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BUW84.PDF
power transistors BUW84; BUW85 DESCRIPTION PINNING High-voltage, high-speed, PIN DESCRIPTION glass-passivated NPN power 1 base transistor in a SOT82 package. 2 collector; connected to mounting base 3 emitter APPLICATIONS • Converters
in „Hochspannung Regeln für eine Bildverstärker Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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SMD-PHILIPS_1999.pdf
BAT81 BAT81 SOD68 (DO34) BAS40-05W 65 SC-70/SOT323 BAT82 BAT82 SOD68 (DO34) BAS40-06 46p; 46t SOT23 BAT83 BAT83 SOD68 (DO34) BAS40-06W 66 SC-70/SOT323 BAT85 BAT85 SOD68 (DO34) BAS40-07 47p SOT143B BAT86 BAT86 SOD68 (DO34) BAS45A
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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MAT14.pdf
ΔV /ΔT −40°C ≤T ≤ +85°C OS A C = 100 µA,VCB 0V 0.4 2 µV/°C BreakdownVoltage BV CEO C = 10 µA 40 V −40°C ≤T A +85°C 40 V Gain-Bandwidth Product fT C = 1 mA,V CE10V 300 MHz Collector Leakage Current Base ICBO VCB 40V 5 pA −40°C ≤T ≤ +85°C 0.5 nA A Substrate ICS VCS 40V 0.5 nA −40°C ≤T A +85°C 0.7 nA Emitter ICES VCE 40V 3 nA −40°C ≤T A +85°C 5 nA Input Current Bias IB C = 100 µA, 0V ≤V CB30V 165 330 nA −40°C ≤T ≤ +85°C 200 500 nA A
in „Transistorarray mit 3 differentiellen (NPN) Pärchen gesucht.“ · Analoge Elektronik und Schaltungstechnik ·
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apple_macbook_pro_a1286_mlb_d1_051-9216_13.3_retina_a1425_820-3462_sch.pdf
DIFFPAIR PRIMARY GAP DIFFPAIR NECK GAP USB_CAMERA USB_85D USB 7 32 ON LAYER? USB_BT USB_85D USB USB_BT_P 7 9 36 TABLE_PHYSICAL_RULE_ITEM USB3_85D * =85_OHM_DIFF =85_OHM_DIFF =85_OHM_DIFF =85_OHM_DIFF =85_OHM_DIFF =85_OHM_DIFF USB_BT USB_85D USB USB_BT_N 7
in „Macbook Schaltpläne“ · Mikrocontroller und Digitale Elektronik ·
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Datei
R-S_CMU_HD-Files.txt
/BASE/BSW/EXE/BASE__LA._US ./R-S_CMU_HD/CMU/B01_V5.21/BASE/BSW/EXE/BASE__CC.DLL ./R-S_CMU_HD/CMU/B01_V5.21/BASE/BSW/EXE/BASE__YB._US ./R-S_CMU_HD/CMU/B01_V5.21/BASE/BSW/EXE/BASE.INI ./R-S_CMU_HD/CMU/B01_V5.21
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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Datei
compilerlauf-kicad-gcc7.txt
85%] Building CXX object cvpcb/CMakeFiles/cvpcb_kiface.dir/dialogs/dialog_display_options_base.cpp.o [ 85%] Building CXX object cvpcb/CMakeFiles/cvpcb_kiface.dir/dialogs/dialog_config_equfiles_base.cpp.o
in „KiCad 5.0.2 - Absturz beim Footprint-Editor Aufruf“ · Platinen ·
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Datei
compile_kicad_mw_debug.txt
/common.dir/bitmap.cpp.o [ 85%] Building CXX object common/CMakeFiles/common.dir/bitmap_base.cpp.o [ 85%] Building CXX object common/CMakeFiles/common.dir/board_printout.cpp.o [ 85%] Building CXX object common/CMakeFiles/common.dir
in „KiCad 5.0.2 - Absturz beim Footprint-Editor Aufruf“ · Platinen ·
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PDF
moxa-eds-205a-series-datasheet.pdf
IEEE 802.3 for 10BaseT IEEE 802.3u for 100BaseT(X) and 100BaseFX IEEE 802.3x for flow control Optical Fiber 100BaseFX Multi-Mode Fiber Cable Type OM1 OM2 OM3 OM4 Typical Distance 4 km 4 km 4 km 4 km TX Range 1260 to 1360
in „[V] Diverse Moxa Industrie Switche und Access Points“ · Markt ·
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MAX749.pdf
OUTPUT EFFICIENCY vs. OUTPUT EFFICIENCY vs. OUTPUT 7 CURRENT – PNP CURRENT – PNP CURRENT – MOSFET 4 85 2 80 2 85 2 T T T 9 X 78 X -24V X M M M -12V -12V 80 -12V 76 80 ) ) ) ( -24V ( 74 -5V ( -5V Y -5V Y Y N 75 N -24V N I I 72 I 75 I I I V+ = 5V E V+ = 3V E 70 V+ = 3V E RSENSE= 0.25 R BASE= 470 RBASE=
in „Suche Spannungs Konverter“ · Analoge Elektronik und Schaltungstechnik ·
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MAX749.pdf
OUTPUT EFFICIENCY vs. OUTPUT EFFICIENCY vs. OUTPUT 7 CURRENT – PNP CURRENT – PNP CURRENT – MOSFET 4 85 2 80 2 85 2 T T T 9 X 78 X -24V X M M M -12V -12V 80 -12V 76 80 ) ) ) ( -24V ( 74 -5V ( -5V Y -5V Y Y N 75 N -24V N I I 72 I 75 I I I V+ = 5V E V+ = 3V E 70 V+ = 3V E RSENSE= 0.25 R BASE= 470 RBASE=
in „Transistor für MAX749“ · Analoge Elektronik und Schaltungstechnik ·
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CNW82.pdf
Current-Continuous Emitter-Collector Voltage VECO 7 V (CNW82/CNW83) 50 Collector-Emitter Voltage V CEO V (CNW84/CNW85) 80 Collector-Base Voltage (CNW83) VCBO 70 V (CNW85) 120 Total Power Dissipation @ A = 25°C P 200 mW Derate above 25°C D 2.0 mW/°C TOTAL DEVICE Tstg -55 to 150 °C Storage Temperature Range Ambient Operating
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MAX4890E-MAX4892E.pdf
contact Maxim/Dallas Direct! at 1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com. 1000 Base-T, ±15kV ESD Protection LAN Switches ABSOLUTE MAXIMUM RATINGS E V+ ……………………………………………………… -0.3V to +4V Operating Temperature Range …………………. -40°C to +85°C 2 All Other Pins………………………………….. -0.3V to (V+
in „MAX4890E Eagle Lib“ · Platinen ·
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BAS70_1PS7XSB70_SER.pdf
common cathode BAS70-05W SOT323 SC-70 dual common cathode BAS70-06 SOT23 - dual common anode BAS70-06W SOT323 SC-70 dual common anode BAS70-07 SOT143B - dual isolated BAS70-07S SOT363 SC-88 dual isolated BAS70-07V SOT666
in „[S] BAT54C Schottky“ · Markt ·
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xmega_a1.pdf
base 0x00C DMA_INT_base DMA Controller Interrupt base 0x014 RTC_INT_base Real Time Counter Interrupt base 0x018 TWIC_INT_base Two-Wire Interface on Port C Interrupt base 0x01C TCC0_INT_base Timer/Counter
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CMU_BASE.INI.TXT
* assign targets for cdma2000 */ // signalling linkhandler protocol K83p= K83_sPL* K84p= K84_sPL* K85p= K85_sPL* K86p= K86_sPL* // signalling FER measurements K83f= K83_sF* K84f= K84_sF* K85f= K85_sF* K86f= K86_sF* // measurements K83m= K83_m* K84m= K84_m* K85m= K85_m* K86m= K86_m* K88m= K88_m* // signalling
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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LM394.pdf
125§C Collector Current 20 mA LM394/LM394B/LM394C b 25§C toa 85§C Collector-Emitter Voltage V MAX Storage Temperature Range b 65§C toa 150§C Collector-Emitter Voltage 35V Soldering Information LM394C 20V Metal Can Package (10 sec.) 260 C § Collector-Base Voltage
in „gematchte Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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TL497A_TEX.pdf
for operation from –40⋅C to 85⋅C. functional block diagram BASE † 11 BASE DRIVE † 12 13 Current CUR LIM SENS Limit Sense 3 FREQ CONTROL 2 Oscillator INHIBIT COMP INPUT 1 10 COL OUT SUBSTRATE 4 1.2-V 8 Reference EMIT OUT CATHODE 6
in „Negative Spannungen...“ · Analoge Elektronik und Schaltungstechnik ·
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Components_alphabetic_order.pdf
dependent) Cje 0 base-emitter zero-bias depletion capacitance Vje 0.75 base-emitter junction built-in potential Mje 0.33 base-emitter junction exponential factor Cjc 0 base-collector zero-bias depletion capacitance Vjc 0.75
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XLampXBD.pdf
Silicon Drive Durham, NC 27703 USA Tel: +1.919.313.5300 xlamp xB-D leds Flux Characteristics (T = 85 °C) - White J The following table provides several base order codes for XLamp XB-D LEDs. It is important to note that the base order codes listed here are a subset of the total available order codes
in „Keine angaben über erforderliche Kühlung bei 100W LED“ · Analoge Elektronik und Schaltungstechnik ·
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XPort-Pro_IG.pdf
VCC 0 3.6 Vdc CPx, Reset, Data In, Data Out VoltagVCP -0.3 V CC+0.05 Vdc Operating Temperature -40 85 oC o Storage Temperature -40 85 C Table 2-5 Recommended Operating Conditions Parameter Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active
in „[V] 2St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell, KLEINEN DEFKTEN , zu Fädeln (beide 8€)“ · Markt ·
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XPort-Pro_IG.pdf
VCC 0 3.6 Vdc CPx, Reset, Data In, Data Out VoltagVCP -0.3 V CC+0.05 Vdc Operating Temperature -40 85 oC o Storage Temperature -40 85 C Table 2-5 Recommended Operating Conditions Parameter Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active
in „[V] 3St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell MIT KLEINEN DEFKTEN (alle für 15€)“ · Markt ·
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XPort-Pro_IG.pdf
VCC 0 3.6 Vdc CPx, Reset, Data In, Data Out VoltagVCP -0.3 V CC+0.05 Vdc Operating Temperature -40 85 oC o Storage Temperature -40 85 C Table 2-5 Recommended Operating Conditions Parameter Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active
in „[V] 1x gebrauchtes Lantronix XPORT PRO Module -LAN-Seriell Module (13€)“ · Markt ·
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moxa-eds-405a-series-datasheet.pdf
Simplified Chinese 1 x quick installation guide 1 x warranty card Dimensions Ordering Information 100BaseFX 100BaseFX 100BaseFX Total No. of 10/100BaseT(X) Ports Ports Ports Model Name Layer Ports Operating Temp. Ports RJ45 Connector Multi-Mode SC Multi-Mode ST Single-Mode SC Connector Connector Connector
in „[V] Diverse Moxa Industrie Switche und Access Points“ · Markt ·
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moxa-eds-508a-series-datasheet.pdf
2 km Standards IEEE 802.3 for 10BaseT IEEE 802.3u for 100BaseT(X) and 100BaseFX IEEE 802.1X for authentication IEEE 802.1D-2004 for Spanning Tree Protocol IEEE 802.1w for Rapid Spanning Tree Protocol IEEE 802.1s for Multiple Spanning Tree
in „[V] Diverse Moxa Industrie Switche und Access Points“ · Markt ·
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XPort_DS.pdf
Programmable I/O 3 PIO pins (software selectable) sink or source 4mA max. Network Interface RJ45 Ethernet 10BASE-T or 100BASE-TX (auto-sensing) Compatibility Ethernet: Version 2.0/IEEE 802.3 Protocols Supported ARP, UDP/IP, TCP/IP, Telnet, ICMP, SNMP, DHCP, BOOTP, TFTP, Auto IP, and HTTP LEDs 10BASE-T & 100BASE-TX
in „LANTRONIX XP100200K-03“ · Mikrocontroller und Digitale Elektronik ·
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lnix-s-a0001298418-1.pdf
Programmable I/O 3 PIO pins (software selectable) sink or source 4mA max. Network Interface RJ45 Ethernet 10BASE-T or 100BASE-TX (auto-sensing) Compatibility Ethernet: Version 2.0/IEEE 802.3 Protocols Supported ARP, UDP/IP, TCP/IP, Telnet, ICMP, SNMP, DHCP, BOOTP, TFTP, Auto IP, and HTTP LEDs 10BASE-T & 100BASE-TX
in „[V] 1Stück gebrauchtes XPORT-EDGE_Seriell- LAN Modul (12€)“ · Markt ·
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lnix-s-a0001298418-1.pdf
Programmable I/O 3 PIO pins (software selectable) sink or source 4mA max. Network Interface RJ45 Ethernet 10BASE-T or 100BASE-TX (auto-sensing) Compatibility Ethernet: Version 2.0/IEEE 802.3 Protocols Supported ARP, UDP/IP, TCP/IP, Telnet, ICMP, SNMP, DHCP, BOOTP, TFTP, Auto IP, and HTTP LEDs 10BASE-T & 100BASE-TX
in „[V] 1Stück neues Lantronix_XPORT_Seriell- LAN Modul (18€)“ · Markt ·
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DatenblattOriginalLEDAiptekt20.pdf
Warm White (2,600 K – 3,700 K CCT) is 80. • Minimum CRI for 80-CRI White is 80. • Minimum CRI for 85-CRI White is 85. • Minimum CRI for 90-CRI White is 90. Copyright © 2008-2010 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree, the Cree logo
in „Abstrhlfläche LED“ · Mikrocontroller und Digitale Elektronik ·
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AL5801.pdf
The R TH resistance of the NTC thermistor at room temperature is recommended as 10kΩ. The value of base resistor R base is set to be 470Ω. Q2’s base current is obtained as IB(Q2)= ( VRSET - VBE(Q2))/ R base- VBE(Q2)/ RTH = ( 0.62V - 0.56 )/ 470Ω - 0.56V/ 10kΩ = 72µA When V BE(Q2) is changed to V BET as
in „Suche Konstantstromquelle effizient, klein und günstig.“ · Analoge Elektronik und Schaltungstechnik ·
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HMC8205BF10.pdf
-10-1 1.57 °C/W Radio Frequency (RF) Input Power (RFIN) 35 dBm ContinuousPowerDissipation(P DISS(T=85°C) 89.4W Table 5. Reliability Information (Derate636mw/°CAbove 85°C) StorageTemperature Range −55°C to +150°C Temperature Parameter (°C) OperatingTemperature Range −40°C to +85°C JunctionTemperature
in „HF Breitbandverstärker Positiv/Negativ Betriebsspannung“ · HF, Funk und Felder ·
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diode-ds31634.pdf
Information: See Page 3 • Weight: 0.072 grams (approximate) T C CO LLE CTOR U 2,4 3 E D O 4 2 C 1 C R BAS E P 1 B 3 W EM TER T OP VIEW E Top View Device Schematic Pin Out Configuration N Maximum Ratings @T =A25°C unless otherwise specified Characteristic Symbol Value Unit Collector-Base Voltage V CBO -15
in „Transistor als Schalter beim Akkuladen“ · Analoge Elektronik und Schaltungstechnik ·
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Optokoppler_4N27.PDF
Breakdown Voltage* Collector-EmitteBVCEO 30 V C =1 mA Emitter-CollectoBVECO 7 E =100 A Collector-Base BVCBO 70 C =100 A ICEO(dark)* 4N25/26/27 5 50 nA VCE=10 V, (base open) 4N28 10 100 ICBO(dark)* 2 20 nA VCB=10 V, (emitter open) Capacitance, Collector-Emitter CCE 6 pF VCE=0 Package DC Current Transfer
in „Ansteuerung Opto 4N27“ · Analoge Elektronik und Schaltungstechnik ·
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IL74.pdf
d Detector (each channel) a 1.0 Collector-Emitter Breakdown Voltage ..............20 V w Emitter-Base Breakdown Voltage.......................5 V o 0.9 Ta = 85°C F Collector-Base Breakdown Voltage .................70 V - 0.8 Power Dissipation at 25°C..........................150 mW V 0.7 Derate Linearly
in „Hilfe für Schaltung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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IL74_ILD74_ILQ74_SIE.pdf
d Detector (each channel) a 1.0 Collector-Emitter Breakdown Voltage ..............20 V w Emitter-Base Breakdown Voltage.......................5 V o 0.9 Ta = 85°C F Collector-Base Breakdown Voltage .................70 V - 0.8 Power Dissipation at 25°C..........................150 mW V 0.7 Derate Linearly
in „Eingänge über Optokoppler abfragen“ · Mikrocontroller und Digitale Elektronik ·
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tl497a.pdf
connection †BASE (11) and BASE DRIVE (12) are used for device testing The TL497A incorporates all the active functions only. They normally are not used in circuit applications of the required in the construction of
in „Negative Spannung...“ · Analoge Elektronik und Schaltungstechnik ·
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2SC3940.pdf
max Unit Collector cutoff current CBO V CB = 20V, E = 0 0.1 µA Collector to base 2SC3940 V I = 10µA, I = 0 30 V voltage 2SC3940A CBO C E 60 Collector to emitter2SC3940 25 V I = 2mA, I = 0 V voltage 2SC3940A CEO C B 50 Emitter to base voltage VEBO IE= 10µA, IC= 0 5 V hFE11 V CE = 10V, C = 500mA *2 85 340 Forward current transfer ratio hFE2 V CE = 5V, B = 1A*2 50 *2 CollectortoemittersaturationvoltagVCE(sat) IC= 500mA, I B 50mA 0.2 0.4 V *2 Base to emitter saturation voltageVBE(sat) IB= 500mA, I a
in „2SC3940 Safe Operating Area“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
********************************************************* void TIMER_INIT_EXAMPLE(void) { TIM_TimeBaseInitTypeDef TIM_TimeBaseInitStructure; ////////// Timer 2 ///////////////////////////////////////////////// // Der Timer wird mit 84MHz getaktet (APB1 Domain mit 42MHz X2 siehe Seite 85 im Ref.Man.)
in „STM32F4 DISCOVERY und SainSmart 3.2″ Display“ · Mikrocontroller und Digitale Elektronik ·
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NCP1605-D.PDF
5. COLLECTOR, #3 6. BASE 6. NO CONNECTION 6. BASE, #2 6. COLLECTOR, #3 7. COLLECTOR 7. ANODE 7. EMITTER, #2 7. COLLECTOR, #4 8. COLLECTOR 8. CATHODE 8. COLLECTOR, #2 8. COLLECTOR, #4 9. BASE 9. CATHODE 9. COLLECTOR, #3 9. BASE, #4 10. EMITTER 10. ANODE 10. BASE, #3 10. EMITTER, #4 11. NO CONNECTION 11. NO CONNECTION 11. EMITTER, #3 11. BASE, #3 12. EMITTER 12. CATHODE 12. COLLECTOR, #3 12. EMITTER, #3 13. BASE 13. CATHODE 13. COLLECTOR, #4 13. BASE, #2 14.
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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NXP_BC846_BC546_Series.pdf
Pinning information Table 3. Pinning Pin Description Simplified outline Symbol SOT23; SOT323; SOT416 1 base 2 emitter 3 3 3 collector 1 2 1 2 006aaa144 sym021 SOT54 1 emitter 2 base 3 3 collector 1 2 2 3 1 001aab347 sym026 SOT54A 1 emitter 3 2 base 3 collector 1 2 2 3 001aab348 1 sym026 SOT54 variant 1 emitter
in „Und wieder eine kleine lustige Teilesucherei Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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HFBR-14XX_Optolink.pdf
T 0 60 E ) E ) B R 0 60 A R 0 60 A ( ) U -1 OVERDRIVE WORST CASE 50 ( U 50 ( N -1 50 m C -40 ˚C, +85 ˚C T C -1 WORST CASE T R WORST CASE – E -2 UNDERDRIVE 40 E E -2 OVERDRIVE -40 ˚C, +85 ˚C 40 E U -40˚C, +85˚C T I R T UNDERDRIVE R R -2 UNDERDRIVE TYPICAL 26˚C 40 R M -3 30 U M -3 30 U T UNDERDRIVE U
in „Debuggen bei EMV-Tests“ · Mikrocontroller und Digitale Elektronik ·
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S8050.PDF
0.1 μ A HFE(1) VCE 1 V, C = 50mA 85 300 DC current gain(note) H V = 1 V, I = 500mA 50 FE(2) CE C Collector-emitter saturation voltage V (sat) I = 500mA, I = 50 mA 0.6 V CE C B Base-emitter saturation voltage VBEsat) IC= 500mA, IB= 50 mA 1.2 V Base-emitter voltage VBE IE= 100mA 1.4 V VCE 6 V, C = 20mA Transition frequency f 150 MHz T f = 30MHz CLASSIFICATION OF H FE(1) Rank B C D Range 85-160 120-200 160-300 Wing Shing Computer Components Co.,
in „Drehzahlmesser an DIY Motorsteuerung“ · Fahrzeugelektronik ·
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PDF
S8550.pdf
=0 0.1 μ A HFE(1) VCE 1 V, C = 50mA 85 300 DC current gain(note) HFE(2) VCE 1 V, C = 500mA 50 Collector-emitter saturation voltage VCEsat) IC= 500mA, IB= 50 mA 0.6 V Base-emitter saturation voltage V (sat) I = 500mA, I = 50 mA 1.2 V BE C B Base-emitter voltage V I = 100mA 1.4 V BE E VCE 6 V, C = 20mA Transition frequency fT 150 MHz f =30MHz CLASSIFICATION OF H FE(1) Rank B C D Range 85-160 120-200 160-300 Homepage: http://www.wingshing.com
in „Drehzahlmesser an DIY Motorsteuerung“ · Fahrzeugelektronik ·
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PDF
BCR562-INF.pdf
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 mA V = 10 V, I = 0 EB C DC current gain
in „BRC562 direkt an uC“ · Mikrocontroller und Digitale Elektronik ·
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XPort_DS.pdf
Programmable I/O 3 PIO pins (software selectable) sink or source 4mA max. Network Interface RJ45 Ethernet 10BASE-T or 100BASE-TX (auto-sensing) Compatibility Ethernet: Version 2.0/IEEE 802.3 Protocols Supported ARP, UDP/IP, TCP/IP, Telnet, ICMP, SNMP, DHCP, BOOTP, TFTP, Auto IP, and HTTP LEDs 10BASE-T & 100BASE-TX
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SS855.pdf
to SS8050 与 SS8050 互补 ■最大額定值 (Ta=25℃) CHARACTERISTIC Symbol Rating Unit 特性參數 符號 額定值 單位 Collector-Base Voltage 集電極-基極電壓 VCBO -40 Vdc Collect-Emitter Voltage VCEO -20 Vdc 集電極-發射極電壓 Emitter-Base Voltage VEBO -5.0 Vdc 發射極 基極電壓 Collector Current 集電極電流 Ic -1500 mAdc Collector Power Dissipation PC 300 mW 集電極耗散功率
in „STM32 Boot0 via Button / Inverter“ · Mikrocontroller und Digitale Elektronik ·
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DG24128.asm
--------------------- .equ F_CPU = 8000000 .equ CYCLES_PER_US = ((F_CPU+500000)/1000000) .equ TXT_BASE = $0000 .equ GFX_BASE = $0300 .equ FONT_SIZE = 6 .equ SPALTEN = 240/FONT_SIZE .equ GFX_ZEILEN = 128 .equ TXT_ZEILEN = 128/8 ; 0bxxxxxyyyyyyyyzzz ; x - CHR_OFFSET ; y - CHR_CODE ; z = CHR_LINE .equ CHR_OFFSET
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XPort_PB.pdf
electronic Smaller than your thumb, it includes all essential networking features, including a 10Base- device T/100Base-TX Ethernet connection, proven operating system, an embedded web server, e-mail • Remote command and control of edge alerts, a full TCP/IP protocol stack and 256-bit AES encryption
in „[V] 1Stück neues Lantronix_XPORT_Seriell- LAN Modul (18€)“ · Markt ·
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NCP380-D.PDF
and Hysteresis www.onsemi.com 12 NCP380, NCV380 Low−Level Output Supply Current vs Vin −40°C 25°C 85°C 125°C 2.0 1.8 1.6 1.4 ) 1.2 A ( 1.0 F N I 0.8 0.6 0.4 0.2 0.0 2.4 2.9 3.4 3.9 4.4 4.9 5.4 Vin(V) Figure 18. Standby Current vs Vin High−Level Output Supply Current vs Vin −40°C 25°C 85°C 125°C 100
in „5V USB 500mA Begrenzung“ · Analoge Elektronik und Schaltungstechnik ·
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BCY59.pdf
Collector-emitter VoltageBEV= 0) 32 45 V V CEO Collector-emitter VoltagB (I = 0) 32 45 V V EBO Emitter-base Voltage CI= 0) 7 V C Collector Current 200 mA I Base Current 50 mA B Ptot Total Power Dissipation atamb 25 ⋅C 0.39 mW at Tcase 45 ⋅C 1 W T stg Tj Storage and Junction Temperature – 65 to 200 ⋅C January
in „HiFi Alternative für BC237, BC107 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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BD433_42_CDIL.pdf
RATINGS DESCRIPTION SYMBOL BD433 BD435 BD437 BD439 BD441 UNIT BD434 BD436 BD438 BD440 BD442 Collector Base Voltage V CBO 22 32 45 60 80 V Collector Emitter Voltage V CES 22 32 45 60 80 V Collector Emitter Voltage V CEO 22 32 45 60 80 V Emitter Base Voltage V EBO 5.0 V Collector Current C 4.0 A Collector
in „Lichtsteuerung über i2c - ULN2803A - S12-100“ · Mikrocontroller und Digitale Elektronik ·