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PDF
Datasheet_DRV8711.pdf
LOGIC-LEVEL INPUTS VIL Input low voltage 0.8 V VIH Input high voltage 1.5 V VHYS Input hysteresis voltage 300 mV I Input low current V = 0 V –5 5 μA IL IN IH Input high current VIN= 5 V 30 50 70 μA SDATAO, STALLn, FAULTn OUTPUTS (OPEN-DRAIN OUTPUTS) V Output low voltage I = 5 mA 0.5 V OL O OH Output high leakage
in „DRV8711 Steppermotortreiber - Hohe Geschwindigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
drv8711.pdf
LOGIC-LEVEL INPUTS VIL Input low voltage 0.8 V VIH Input high voltage 1.5 V VHYS Input hysteresis voltage 300 mV I Input low current V = 0 V –5 5 μA IL IN IH Input high current VIN= 5 V 30 50 70 μA SDATAO, STALLn, FAULTn OUTPUTS (OPEN-DRAIN OUTPUTS) V Output low voltage I = 5 mA 0.5 V OL O OH Output high leakage
in „UV-Laserdrucker II“ · Platinen ·
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PDF
GC9306_DS_V1.01.pdf
4.000 6'h18 5.100 6'h2e 6.200 6'h03 4.050 6'h19 5.150 6'h2f 6.250 6'h04 4.100 6'h1a 5.200 6'h30 6.300 6'h05 4.150 6'h1b 5.250 6'h31 6.350 6'h06 4.200 6'h1c 5.300 6'h32 6.400 6'h07 4.250 6'h1d 5.350 6'h33 6.450 6'h08 4.300 6'h1e 5.400 6'h34 6.500 Description 6'h09 4.350 6'h1f 5.450 6'h35 6.550 6'h0a
in „Einzelne Pixel bei TFT mit GC9306/ILI9341“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1040-D.PDF
greased 0.329 0.400 flange or tab) are mounted the same as their non–insulated Sil–Pad 1000 0.400 0.300 counterparts. However, as with any mounting system CHO–THERM 1674 0.433 – Thermasil II 0.500 – where pressure is bearing on plastic, the overmolded type Sil–Pad 400 0.533 0.440 should be used with a
in „Welches Transistorgehäuse ist am besten zu kühlen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1040-D.PDF
greased 0.329 0.400 flange or tab) are mounted the same as their non–insulated Sil–Pad 1000 0.400 0.300 counterparts. However, as with any mounting system CHO–THERM 1674 0.433 – Thermasil II 0.500 – where pressure is bearing on plastic, the overmolded type Sil–Pad 400 0.533 0.440 should be used with a
in „Wärmewiderstand Rthg - Rthgk“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN1040-D.PDF
greased 0.329 0.400 flange or tab) are mounted the same as their non–insulated Sil–Pad 1000 0.400 0.300 counterparts. However, as with any mounting system CHO–THERM 1674 0.433 – Thermasil II 0.500 – where pressure is bearing on plastic, the overmolded type Sil–Pad 400 0.533 0.440 should be used with a
in „Gibt es Alternativen zu Silikonpads?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1040-D.pdf
greased 0.329 0.400 flange or tab) are mounted the same as their non–insulated Sil–Pad 1000 0.400 0.300 counterparts. However, as with any mounting system CHO–THERM 1674 0.433 – Thermasil II 0.500 – where pressure is bearing on plastic, the overmolded type Sil–Pad 400 0.533 0.440 should be used with a
in „Kurzschluss durch Kühlörper?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN1040-D.PDF
greased 0.329 0.400 flange or tab) are mounted the same as their non–insulated Sil–Pad 1000 0.400 0.300 counterparts. However, as with any mounting system CHO–THERM 1674 0.433 – Thermasil II 0.500 – where pressure is bearing on plastic, the overmolded type Sil–Pad 400 0.533 0.440 should be used with a
in „Reicht das Eloxal als Isolierung?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
AN1040-D.pdf
greased 0.329 0.400 flange or tab) are mounted the same as their non–insulated Sil–Pad 1000 0.400 0.300 counterparts. However, as with any mounting system CHO–THERM 1674 0.433 – Thermasil II 0.500 – where pressure is bearing on plastic, the overmolded type Sil–Pad 400 0.533 0.440 should be used with a
in „MOSFET Power Dissipation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IA4421-DS.pdf
detect threshold Programmable in 0.1 V steps 2.25 3.75 V lb Vlba Low battery detection accuracy ± 3 % V il Digital input low level voltage 0.3·Vdd V V ih Digital input high level voltage 0.7·Vdd V il Digital input current V il0 V -1 1 µA ih Digital input current V ihV ,dd =dd.8 V -1 1 µA V ol Digital output
in „Software SPI zur Chip Konfig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADXL350.pdf
setup time 8 SU, STO t9 1.3 µs tBUF, bus-free time between a stop condition and a start condition t10 300 ns tR, rise time of both SCL and SDA when receiving 0 ns t , rise time of both SCL and SDA when receiving or transmitting R t11 250 ns tF, fall time of SDA when receiving 300 ns tF, fall time of both
in „Beschleunigungssensor Unklarheiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADXL350.pdf
setup time 8 SU, STO t9 1.3 µs tBUF, bus-free time between a stop condition and a start condition t10 300 ns tR, rise time of both SCL and SDA when receiving 0 ns t , rise time of both SCL and SDA when receiving or transmitting R t11 250 ns tF, fall time of SDA when receiving 300 ns tF, fall time of both
in „Neigungswinkelinkelmessung beweglicher Teile“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TMP117.pdf
ns tLOW SCL clock low period 1300 ns tHIGH SCL clock high period 600 ns 20 × tF– SDA Data fall time 300 ns (V+ /5.5) tF,Rt – SCL Clock fall and rise time 300 ns A t Rise time for SCL ≤ 100 kHz 1000 ns D R Serial bus timeout (SDA bus released if there is no clock) 20 40 ms V A (1) The master and device
in „Präzise Temperaturmessung mit 12Bit-ADC und NTC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY22393.pdf
to SCLK HIGH 100 ns SU DH Data hold (SCLK LOW to data transition) 0 ns Rise time of SCLK and SDAT 300 ns Fall time of SCLK and SDAT 300 ns Stop mode time from SCLK HIGH to SDAT HIGH 0.6 µs Stop mode to Start mode 1.3 µs Document #: 38-07186 Rev. *B Page 11 of 19 CY22393 CY22394 CY22395 Maximum Ratings
in „Flah Programmable Clock Generator CY22393“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stfpc311.pdf
Typ Max Unit V Logic Supply Voltage 3.0 3.3 3.6 V DD V 0.7V V IH High-Level Input Voltage DD DD V V IL Low-Level Input Voltage 0 0.3 VDD V VSS Driver Supply Voltage 0 V DD-33.3 V 28/39 STFPC311 10 Maximum rating 10.1 Power consumption estimation The maximum power consumption is comprised of the Vacuum
in „VFD flackert (ausgschaltete Segmente)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
25AA128.pdf
2009 Microchip Technology Inc. DS21831D-page 15 25AA128/25LC128 8-Lead Plastic Dual In-Line (P) – 300 mil Body [PDIP] Note: For the most current package drawings, please see the Microchip Packaging Specification located at http://www.microchip.com/packaging N NOTE 1 E1 1 2 3 D E A A2 L A1 c e b1 eB
in „SPI EEPROM -> Kein Page read :- O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
70599B.pdf
following testing has been completed: • The MRF24J40MB transmit power setting Test standard ETSI EN 300 328 V1.7.1 (2006-10): (RFCON3 0x203) cannot exceed -14.9 dB. This is to meet the requirements of ETSI EN 300 328 • Maximum Transmit Power v1.7.1 (2006-05), Maximum e.i.r.p. spectral • Maximum EIRP Spectral
in „AVR32UC3B mit Funkmodul MRF24J40MB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cd4066b.pdf
to V TA= 85°C 500 DD TA= 125°C 500 TA= –55°C 200 T = –40°C 210 A VDD= 15V TA= 25°C 125 240 TA= 85°C 300 TA= 125°C 320 Copyright © 2024 Texas Instruments Incorporated Submit Document Feedback 7 Product Folder Links: CD4066B CD4066B SCHS051J – NOVEMBER 1998 – REVISED AUGUST 2024 www.ti.com 5.5 Electrical
in „Audi Delta mit Bluetooth per AM Taste“ · Fahrzeugelektronik ·
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PDF
W25Q64FV.PDF
......................................................................6 3.3 Pin Configuration PDIP 300-mil............................................................................................7 3.4 Pin Description SOIC/VSOP 208-mil, WSON 6x5/8x6-mm and PDIP 300-mil....................7 3.5 Pin Configuration SOIC 300-mil...........................................................................................8 3.6 Pin Description SOIC 300-mil......................................................................
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PDF
MCF51QE128-1.pdf
TYPICAL V OL VS VDD 1.2 0.2 25°C 1 –40°C 0.15 0.8 V V L0.6 (L 0.1 O O V0.4 V 85°C,I = 2 mA 0.05 25°C,IL = 2 mA 0.2 –40°C,I = 2 mA OL 0 0 0 5 10 15 20 1 2 3 4 V DD(V) OL (mA) Figure 5. Typical Low-Side Driver (Sink) Characteristics — Low Drive (PTxDSn = 0) TYPICAL VOL VS IOLAT V DD= 3.0 V TYPICAL V OL VS
in „Eingangsspannungsbereich ADC Coldfire“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7416_7_8_f.pdf
INPUTS Input High VoltageIHV VDD ¥ 0.7 V DD¥ 0.7 V min Input Low Voltage, V V ¥ 0.3 V ¥ 0.3 V max IL DD DD Input Leakage Current 1 1 mA max DIGITAL OUTPUTS Output Low Voltage, OL 0.4 0.4 V max IOL= 3 mA. Output High Current 1 1 mA max V OH= 5 V. POWER REQUIREMENTS VDD 5.5 5.5 V max For Specified Performance
in „I²C-Code - fehlt noch was?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RIGOL-DSA815_TG-CalibrationData_Test-7.pdf
700,000 800,000 00390130 00 00 00 00 60 ae 0a 00 00 00 00 00 00 35 0c 00 ....`®.......5.. 1,100,000 1,300,000 00390140 00 00 00 00 e0 c8 10 00 00 00 00 00 20 d6 13 00 ....àÈ...... Ö.. 2,000,000 2,400,000 00390150 00 00 00 00 80 84 1e 00 00 00 00 00 00 9f 24 00 ....€„.......Ÿ$. test graphic line 1 3,300,000
in „Rigol DSA815 Spektrum Analyser“ · PC Hard- und Software ·
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PDF
20240122_Waasner_Katalog.pdf
YUI 1 - 60 180,00 240,00 180,00 60,00 60,00 60,00 11,0 120,00 30,000 210,000 14.540 3 UI 180 / EI 300/300 YUI 2 - 60 300,00 240,00 180,00 60,0 11,0 240,00 30,00 210,00 31.100 UI 120 YUI 1 - 70 210,00 280,00 210,00 70,00 70,00 70,00 15,0 140,00 35,000 245,000 14.545 3 UI 210 / EI 350/350 YUI 2 - 70 350,00
in „Was ist aus dem Transduktor geworden?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Speicher.pdf
Typ Max Min Typ Max tRC(1.8V=60ns, Sequential ICC1 3.3V=50ns) - 8 15 - 10 20 mA Read Operating CE=V IL, OUT=0mA Current Program ICC2 - - 8 15 - 10 20 mA Erase ICC3 - - 8 15 - 10 20 mA CE=V IH, Stand-by Current (TTL) ICC4 PRE=WP =0V/Vcc - - 1 - 1 mA CE=Vcc-0.2, Stand-by Current (CMOS) ICC5 PRE=WP=0V/Vcc
in „SD Karte selber bauen!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltungskonzepte_zum_Betrieb_von_Leuchtdioden_fuer_die_Allgemeinbeleuchtung.pdf
tern. Darin bezeichnet 𝐼 den höchsten Absolutwert der Spitzenwerte 𝐼 und 𝐼 . p(abs) p+ p− 400 0.4 300 ≤ 65° ━━━ Netzspannung 0.3 ━━━ Netzstrom p+ 200 0.2 V i 100 ≥ 90° 0.1 A ) +0.05𝐼 ≤ 60° i ( 0 p(abs) 0 ) g −0.05𝐼p(abs) 𝑖 u ≤ 60° m n -100 -0.1 r a ≥ 90° S S -200 -0.2 p− -300 -0.3 ≤ 65° -400 -0.4
in „PFC? Wozu diese Ladekondensatorschaltung im Schaltnetzteil?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Cypress_CY8C58LP_001-84932_0F-491909.pdf
,PRT[x]CTL=1,V ≥2.7 V 2.0 – – V IH DDIO V IL Input voltage low threshold LVTTLInput,PRT[x]CTL=1,V DDIO <2.7 V – – 0.3 x V VDDIO V IL Input voltage low threshold LVTTLInput,PRT[x]CTL=1,V DDIO ≥2.7 V – – 0.8 V V Output voltage high I = 4 mA at 3.3
in „UART-Schnittstelle 2x verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LPSF096064A00-T3_SSD1332_.pdf
Level Iout =100uA, 3.3MHz 0.8V DD - V DD V Low Logic Input Level Iout =100uA, 3.3MHz - 0.2V D V V IL 0 D ICC VCC Supply Current VDD2.7V,Display ON - 770 - uA Contrast =FF, No panel attached V DD.7V,Display ON IDD VDD Supply Current Contrast =FF, No panel attached - 170 uA fc Forward current All pixel
in „Verkaufe OLED Displays FullColor 128*128 bzw. 96*64“ · Markt ·
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PDF
A4989-Datasheet-1.pdf
Range V DD 3.0 – 5.5 V Logic Supply Current DD – – 10 mA Logic Supply Idle Current I RESET = 0 – – 300 μA DDQ Regulator Output VREG REGInt 30 mA 11.25 – 13 V Bootstrap Diode Forward Voltage V I = 10 mA 0.6 0.8 1 V fBOOT fBOOT Gate Output Drive Turn-On Rise Time t C = 1000 pF, 20% to 80% 80 120 160 ns
in „Masseflächen?“ · Platinen ·
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PDF
Product_preview_LPSF096064A00-T3__Rev_4.0_.pdf
Level Iout =100uA, 3.3MHz 0.8V DD - V DD V Low Logic Input Level Iout =100uA, 3.3MHz - 0.2V D V V IL 0 D ICC VCC Supply Current VDD2.7V,Display ON - 770 - uA Contrast =FF, No panel attached V DD.7V,Display ON IDD VDD Supply Current Contrast =FF, No panel attached - 170 uA fc Forward current All pixel
in „[V] 2,4GHz Transceiver(CortexM3) Chip-Antenne, Balun.“ · Markt ·
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PDF
TMP006_IR_temperatur_I2C__sbos518.pdf
INTERFACE Logic input high voltage (SCL, SDA) VIH 2.1 V Logic input low voltage (SCL, SDA) V 0.8 V IL Hysteresis 100 mV Output low voltage (SDA) V OL OUT = 6 mA 0.15 0.4 V Output low sink current (SDA) 6 mA Logic input current Forced to 0.4 V –1 +1 µA Input capacitance (SCL, SDA, A0, A1) 3 pF Clock frequency
in „Temperaturfühler TMP006 von T, wie anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADuM5400.pdf
DC SPECIFICATIONS Logic High InputThreshold V IH 0.7 ×V DD1 V Logic Low InputThreshold V 0.3 ×V V IL DD1 LogicHighOutputVoltages V OH VISO− 0.3 5.0 V IOx −20 µA,V =Ix IxH V − 0.5 4.8 V I = −4 mA,V =V ISO Ox Ix IxH Logic Low OutputVoltages V OL 0.0 0.1 V IOx 20 µA,V =Ix IxL 0.0 0.4 V IOx 4 mA,V =VIx
in „ADUM5400 (Optokoppler) läuft nicht korrekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM73.pdf
V = V 0.01 2 µA (max) IH; ADDRESS IN DD I Address Pin Low Input Current V = 0 V –0.01 –2 µA (max) IL;ADDRESS IN SMBus DIGITAL SWITCHING CHARACTERISTICS Unless otherwise noted, these specifications apply for V= +2.7 V to +5.5 V, C (load capacitance) on output lines = 400 pF. DD L Boldface limits apply
in „LM73 über TWI/I2C mit Atmega1281 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ch24101d.pdf
gleich wird folgendermaßen bestimmt: 25 A rmsst, wodurch der Wandler nach der Überlast R = 75 Ω bei 300 A für V = 15 V auskühlen kann; M max C S = 300 A / 2500 = 120 mA d) im ungünstigsten Fall wiederholen sich die Sequenz b) und c) kontinuierlich. 18 Halleffekt Technologie: Closed-Loop Das Diagramm Bild
in „Strommessung berührungsfrei“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3B036723d01.pdf
1 0 1 0 0 4 16 2048 1953 1200 977 900 1 0 1 0 1 4 32 1024 977 600 488 450 1 0 1 1 0 4 64 512 488 300 244 225 1 0 1 1 1 4 128 256 244 150 122 113 1 1 0 0 0 13 1 10082 9615 5908 4808 4431 1 1 0 0 1 13 2 5041 4808 2954 2404 2215 1 1 0 1 0 13 4 2521 2404 1477 1202 1108 1 1 0 1 1 13 8 1260 1202 738 601 554 1 1 1 0 0 13 16 630 601 369 300 277 1 1 1 0 1 13 32 315 300 185 150 138 1 1 1 1 0 13 64 158 150 92 75 69 1 1 1 1 1 13 128 79 75 46 38 35 Note: The examples shown above do not apply when the part is operating in slow mode (see Section
in „unbekanntes Touchpad, wie anschliessen und verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bestandsliste.pdf
0,26 € 1,02 € 333 L*3686 Birnchen 3.6 V 500mA Linsenform 2Stk 0,15 € 0,29 € 334 L*3644 Birnchen 3.7 V 300mA E10 Linsenform 5Stk 0,28 € 1,39 € 335 L*3626 Birnchen 3.7V 300mA E10-Sockel 6Stk 0,08 € 0,50 € 336 BI18 Birnchen 3.8V 300mA Olivenform 92Stk 0,12 € 10,81 € 337 L*3218 Birnchen 3V 40 mA T1 3.18x6.35mm
in „Auflösung Elektronik Shop“ · Markt ·
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PDF
HBD855-D_Thyristor_Theory.pdf
accept the output of controlled from a switch or some form of digital logic. +5 V 200 W +5 V 7400 300 150 Ω MOC 115 V ADDRESS MC6820 2N6071 OR 3031 (RESISTIVE MC6821 LOAD) MC68000 MOTOR MPU OR 300 300 Ω MC6846 DATA I/O MOC 230 V 3041 2N6073 (INDUCTIVE LOAD) 1 kΩ +5 V Figure 6.35. M68000 Microcomputer
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm317-1.pdf
150˚C Lead Temperature Thermal Limit Burn-In All Devices 100 Metal Package (Soldering, 10 seconds) 300˚C Plastic Package (Soldering, 4 seconds) 260˚C ESD Tolerance (Note 5) 3 kV Electrical Characteristics (Note 3) Specifications with standard type face are Jor25˚C, and those with boldface type apply
in „Konstantstromquelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BF1009S_Appnote__INF.pdf
V 37 IF= 10.7 MHz ΔF = 75 kHz typ. 600 mVrms AF output voltage V 37 IF= 21.4 MHz ΔF = 75 kHz typ. 300 mVrms THD THD 37ΔF = 75 kHz typ. 0.3 % THD detuned THD 37ΔF = 75 kHz ± 50 kHz max. 0.8 % *) Integrator currents are measured between the output pin (-pole of the measurement equipment) and a voltage
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PDF
LM317__NAT.pdf
150˚C Lead Temperature Thermal Limit Burn-In All Devices 100 Metal Package (Soldering, 10 seconds) 300˚C Plastic Package (Soldering, 4 seconds) 260˚C ESD Tolerance (Note 5) 3 kV Electrical Characteristics (Note 3) Specifications with standard type face are Jor25˚C, and those with boldface type apply
in „Frage zu Spannungs/Stromregelschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GU256X16-333A_1.pdf
Condition Min. Typ. Max. Unit High level input voltage V IH - 3.5 - VCC 1 V Low level input voltage V IL - 0 - 1.5 V High level output voltage VOH OH =-40uA 4.2 - - V Low level output voltage VOL OL =1.6mA - - 0.5 V Power Supply Current1 CC 1 - - 22 27 mA Power Supply Current2 CC 2-1 all dots ON - 1100
in „[V] Riesiges VFD Grafikdisplay mit 256x16 Pixeln von Noritake“ · Markt ·
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PDF
GU256X16-333A_1.pdf
Condition Min. Typ. Max. Unit High level input voltage V IH - 3.5 - VCC 1 V Low level input voltage V IL - 0 - 1.5 V High level output voltage VOH OH =-40uA 4.2 - - V Low level output voltage VOL OL =1.6mA - - 0.5 V Power Supply Current1 CC 1 - - 22 27 mA Power Supply Current2 CC 2-1 all dots ON - 1100
in „{V] Verkaufe MEGA VFD Grafikdisplay von Noritake“ · Markt ·
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PDF
G104V1-T01.pdf
220G, 2ms, half sine wave, 1 time for ± X, ± Y, ± Z. (2)(3) 10 Vibration (Non-Operating) 1.5G, 10 ~ 300 Hz, 10min/cycle, 3 cycles each X, Y, Z (2)(3) Note (1) Temperature and relative humidity range is shown in the figure below. (a) 90 %RH Max. (Ta ¡Ø 40 ºC). (b) Wet-bulb temperature should be 39 ºC Max
in „Analoges Videosignal in TFT Panel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mic29150.pdf
7.5 10.0 MIC29750 V OUT= 0V 9.5 15 en, Output Noise Voltage C L= 10µF 400 (10Hz to 100kHz) µV (rms) IL= 100mA C L 33µF 260 Ground Current in MIC29150/1/2/3 only 2 10 µA Shutdown V EN= 0.4V 30 Reference − MIC29xx2/MIC29xx3 Reference Voltage 1.228 1.240 1.252 V 1.215 1.265 Reference Voltage 1.203 1.277
in „Anschluss MIC29301“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TST035QVIH-28D.pdf
LCD optical specifications SPECIFICATIONS ITEM SYMBOL CONDITIONS UNIT NOTE MIN TYP. MAX Luminance L IL=20mA 500 550 580 Cd/m 2 Contrast Ratio CR θ=0° 200 300 T ON 35 50 ResponseTime T OFF 25℃ ms XR 0.609 0.639 0.669 Red YR 0.314 0.344 0.374 XG 0.264 0.294 0.324 CIE Green YG Viewing normal 0.557 0.587
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PDF
datasheet.pdf
Max. MODULE: Power Supply Input Voltage VDD 3.0 3.3 3.6 Vdc Power Supply Input Current IDD 0.270 0.300 0.330 A 1 Ripple/Noise - - 50 - mV Logic Input Level, High V IH 2.0 - VDD +0.3 Vdc 2 Logic Input Level, Low V IL - 0.3 - 0.8 Vdc 2 Power Consumption Pc 0.9 1.0 1.1 Watts 1 BACK LIGHT Back light Input
in „HDMI/CV zu LVDS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AV02-3563EN_DS_ACPL-C87x_04Mar2013.pdf
classification per DINVDE 0110/1.89,Table 1 for rated mains voltage ≤ 150Vrms I-IV for rated mains voltage ≤ 300Vrms I-IV for rated mains voltage ≤ 450V rms I-IV for rated mains voltage ≤ 600Vrms I-IV for rated mains voltage ≤ 1000Vrms I-III Climatic Classification 55/105/21 Pollution Degree (DINVDE 0110/1.89)
in „Hochspannung galvanisch getrennt messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
01149c.pdf
MCP73837 device employs the end of e 400 t charge (EOC) methods of charge current termination a3.0 e l 300 u threshold, safety timer and shutdown. Figure 8 shows V C that the minimum current is reached before time-out r2.0 200 g occurs. The MCP73837 device monitors the charge t a B1.0 Typical 950 mAh Li-Ion
in „Frage zu AN1149 - Load Sharing Microchip“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2940T-10.0.pdf
MAX LM2940C 10 15 VIN = VO+ 5V, IO= 1A 30 45/60 30 45/60 mA MAX Output Noise 10 Hz − 100 kHz, 270 300 µVrms Voltage IO= 5 mA Ripple Rejection fO= 120 Hz, 1 Vrms, IO= 100 mA LM2940 64 52/46 63 51/45 dBMIN LM2940C 64 52 Long Term 34 36 mV/ Stability 1000 Hr Dropout Voltage IO= 1A 0.5 0.8/1.0 0.5 0.8/1.0
in „Low Drop Low Current Spannungsregler 10V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZLDO1117.pdf
150 °C Unless otherwise stated voltages specified are relative to the ANODE pin. 1.2 1 0.8 A (D0.6 O IL SOA 0.4 0.2 0 0 5 10 15 20 25 V IN VOUT(V) Safe Operation Area (SOA) Curve ESD Susceptibility Symbol Parameter Rating Unit HBM Human Body Model 4 kV MM Machine Model 400 V Stresses greater than the '
in „Def. Mikrocontroller auf Geschirrspüler-Platine?“ · Haus & Smart Home ·
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PDF
Switch.pdf
4N Kein Ohne Kappe Lötöse mit Gewinde Concave 611-AP2C300TZBE AP2C300TZBE 2N Konkav Ohne Kappe Lötöse 611-AP4C300TZBE AP4C300TZBE 4N Konkav Ohne Kappe Lötöse Buchsenarten 611-AP2D200TZBE AP2D200TZBE 2N Gewölbt/Konvex Schwarz Lötöse ABMESSUNGEN: mm (Zoll) 611-AP2D300TZBE AP2D300TZBE 2N Gewölbt/Konvex Rot Lötöse 611-AP2D200TWBE AP2D200TWBE 2N Gewölbt/Konvex Schwarz Anschlussdraht 611-AP4D200TZBE AP4D200TZBE 4N Gewölbt/Konvex Schwarz Lötöse 611-AP4D300TZBE AP4D300TZBE
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·