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PDF
WS2812.pdf
brightness display, completed 16777216 color full color display, and scan frequency not less than 400Hz/s. l Cascading port transmission signal by single line. l Any two point the distance more than 5m transmission signal without any increase circuit. l When the refresh rate is 30fps, low speed model
in „WS2812/2811 mit PIC asm.Verzweiflung!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WS2812preliminary.pdf
brightness display, completed 16777216 color full color display, and scan frequency not less than 400Hz/s. l Cascading port transmission signal by single line. l Any two point the distance more than 5m transmission signal without any increase circuit. l When the refresh rate is 30fps, low speed model
in „[Mitbestellung] SMD5050 RGB-LED mit integriertem 8-bit PWM Controller“ · Markt ·
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PDF
WS2812.pdf
brightness display, completed 16777216 color full color display, and scan frequency not less than 400Hz/s. l Cascading port transmission signal by single line. l Any two point the distance more than 5m transmission signal without any increase circuit. l When the refresh rate is 30fps, low speed model
in „Kabelquerschnitt für 5V?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OAR.PDF
0.040/-0.020 0.27 Typ 0.125 ±0.030 0.065 +0.010/-0.005 0.040 ±0.002 (11.43 +1.020/-0.508) 0.32 (8.12) max (3.18 ±0.762) (1.65 +0.254/-0.127) (1.02 ±0.051) 0.600 +0.040/-0.020 0.65 Typ 0.125 ±0.030 0.065 +0.010/-0.005 0.040 ±0.002 OAR-3 (15.24 +1.020/0.508) 0.92 (23.4) max (3.18 ±0.762) (1.65 +0.254/-0.127
in „Shunt extrem teuer oder Preis gerechtfertigt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WS2812preliminary.pdf
brightness display, completed 16777216 color full color display, and scan frequency not less than 400Hz/s. l Cascading port transmission signal by single line. l Any two point the distance more than 5m transmission signal without any increase circuit. l When the refresh rate is 30fps, low speed model
in „WS2812 Timing“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlr2905_1_.pdf
to 1.5 watts are possible in typical surface mount applications. Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @10V 42 D C GS ID@ T C 100°C Continuous Drain CurrentGS@10V 30 A IDM Pulsed Drain Current 160 PD@T =C25°C PowerDissipation 110 W LinearDeratingFactor 0.71
in „Motortreiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLU2905.pdf
to 1.5 watts are possible in typical surface mount applications. Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @10V 42 D C GS ID@ T C 100°C Continuous Drain CurrentGS@10V 30 A IDM Pulsed Drain Current 160 PD@T =C25°C PowerDissipation 110 W LinearDeratingFactor 0.71
in „High Power LED Driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2733.pdf
0 25 50 75 100 125 -50 -25 0 25 50 75 100 125 150 o TEMPERATURE ( C) o TEMPERATURE ( C) Figure 6. Max. Duty Cycle vs Temperature - "Y" Figure 5. Max. Duty Cycle vs Temperature - "X" 6 Submit Documentation Feedback Copyright © 2002–2019, Texas Instruments Incorporated Product Folder Links: LM2733 LM2733
in „[V] 5 St. LM2733YMF Aufwärtswandler 1,6 MHz, 40-V-internem FET SOT-23 [7€)“ · Markt ·
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PDF
TCS34725.pdf
Note 1) Red Channel Green Channel Blue Channel Clear Channel PARAMETER TEST UNIT CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX MIN TYP MAX λD= 465 nm 0% 15% 10% 42% 65% 88% 11.0 13.8 16.6 Note 2 λ = 525 nm counts/ Re Irradiance D 4% 25% 60% 85% 10% 45% 13.2 16.6 20.0 μW/ responsivity Note 3 cm2 λD= 615
in „Frage zu TCS 34725 - RGBC Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Q67060-S6302-A2.pdf
Conditions, each channel Symbol Values Unit at j = 25 °CbbV= 12 V unless otherwise specified min typ max Load Switching Capabilities and Characteristics On-state resistance (pin 4 to 1 or 7) IL= 1.8 A Tj25 °C: R ON -- 160 200 m each channel T=150 °C: 320 400 j Nominal load current, ISO Norm (pin 4 to 1
in „Problem mit Openload bei BTS611L1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTS621-INF.pdf
mA or GND pulled up, Vbb30 V, V =IN, see diagram page 8 Turn-on time IN to 90% V OUT: t on 80 200 400 s Turn-off time IN to 10% V OUT: t off 80 200 400 R L 12 ,Tj=-40...+150°C Slew rate on dV /dton 0.1 -- 1 V/ s 10 to 30% V OUT ,RL= 12 ,T j-40...+150°C Slew rate off -dV/dtoff 0.1 -- 1 V/ s 70 to 40%
in „Schalten mit einem BTS621“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
185345-da-01-en-SMD_BTS611L1.pdf
Conditions, each channel Symbol Values Unit at j = 25 °CbbV= 12 V unless otherwise specified min typ max Load Switching Capabilities and Characteristics On-state resistance (pin 4 to 1 or 7) IL= 1.8 A Tj25 °C: R ON -- 160 200 m each channel T=150 °C: 320 400 j Nominal load current, ISO Norm (pin 4 to 1
in „Doppel-Power-FET (BTS 611)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bts621.pdf
mA or GND pulled up, Vbb30 V, V =IN, see diagram page 8 Turn-on time IN to 90% V OUT: t on 80 200 400 s Turn-off time IN to 10% V OUT: t off 80 200 400 R L 12 ,Tj=-40...+150°C Slew rate on dV /dton 0.1 -- 1 V/ s 10 to 30% V OUT ,RL= 12 ,T j-40...+150°C Slew rate off -dV/dtoff 0.1 -- 1 V/ s 70 to 40%
in „Atmega8 Portpin VCC-loss sicher machen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Handbuch_hager_DE_Internet.pdf
11 x In 22 x n 200 Hz 12 x In 24 x n 400 Hz 15 x I 30 x I n n Für die Dimensionierung sind die Werte aus den Datenblättern massgebend. Bei der Betriebsspannung sind folgende Werte zu beachten: AC: max. 230/400 V min. 12 V DC: max. 60 V, 125
in „20A nach 25A“ · Haus & Smart Home ·
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PDF
_APT30M40JVFR_A-601394.pdf
Avalanche Energy 2500 STATIC ELECTRICAL CHARACTERISTICS Symbol Characteristic / Test Conditions MIN TYP MAX UNIT BV DSS Drain-Source Breakdown Voltage (GS= 0V, D = 250 A) 300 Volts 2 D(on) On State Drain Current (VDS > D(on) RDS(on)ax, VGS = 10V) 70 Amps R Drain-Source On-State Resistance (V = 10V, 0.5 I
in „SOT-227 Leistung Gehäuse im Linearbetrieb?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UCC28880.pdf
allowed switching frequency is: § D MIN · FSW _ VIN(max) MIN ¨ fSW(max) ¸ fSW(max) 66kHz ©tON_TO ¹ (10) The duty cycle does not force the MOSFET on time to go below t ON_TO. If DMIN/TON_TO < fSW(max), the switching frequency is reduced by current runaway protection and the maximum average switching frequency is lower than fSW(max) The minimum inductance value satisfies both the following conditions: VOUT ▯ Vd L1 2mH L fSW _ VIN(max) (11) ª§L MIN· º V IN(max) § 2H · L1 «¨ V ¸MIN T» J(max)K VIN(max)L1 I KtON_TO ¨ 2.65K V K375V
in „230V AC -> 3V3 DC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OA5671_de.pdf
AgSnO +20,2 µm Au; AgNi + 5 µm Au 2.3 Bemessungsisolationsspannung AC 250 V 4) Schaltspannung min. / max. AC/DC 12V/DC250V,AC400V(≈105)V/≈60V) AC/DC 12 V / DC 250 5) AC 400 V 2.4 Grenzdauerstrom I mth. 10 A 16 A Schaltstrom min./max. 10 mA 7)/ 16 A (1 mA / 0,3 A)4) 0,3 A / 25 A 2) 2.5 Schaltleistung min
in „Ersatztyp für altes Finder Relais gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b81524b17.pdf
Cres — 60 — nC Total gate charge Qg — 127 — nC VGE = 15 V Gate to emitter charge Qge — 23 — nC VCE = 400 V Gate to collector charge Qgc — 57 — nC IC = 45 A Turn-on delay time td(on) 45 ns VCC = 400 V Rise time t — 33 — ns VGE = 15 V r Turn-off delay time td(off) — 190 — ns IC= 45 A Rg = 10 Fall
in „Vergleichstyp IGBT IXGQ90N27PB“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D130906D.pdf
= 100mH N TC= 150 C, VGE= 15V, G = 10Ω ( R C R 100 N VCE= 480V U U C Q E 80 E 100 T F I G E 60 I fMAX1 = 0.05d(OFF)I+ d(ON)I O T T R fMAX2 = (D - C )/ON +EOFF) R 40 E PD = ALLOWABLE DISSIPATION T O P = CONDUCTION DISSIPATION C , C L A (DUTY FACTOR = 50%) L 20 M R θJC= 0.76 C/W O f 10 , C 0 5 10 20 30
in „Blitz Leistungsregelung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC817_BC817W_BC337.pdf
Semiconductors BC817; BC817W; BC337 45 V, 500 mA NPN general-purpose transistors 006aaa131 006aaa132 400 600 hFE h FE (1) 300 (1) 400 200 (2) (2) 200 (3) 100 (3) 0 −1 2 3 0 −1 2 3 10 1 10 10 10 10 1 10 10 10 IC (mA) C (mA) V CE = 1 V VCE = 1 V (1) T amb= 150 °C (1) T amb = 150 °C (2) T = 25 °C (2) T =
in „Kennlinie Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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CONTACTORS.pdf
40A 22 18.5 14.385 6.3 5 63A 35 30 22.6 10.2 7.6 Motors Single Phase 230V (AC3 or AC7b) Three Phase 400V (AC3 or AC7b) L1 U L1 U M L2 V M L2 V L3 W Choice of Contactor According to control diagram Single Phase with Capacitor 230V Three Phase (AC3 or AC7) 400V 2 Wires 3 Wires 0.88 2 pole 25A m W u k 2.6
in „Kontaktfestbrennen durch viele LED?“ · Haus & Smart Home ·
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PDF
PR22MA11NTZ.pdf
Sleeve Taping [V] (VD=6V, 50pcs/sleeve 1 000pcs/reel RL=100Ω) Model No. PR22MA11NTZF PR22MA11NXPF 400 MAX.10 PR32MA11NTZF PR32MA11NXPF 600 ■ Model Line-up (2) (Lead solder plating components) Lead Form Through-Hole SMT Gullwing V FT[mA] Sleeve Taping DRM (VD=6V, ShippingPackage [V] R =100Ω) 50pcs/sleeve 1 000pcs/reel L PR22MA11NTZ − 400 Model No. MAX.10 PR32MA11NTZ − 600 Please contact a local SHARP sales representative to see the actual status of the production. Sheet No.: D4-A00201EN 5 PR22MA11NTZ Series PR32MA11NTZ Series Fig.1
in „snubber bei triac - ja oder nein?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PR22MA11NTZ.pdf
Sleeve Taping [V] (VD=6V, 50pcs/sleeve 1 000pcs/reel RL=100Ω) Model No. PR22MA11NTZF PR22MA11NXPF 400 MAX.10 PR32MA11NTZF PR32MA11NXPF 600 ■ Model Line-up (2) (Lead solder plating components) Lead Form Through-Hole SMT Gullwing V FT[mA] Sleeve Taping DRM (VD=6V, ShippingPackage [V] R =100Ω) 50pcs/sleeve 1 000pcs/reel L PR22MA11NTZ − 400 Model No. MAX.10 PR32MA11NTZ − 600 Please contact a local SHARP sales representative to see the actual status of the production. Sheet No.: D4-A00201EN 5 PR22MA11NTZ Series PR32MA11NTZ Series Fig.1
in „snubber bei triac - ja oder nein?“ · Analoge Elektronik und Schaltungstechnik ·
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US-GPL-SG-AA_0117_web.pdf
Application Engineering Department Genesis EP battery mechanical specifications Dimensions* Battery Length - Max (A) Width - Max (B) Height - Max (C) Terminal Spacing -Nom. (D)Terminal Height - Nom. (E) Weight - Nom. Type in mm in mm in mm in mm in mm lb kg G13EP 6.91 175.5 3.28 83.3 5.11 129.8 5.56 141.2 0.81
in „Kaffeemaschine im Gartenhaus“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
usb.c
define EpCtrlMaxLen 64 #define EpCtrlLenId ((1<<15)|(1<<10)) #define EpBulkMaxLen 64 #define EpBulkLenId ((1<<15)|(1<<10)) #define EpIntMaxLen 8 #define EpIntLenId (4<<10) /******* Pufferlängen und Längen-Codes ****
in „USB CDC von Stefan Frings und WS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
744711010-de-Stabkerndrossel.pdf
approvedName Änderung / modification Datum / date W ürth Elektronik eiSos GmbH & Co.KG D-74638 Waldenburg · Max-Eyth-Straße 1 - 3 · Germany · Telefon (+49) (0) 7942 - 945 - 0 · Telefax (+49) (0) 7942 - 945 - 400 http://www.we-online.com SEITE 1 VON 2 Spezifikation für Freigabe / specification for release Kunde
in „Netzfilter vor Last oder Controller?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RV-8564-C2.pdf
Philips Electronics N.V. Version 4.1/04.2009 ELECTRICAL CHARACTERISTICS Symbol Condition Min. Typ. Max Unit AT 25°C: 2 Supply voltage V DD I C Bus Active 1.8 5.5 V Supply voltage V DD Time keeping 1.2 5.5 V fscl=400 kHz 800 μA Power current I during access DD fscl=100 kHz 200 μA fscl=0 Hz,DD3 V 250 500
in „Kompatible zu RX8564LC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rv-8564-c2.pdf
Bus is a trademark of Philips Electronics N.V. ELECTRICAL CHARACTERISTICS Symbol Condition Min. Typ. Max Unit AT 25°C: 2 Supply voltage V DD I C Bus Active 1.8 5.5 V Supply voltage V DD Time keeping 1.2 5.5 V fscl=400 kHz 800 μA Power current I during access DD fscl=100 kHz 200 μA fscl=0 Hz,DD3 V 250 500
in „18650 Zelle zu 5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet_HIP_4081A.pdf
Unless Otherwise Specified TJS= -40°C TO T J= 25°C 125°C PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX MIN MAX UNITS SUPPLY CURRENTS AND CHARGE PUMPS VDD Quiescent Current IDD All inputs = 0V 8.5 10.5 14.5 7.5 14.5 mA VDD Operating Current IDDO Outputs switching f = 500kHz 9.5 12.5 15.5 8.5 15.5 mA VCC
in „HIP 4081 Verständnisprobleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA1023.pdf
regarding mains waveform distortion and RF interference. QUICK REFERENCE DATA SYMBOL PARAMETER MIN. TYP. MAX. UNIT VCC supply voltage (derived from mains voltage) − 13.7 − V V stabilized supply voltage for temperature bridge − 8 − V Z 16(AV) supply current (average value) − 10 − mA w trigger pulse width −
in „TDA1023 oder Ersatz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CA3280.pdf
SUPPLY = ±15V, Unless Otherwise Specified CA3280 CA3280A PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Input Offset Voltage V I = 1mA - - 3 - - 0.5 mV IO ABC ABC = 100µA - 0.7 3 - 0.25 0.5 mV ABC = 10µA - - 3 - - 0.5 mV ABC = 1mA to 10µA, - 0.8 4 - 0.8 1.5 mV T = Full Temp. Range A
in „Suche OTA für +/-2.5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FIN.pdf
FassungenSerie93 - Für Leiterplatte 28 5 A2 A1 12 11 14 1 3 . 0.8 1.3 0 0.4 1 1.3 5 1 3.75 11.25 5 5 1.9 28 * Bei 400 V werden die Bedingungen des Verschmutzungsgrads 2 erfüllt Ansicht auf die Anschlüsse Kontakte Anzahl der Kontakte 1 Wechsler Max. Dauerstrom/max. Einschaltstrom A 6/10 Nennspannung/max. Schaltspannung V AC 250/400* Max. Schaltleistung AC1 VA 1.500 Max. Schaltleistung AC15 (230 VAC) VA 300 1-Phasenmotorlast, AC3 - Betrieb (230 VAC) kW — Max. Schaltstrom DC1: 30/110/220V A 6/0,2/0,12 Min. Schaltlast mW (V/mA) 500
in „Problem Ansteuerung Finder Relais für Rolladen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CSR1010_Data_Sheet_CS-231985-DS.pdf
Information Page 26 of 48 © Cambridge Silicon Radio Limited 2012 - 2015 CS-231985-DSP6 www.csr.com Fast Mode 400 kHz Figure 6.3 shows I²C fast mode 400 kHz timing diagram. 1 /SCL VD;DAT SU;DAT d l f r m A 70% 70% SCL 30% 30% 30% tf r 70% 70% SDA . 30% 30% 4 3 0 W Time - G C Figure 6.3: I²C Fast Mode 400 kHz Timing Diagram (Top Line: SCL, Bottom Line: SDA) S R Table 6.3 lists I²C fast mode 400 kHz timing definition. 1 0 1 Parameter Symbol Min Max Unit 0 Q F Clock Rate SCL - 400 kHz N SCL: Rise-time (30% to 70%) r 41.4 50.6 ns D t SCL: Fall-time (70% to 30%) f 0.7 0.9 ns a S h SDA: Rise-time
in „I²C Daten über Bluetooth übertragen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fairchild_MOC306x.pdf
value less than or eqFTl to max I .Therefore, recommendeF operating I lies between max FT (15 mA for MOC3061-M, 10 mA for MOC3062-M & MOC3162-M, 5 mA for MOC3063-M & MOC3163-M) and absolute max F (60 mA). 3. This is static dv/dt.
in „Triac Schaltung mit möglichst kleinem Haltestrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Farnell_1330644_LT1364.pdf
1200 SR + SR VS= 15V R F R G 1k SR = ————2 1600 AV= –1 1800 SR + SR – RF= RG= 1k s1600 SR = ————— s S400 SR + SR – / 2 /000 / SR = ————— (1400 ( (1200 2 T1200 T VS= 15V T R R800 R000 W1000 W L L E800 S 800 S600 S 600 600 VS= 5V 400 400 400 200 200 0 200 0 0 5 10 15 –50 –25 0 25 50 75 100 125 0 2 4 6 8
in „Schneller Peak-Detector (Spitzenwertspeicher)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CD00277537.pdf
STM32L152x6/8/B Table 17. Current consumption in Run mode, code with data processing running from Flash Max(1) Symbol Parameter Conditions fHCLK Typ Unit 55 °C 85 °C 105 °C 1 MHz 270 400 400 400 Range 3, VCORE =1.2 V 2 MHz 470 600 600 600 µA VOS[1:0] = 11 f = f 4 MHz 890 1025 1025 1025 HSE HCLK up to 16 MHz
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at24c1024.pdf
, AI CC AC V CC = +2.7V to +5.5V (unless otherwise noted). Symbol Parameter Test Condition Min Typ Max Units V CC Supply Voltage 2.7 5.5 V ICC Supply Current VCC = 5.0V READ at 400 kHz 2.0 mA ICC Supply Current VCC = 5.0V WRITE at 400 kHz 5.0 mA VCC = 2.7V VIN V CCor VSS 3.0 µA ISB Standby Current VCC
in „i2c at24c1024 page P0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN036-MX25L6445E-12845E-1.0.pdf
2-1 DC Characteristic differences MX25L12805D MX25L12845E MX25L6405D MX25L6445E Vcc Standby 20uA (max) 100uA (max) 20uA (max) 10uA (max) (ISB1) Deep Power- x 40uA (max) x 30uA (max) Done (ISB2) 10mA @ 33MHz (max) 10mA @ 33MHz (max) 10mA @ 33MHz (max) 15mA @ 33MHz (max) Icc (Read) 25mA @ 50MHz (max) 15mA @ 66MHz (max) 20mA @ 66MHz (max) 15mA @ 66MHz (max) 19mA @ 104MHz (max) 25mA @ 86MHz (max) 19mA @ 104MHz (max) Icc (Write) 20mA (max) 20mA (max) 20mA (max) 20mA (max) 2-2 Read Performance TM MX25L12845/6445E fast
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PDF
BC846BDNPN.PDF
CHARACTERISTICS − BC846BDW1T1G, SBC846BDW1T1G 600 600 VCE = 5 V V CE= 10 V 500 500 A A 150C G 150C G T 400 T 400 N N R R 25C R 300 25C R 300 C C C C D 200 D 200 −55C E −55C E h h 100 100 0 0 0.001 0.01 0.1 1 0.001 0.01 0.1 1 IC, COLLECTOR CURRENT (A) IC, COLLECTOR CURRENT (A) Figure 1. DC Current Gain
in „Leckströme für NPN Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mc14553b-d-1192980.pdf
Referenced tSS) ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ − 55_C 25_C 125_C VDD Typ Characteristic Symbol Vdc Min Max Min (Note 2) Max Min Max Unit Output Voltage “0” Level V 5.0 − 0.05 − 0 0.05 − 0.05 Vdc OL Vin= V DDor 0 10 − 0.05 − 0 0.05 − 0.05 15 − 0.05 − 0 0.05 − 0.05 “1” Level VOH 5.0 4.95 − 4.95 5.0 − 4.95
in „MC14553BCP - Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TD62083AFG_datasheet.pdf
TD62084APG/AFG 0 ⎯ 1.0 Clamp diode reverse voltage VR ⎯ ⎯ ⎯ 50 V Clamp diode forward current I ⎯ ⎯ ⎯ 400 mA F APG ⎯ ⎯ ⎯ 0.52 Power P W dissipation AFG D ⎯ ⎯ ⎯ 0.4 3 2009-10-01 TD62083~084APG/AFG Electrical Characteristics (Ta = 25 C) Characteristics Symbol Test Test Condition Min Typ. Max Unit Circuit
in „Lichtsteuerung über i2c - ULN2803A - S12-100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
150141M173100_1_.pdf
Sprocket Hole No Component Components No Component Embossment min.160mm min.100mm Cover Tape min. 400mm A B C D N W1 W2 W3 W3 Tolerance ± 2,0 min. min. min. min. +1,5 max. min. max. A0 B0 W T T1 T2 K0 P0 P1 P2 D0 D1 E1 E2 F Tape Type 2a VPE / packaging unit Tape width 8 mm 178 1.5 12.8 20.2 50 8.4 14.4
in „[V] ca. 320St. Würth SMD RGB LEDs PLCC4 Type: 150 141 M17 310 0“ · Markt ·
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PDF
LM3490.pdf
≤ 30V, Current No Load V ON/OFF= 5V 2 2 mA 4 4 mA(max) V = 0V 0.1 0.1 µA ON/OFF 5 5 µA(max) VIN - Dropout Voltage IOUT = 10 mA 0.7 0.7 V VOUT 0.9 0.9 V(max) 1.0 1.0 V(max) IOUT = 100 mA 0.9 0.9 V 1.1 1.1 V(max) 1.2 1.2 V(max) e Output Noise V = 10V, 100
in „kann mir jemand dieses ic identifizieren?“ · Mikrocontroller und Digitale Elektronik ·
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kanthal-a-de.pdf
400 500 600 700 800 900 1000 1100 1200 1300 Temperatur °F 212 392 572 752 932 1112 1292 1472 1652 1832 2012 2192 2372 1,00 1,01 1,01 1,02 1,03 1,04 1,04 1,05 1,05 1,06 1,06 1,06 1,06 Ct n WÄRMEAUSDEHNUNGSKOEFFIZIENT
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b0991.pdf
(Ed) 4 9 19 40 60 88 130 190 270 400 600 770 1100 1500 Zulässige statische Querbelastung (L ) 0,5 (E − 0,8 L ), jedoch höchstens L = 0,3 E q max z q max max Emax = Nennlast; z = Last in Messrichtung Relative zulässige Schwingbeanspruchung
in „Datenblatt bei Kraftsensoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KM416C1204C.pdf
care Undefined KM416C1004C, KM416C1204C KM416V1004C, KM416V1204C CMOS DRAM PACKAGE DIMENSION 42 SOJ 400mil Units : Inches (millimeters) #42 6 0) 6 ) ) . 3. . 1 6 1 1 ( ( ( 5 5( 0 0 0 3 4 4 3 3 0 0. 0 0 0 0.006 (0.15) 0.012 (0.30) #1 0.027 (0.69) MIN ) 1.091 (27.71) 7 MAX ( X 8 A 1.070 (27.19) 1 M 1.080
in „Suche DRAM Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1D_PSDs_von_Hamamatsu_-_s3979_etc_kpsd1002e04.pdf
λp λ=λp Vb=0.1 V V =5 V RL=1 k V =5 V ID RL=1 k VR=5 V *5 light spot 200 m TCID f=10 kHz Min. Typ. Max. Typ. Max. Typ. Max. (nm) (nm) (A/W) (kΩ) (kΩ) (kΩ) (µm) (µm) (µA) (nA) (nA) (times/°C)) (pF) (µm) S3979 100 140 180 ±15 ±60 40 0.1 5 2.5 20 0.1 S3931 320 to 110020 0.55 ±30 ±120 0.15 10 1.5 40 0.2
in „Beschaltung eines analogen Positionssensors“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Beitragstabelle_ab_01-01-2016.pdf
Bahn See KV PV West Ost West Ost Beitragsbemessungsgrenze monatl. 4.237,50 1 4.237,50 1 6.200,00 1 5.400,00 1 7.650,00 1 6.650,00 1 jährl. 50.850,00 1 50.850,00 1 74.400,00 1 64.800,00 1 91.800,00 1 79.800,00 1 Geringfügigkeitsgrenze 2) monatl. 450,00 1 450,00 1 450,00 1 450,00 1 450,00 1 450,00 1 Der
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Design_Considerations_for_5V_to_3.3V_Pass_Regulators.pdf
from: vertical motion of warm air is directed along the long axis of the sink fins. VIN MIN– (VOUT MAX + V DO) R MAX = –––––––––––––––––––––– I + I OUT PEAK GND Where: V IN MINis low supply (5V – 5% = 4.75V) V OUT MAX is the maximum output voltage 5V ± 5% 3.3V ± 1% @ 5A across the full temperature range
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ADS1293_3_Kanal_24BIT_EKG_SPI_.pdf
over operating free-air temperature range (unless otherwise noted) MIN MAX UNIT Analog Supply Voltage, VDD 2.7 5.5 V Digital I/O Supply VDD > 3.6V 1.65 3.6 V Voltage VDD ≤ 3.6V 1.65 VDD V Supply Ground VSS = VSSIO Full Scale Differential Input Voltage Range, DIVR ±400 mV (
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