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Agilent__HSMx-C265.pdf
E T W U N A R Rθ J-A= 600°C/W C I E 0.8 F 15 R U I M A O A U 10 Rθ J-A= 800°C/W W 1 I M I R M R 0.4 X F L N M 5 – YELLOW ( – IF X 0 ORANGE A 0 20 40 60 80 100 0.11.5 1.7 1.9 2.1 2.3 00 10 20 30 40 M IF TA– AMBIENT TEMPERATURE – °C V – FORWARD VOLTAGE – V IF– FORWARD CURRENT – mA F Figure 2. Forward current vs. forward Figure 3. Luminous intensity vs. forward Figure 4. Maximum forward current vs. voltage. current. ambient temperature. 1.00 0.90 %0.80 – T0.70 S 0.60 N T0.50 I E 0.40 I A 0.30 L R 0.20 0.10 0 -90 -80-70-60 -50-40 -30 -20 -100 10 20 30 40 50 60 70 80
in „Reverse Mount LED in gelb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2128wichtig.pdf
10.0 ns oen 40 I/O Cell OE to Output Enabled – 4.2 – 4.6 ns 41 I/O Cell OE to Output Disabled – – 4.6 ns odis L 4.2 goe 42 Globap Output Enable – 4.8 – 7.4 ns Clocks i s gy0 43 Clock Delay, Y0 to Global GLB Clock Line
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AD-ADXL345.pdf
DevicesonaSingleBus Rev. C | Page 15 of 40 ADXL345 CS tSCLK tM tS t t tDELAY QUIET CS,DIS SCLK tHOLD tSETUP SDI W MB A5 A0 D7 D0 SDO t ADDRESS BITS DATA BITS DIS 0 SDO X X X X X X 2 7 0 Figure37.SPI4-WireWrite CS tSCLK tM S tQUIET CS,DIS DELAY
in „MOSI-Pegel viel zu niedrig, aber warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NMC27C32B.PDF
CC CC 0.5 100 mA CMOS Inputs b VIL Input Low Voltage 0.2 0.8 V V Input High Voltage 2.0 V a 1 V IH CC VOL1 Output Low Voltage OL e 2.1 mA 0.45 V VOH1 Output High Voltage OH e b 400 mA 2.4 V VOL2 Output Low Voltage OL
in „EPROMs löschen mit UV LEDs“ · Mikrocontroller und Digitale Elektronik ·
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STAC9721T.pdf
Supply Current 28 mA PR1 +5V Analog Supply Current 37 mA PR2 +5V Analog Supply Current 28 mA PR3 +5V Analog Supply Current 1.1 mA PR0,1,2,3 +5V Analog Supply Current 0.6 mA PR4 +3.3V Digital Supply Current 0.1 mA PR4 +5V
in „[S] günstige Möglichkeit, zwei DC-Spannungen über mehrere Stunden zu überwachen“ · Markt ·
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AD5241_5242-1501681.pdf
3 pF DIGITAL OUTPUT V I = 3 mA 0.4 V OL OL Output Logic Low (SDA) VOL OL= 6 mA 0.6 V Output Logic Low (O 1nd O 2 VOL SINK 1.6 mA 0.4 V Output Logic High (O1and O 2 VOH SOURCE 40 µA 4 V Three-State Leakage Current (SDA) OZ VIH 5V orV
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AN41204.pdf
spindle o=37,38,39,40,41 Drive output current for I (p) ʶ 1000 mA p=19,20,23,24,25,26 ch.1,2 and ch.3 Drive output current for I (q) ʶ 1000 mA q=44,45,47,48 ch.4 and ch.5 Drive output voltage V (l) 7.0 V l=19,20,23,24,25,26, 44,45,47,48 Drive output voltage V (m) 7.0 V m=37,39,40 Control signal input V (n) GND to VDD V n=2,3,4,5,6,7,8,9,10,1 voltage 1,12,13,14,15,16,17,18 ,28,29,30,31,32,33 Hall bias current IHB(x) 30 mA x=34 Note)1: Ta = 25°C except storage temperature and operating
in „DVD-Laufwerk DVS-7150V reparieren“ · PC Hard- und Software ·
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UPD43256.pdf
A High level output voltage VOH1 IOH = –1.0 mA 2.4 2.4 V VOH2 IOH = –0.1 mA VCC–0.5 V C–0.5 Low level output voltage V OL IOL= 2.1 mA 0.4 0.4 V Remarks 1. V IN: Input voltage 2. These DC Characteristics are in common regardless of package types.
in „IC P51256Sl-10 SRAM“ · Mikrocontroller und Digitale Elektronik ·
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MSP430F2274_Family_datasheet.pdf
= 0 IREF+ reference buffer disabled 0.25 0.4 mA (see Note 4) fADC10CLK = 5.0 MHz, I: -40-85°C ADC10ON = 0, REF2_5V = 1, T: -40-105°C 3 V REFON = 1, REFOUT = 0 fADC10CLK = 5.0 MHz, Reference buffer supply ADC10ON = 0, -40-85°C 2.2 V/3 V 1.1 1.4 current with ADC10SR = 0 IREFB,0 RE FO N , 1 RE F2 _5V = 0, mA (see Note 4) REFOUT = 1, 105°C 2.2 V/3 V 1.8 ADC10SR=0 fADC10CLK = 5.0 MHz, ADC10ON = 0, -40-85°C 2.2 V/3 V 0.5 0.7 Reference buffer supply REFO N = 1, IREFB,1 current with ADC10SR = 1 mA (see Note 4
in „UART_Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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04_TLV272CDR.pdf
10 pF c TA= 70°C o 8 TA= 25°C A 0.7 V 7 THD = 5% m u t 0.6 u 6 e O VDD = 5 V u 0.5 T = 25°C k 5 C 0.4 A e 4 l T = 0°C - p 0.3 A - 3 VDD = 2.7 V u TA= -40 C a S 0.2 e 2 P 1 0.1 0 0 10 100 1 k 10 k 100 k 1 M 10 M 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 Frequency (Hz) Supply Voltage (V) Figure 9. Peak-to-Peak
in „TLV272 Rail to Rail Problem DIODES“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KS0070B_V0.pdf
2.4 - - (DB0 to DB7) V V OL1 OL = 1.2 μA - - 0.4 Output Voltage (2) VOH2 IO= -40 μA 0.9V DD - - V (except DB0 to DB7) V OL2 IO= 40 μA - - 0.1V DD Vd COM - - 1 Voltage Drop IO= + 0.1 mA V Vd SEG - - 1 Input
in „LCD Initialisierung schlägt fehl!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0070B_V0.pdf
2.4 - - (DB0 to DB7) V V OL1 OL = 1.2 μA - - 0.4 Output Voltage (2) VOH2 IO= -40 μA 0.9V DD - - V (except DB0 to DB7) V OL2 IO= 40 μA - - 0.1V DD Vd COM - - 1 Voltage Drop IO= + 0.1 mA V Vd SEG - - 1 Input
in „EA DIP162-D / STK500 / ATmega8 initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PD243x_353x_443x.pdf
VVIH=2.0 V) 3)Data out voltages are measured with 100 pF on the data bus and the ability to source=–40 µA and sink=1.6 mA The rise and fall times VOL=0.4 VOH=2.4 V. 2001 OSRAM Opto Semiconductors Inc.• San Jose, CA PD2535/6/7, PD3535/6/7, PD4435/6/7 www.infineon.com/opto • 408-456-4000 OSRAM Opto Semiconductors
in „SIEMENS Matrix LED Anzeige PB4437“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PD2435_1x4_Dotmatrix_parallel.pdf
VVIH=2.0 V) 3)Data out voltages are measured with 100 pF on the data bus and the ability to source=–40 µA and sink=1.6 mA The rise and fall times VOL=0.4 VOH=2.4 V. 2001 OSRAM Opto Semiconductors Inc.• San Jose, CA PD2535/6/7, PD3535/6/7, PD4435/6/7 www.infineon.com/opto • 408-456-4000 OSRAM Opto Semiconductors
in „[V] Intelligente LED-Matrix-Displays, HDSP 2112, SCF 5740, PD 2435“ · Markt ·
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PDF
TIP120_bis_TIP_127.pdf
300 s, duty cycle < 2 % For PNP types voltage and current values are negative. 2/4 TIP120/TIP121/TIP122/TIP125/TIP126/TIP127 TO-220 MECHANICAL DATA mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. A 4.40 4.60 0.173
in „Stromsenke / el. Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bq24070.pdf
Product Folder Link(s): bq24070 bq24071 bq24070 bq24071 www.ti.com SLUS694F –MARCH 2006–REVISED DECEMBER 2009 FUNCTIONAL DESCRIPTIONS SIGMA 4.44 V , V = 5.5 V OUT AC II= 100 A +3 Sigma 4.42 4.4 V - g Mean l 4.38 o V 4.36 4.34 -3 Sigma 4.32 -60 -40 -20 0 20 40 60 80 100 120 140 o T - Temperatures - C Figure 1. Typical OUT Voltage Regulation, bq24070 CHARGE CONTROL The bq24070/1 supports a precision Li-ion or Li-polymer
in „Akku-Typ Entscheidung“ · Mikrocontroller und Digitale Elektronik ·
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MSP430F233TPM.pdf
4 1 2 5 6 7 K A L E O / T/T/ C C C / T/ C C C C S S S I . 6.7. K K 0 0 1 /S K 0 0 0 0 0 0 1 1 1 L L T C C O L T C C C C A P P P / N T 3 4/ / 2 7 / / / / C . A U 2 2. 2 C 2 E O M L / 2 / OA P P P D P S
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2731.pdf
−40°C ≤ TJ≤ 125°C 4 R L 15 Ω(3) VIN= 3.3 V 7 Y Option −40°C ≤ TJ≤ 125°C 5.5 VIN= 5 V 10 TJ= 25°C 1.8 2 (4) SW Switch Current Limit See −40°C ≤ TJ≤ 1.4 A 125°C TJ= 25°C 260 400 ISW = 100 mA Vin = 5 V −40°
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (8€)“ · Markt ·
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PDF
lm2731.pdf
−40°C ≤ TJ≤ 125°C 4 R L 15 Ω(3) VIN= 3.3 V 7 Y Option −40°C ≤ TJ≤ 125°C 5.5 VIN= 5 V 10 TJ= 25°C 1.8 2 (4) SW Switch Current Limit See −40°C ≤ TJ≤ 1.4 A 125°C TJ= 25°C 260 400 ISW = 100 mA Vin = 5 V −40°
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (15€)“ · Markt ·
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PDF
SDNS-3988_datasheet.pdf
g V J C 1 n 2 i X i 2 V r _ 3 n D P V 2 0 6 1 2 4 5 _ C 1 D 7 4 4 4 3 4 5 4 D E V L d I D . . F F _ _ n D D D D E E P P a V V D D / / O O DNG 35 r 3 / / 3 3 R R o D A A D D W W DNG s V E E 8 V V P P 93 n P R R 3 e X S DNG 21 S 1 N 1 R M S 3 R 5 M DNGD
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BCY59.pdf
B = 2.5 mA 0.4 0.7 V V BE Base-emitter Voltage IC= 2 mA VCE = 5 V 0.55 0.65 0.7 V IC= 100 mA VCE = 1 V 0.75 V VBE sat)* Base-emitter Saturation Voltage IC= 10 mA B = 0.25 mA 0.6 0.7 0.85 V IC= 100 mA B = 2.5 mA
in „HiFi Alternative für BC237, BC107 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bourns_bd241-1159109.pdf
COLLECTOR-EMITTER SATURATION VOLTAGE vs vs COLLECTOR CURRENT BASE CURRENT 1000 TCS631AH 10 TCS631AB V = 4 V - CE TC= 25°C e p = 300 µs, duty cycle < 2% TC= 80°C a l V n i i a a t u 1·0 n a r r u e C 100 i C m - r F t h e 0·1 l C I = 100 mA - C s C = 300 mA E C = 1 A VC C = 3 A 10 0·01 0·01 0·1 1·0 10 0·1 1·0 10 100 1000 IC- Collector Current - A B - Base Current - mA Figure 1. Figure 2. BASE-EMITTER VOLTAGE vs COLLECTOR CURRENT 1·0 TCS631AC VCE= 4 V T = 25°C C V 0·9 - g t o V 0·8 e i m - s 0·7 B - B V 0·6 0·5 0·01 0·1 1·0 10 IC- Collector Current - A Figure 3. P
in „[V] Komplementäre 27St. BD241A und 10St BD242A und Reste geschenkt“ · Markt ·
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PDF
AV02-0314EN.pdf
ADJD-S371-QR999 MiniatureSurface-Mount RGBDigitalColorSensorModule DataSheet Description Features ADJD-S371-QR999 is a cost effective, 4 channel digital • Four channel integrated light to digital converter
in „Avago ADJD s371 q999 Farbsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS3510P.pdf
4 V TA= –40°C DD 0 300 A –20 µ 200 TA= 85°C A t – e T A 25°C t –40 r 100 e C r l TA= 0°C C –60 p 0 u u p S I –80 – I TA= –40°C D –100 I TA= 0°C I –100 TA= 25°C TA= 85°C –200 PGI = 1.4 V –120 PSON = 5 V
in „TPS3510 mit Datemblatt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tlc549.pdf
8 V D Differential Reference Input Voltages CC ANALOG IN 2 7 I/O CLOCK D Conversion Time . . . 17 s Max REF– 3 6 DATA OUT GND 4 5 CS D Total Access and Conversion Cycles Per Second – TLC548 . . . up to 45 500 – TLC549 . . . up to 40 000 D On-Chip Software-Controllable Sample-and-Hold Function D Total
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LTV815.pdf
100 ) VCE 2Vo Ta= 25 C % Ta= 25 C R600 A 80 T ( IF= 10mA o I Pc(MAX.) a200 n 60 r r f c 5mA n800 r 40 t c 2mA n l r400 o 20 1mA u C C 0 0 0.1 0.2 0.5 1 2 5 10 0 1 2 3 4 5 Forward current I (mA) Collector-emitter voltCEe V (V) F Part No. : LTV-815 / 825 / 845 ( M, S, S-TA1 ) Page : 10 of 12 BNS-OD-C131
in „Mit Optokoppler niederohmig schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2.transceiver_si4468.pdf
for +27 or +30 dBm Automatic gain control (AGC) Low active power consumption Low BOM 10/13 mA RX Low battery detector 18 mA TX at +10 dBm (Si4467) Temperature sensor Ultra low current powerdown mode 20-Pin QFN package 30 nA shutdown, 40 nA standby Sub-GHz 802.15.4 mesh network ready
in „Transceiver Si4467 SPI Transfer PIC24“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s4565.pdf
Min flame current: 0.9 ←A Supply voltage Response time on: > 0.2 s 220 ... 240 Vac, 50/60 Hz Response time off (T FR): < 1 s Power consumption (optionally other values available) 4 VA Ignition Humidity Spark voltage: > 12 kV at 40 pF load 90% RH max. at 40 _C Repetition
in „Bautteil identifizieren, komme mit Ringe nicht klar“ · Platinen ·
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PDF
LM35.pdf
air rated to operate over a −55˚ to +150˚C temperature range, n Nonlinearity only± 14˚C typical S while the LM35C is rated for a −40˚ to +110˚C range (−10˚ n Low impedance output, 0.1 for 1 mA load n with improved accuracy). The LM35 series is available pack- s o Typical Applications s DS005516-4
in „ADC schwankungen bei Atmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM35.pdf
air rated to operate over a −55˚ to +150˚C temperature range, n Nonlinearity only± 14˚C typical S while the LM35C is rated for a −40˚ to +110˚C range (−10˚ n Low impedance output, 0.1 for 1 mA load n with improved accuracy). The LM35 series is available pack- s o Typical Applications s DS005516-4
in „Flinker Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5100.pdf
7 8.5 mA Load tank see S TRANSM Figure 4-1 and 4-2 Transmit mode 868 MHz 7 8.7 mA Power Down Mode Control (Pin 1) Stand-by mode V 0 0.7 V V < 0.2 V PDWN ASKDTA VFSKDTA < 0.2 V PLL enable mode VPDWN 1.5 VS V VASKDTA
in „13,575Mhz Quarz für Fernbedienung - wo gibts den?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ci11.pdf
height LT length Shaft dimensions Bracket mounting (please see table) options (see note 1) T = With 1 1 4 A H M U T 1 4 7 A F 0 = Without D S I W 2 5 8 A 2 E J R Q 3 6 9 Detents Mounting method Bushing type Antirotation lug Shaft type Pulses (please see table) C = With V = Vertical Y 1 F H A = 20 pulses
in „Referenzspannung selbst erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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pressure_master.pdf
that is a much harder task to accomplish. If the LCD has an internal voltage regulator (5 volt LCD’s) then you can use the 6 volt header to power the LCD (upto 500 mA of current). For 3.3v LCD’s with no internal voltage regulator, the board will support upto 250 mA from the 3.3v header. 14 Powering
in „Projektunterstützung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
FYM-23881ABxxx.pdf
- GaAsP/GaP 610nm/Super Red 8 50 1 6 4 5 2 3 R 4.0 50 L O T 1 F R 40 V O 1 W E 3.0 W 40 R U A 6 D 30 M D 2,4,8,A C N 30 U O 2.0 5 U R 20 S R 3 N I B E 20 T T N 5 m 10 E 1.0 ( A S m 10 ) T ) 0 Y 1.2 1.6 2.0 2.4 2.6 3.0 0 0 20 40 60 80 100
in „Treiberstufen High und Low side“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1487-MAX491.pdf
7 and 9L C = 15pF, S1 closed 40 70 ns 4 Driver Disable Time from High HZ Figures 7 and 9L C = 15pF, S2 closed 40 70 ns 9 MAX481, MAX485, MAX1487 20 90 200 Figures 6 and 10, 1 Receiver Input to Output PLH PHL RDIFF= 54Ω,
in „SPI Recihweite über RS422 (MAX490) erhöhen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX491.pdf
7 and 9L C = 15pF, S1 closed 40 70 ns 4 Driver Disable Time from High HZ Figures 7 and 9L C = 15pF, S2 closed 40 70 ns 9 MAX481, MAX485, MAX1487 20 90 200 Figures 6 and 10, 1 Receiver Input to Output PLH PHL RDIFF= 54Ω,
in „MAX491 -Defekt??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT123_Nexperia.pdf
C 40 C to +85 C 40 C to +125 C Unit Min Typ Max Min Max Min Max 74HC123 V IH 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
in „Dauer-Trigger verbieten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC662.pdf
0.56 0.69 max + V = 15V 14.63 14.50 14.37 V R = 2 kΩ to V /2 14.44 14.32 min L 0.26 0.35 0.44 V 0.40 0.48 max V = 15V 13.90 13.35 12.92 V RL= 600Ω to V /2 13.15 12.76 min 0.79 1.16 1.45 V 1.32 1.58 max Output Current Sourcing, VO= 0V 22 16 13 mA V = 5V 14 11 min Sinking, O = 5V 21 16 13 mA 14 11 min Output Current Sourcing, V = 0V 40 28 23 mA O V = 15V 25 21 min Sinking, O = 13V 39 28 23 mA (Note 12) 24 20 min Supply Current Both Amplifiers 0.75 1.3 1.6 mA V = 1.5V 1.5 1.8 max O AC Electrical Characteristics + U−less otherwise specified
in „Alternative zum LMC6041“ · Analoge Elektronik und Schaltungstechnik ·
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M95160_EEPROM.pdf
in Table 7., the most significant address bits are Don’t Care. 18/40 M95160, M95080 Figure 13. Page Write (WRITE) Sequence S 0 1 2 3 4 5 6 7 8 9 10 20 21 22 23 24 25 26 27 28 29 30 31 C Instruction 16-Bit Address Data Byte 1 D 15 14 13 3 2 1 0 7 6 5 4 3 2 1 0 S 32 33
in „SPI EEPROM M95160: read/write probleme, erhalte immer FFh!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AV02-1132EN_DS_HEDS-9x40_2014-03-17__3_.pdf
C P 2.4V φ 0.4V CH.A E S1 S2 S3 S4 U L 2.4V M 0.4V A t CH.B t1 2 2.4V 0.4V CH.I P0 ROTATION 3 Definitions Count(N):Thenumberofbarandwindowpairsorcounts neighboring transition in the output of channel B.There
in „Incremental Encoder läuft nicht an 2 µC“ · Mikrocontroller und Digitale Elektronik ·
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ICM7226.pdf
3. ICM7226A TYPICAL I DIG vs VDD -VOUT 30 80 4.5 ≤ DD ≤ 6.0V -20 C TA= 25 C VDD = 5.5V 25 C 60 VDD = 5.0V 20 ) o ) A 85 C A VDD = 4.5V ( ( 40 G G S S I I 10 20 0 0 0 1 2 3 0 1 2 3 VDD-VOUT (V) VOUT (V) FIGURE 4. ICM7226B TYPICAL I SEG vs VDD -VOUT
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PDF
LM2575TADJ.PDF
the output transistor “off”. 7. V in= 40 V. http://onsemi.com 4 LM2575 TYPICAL PERFORMANCE CHARACTERISTICS (Circuit of Figure 14) ) 0.6 ) 1.0 ( Vin 20 V ( ILoad= 200 mA E 0.4 Load= 200 mA E 0.8 TJ= 25⋅C N Normalized at N H TJ= 25⋅C H C 0.2
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP23017-Datasheet.pdf
• Low Standby Current: 1 µA (max.) - 1.7 MHz • Operating Voltage: • High-Speed SPI Interface (MCP23S17): - 1.8V to 5.5V @ -40°C to +85°C - 10 MHz (maximum) - 2.7V to 5.5V @ -40°C to +85°C • Three Hardware Address Pins to Allow Up to - 4.5V to 5.5V @ -40°C to +125°C Eight Devices On the Bus • Configurable
in „kennt jemand sich aus mit MC23017 IO-Board“ · Mikrocontroller und Digitale Elektronik ·
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CS4272.pdf
3 -4 +5 +4 +3 +2 +1 LSB 2 Figure 4. Format 1, I S up to 24-Bit Data LRCK Left Channel Right Ch annel SCLK SDATA LSB MSB-1 -2 -3 -4 -5 -6 +6 +5 +4 +3 +2 +1 LSB MSB-1 -2 -3 -4 -5 -6 +6 +5 +4 +3 +2 +1 LSB 32
in „was ist "ATAPI channel mixing" Warum kein Ausgangssignal?“ · Mikrocontroller und Digitale Elektronik ·
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LMD18200_-_HBr__cke.pdf
the entire operating s s S temperature range,b 40§C TJ a 125 §, all other limits are Aor TJ e 25§C. (Note 5) Symbol Parameter Conditions Typ Limit Units R DS(ON) Switch ON Resistance Output Currente 3A (Note 6) 0.33 0.4/0.6
in „LMD18200 current sense Charakteristik. Erfahrung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
105 °C Supply Voltage Charger VCHG -0.4 5.75 V LEDs LED[2:0] -0.4 4.40 V VBAT_SENSE -0.4 4.20 V Battery VREGENABLE -0.4 4.40 V VDD_AUDIO_DRV -0.4 1.95 V C S VDD_AUX_1V8 -0.4 1.95 V 8 6 1.8V VDD_PADS_1 -0.4 3.60 V 4 5 B VDD_PADS_2 -0.4 3.60
in „A2DP Bluetooth Modul China eBay“ · HF, Funk und Felder ·
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PDF
swissbit-U500-USB3-Stick.pdf
Symbol Min Typ Max Unit Commercial Operating Temperature 0 70 T_A Industrial Operating Temperature -40 25 85 °C 2 Storage Temperature T_S -40 100 4.2.2 Reliability and Endurance Table 6: Reliability Parameter Value Data reliability (UBER) <10-17bits read Error correction code (ECC) correct up to 24-bit
in „[S] USB Stick für Produktdoku - weniger Speicher, mehr Zuverlässigkeit“ · Markt ·
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PDF
TM1829_V1.4-eng-by-BNT-131207.pdf
resistor in series OUT output Voltage range Vout OUT = OFF -0.5 -- 24.0 V Operating Temperature Range Ta -40 -- +85 ° Operating junction temperature range Tj -40 -- +125 ° 3 © Titan Micro Electronics V1.4 www.titanmec.com Translated from: TM1829_V1.4-chin.pdf - by BNT - Date: 07.12.13 Page 04 --------------
in „Frage zum Digital RGB Stripe vom Aldi“ · Mikrocontroller und Digitale Elektronik ·
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MIC2981_82_8fach_Highside_Treiber.pdf
Junction Temperature (T ) ...................................... +150°C J Storage Temperature (T )S....................... –65°C to +150°C (Note 3) Electrical Characteristics V = 50V, T = +25°C, unless noted. S A Symbol Parameter Condition Min Typ Max Units ICEX Output Leakage Current V IN= 0.4V, A
in „Treiber Pendant zu ULN2803“ · Mikrocontroller und Digitale Elektronik ·
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K6T1008V2C_Samsungsemiconductor.pdf
V I, CS2=VIH, VI=V Ior VIH - 25 35 mA Output low voltage V OL IOL =2.1mA - - 0.4 V Output high voltage VOH IOH =-1.0mA 2.2 - - V Standby Current(TTL) ISB CS 1=V IH,CS 2=V IL,Other inputs=V ILor VIH - - 0.3 mA Standby Current(CMOS) ISB1 CS
in „[V] 10St Samsung SRAM K6T10008V2V-GF-70 -128K X 8 Bit 3-3,6V“ · Markt ·