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HM8631_HM8632_HM8634__1_.pdf
Operational Amplifiers Typical Performance Characteristics (continued) At TA= +25℃, V CM = V S2, and R =L10kΩ connected to V /2, Snless otherwise noted. 140 120 ) 1d0 n 80 r a e0 S 40 n a C0 0 10 100 1k 10k 100k 1M 10M Frequency(Hz) Channel Separation as a function of Frequency. Short-circuit Current as a function
in „Identifizierung 8 pin SMD Bauteil aus BLDC Controller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MJE13009-D.PDF
CURRENT (AMP) Figure 7. Base−Emitter Saturation Voltage Figure 8. Collector−Emitter Saturation Voltage 10K 4K V = 250 V CE C A 2K ib ( 1K N T = 150°C F 1K T = 25°C E J ( 800 J R100 125°C C 600 C A R 100°C I 400 T A E10 A L 75 , 200 C ob C 50°C C , 1 100 IC 80 25°C REVERSE FORWARD 60 0.1 40 -0.4 -0.2 0 +0.2
in „Elektronischen Halogen-Trafo auf LED-Betrieb umrüsten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
spartan7.pdf
S K3 K3_IO_L16N_T2_34 J6 J6_GND GND 93LC56BT-I_OT X1G0039510002 SG-210SEH 100 MHZ 1k L17P J11 J11_IO_L17P_T2_D30_14 LEDCOA J4 J10 GND GND LED_ESML0603 J4_IO_L17P_T2_34 J10_GND GND L17N J12 J12_IO_L17N_T2_D29_14 DCOB J3 K1 J3_IO_L17N_T2_34 K1_GND L18P J13 J13_IO_L18P_T2_D28_14 D8B M1 M1_IO_L18P_T2_34 K5 K5_GND L18N J14 J14_IO_L18N_T2_D27_14 D11B L1 L1_IO_L18N_T2_34 K7 K7_GND L19P K11 K11_IO_L19P_T3_D26_14 D3B M3 K9 M3
in „FPGA Board mit FT2232H und Spartan7“ · Projekte & Code ·
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Datei
imgres.htm
',authuser:0,kscs:'c9c918f0_qBSNW_OeJcWjwALnmaoo',kGL:'DE'};google.kHL='de';})();google.time=function(){return(new Date).getTime()};google.timers={};google.startTick=function(c,b){var a=b&&google.timers[b].t?google.timers[b].t.start:google.time();google.timers
in „Anschlussplan Thermoschalter / Electrolux Herd Thermo-Schalter 387207902“ · Haus & Smart Home ·
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PDF
HX8352-A.pdf
0 0 0 1 16-bit bus interface,80-system, 262K-Color 0 0 1 0 18-bit bus interface,80-system, 262K-Color 0 0 1 1 8-bit bus interface, 80-system, 262K-Color C9 C10 D3 0603/1u/10V 0603/1u/10V RB521S-30 0 1 0 0 8-bit bus interface, 80-system, 65K-Color 2 2 1 VCI 1 0 0 0 16-bit bus interface,68-system, 65K-Color C11 3 0603/1u/10V VR2 C12 1 0 0 1 16-bit bus interface,68-system, 262K-Color 110K(OPEN) 0805/1u/25V 1 0 1 0 18-bit bus interface,68-system, 262K-Color 1 0 1 1 8-bit bus interface, 68-system, 262K-Color
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wr2_rcm_revb.pdf
1K, 2K, 5K, 10K, 20K, 50K, 100K, 200K, 500K, 1M, 2M} However, values not absolutelyidentical tothoselistedimmediately abovewill berecognizedbythe scopeas numerical data(see thetable under this headinginChapter
in „Oszi einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRL1004.pdf
––– 43 VGS= 4.5V, See Fig. 6 and 13 d(on) Turn-On Delay Time ––– 16 ––– VDD= 20V tr Rise Time ––– 210 ––– D = 78A ns d(off) Turn-Off Delay Time ––– 25 ––– RG= 2.5 , VGS= 4.5V f Fall Time ––– 14 ––– RD= 0.18 , See Fig. 10 L Internal Drain Inductance ––– 4.5 ––– Between lead, D D 6mm (0.25in.) nH G L
in „Mosfet als Schalter 100W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD.pdf
....................................................................................1 8 12.4 P A C K A G I N G .............................................................................................................................................................................1 8 12.5 L ONG -
in „Anfänger braucht Ideen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sheet2.pdf
P4 CR2 PA0 P I U 2 0 7 8 CD3 P I P 4 0Signal GND (Com) PA1 P I U 2 0 7 7 Harness 2 P I P 4 0GND I110k PA2 P I U 2 0Input 1 R3R P5P5 Input 1P I P 4 0Input 1 PA3 P I U 2 0Input 2 PIR301 PIR30P2ID3PID302 GND PPB44 P I P 5 011 Input 2P I P 4 0Input 2 P I U 2 0 RESET/PG5 PA4 P I U 2 0Input 3 POPort 10ITNPUT123456
in „Atmega6450 mit S1D13700, Codeproblem!?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readme.txt
100n | | | | | +----||---+ +----||---| | | 100n | | | | | | +-+ | +---||---+----+ +-+ | | --- | 2,2k | | | | | | | | -- | | | | \ Boot0 --- | | | | | | +-+ \ | | +-+ +--------+ | +---------------------+ | | +----------------------------------------------------------+ | | U +5V | --+ | 16 | TxD | | |
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PDF
High_Output_Light_Sensors.pdf
Output Light Sensors SKYE INSTRUMENTS LIMITED 21 Ddole Enterprise Park Llandrindod Wells LD1 6DF U.K. Tel: +44 (0) 1597 824811 Fax: +44 (0) 1597 824812 General Email: skyemail@skyeinstruments.com TechSales Email: sales@skyeinstruments.com.com Web: www.skyeinstruments.com Updated January 2010 HIGH OUTPUT
in „Lichtsensor analogouput verstärken und digitalisieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Power-Supply-PS-550AC-02.pdf
operating the supply, determine the external capacitor value (C in µF), the maximum output voltage (V in kV), and the maximum energy (J in joules) required for the application using the formula J = ½CV . 2 (Note: A fixed 0.05µF capacitor is built into the supply and must be included in all calculations.)
in „Xenon-Blitz Versuchsaufbau“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_PLA07010B12H-F.pdf
PLA07010B12H-F 2.54 white 3pin(black,red,white) *265mm AWG28(divided) add PVC Lead Wire & Connector: tube 210mm Issued by Approved by Please send one copy of this specification back after you signed approval for production pre-arrangement. Green Product Pb Power Logic Doc. No.: 20101230006 Approved by Audited
in „PWM Signal für FAN“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTS141_DS_14.pdf
2 Ω, ID=0,5*12A 100 d = 400 ms, R I 2 Ω, ID= 12A 84 Thermal resistance junction - case: RthJC 0.84 K/W junction - ambient: 75 RthJA SMD version, device on PCB: 3) R 45 thJA 1 In case of thermal shutdown a minimum sensor holding current of 500 μA has to be guaranteed (see also page 3). 2VLoaddumps setup
in „BTS141 - welcher Pin ist mit dem Gehäuse verbunden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DYPTH01B-SPI_Datasheet.pdf
out, SCK line will remain low. current consumption is critical. 2.2.3 SDAT Reset, INPUT pin, has 50k pull up resister SDAT is to transfer data to MCU. The connected internally, thus during normal SDAT line is valid after SCK goes high. application, the pin should not be tied to Once data are all out, SDAT line will low unless reset is really needed. remain low. 2.2.4 Reset CS, INPUT pin, has 100k pull up. Negative During normal time, Reset pin should be edge will wake up the module and send kept high. In cases when sensor module the previous measured data first, after that can’t output data after
in „Luftfeuchtigkeitssensor an Arduino UNO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA_128_Compact_Flash.pdf
sind mit den obersten drei Adressleitungen des Controllers verbunden. Hierdurch wird der gesamte 64kB umfassende Adressbereich des ATMEGA128 in mögliche acht verschiedene Bereiche eingeteilt. Jeder dieser Bereiche umfasst dabei 8kB. Da hier nur zwei verschiedene Speicher vorhanden sind, werden hier
in „CompactFlash Tutorial ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Richtek-Tech-RT9193-33GB.pdf
0.4 V Voltage Logic-High VIH V IN= 3V to 5.5V, Start-Up 1.2 -- -- Output Noise Voltage e 10Hz to 100kHz, IOUT = 200mA -- 100 -- μV NO C OUT = 1μF RMS Power Supply f = 100Hz -- −70 -- PSRR C OUT = 1μF, OUT = 10mA dB Rejection Rate f = 10kHz -- −50 -- Thermal Shutdown Temperature T -- 165 -- °C SD Thermal
in „CH340C bricht Verbindung ab / Reset“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RT9193-33GB.pdf
0.4 V Voltage Logic-High VIH V IN= 3V to 5.5V, Start-Up 1.2 -- -- Output Noise Voltage e 10Hz to 100kHz, IOUT = 200mA -- 100 -- μV NO C OUT = 1μF RMS Power Supply f = 100Hz -- −70 -- PSRR C OUT = 1μF, OUT = 10mA dB Rejection Rate f = 10kHz -- −50 -- Thermal Shutdown Temperature T -- 165 -- °C SD Thermal
in „Fragen Stromversorgung / Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ACDC_Wandler_Murata_BAC3.pdf
370 VDC Input frequency 47 50/60 63 Hz ▯ Wide input voltage range 85-264VAC/ Switching frequency 64 kHz 120-370VDC Input current Nominal Vin = 115VAC 65 mA ▯Operating temperature range –40°C to Nominal Vin = 230VAC 40 mA Nominal Vin = 115VAC 11 85°C Inrush current A Nominal Vin = 230VAC 23 ▯ 4.25kVDC
in „AC/DC-Spannungswandler - hochfrequentes Noise, richtig so?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
preis2024.pdf
8111 Rigol DM3061 Digitalmultimeter ISO 111,00 8110 Ritz KSW 65 Wickelwandler ISO 42,22 8359 Robin K2002P Messzange ISO 27,75 7145 Robin K2003 Messzange ISO 27,75 7146 Robin K2007 Messzange ISO 27,75 7147 Robin K2009 Strommesszange ISO 27,75 7148 Robin K2608 Messzange ISO 27,75 7149 Robin K3001B Isolations-/Durchgangpr. ISO 44,64 7150 Robin K3111V Isolations-/Durchgangpr. ISO 44,64 7151 Robin K3131 Isolations-/Durchgangpr. ISO 44,64 7152 Robin K4102 Erdungsmessgerät ISO 44,64 7153 Robin KMP4116 Digital-Schleifenprüfgerät ISO 44,64 7154 Robin
in „PeakTech 365eff“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX4626.pdf
40 S S L H R 1.0 -60 -50 P T VIN FALLING I -70 -60 O L 0.5 -80 V+ = 5V -70 50Ω = IN/OUT -90 -80 0 30k 100k 1M 10M 100M 2 3 4 5 6 FREQUENCY (Hz) SUPPLY VOLTAGE (V) 4 _______________________________________________________________________________________ 0.5Ω, Low-Voltage, Single-Supply SPST Analog Switches
in „Selbsthaltener Powerschalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LQH66SN472M03L_Murata_unpw.pdf
3. Measuring Equipment:KEYSIGHT 4194A or equivalent Measuring Frequency:1 MHz / 0.12 to 68 μH 100 kHz / 100 to 680 μH 10 kHz / 1000 to 10000 μH 6.2 DC Resistance DC Resistance shall meet item 3. Measuring Equipment:Digital multi meter 6.3 Self Resonant S.R.F shall meet item 3. Measuring Equipment:
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADT7420.pdf
active low comparator interrupt. Open-drain configuration. A pull-up resistor is required, typically 10 kΩ. 10 CT Critical Overtemperature Indicator. Logic output. Power-up default polarity is active low. Open-drain configuration. A pull-up resistor is required, typically 10 kΩ. 11 GND Analog and Digital
in „STM32F4 mit I2C-Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD590.pdf
predictable but not necessarily desirable. 15V The thermal environment in which the AD590 is used R1 R2 35.7kΩ 2kΩ 97.6kΩ 5kΩ determines two important characteristics: the effect of self- AD581 heating and the response of the sensor with time. Figure 15 is a 30pF model of the AD590 that demonstrates these characteristics
in „AD590 Temperatursensor von Analog Devices - Frage zum Einbau“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX4908-MAX4932.pdf
Supply Voltage shunt resistors. The shunt resistor feature reduces click- ●● -70dB (typ) Crosstalk (20kHz) and-pop sounds by automatically discharging the capacitance ●● -80dB (typ) Off-Isolation (20kHz) at the input terminal when they are not connected. A ●● 0.02% (typ) Total Harmonic Distortion break-before-make
in „Audio Umschlter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sony_str-de485_service_brazil.pdf
-249-417-11 CARBON 1K 5% 1/4W R557 1-249-431-11 CARBON 15K 5% 1/4W R435 1-249-437-11 CARBON 47K 5% 1/4W R560 1-249-429-11 CARBON 10K 5% 1/4W R436 1-249-437-11 CARBON 47K 5% 1/4W R573 1-249-437-11 CARBON 47K 5% 1/4W R442 1
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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PDF
f726564e-8600-11ed-b9f3-173507b98fa1.pdf
150 4,2 FUWTG0015H2 274 255 180 165 150 4,2 FUWTG0022H2 274 255 180 165 150 4,2 FUWTG0040H2 304 280 210 195 200 8,4 FUWTG0055H2 400 330 210 195 200 10,0 FUWTG0075H2 400 330 210 195 200 10,0 FUWTG0110H2 530 510 300 275 220 18,0 FUWTG0150H2 530 510 300 275 220 18,0 FUWTG0220H2 530 510 300 275 220 18,0 1
in „Frequenzumrichter Ersatzteil fuer QM15TB-2H“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pb_digiconnectme9210-1281450_1_.pdf
HARDWARE PROCESSORTYPE 32-bit Digi NS9210 processor ARM CORE ARM926EJ-S PROCESSORSPEED 75 MHz CACHE 4k I/D Cache MEMORYBASEPOPULATION Support up to 8 MB NORFlash;Supportupto16MBSDRAM FLEXIBLEINTERFACEMODULES(FIMS) 300 MHz DRPIC165X CPU;2kprogram/192bytesdataRAM ON-CHIP256-BITAESACCELERATOR Yes POWERMANAGEMENTMODES
in „[V] 18St. DigiConnect ME9210 4/8 Modules for NET+OS (12€ St.)“ · Markt ·
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PDF
pb_digiconnectme9210-1281450.pdf
HARDWARE PROCESSORTYPE 32-bit Digi NS9210 processor ARM CORE ARM926EJ-S PROCESSORSPEED 75 MHz CACHE 4k I/D Cache MEMORYBASEPOPULATION Support up to 8 MB NORFlash;Supportupto16MBSDRAM FLEXIBLEINTERFACEMODULES(FIMS) 300 MHz DRPIC165X CPU;2kprogram/192bytesdataRAM ON-CHIP256-BITAESACCELERATOR Yes POWERMANAGEMENTMODES
in „[V] 2St. neue DIGI-Connect ME Module "Seriell / Lan Umsetzter"“ · Markt ·
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PDF
AEG_Stroboskop_ls_3.pdf
tiberprlifen.Der a ls Eichnormal dienende Schwin ger ragt in den Reflektor hinein. Durch Umlegen des k le i nen, unterhalb des Reflektors angeordneten Hebels, wird das Eichnormal mechanisch angestoBen und schwingt mit 50 Hz. Bei Einstellung der Skala I I . auf die mit "1 ?unkt" "bzw. "2 Punkte" bezeichneten
in „Elko rauh in AEG-Stroboskop von 1955 ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Yaskawa-SGDB-xxADx-x-TSE-S800-16E.pdf
Press the DSPL/SET Key. The motor capacity is displayed. Motor Capacity Display Motor Capacity 05: 0.3 kW 2C: 4.4 kW Motor model 0.5 kW 5.0 kW 0: Σ Series 0A: 0.7 kW 3C: 6.0 kW 1.0 kW 4B: 7.5 kW 4 0F: 1.5 kW 6E: 11.0 kW 14: 2.0 kW 96: 15.0 kW 1E: 3.0 kW 3. Press the DSPL/SET Key. The special specification
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PDF
MB997.pdf
PCB.SCH) 1/9/2012 1 6 1 2 3 4 1 2 3 4 TCK/SWCLK TMS/SWDIO POPA13 T_NRSTPISB1PISB10PONRST SWD R6R 10K R7R Not Fitted T_SWOPISB1212SB120211 POPB3 A PIR60PIR602 PI100KIR702 I 12 D A Board Ident: PC13=0 COR T T K R1313 D2D L E PIR50PIR502 _ _ _ _ J SWD 10K10 R2R2 AIN_10 U R I I IMR I M P I D P I D 2 01002021
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX3949_Datenblatt.pdf
is (4.7kΩ to 10kΩ)CCo V VCC - 0.1 V Output Low Voltage VOL External pullup is (4.7kΩ to 10kΩ)CCo V 0.4 V (SDA, FAULT) 3-WIRE DIGITAL INTERFACE TIMING CHARACTERISTICS (Figure 5) SCL Clock Frequency f 400 1000
in „MAX3949 über I2Can Arduino wird nicht gefunden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SG6841V2.1.pdf
Increasing the resistance will decrease the current source and reduce the switching frequency. A 26kΩ resiitor Res a 50uA constant curient I and generates 65kHz switching frequency. Temperature For over-temperature protection. An external NTC thermistor is connected from this pin 5 RT to ground. The
in „SNT fiept im Leerlauf“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Dokumentation.pdf
eine max. Umgebungstemperatur von 30°C ange- nommen. Berechnung für IRF4905: ϑj=175 °C R thJC=0,75 K/W R thCS=0,5 K/W 2 2 PV= (R DSOn RDSOn2)× I = (0,02 Ω 0,02 Ω)×(50 A) = 25 W ϑ j− ϑU 175 C 30 C ° Rth= = = 5,8 K /W PV 25 W RthS= Rth R thjC R thCS 5,8 K /W −0,75 K /W −0,5 K /W = 4,55 K /W Berechnung für STP60NE06L-16: ϑj175°C R thJC0,94 K/W R thCS0,5 K/W 2 2 PV= (R DSOn RDSOn2)× I = (0,016 Ω 0,016 Ω)×(10 A) = 0,8 W ϑ j− ϑU 175 C 30 C ° Rth= = =14,5 K /W PV 10 W RthS= Rth R thjC R thCS14,5 K /W −0,94 K /W −0,5 K /W =13,06 K /W 7 8ϑjmax
in „Vielen Dank!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fairchild_FDS9936A.pdf
Components Cover Tape Trailer Tape Leader Tape 640mm minimum or 1680mm minimum or 80 empty pockets 210 empty pockets July 1999, Rev. B SO-8 Tape and Reel Data and Package Dimensions, continued SOIC(8lds) Embossed Carrier Tape Configuration: Figure 3.0 P0 D0 T E1 F W K0 Wc E2 B0 Tc A0 P1 D1 User Direction
in „CCFL-Inverter reparieren...“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rd15hvf1-1.pdf
RoHS Compliance, Silicon MOSFET Power Transistor, 175MHz, 15W TEST CIRCUIT(f=175MHz) Vgs Vds L3 1.0kΩ 22μF 2200pF 2200pF 220μF 8.2kΩ 1kΩ L2 2200pF 2200pF L1 RF_OUT RD15HVF1 210pF RF_IN 27Ω 100pF 22pF 12pF 27pF 24pF 30pF 24pF 24pF 24pF 33pF 24pF 30pF 24pF 3 5 20 8 12 26 14 42 17 70 19 90 32 100 60 72
in „RD15HVF1 Fake oder nicht Fake das ist hier die Frage ;)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP73837.pdf
REG UVLO 72.7k - - 470.6k PRECONDITION + TERM 48k PROG2 - + CHARGE CHARGE 6k STAT1 CONTROL, + VA TIMER, AND 157.3k - STATUS VO LOGIC REG STAT2 + - LDO 175k PG (TE) + 50µA - HTVT 470.6k THERM + LTVT - 175k 121k 1M VSS
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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PDF
173193-da-01-en-MT_8870.pdf
/MT8870D-1 Differential Input Amplifier provides a differential-input operational amplifier as C 1C 210 nF well as a bias source (VRef) which is used to bias the R 1R 4R 5100 k All resistors are ±1% tolerance. R 260k , R3=37.5 k All capacitors are ±5% tolerance. inputs at mid-rail. Provision is made for
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PDF
BobBeckPaper.pdf
electrical changes or ego Improvements are attempted. 7555 CMOS timer chip (generic) IC1 $1.80 100 k ohm 3 watt 5% resistor R 1 .07 1 meg Ω 3 watt 5% resistor R 2 .07 2.2k Ω 3 watt 5% resistor R 3 .07 1 k Ω 3 watt 5% resistor R 4 .07 100k Ω linear taper pot, ½ watt Caltronics P-68 R 5 2.56 200 μF 20
in „Niederfrequenz 3,93 Hz Rechtecksignal Shchaltung messen - Hilfe?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Glyn_2_83_C0280QGMA-T_Tentative_Spec_V0_1_-_GLYN.pdf
Image Data format for 24bit CPU interface (16.7M color) Image Data format for 18bit CPU interface (262k color) Image Data format for 16bit CPU interface Case 1: RGB Data 4-4-4 bits (4k color) Case 2: RGB Data 5-6-5 bits (65k color) 11 w w w .g ly n .d e www.glyn.com Support by : Document No.: Case 3: RGB Data 6-6-6 bits (262k color) Case 4: RGB Data 8-8-8 bits (16.7M color) Image Data format for 9bit CPU interface (262K color) Image Data format for 8bit CPU interface Case 1: RGB Data 4-4-4 bits (4k color) 12 w w w .g ly n
in „[V] AM OLED 2,8inch Display C0280QGMA-T von CMEL“ · Markt ·
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PDF
ADM660_8660.pdf
than 80% efficiency. TSSOP package. A Frequency Control (FC) input pin is used to select either 25 kHz or 120 kHz charge-pump operation. This is used to ADM660/ADM8660 Options optimize capacitor size and quiescent current. With 25 kHz selected, a 10 µF external capacitor is suitable, while with 120kHzption
in „[V] 48St. AnalogDevice ADM660 SMD CMOS Switched-Capacitor Voltage Converters / Inverts or Doubles“ · Markt ·
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PDF
LT1082.pdf
Quiescent Current 4.5mA 6mA 0.6Vandthecurrentoutofthepinreachesapproximately Operating Frequency 60kHz 40kHz 350 A, the switching frequency will shift down from Flyback Reference Voltage 16.2 + 0.6 (35k /R ) FB + 0.35 (7k /R ) FB 60kHz to 12kHz. USER NOTE: This data sheet is only intended to provide
in „Boost Converter 2MHz 50V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UV1316.pdf
dB IF output residual carrier FM caused by Is − − 5 kHz cross-talk VESD electrostatic discharge (ESD) note 1 2 − − kV on all pins oscillator characteristics: oscillator tuning resolution − − ±250 kHz oscillator instability VS= 5 V ±10%; − − ±500 kHz Tamb
in „C-Box 2 Platine von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UV1316.pdf
dB IF output residual carrier FM caused by Is − − 5 kHz cross-talk VESD electrostatic discharge (ESD) note 1 2 − − kV on all pins oscillator characteristics: oscillator tuning resolution − − ±250 kHz oscillator instability VS= 5 V ±10%; − − ±500 kHz Tamb
in „TV-PLL Tuner Philips FI1216 MK2/1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eao_Serie_31.pdf
Continuation see next page Operating voltage Typ-Nr. e Series resistor 230/240 V 02-904.7 0.003 10 kΩ, for filament lamp 48 VAC, 25 mA 2.7 kΩ, for filament lamp 48 VAC, 25 mA 110 V 02-904.0 0.003 3.3 kΩ, for filament lamp 48 VAC, 25 mA 125 V 02-904.1 0.003 4.7 kΩ, for filament lamp 48 VAC, 25 mA 145
in „[S] Custom Tastaturkappen mit individueller Beschriftung“ · Markt ·
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PDF
eao_Serie_31.pdf
Continuation see next page Operating voltage Typ-Nr. e Series resistor 230/240 V 02-904.7 0.003 10 kΩ, for filament lamp 48 VAC, 25 mA 2.7 kΩ, for filament lamp 48 VAC, 25 mA 110 V 02-904.0 0.003 3.3 kΩ, for filament lamp 48 VAC, 25 mA 125 V 02-904.1 0.003 4.7 kΩ, for filament lamp 48 VAC, 25 mA 145
in „Taster für Kanalumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
142c38eef4c5eb392531e1bacd4aee1b.pdf
1 P d 1.5Max (15.69) . T n 0 . v C D A ) m a u ) e r -4 n 0Ø B r 9. U e 1 37 5 e i a c l u B t n0 K K K K u0 9 4 3 2 1 e a 0 px ± & n . ) 5 D s U a Y o T ( 4 p ( (4.01) . . 0 e . 0 ) 4 0 (23.82) ) 5 ) ± 0 1 0 68.25±0.15 0.475±0.150 NOTE 1: FPC,BL,TP etc. may have not only one provider, appearance,
in „Raspberry Pi Rev A TFT Display?“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
msp430fr5729.pdf
logic-level square- (2) (3) XT1,LF,SW wave input frequency, LF mode XTS = 0, XT1BYPASS = 1 10 32.768 50 kHz XTS = 0, XT1BYPASS = 0, XT1DRIVE = {0}, 210 f = 32768 Hz, C = 6 pF OA LF Oscillation (4)owance for XT1,LF L,eff kΩ LF crystals XTS = 0, XT1BYPASS = 0, XT1DRIVE = {3}, 300 f = 32768 Hz, C = 12 pF XT1
in „Implementierung eines ADT7301 an einem MSP430FR5729“ · Mikrocontroller und Digitale Elektronik ·
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AD8132.pdf
Table 2. Parameter Conditions Min Typ Max Unit DYNAMIC PERFORMANCE −3 dB Bandwidth ΔV = 600 mV p-p 210 MHz OCM Slew Rate ΔV OCM= −1V to +1V 400 V/μs InputVoltage Noise (RTI) f = 0.1 MHz to 100 MHz 12 nV/√Hz DC PERFORMANCE InputVoltage Range ±3.6 V Input Resistance 50 kΩ Input OffsetVoltage VOS, cm OUT
in „Schutzbeschaltung für ADC“ · Mikrocontroller und Digitale Elektronik ·