85 0.147 0.151 Q 2.65 2.95 0.104 0.116 10/12 STP22NF03L Revision history 5 Revision history Table 7. Document revision history Date Revision Changes 09-Sep-2004
in „Unbekannter Spannungsregler von ST“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Solar_Battery_Inverter_48V_TN-1500-SPEC.pdf
oT 2 ( r) 212- SH1 GG1(. oN.t aC 4 D si ssahC 4 A ehTega maDlli W GEN 8 O 40 ytir al oPesr eveR 8 L 20 t upnI r al oS 2 TUPNI CA 47 0 10 20 30 40 50 60 70 AMBIENT TEMPERATURE (℃) - + - + CURVE 1 - + 4 8 Air flow 100 1 2 direction 1 80 ) % ( D 60 4 A 8 O 0 L 40 1 20 10 7 10.5VDC 11.5VDC 15VDC (HORIZONTAL
in „[V] True-Sinus-Wechselrichter Meanwell TN-1500“ · Markt ·
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PDF
LM9022.pdf
VBP Bypass Pin Voltage V IN= 0V 2.4 2.5 2.6 V VOUT Output Voltage Across R L R L 10Ω 3.6 4.3 V R L 20Ω 4.2 4.6 V Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is functional, but do not guarantee
in „LM9022 verstärken?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tl072.pdf
pF 0.91 To 0.01%, VS= 40 V, VSTEP= 2 V , G = +1, CL = 20 pF 0.48 Phase margin G = +1, RL= 10kΩ, C L 20 pF 56 ° Overload recovery time VIN × gain > S 300 ns Copyright © 2021 Texas Instruments Incorporated Submit Document Feedback 17 Product Folder Links: TL071 TL071A TL071B TL071H TL072 TL072A TL072B
in „Verstärkerschaltung läuft nicht wie gewollt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FB180SA10.pdf
TOP 71A 15V g 100A e1200 BOTTOM 160A n E V L DRIVER h DS n 900 l v RG D.U.T + A - VDD e 600 AS A l 20V P tp 0.01 l g Fig 12a. Unclamped Inductive Test Circuit i 300 , S A E 0 25 50 75 100 125 150 V (BR)DSS Starting J , Junction Temperature( C) tp Fig 12c. Maximum Avalanche Energy Vs. Drain Current IAS
in „Strom bis 200A schalten mit Power MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRFP_3703.pdf
IRFP3703 15V 6000 I J D m TOP 31A 5000 54A L DRIVER g BOTTOM 76A VDS e n 4000 R D.U.T h G +VDD n IAS - A l 20V v000 tp 0.01 A e l P000 e Fig 12a. Unclamped Inductive Test Circuit g 1000 , S A E 0 25 50 75 100 125 150 175 V (BR)DSS Starting T , Junction Temperature ( C) t J p Fig 12c. Maximum Avalanche Energy
in „[Projekt] Einstellbares Netzteil 12V/60A auf 0,5-2,5V/250A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_SJEP120R100_rev2.1.pdf
D2 1.063 1.317 0.042 0.052 e 5.450 0.215 E 15.773 16.027 0.621 0.631 E1 13.893 14.147 0.547 0.557 L 20.053 20.307 0.789 0.799 L1 4.168 4.472 0.165 0.175 Q 6.043 6.297 0.238 0.248 ØP 3.560 3.660 0.140 0.144 ØP1 7.063 7.317 0.278 0.288 SJEP120R100 Rev2.1 7/8 February 2011 Silicon Carbide PRELIMINARY SJEP120R100
in „Siliziumkarbid-JFETS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Bourns.pdf
Axial Force..................... 5 kgf min. Standard Resistance Table Schematic Shaft Wobble ...2(2 x L/20) mm p-p max. Soldering Condition Resistance Resistance 2 Manual ............300 °C ±5 °C for 3 sec. (Ohms) Code 1,000 102 Wave...............260 °C ±5 °C for 5 sec. 2,000 202 R1 1 3 Wash............
in „Potentiometer Symbol mit 4 Anschlüssen (Kenwood GE-1100)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Taschenrechner_Multiplus.pdf
a 7 c 13 e 6 b 25 d 48 f 9,327 q_:>. A ) X===' .25 r; Ke{ t e V\re.ch V'u. VtJ-! G (e \t kovn ~C L\ 20
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telos-revb-2004-09-27.pdf
POWER D22 USB INTERFACE U_VCC P_DVCC P_DVCC 1 2 VCCin VCCin Used for Reading Serial / Programming 1 L20 Connects and Powered via USB P_DVCC C23 C24 C25 R29 LLSD103A D U_VCC N 10u 10k D 1 2 G 0.1u 0.1u F Bead 240-1035-1 R20 U_VCC3.3 3 Vout Vin 2 U_VCC C20 470 U_AVCC U25 0.1u C22 3 3 2 1 0.1u TC55RP33 C21
in „Mic Amp an 2.4GHz Sender - Störung“ · HF, Funk und Felder ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
Noted)* LED ForwardVoltage Distribution LED Current to Operate Distribution (N=50, IF=5mA) (N=50,V =L20V /60AC) Zero-CrossVoltage Distribution 35 30 20 30 25 N N ) 15 t 25 t 20 t n n n o 20 o o C C 15 C 10 i 15 i c v v 10 v D 10 D D 5 5 5 0 0 0 1.25 1.26 1.27 1.28 1.29 1.30 1.5 1.7 1.9 2.1 2.3 2.5 2.7
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PDF
AC_Powerswitch_CPC1976Y.pdf
Noted)* LED ForwardVoltage Distribution LED Current to Operate Distribution (N=50, IF=5mA) (N=50,V =L20V /60AC) Zero-CrossVoltage Distribution 35 30 20 30 25 N N ) 15 t 25 t 20 t n n n o 20 o o C C 15 C 10 i 15 i c v v 10 v D 10 D D 5 5 5 0 0 0 1.25 1.26 1.27 1.28 1.29 1.30 1.5 1.7 1.9 2.1 2.3 2.5 2.7
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PDF
dem-pcm1704.pdf
Controls OW1 OW1 OW0 OUTPUT FORMAT L L 16-Bit, MSB-First SW1 DESCRIPTION L H 18-Bit, MSB-First H L 20-Bit, MSB-First ML (RESV) Software Mode: Control Port Word Clock Signal—set switch to H H H 24-Bit, MSB-First Hardware Mode: Reserved, Not Used SF0 Sample Rate Selection for De-Emphasis Control MC (LRIP
in „Wie sauber samplerate vervierfachen“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
Noted)* LED ForwardVoltage Distribution LED Current to Operate Distribution (N=50, IF=5mA) (N=50,V =L20V /60AC) Zero-CrossVoltage Distribution 35 30 20 30 25 N N ) 15 t 25 t 20 t n n n o 20 o o C C 15 C 10 i 15 i c v v 10 v D 10 D D 5 5 5 0 0 0 1.25 1.26 1.27 1.28 1.29 1.30 1.5 1.7 1.9 2.1 2.3 2.5 2.7
in „Zusätzlicher Schalter aber keine Ader frei.“ · Haus & Smart Home ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
Noted)* LED ForwardVoltage Distribution LED Current to Operate Distribution (N=50, IF=5mA) (N=50,V =L20V /60AC) Zero-CrossVoltage Distribution 35 30 20 30 25 N N ) 15 t 25 t 20 t n n n o 20 o o C C 15 C 10 i 15 i c v v 10 v D 10 D D 5 5 5 0 0 0 1.25 1.26 1.27 1.28 1.29 1.30 1.5 1.7 1.9 2.1 2.3 2.5 2.7
in „Suche Halbleiterelement als Ersatz für Relai in Radar-Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2sk1402.pdf
) W s n t 3 it DS DC = t n i b y O 0 1 a e ra e pe m m s i u 1 pemi ra s( i C O il o 1s D n n( ho l 20 a C tp n r 0.3 = ul n D Ta = 25°C 25 se) a C C ) 0.1 2SK1402 0.05 2SK1402A 0 50 100 150 1 3 10 30 100 300 1,000 Case Temperature T (°C) Drain to Source Voltage V (V) C DS Typical Output Characteristics
in „Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
Noted)* LED ForwardVoltage Distribution LED Current to Operate Distribution (N=50, IF=5mA) (N=50,V =L20V /60AC) Zero-CrossVoltage Distribution 35 30 20 30 25 N N ) 15 t 25 t 20 t n n n o 20 o o C C 15 C 10 i 15 i c v v 10 v D 10 D D 5 5 5 0 0 0 1.25 1.26 1.27 1.28 1.29 1.30 1.5 1.7 1.9 2.1 2.3 2.5 2.7
in „Triac vs Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irl2203npbf.pdf
IRL2203NPbF 600 15V J ID m TOP 24A ( g500 42A V L DRIVER e BOTTOM 60A DS E e400 h RG D.U.T + n I - DD A l 20V AS v300 GS p 0.01 A s u Fig 1cab Unclamped Inductive Test Circuit P200 l n S100 V(BR)DSS , S p E 0 25 50 75 100 125 150 175 StartingJT , Junction Temperature ( C) Fig 1c4b Maximum Avalanche Energy
in „IRL2203N defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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AC_Powerswitch_CPC1976Y.pdf
Noted)* LED ForwardVoltage Distribution LED Current to Operate Distribution (N=50, IF=5mA) (N=50,V =L20V /60AC) Zero-CrossVoltage Distribution 35 30 20 30 25 N N ) 15 t 25 t 20 t n n n o 20 o o C C 15 C 10 i 15 i c v v 10 v D 10 D D 5 5 5 0 0 0 1.25 1.26 1.27 1.28 1.29 1.30 1.5 1.7 1.9 2.1 2.3 2.5 2.7
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VCNT2020.pdf
e L C Y-direction m 70 o 70 T 60 c 60 a l F 50 C 50 e e i 40 t 40 5 R l 30 2 tf 30 t R / 20 r tf l 20 tr r 10 2.0 10 I 0 0 0 0.25 0.5 0.75 1.00 1.25 1.50.75 2.002.25 0 500 1000 1500 2000 I - Collector Current (μA) s - Displacement (mm) C Fig. 10 - Relative Collector Current vs. Displacement Fig. 11
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PDF
AC_Powerswitch_CPC1976Y.pdf
Noted)* LED ForwardVoltage Distribution LED Current to Operate Distribution (N=50, IF=5mA) (N=50,V =L20V /60AC) Zero-CrossVoltage Distribution 35 30 20 30 25 N N ) 15 t 25 t 20 t n n n o 20 o o C C 15 C 10 i 15 i c v v 10 v D 10 D D 5 5 5 0 0 0 1.25 1.26 1.27 1.28 1.29 1.30 1.5 1.7 1.9 2.1 2.3 2.5 2.7
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