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PDF
vcs_vfp_csng.pdf
.008) Example 2— Three-chip configuration; heat sink with mounting holes 34.0±0.2 (1.399±.008) 7.3 Max. +0.2 (.287 Max.) 31.8-0.6 ) (1.25+.008) 2.2 Max. . 9 -.024 (.087 Max.) 5 ( 17.81 1 (.701) Ø 3. a. 38 Di (1 (x2) Case 8 2 0 Notes: 0 ± VFR Heatsink ) . 7 V/N# 2 0 1. Leads: Tinned Copper 5 . (Value)
in „Grundlagen: Widerstandstypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX603-MAX604.pdf
Protection V OUT = 4.5V MAX603 6 20 0 Threshold (Note 5) ∆V RTH mV V OUT = 3.0V MAX604 6 20 3 MAX60_C 0.01 10 / Reverse Leakage Current I V IN= 0V, OUT = 4.5V (MAX603) MAX60_E 20 µA M RVL V OUT = 3.0V (MAX604) MAX60_M 100 A Start-Up
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc5620.pdf
Zero-scale-error temperature coefficient is given by: ZSETC = [ZSE() – ZSE(T )]/V × 10 /(T – T ). max min ref max min 5. Full-scale error is the deviation from the ideal full-scalref– 1 LSB) with an output load of 10 kΩ. 6. Full-scale-error temperature coefficient is given by: FSETC = maxE) – FSE (min
in „DAC Schieberegister“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SM8952AC25.PDF
4/8KB flash embedded fosc=16MHz Variable fosc Symbol Parameter Valid Cycle Unit Remarks Min. Typ. Max Min. Typ. Max T LHLL ALE pulse width RD/WRT 115 2xT - 10 nS T AVLL Address Valid to ALE low RD/WRT 43 T - 20 nS T LLAX Address Hold after ALE low RD/WRT 53 T - 10 nS T LLIV ALE low to Valid Instruction
in „SM8952A Programm auslesen von RFID Reader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SM8952AC25.pdf
4/8KB flash embedded fosc=16MHz Variable fosc Symbol Parameter Valid Cycle Unit Remarks Min. Typ. Max Min. Typ. Max T LHLL ALE pulse width RD/WRT 115 2xT - 10 nS T AVLL Address Valid to ALE low RD/WRT 43 T - 20 nS T LLAX Address Hold after ALE low RD/WRT 53 T - 10 nS T LLIV ALE low to Valid Instruction
in „Whirlpool-Steuerung Manipulieren / Fernsteuern: Welches Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAA4700T.pdf
PARAMETER MIN. MAX. UNIT Rth j-a from junction to ambient in free air − 130 K/W CHARACTERISTICS VP1 = P2 = 5 V;amb = 25 °C; CVBS signal according to VPS and VPT standard and measurements taken in Fig.1, unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VP1, P2 supply voltages (pins 17 and 18) 4.5 5 5.5 V P total supply current 17+ 18 − 18 23 mA CVBS and sync inputs (pins 1 and 2) V CVBS input signal (peak-to-peak valuesync-to-white 0.5 1 1.4
in „1 SAA4700T, 1 ATTiny12, 1 Display SLO2016 und 2 74HCT164.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PinKlasse_klassisch_toggle.ino.elf.txt
0x280E 15a: 30 91 0f 28 lds r19, 0x280F 15e: 82 0f add r24, r18 160: 93 1f adc r25, r19 if (f >= FRACT_MAX) { 162: 88 3e cpi r24, 0xE8 ; 232 164: 23 e0 ldi r18, 0x03 ; 3 166: 92 07 cpc r25, r18 168: 30 f0 brcs .+12 ; 0x176 <__vector_36+0x64> f -= FRACT_MAX; 16a: 88 5e subi r24, 0xE8 ; 232 16c: 93 40 sbci
in „Buchempfehlung C++ und MCUs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B156XW03_V.2.pdf
shipping Shipping label label 1.2 2009/9/16 Luminance Uniformity Luminance Uniformity 6 13 Points (Max): TBD 13 Points (Max): 1.55 B156XW03 V2Document Version : 1.2 3 of 31 Product Specification AU OPTRONICS CORPORATION 1. Handling Precautions 1) Since front polarizer is easily damaged, pay attention
in „Pollin LVDS-Board an B156XW03 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960_O2MICRO.pdf
resistance Rn Current sink - 14 - Ω OZ960-DS-1.6 Page 5 OZ960 Parameter Symbol Test Conditions Limits Unit Max. / Min. Overlap o VDDA = 5V; Tamb = 25 C Min Typ Max HF = 60kHz Min. Overlap between 3.0 4.5 5.5 % diagonal switches Ca=Cb=Cc=Cd=2nF (3) Max. Overlap between HF = 60kHz 78 81 84 diagonal switches Ca
in „Ic´s (unbekannt) für den Tft monitor gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960.pdf
resistance Rn Current sink - 14 - Ω OZ960-DS-1.6 Page 5 OZ960 Parameter Symbol Test Conditions Limits Unit Max. / Min. Overlap o VDDA = 5V; Tamb = 25 C Min Typ Max HF = 60kHz Min. Overlap between 3.0 4.5 5.5 % diagonal switches Ca=Cb=Cc=Cd=2nF (3) Max. Overlap between HF = 60kHz 78 81 84 diagonal switches Ca
in „BenQ FP71Bildschirm fällt nach einiger Zeit aus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960.pdf
resistance Rn Current sink - 14 - Ω OZ960-DS-1.6 Page 5 OZ960 Parameter Symbol Test Conditions Limits Unit Max. / Min. Overlap o VDDA = 5V; Tamb = 25 C Min Typ Max HF = 60kHz Min. Overlap between 3.0 4.5 5.5 % diagonal switches Ca=Cb=Cc=Cd=2nF (3) Max. Overlap between HF = 60kHz 78 81 84 diagonal switches Ca
in „Monitor defekt!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2305_ds_2-1007_en__2_.pdf
measurements defined in ETSI standard EN sequencestorunontheinstrumentautomatically.Soyoucanruntests 300 394: with the push of a button. Test sequences can easily be defined in just a few steps directly on the front panel. For Autotest operation, no extra Transmitter Measurements hardware is required, as tests
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PDF
LTC_201.pdf
= –15V, GND= 0V. LTC201AM/LTC202M/ LTC201AC/LTC202C/ LTC203M LTC203C PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Analog Signal Range ● ±15 ±15 V R ON VS= ±10V TMIN 110 125 Ω I = 1mA 25°C 65 110 65 125 Ω D TMAX 160 160 Ω ∆R ONvs VS 20 20 % ∆R ONvs Temperature 0.5 0.5 %/°C R ONMatch VS= 0V, DS=
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX749.pdf
_____________Ordering Information Notebook Computers PART TEMP. RANGE PIN-PACKAGE Laptop Computers MAX749CPA 0°C to +70°C 8 Plastic DIP Palmtop Computers MAX749CSA 0°C to +70°C 8 SO Personal Digital Assistants MAX749C/D 0°C to +70°C Dice* Communicating Computers MAX749EPA -40°C to +85°C 8 Plastic DIP
in „Suche Spannungs Konverter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX749.pdf
_____________Ordering Information Notebook Computers PART TEMP. RANGE PIN-PACKAGE Laptop Computers MAX749CPA 0°C to +70°C 8 Plastic DIP Palmtop Computers MAX749CSA 0°C to +70°C 8 SO Personal Digital Assistants MAX749C/D 0°C to +70°C Dice* Communicating Computers MAX749EPA -40°C to +85°C 8 Plastic DIP
in „Transistor für MAX749“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST95P08.pdf
nearestto you. 13/16 ST95P08 PSDIP8 - 8 pin Plastic Skinny DIP, 0.25mm lead frame mm inches Symb Typ Min Max Typ Min Max A 3.90 5.90 0.154 0.232 A1 0.49 – 0.019 – A2 3.30 5.30 0.130 0.209 B 0.36 0.56 0.014 0.022 B1 1.15 1.65 0.045 0.065 C 0.20 0.36 0.008 0.014 D 9.20 9.90 0.362 0.390 E 7.62 – – 0.300 – – E1
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PDF
TLC_555specs_TI.pdf
VOLTAGE‡ TRIGGER VOLTAGE ‡ THRESHOLD VOLTAGE ‡ OUTPUT DISCHARGE SWITCH <MIN Irrelevant Irrelevant L On >MAX <MIN Irrelevant H Off >MAX >MAX >MAX L On >MAX >MAX <MIN As previously established ‡For conditions shown as MIN or MAX, use the appropriate value specified under electrical characteristics. functional
in „TL555i was ist das“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
10350.pdf
mechanical data Figure 39. 64-Pin Low Profile Quad Flat Package (10x10) mm inches Dim. D A Min Typ Max Min Typ Max D1 A2 A 1.60 0.063 A1 A1 0.05 0.15 0.002 0.006 A2 1.35 1.40 1.45 0.053 0.055 0.057 b 0.17 0.22 0.27 0.007 0.009 0.011 b c 0.09 0.20 0.004 0.008 D 12.00 0.472 E1 E D1 10.00 0.394 e E 12.00
in „ARM7TDMI 32-bit RISC CPU - STR 712 FR2 T6 zu verkaufen“ · Markt ·
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PDF
TDA8702_Philips_DA_CONVERTER_8Bit.pdf
all digital inputs are TTL compatible. QUICK REFERENCE DATA SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VCCA analog supply voltage 4.5 5.0 5.5 V VCCD digital supply voltage 4.5 5.0 5.5 V CCA analog supply current note 1 − 26 32 mA I digital supply current note 1 − 23 30 mA CCD VOUT − VOUT full-scale
in „DA Wandler TDA8702“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5620.pdf
SMALL-OUTLINE PACKAGE 14 PIN SHOWN 0.050 (1,27) PINS ** 8 14 16 DIM 0.020 (0,51) 0.010 (0,25) M 0.197 0.344 0.394 0.014 (0,35) A MAX (5,00) (8,75) (10,00) 14 8 A MIN 0.189 0.337 0.386 (4,80) (8,55) (9,80) 0.244 (6,20) 0.228 (5,80) 0.157 (4,00) 0.008 (0,20) NOM 0.150 (3,81) Gage Plane 1 7 A 0.010 (0,25) 0⋅–ā8⋅ 0.044
in „DAC Steuerung mittels SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX5035-Datasheet.pdf
= 0.5A, MAX5035A 86 IN LOAD V IN= 12V, LOAD = 0.5A, MAX5035B 90 Efficiency η V IN= 24V, LOAD = 0.5A, MAX5035C 94 % V IN= 12V, VOUT = 5V, LOAD = 0.5A, 90 MAX5035D V FB= 3.5V, VIN= 7.5V to 76V, MAX5035A 350 460 Quiescent
in „KICAT Footprint SO8E oder SO8N“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSA5512.pdf
Bidirectional I C-bus controlled synthesizer TSA5512 QUICK REFERENCE DATA SYMBOL PARAMETER MIN. TYP. MAX. UNIT VCC supply voltage − 5 − V CC supply current − 35 − mA fr frequency range 64 − 1300 MHz VI input voltage level 80 MHz to 150 MHz 12 − 300 mV 150 MHz to 1 GHz 9 − 300 mV 1 GHz to 1.3 GHz 40 − 300
in „TV Tuner FL2477 Datenblatt und Fragen“ · HF, Funk und Felder ·
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PDF
STP08DP05_LED_driver.pdf
80 90 100 110 Iset (mA) Table 11. SET vs drop out voltage (VDROP ) Vdd I set Rext Vdrop min Vdrop max Vdrop AVG (V) (mA) (Ω) (mV) (mV) (mV) 3 6470 30.6 31.2 30.93 5 3930 46.5 52.9 48.63 10 1910 80.9 100 82.26 3 20 963 150 161 157 50 386 392 396 394.3 80 241 636 646 640.3 100 192 846 850 848 3 6470 25.6
in „Led Cube 8x8x8 inventieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max5056.pdf
V X 2.1 (Note 4) 5 0.3 x 0 MAX5054A 5 Logic 0 Input Voltage VIL V DD V MAX5054B/MAX5055/MAX5056/MAX5057 0.8 7 MAX5054A 0.1 x Logic-Input Hysteresis VHYS VDD V MAX5054B/MAX5055/MAX5056/MAX5057 0.3 Logic-Input-Current Leakage INA+,
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tsa5511.pdf
Bidirectional I C-bus controlled synthesizer TSA5511 QUICK REFERENCE DATA SYMBOL PARAMETER MIN. TYP. MAX. UNIT V positive supply voltage − 5 − V CC CC supply current − 35 − mA f frequency range 64 − 1300 MHz VI input voltage level 80 MHz to 150 MHz 12 − 300 mV 150 MHz to 1 GHz 9 − 300 mV 1 GHz to 1.3 GHz
in „PLL mit TSA5511“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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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PDF
MAX4508-MAX4509.pdf
Ordering Information (continued) Chip Topography TEMP PIN- PKG EN A0 A1 A2 A PART RANGE PACKAGE CODE X MAX4509CSE+ 0°C to +70°C 16 Narrow SO S16-8 V- GND 4 5 MAX4509CPE+ 0°C to +70°C 16 Plastic DIP P16-4 V+ MAX4509C/D 0°C to +70°C Dice* — 0 MAX4509ESE+ -40°C to +85°C 16 Narrow SO S16-8 8 MAX4509EPE+ -40°
in „Messsystem mit PhotoMOS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SAA3010_PHI.pdf
voltage supply and a large debounce time are expected. QUICK REFERENCE DATA PARAMETER SYMBOL MIN. TYP. MAX. UNIT Supply voltage range VDD 2 − 7 V Input voltage range (note 1) V −0.5 − V +0.5 V I DD Input current II − − ±10 mA Output voltage range (note 1) V −0.5 − V +0.5 V O DD Output current IO − − ±10
in „IR-Fernbedienung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A500_DS_HPR40E-19K100XWHAX.pdf
+886-4-26393125 4 2DEVICE NO:HPR40E-19K100xWHAx 2ABSOLUTE MAXIMUM RATINGS TA=25°C PARAMETER SYMBOL MAX. RATING UNIT Continuous Forward Current IF 2.8 A Peak Forward Current *1 IFM 3 A Electrostatic Discharge (HBM) ESD 4000 V LED Junction Temperature Tj 135 °C Operating Temperature Topr -40 ~ +110 °C Storage Temperature Tstg -40 ~ +120 °C Manual Soldering Temperature 260 °C for 5 seconds max. *2 *1.Duty Ratio=0.1%,Pulse Width=10us. *2.Iron soldering high temperature will not cause damage to the dice. But be aware of the high temperature will not only make the epoxy soften but also cause
in „Keine angaben über erforderliche Kühlung bei 100W LED“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
2_FracNEON.txt
VORR D27,D4, D5 ;check if Q2<0 without changing Q2 391 VMOV R2, R3, D27 392 ORRS R2, R2, R3 393 BMI max_iterations_1234 ;1 or more pixel reached also max iter 394 395 CMP R11,#0 396 BEQ iteration_loop ;if not, was end of line reached ? 397 398 ;############ Pixel 1 Max Iterations Handling ############ 399 400 .max_iterations_1234 401 VMOV R0,S8 ;check if pixel 1 reach max iter (Q2.1 -> S8) 402 TST R0,#&80000000 ;check sign bit 403 BEQ max_iterations_234 ;not ? -> check Pixel 2,3,4 404 405 ADD R4,R4,R12 406 ADD
in „Raspberry Pi als "dicker" Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX187_MAX.pdf
⁄2 AIN 3 14 N.C. 7 MAX187BEWE -40°C to +85°C 16 Wide SO ±1 8 N.C. 4 MAX187 13 N.C. 1 MAX187CEWE -40°C to +85°C 16 Wide SO ±2 N.C. 5 MAX189 12 DOUT MAX187AMJA -55°C to +125°C 8 CERDIP** ±⁄2 X SHDN 6 11 DGND A MAX187BMJA -55
in „AD-Wandler mittels Optokoppler anbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST24C32_ST24C64_STM.pdf
T =0 to 70°C or T =0 to 70°C or TA=0 to 70°C or Unit A A 4 –40 to 85°C –40 to 85°C –20 to 85°C Min Max Min Max Min Max CH1CH2 tR Clock Rise Time 300 300 1000 ns t t Clock Fall Time 300 300 300 ns CL1CL2 F 2 tDH1DH2 tR SDA Rise Time 20 300 20 300 20 1000 ns tDL1DL22 tF SDA Fall Time 20 300 20 300 20 300
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HCT221__Nexperia.pdf
(ground = 0 V). Symbol Parameter Conditions 25 °C -40 °C to +85 °C -40 °C to +125 °C Unit Min Typ Max Min Max Min Max V HIGH-level V = 4.5 V to 5.5 V 2.0 1.6 - 2.0 - 2.0 - V IH CC input voltage V LOW-level V = 4.5 V to 5.5 V - 1.2 0.8 - 0.8 - 0.8 V IL CC input voltage V HIGH-level V = V or V ; V = 4.5
in „Frequenz- bzw. Ton- Toff- Limiter bauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74LVC_LVCH244.pdf
System (IEC 60134); voltages are referenced to GND (ground = 0 V). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT V supply voltage −0.5 +6.5 V CC IK input diode current V I 0 − −50 mA VI input voltage note 1 −0.5 +6.5 V OK output diode current V O V CC or O < 0 − ±50 mA VO output voltage output HIGH or LOW
in „74lvc244 statt -hc-“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD66766-10.pdf
all 0 Ta = 25C, fosc = 276khz (1/176duty), 1/12 Bias CT minimum, display all 0 typ: T.B.D typ: 480 Max: T.B.D Max: 600 96 HD66766 Rev. 1.0 / 30 November 2001 Rev.0.3 page part Before After 2001.11.12 79 Clock Characteristics Min: T.B.D Min: 151 (External clock frequency) Typ: 268 Typ: 275 Max: T.B.D Max: 640 (R-C oscillation clock) Test Condition Rf Test Condition Rf = 150 Ω 200Ω Min: - Min: 220 Typ: T.B.D Typ: 275 Max: - Max: 330 84 Reset Timing Characteristics Max: 10 Max: 100 (Reset rise time) 90
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
TEA6300_T_CNV_2.pdf
I C-bus control for all functions • ESD protected QUICK REFERENCE DATA SYMBOL PARAMETER MIN. TYP. MAX. UNIT VCC Supply voltage 7,0 8,5 13,2 V Vi(rms) Input sensitivity for full power at the outp−t stage 50 − mV Vi(rms) Input signal handling − 1,65 − V r Frequency response 35 − 20 000 Hz αCS Channel
in „TDA7449 und BB202“ · Markt ·
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PDF
TLC5620CN_DIP14.pdf
Zero-scale-error temperature coefficient is given by: ZSETC = [ZSE() – ZSE(T )]/V × 10 /(T – T ). max min ref max min 5. Full-scale error is the deviation from the ideal full-scalref– 1 LSB) with an output load of 10 kΩ. 6. Full-scale-error temperature coefficient is given by: FSETC = maxE) – FSE (min
in „Wie verhält sich der DAC am SPI-Bus (TLC5620)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1487-MAX491.pdf
Slew-Rate-Limited RS-485/RS-422 Transceivers M General Description ____________________________Features The MAX481, MAX483, MAX485, MAX487–MAX491, and In µMAX Package: Smallest 8-Pin SO A MAX1487 are low-power transceivers for RS-485 and RS- X 422 communication. Each part contains one driver and one Slew-Rate
in „SPI Recihweite über RS422 (MAX490) erhöhen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX491.pdf
Slew-Rate-Limited RS-485/RS-422 Transceivers M General Description ____________________________Features The MAX481, MAX483, MAX485, MAX487–MAX491, and In µMAX Package: Smallest 8-Pin SO A MAX1487 are low-power transceivers for RS-485 and RS- X 422 communication. Each part contains one driver and one Slew-Rate
in „MAX491 -Defekt??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT245.pdf
(ground = 0 V). Symbol Parameter Conditions 25 °C -40 °C to +85 °C -40 °C to +125 °C Unit Min Typ Max Min Max Min Max 74HC245 VIH HIGH-level V CC = 2.0 V 1.5 1.2 - 1.5 - 1.5 - V input voltage V CC = 4.5 V 3.15 2.4 - 3.15 - 3.15 - V V CC = 6.0 V 4.2 3.2 - 4.2 - 4.2 - V V LOW-level V = 2.0 V - 0.8 0.5
in „Chip gesucht: magischer Rauch in Beckhoff EL2124“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT244.pdf
(ground = 0 V). Symbol Parameter Conditions 25 °C -40 °C to +85 °C -40 °C to +125 °C Unit Min Typ Max Min Max Min Max 74HC244 VIH HIGH-level VCC = 2.0 V 1.5 1.2 - 1.5 - 1.5 - V input voltage VCC = 4.5 V 3.15 2.4 - 3.15 - 3.15 - V VCC = 6.0 V 4.2 3.2 - 4.2 - 4.2 - V V LOW-level V = 2.0 V - 0.8 0.5 -
in „Alte 74xx244 ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD1836_prc.pdf
max ns From ABCLK Falling tABDD ASDATA Delay max ns From ABCLK Falling tALRDD ASDATA Delay max ns From ALRCLK Changing (Left-Justified) Packed 128, 256 Modes tABH ABCLK Delay High max ns From MCLK Rising
in „Audio Codec mit Filter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD1836_prc.pdf
max ns From ABCLK Falling tABDD ASDATA Delay max ns From ABCLK Falling tALRDD ASDATA Delay max ns From ALRCLK Changing (Left-Justified) Packed 128, 256 Modes tABH ABCLK Delay High max ns From MCLK Rising
in „Aktives Filter simulieren“ · 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
ALD110800-1489.pdf
A °C unless otherwise specified ALD110800A/ALD110900A ALD110800/ALD110900 Parameter Symbol Min Typ Max Min Typ Max Unit Test Conditions Gate Threshold Voltage VGS(th) -0.01 0.00 0.01 -0.02 0.00 0.02 V IDS =1µA, DS = 0.1V Offset Voltage V 1 2 2 10 mV OS VGS(th)1 GS(th)2 Offset Voltage Tempco TCVOS 5 5
in „Radiobasteln - Was hat 2018 noch Aussicht auf Erfolg ?“ · HF, Funk und Felder ·
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PDF
Reference_Design_Dimming_Ballast_Control.pdf
0.1uF, SMT 1206 Panasonic ECJ-3VB1E104K CDIM 9 1 CPH Capacitor, 0.39uF, SMT 1206 Panasonic ECJ-3YB1E394K 10 1 CBUS Capacitor, 10uF, 350VDC,105C Panasonic EEU-EB2V100 11 1 CVCC2 Capacitor, 4.7uF, 25VDC,105C Panasonic EEU-FC1H4R7 12 1 C10 Capacitor, 100pF, SMT 1206 Panasonic ECU-V1H101JCH 13 1 C12 Capacitor
in „Leuchstoff Röhre Dimmer Neon“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ucc28084.pdf
Plane 1 4 0.010 (0,25) A 0°– 8° 0.044 (1,12) 0.016 (0,40) Seating Plane 0.010 (0,25) 0.069 (1,75) MAX 0.004 (0,10) 0.004 (0,10) PINS ** DIM 8 14 16 0.197 0.344 0.394 A MAX (5,00) (8,75) (10,00) A MIN 0.189 0.337 0.386 (4,80) (8,55) (9,80) 4040047/E 09/01 NOTES: A. All linear dimensions are in inches
in „UCC28084 läuft nicht an“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M24CXX.pdf
Symbol Alt. Parameter TA=0 to 70°C or TA=0 to 70°C or A Unit –40 to 85°C –40 to 85°C –40 to 85°C 4 Min Max Min Max Min Max CH1CH2 tR Clock Rise Time 300 300 300 ns tCL1CL2 tF Clock Fall Time 300 300 300 ns tDH1DH22 tR SDA Rise Time 20 300 20 300 20 300 ns tDL1DL22 tF SDA Fall Time 20 300 20 300 20 300 ns
in „serielles EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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ST24C16.pdf
Symbol Alt. Parameter TA=0 to 70°C or TA=0 to 70°C or A Unit –40 to 85°C –40 to 85°C –40 to 85°C 4 Min Max Min Max Min Max CH1CH2 tR Clock Rise Time 300 300 300 ns tCL1CL2 tF Clock Fall Time 300 300 300 ns tDH1DH22 tR SDA Rise Time 20 300 20 300 20 300 ns tDL1DL22 tF SDA Fall Time 20 300 20 300 20 300 ns
in „24C16WP - Wie an Mega 16 anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FM24C256_20data_20sheet.pdf
-40° C to + 85° C, VDD = 4.5V to 5.5V, CL = 100 pF unless otherwise specified Symbol Parameter Min Max Min Max Min Max Units Notes SCL SCL Clock Frequency 0 100 0 400 0 1000 kHz t Clock Low Period 4.7 1.3 0.6 μs LOW HIGH Clock High Period 4.0 0.6 0.4 μs AA SCL Low to SDA Data Out Valid 3 0.9 0.55 μs
in „FRAM von RAMTRON“ · Mikrocontroller und Digitale Elektronik ·