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MBI5026.pdf
voltage change z Excellent output current accuracy: between channels: <±3% (max.), and CN: P-DIP24-300-2.54 between ICs: <±6% (max.) GN: P-DIP24-300-2.54 z Output current adjusted through an external resistor CNS: SP-DIP24-300-1.78 z Constant output current range: 5-90 mA GNS: SP-DIP24-300-1.78 z Fast
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KS0070B_V0.pdf
- 100 Interface Mode Clock Setup Time t 500 - - with SU1 Extension Driver t ns Data Setup Time SU2 300 - - (Refer to Fig-8) Data Hold Time tDH 300 - - M Delay Time tDw -1000 - 1000 VIH1 RS VIL1 t th1 SU1 R/W V IL1 V IL1 tw th1 tf E V IH1 VIH1 V IL1 VIL1 VIL1 tSU2 tr th2 V DB0~DB7 VIH1 Valid Data VIH1 VIL1 IL1 tc Fig-6. Write Mode Timing Diagram KS0070B 16COM / 80SEG DRIVER & CONTROLLER FOR DOT MATRIX LCD V RS IH1 V IL1 t SU th VIH1 VIH1 R/W tw th tf E V VIH1 VIH1 V VIL1 IL1 IL1 tr t D DH VIH1 Valid Data
in „LCD Initialisierung schlägt fehl!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0070B_V0.pdf
- 100 Interface Mode Clock Setup Time t 500 - - with SU1 Extension Driver t ns Data Setup Time SU2 300 - - (Refer to Fig-8) Data Hold Time tDH 300 - - M Delay Time tDw -1000 - 1000 VIH1 RS VIL1 t th1 SU1 R/W V IL1 V IL1 tw th1 tf E V IH1 VIH1 V IL1 VIL1 VIL1 tSU2 tr th2 V DB0~DB7 VIH1 Valid Data VIH1 VIL1 IL1 tc Fig-6. Write Mode Timing Diagram KS0070B 16COM / 80SEG DRIVER & CONTROLLER FOR DOT MATRIX LCD V RS IH1 V IL1 t SU th VIH1 VIH1 R/W tw th tf E V VIH1 VIH1 V VIL1 IL1 IL1 tr t D DH VIH1 Valid Data
in „EA DIP162-D / STK500 / ATmega8 initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Ausschnitt eines Datenblatts mit Betriebsbedingungen und statischen Kennwerten
Betriebsbedingungen Betriebsspannung U_{DD} 3...15 V Eingangsspannung U_{IL} U_{DD}=5V 1,5V; U_{DD}=10V 3V; U_{DD}=15V 4V Eingangsspannung U_{IH} U_{DD}=5V 3,5V; U_{DD}=10V 7V; U_{DD}=15V 11V Umgebungstemperatur t_a -40...85 °C Statische Kennwerte bei U_{SS}=0V siehe Seite 352
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MAX1920-MAX1921.pdf
1.545 c 9 2 2 A A A 3.366 M 2.550 VIN 5V M 1.530 VIN 5V M G3.333 G2.525 E1.515 T V IN5V T T O O O T3.300 T2.500 T1.500 P P P V IN3.3V U VIN 4.2V U VIN 3V U O3.267 O2.475 O1.485 V = 3.6V VIN 2.5V IN 3.234 2.450 1.470 3.201 2.425 1.455 0 50 100 150 200 250 300 350 400 0 50 100 150 200 250 300 350 400 0 50 100 150 200 250 300 350 400 LOAD (mA) LOAD (mA) LOAD (mA) _______________________________________________________________________________________ 3 Low-Voltage, 400mA Step-Down DC-DC Converters in SOT23 Typical Operating
in „Sinnvoll, von 3V Solar mit Stepdown auf 2,5V SuperCap ?“ · Mikrocontroller und Digitale Elektronik ·
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24c04_V2.pdf
nal is used to enable (C = V )IHr disable (WC = Serial Data (SDA). The SDA pin is bi-directional V IL the internal write protection. When uncon- andisusedtotransferdatain oroutofthe memory. nected, the WC input is internally read as V ILd It is an open drain output that may be wire-OR’ed the memory area
in „I²C - EEPROM's (24C04 ...)“ · Mikrocontroller und Digitale Elektronik ·
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TPS2113A.pdf
PARAMETER TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNIT VI(IN1)VI(IN2)5.0 V 120 140 84 110 T J 25°C, IL= 500 mA VI(IN1)VI(IN2)3.3 V 120 140 84 110 mΩ Drain-source V = V = 2.8 V 120 140 84 110 on-state rDS(on)) I(IN1) I(IN2) resistance VI(IN1)VI(IN2)5.0 V 220 150 (INx−OUT) T J 125°C, IL= 500 mA VI(IN1)VI
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74f595.pdf
MAX 〉 10%V 2.5 V Qs I =–1mA CC VCC = MIN, OH 〉 5%V 2.7 3.4 V V High-leveoutput oltage V =MAX , CC OH IL 〉 10%V 2.4 V Q0–Q7 VIHMIN I =–3mA CC OH 〉 5%V 2.7 3.3 V CC 〉 10%V 0.30 0.50 V Qs I = 20mA CC VCC = MIN, OL 〉 5%V 0.30 0.50 V V Low-level output voltage V = MAX, CC OL IL 〉 10%V 0.35 0.50 V Q0–Q7 VIH=
in „Schnelleres IC als STPIC6C595“ · Mikrocontroller und Digitale Elektronik ·
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ssd1803_2_0.pdf
Solomon Systech Feb 2010 P 58/79 Rev 2.0 SSD1803 Figure 15-1 Write Mode Timing Diagram V RS IH1 V IL1 su1 th1 R/W V V IL1 IL1 tw th1 f V IH1 V IH1 E V V V IL1 IL1 t IL1 tr tsu2 h2 V IH1 V IH1 DB0 - DB7 V IL1 Valid Data V IL1 t c Figure 15-2 Read Mode Timing Diagram V RS IH1 V IL1 tsu th V V R/W IL1 IL1 tw th f V IH1 V IH1 E V V V IL1 IL1 IL1 tr tD tDH V OH1 VOH1 DB0 - DB7 V OL1 Valid Data V OL1 t c Figure 15-3 Serial Interface Mode Timing Diagram tc CS V IL1 V IL1 t t t t t su1 r w w h1 tf V IH1 V
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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Advantest_R4131.pdf
th e fro n t p a n T h G o th e r m e h o d is tc , d ire c tly se t th e v a lu e o f V ID E O F iL T e R b a n d w id th . (1) W hen U sing the C om m and C orresponding to the K ey E x a m p le 6 -3 : S e ttin g th e V ID E O F iL T e R b a n d w id th to 1 0 0 H z H P 200/300 S eries 0 OUTPUT 701
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PDF
m74hc4094.pdf
) PD Power dissipation 500 mW Tstg Storage temperature -65 to +150 °C T Lead temperature (10 sec.) 300 °C L 1. Absolute maximum ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is not implied. 2. 500 mW at 65 °C; derate to 300 mW by 10
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lt3502.pdf
VOLTAGE (mV) 3502 G10 3502 G11 3502 G12 SHDN Pin Current Switch Current Limit Switch Current Limit 300 1.0 1.2 0.9 250 1.0 ) 0.8 SW PEAK CURRENT LIMIT μ ) ) T200 ( 0.7 (0.8 LT3502 N I DA VALLEY CURRENT LIMIT I R I 0.6 I U150 L 0.5 L0.6 LT3502A C N N I R 0.4 R N100 U U D C 0.3 C0.4 S 50 0.2 0.2 0.1 0
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TFDS4500_69428.pdf
(Cont’d) IIRED TFDU4100 (Note: Typical Values Listed) + Receive Mode Power Supply _ @5 V: IIRED = 300 mA, IS= 1.3 mA Regulated Power Supply R ILIM @2.7 V: I = 300 mA, I = 1.0 mA 50 mA Transmit ModeIRED S @5 V: I = 300 mA, I = 5 mA (Avg.) IRED S @2.7 V: IIRED= 300 mA, IS= 3.5 mA (Avg.) IRED Anode Microcontroller
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MBI5026Datenblatt_V0.9.pdf
voltage change l Excellent output current accuracy: between channels: <±3% (max.), and CN: P-DIP24-300-2.54 between ICs: <±6% (max.) CNS: SP-DIP24-300-1.78 l Output current adjusted through an external resistor l Constant output current range: 5-90 mA MBI5016CF MBMBI5016CFF l Fast response of output
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3454fa.pdf
O 800 O 800 S S S VIH R 1.9 R 700 R 700 T 1.8 H VIH T 600 VIL O V FALLING E 600 V E V 1.7 IN B 500 IL B 500 U N N 1.6 E 400 E 400 1.5 300 300 1.–55 –35 –15 5 45 85 105 125 200 200 25 65 –55 –35 –15 5 25 45 65 85 105 125 2.7 3.1 3.5 3.9 4.3 4.7 5.1 5.5 TEMPERATURE (°C) TEMPERATURE (°C) VIN(V) 3454 G01
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15SQ_SERIES.pdf
R- load, Ta=50℃ 15 A Surge(Non-repetitive) 15SQ030 Forward Current 8.3ms single half sine- 15SQ045 300 FSM 15SQ050 A wave 15SQ060 15SQ100 340 Electrical Characteristics: Characteristics Symbol Conditions Typ. Max. Units Peak Forward Voltage* 15SQ030 0.48 0.55 15SQ045 0.48 0.55 V FM IFM=15.0A,Ta=25℃ 15SQ050
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vn820-e.pdf
IN OUT I Off-state output currentV = 0 V; V = 3.5 V -75 0 µA L(off2) IN OUT V = V = 0 V; V = 13 V; IL(off3) Off-state output current IN OUT CC 5 µA Tj= 125°C VIN= VOUT = 0 V; VCC= 13 V; IL(off4) Off-state output currentT = 25 °C 3 µA j Table 6. Switching (V CC = 13 V) Symbol Parameter Test conditions
in „P2PAK in Eagle“ · Platinen ·
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PDF
txs0104e.pdf
(mA) D003 V = 1.8 V V = 150 mV V = 2.7 V V = 150 mV CCA IL(A) CCA IL(A) Figure 6-1. Low-Level Output Voltage (V OL(Ax)) Figure 6-2. Low-Level Output Voltage (V OL(Ax)) vs Low-Level Current (I ) vs Low-Level Current (I ) OL(Ax) OL(Ax) 700 )600 m ( g500 l V400 u t O300 e e200 - o L100 VCCB= 3.3 V 0 0 2 4 6 8 10 12 14 16 18 20 Low-Level Current (mA) D002 VCCA = 3.3 V V IL(A) 150 mV Figure 6-3. Low-Level Output Voltage (V ) vs Low-Level Current (I ) OL(Ax) OL(Ax) Copyright
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PDF
txs0104e.pdf
(mA) D003 V = 1.8 V V = 150 mV V = 2.7 V V = 150 mV CCA IL(A) CCA IL(A) Figure 6-1. Low-Level Output Voltage (V OL(Ax)) Figure 6-2. Low-Level Output Voltage (V OL(Ax)) vs Low-Level Current (I ) vs Low-Level Current (I ) OL(Ax) OL(Ax) 700 )600 m ( g500 l V400 u t O300 e e200 - o L100 VCCB= 3.3 V 0 0 2 4 6 8 10 12 14 16 18 20 Low-Level Current (mA) D002 VCCA = 3.3 V V IL(A) 150 mV Figure 6-3. Low-Level Output Voltage (V ) vs Low-Level Current (I ) OL(Ax) OL(Ax) Copyright
in „[V] 13St. Pegelwandler 4Bit bidirektional TI 10x TXS0104EPWR : 3x TXS0104E Open-Drain and Push-Pull“ · Markt ·
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PDF
93LC66.pdf
0.3 — 0.8 V VCC ≥ 2.7V VIL2 -0.3 — 0.2 VCC V VCC < 2.7V D3 Vol1 Low level output voltage — — 0.4 V IL = 2.1 mA,CC = 4.5V Vol2 — — 0.2 V IL = 100 µA,CC = 2.5V D4 VOH1 High level output voltage 2.4 — — V OH = -400 µA,CC = 4.5V VOH2 V CC- 0.2 — — V IH = -100 µA,CC = 2.5V D5 II Input leakage current — —
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FD9802D_706844.pdf
by using FD9802. Model FD9802C (Package SSOP24-1.0) FD9802D (Package SSOP24-0.635) FD9802C:SSOP24-300-1.0 FD9802D:SSOP24-150-0.635 Features 16 constant-current output channels Constant output current invariant to load voltage change Output current adjusted through an external resistor Constant output
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25RIA-IR.pdf
325 @ 60 Hz 0.0083 s u 375 InitiaJ T = 125°C C @ 50 Hz 0.0100 s C No Voltage Reapplied t t 350 RRM t 300 t Rated V Reapplied - - 325 O n e 275 e 300 v v a a 275 W 250 W i i 250 S 225 S 225 l l H H 200 k 200 25RIA Series k 25RIA Series a (100 to 1200V) a 175 P P (100 to 1200V) 175 150 1 10 100 0.01 0.1
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131412.pdf
Symbol Parameter Conditions Typ LP3962/5 (Note 5) Units (Note 4) Min Max V O Output Voltage 10 mA ≤ IL ≤ 1.5A -1.5 +1.5 Tolerance VOUT +1 ≤ V IN7.0V 0 -3.0 +3.0 % (Note 8) V ADJ Adjust Pin Voltage (ADJ 10 mA ≤ IL≤ 1.5A 1.198 1.234 version) V +1.5V ≤ V ≤ 7.0V 1.216 1.180 1.253 V OUT IN ∆V OL Output Voltage
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L4971.pdf
Low level output voltage V FB= 3.8V 0.65 V Io source Source output current V comp= 6V; VFB= 2.5V 200 300 A Io sink Sink output current V comp= 6V; VFB= 3.8V 200 300 A b Source bias current 2 3 A SVRR E/A Supply voltage ripple rejectioV comp= Vfb Vcc = 8 to 55V 60 80 dB DC open loop gain R L= ∞ 50 57 dB
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sram.pdf
Operating modes DQ0- Mode V CC E G W DQ7 Power Deselect V X X High Z Standby 4.75 to 5.5 V IH WRITE V IL X VIL D IN Active or READ 4.5 to 5.5 V V IL V IL VIH D OUT Active READ V V V High Z Active IL IH IH Deselect V SO to PFD (min)1) X X X High Z CMOS standby (1) Deselect ≤ VSO X X X High Z Battery backup
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PDF
inc_BT14q002-A1.pdf
5.2 ELECTRICAL CHARACTERISTICS OF BACKLIGHT ITEM SYMBOL MIN. TYP. MAX. UNIT NOTE LAMP VOLTAGE VL - 300 - V Ta=25°C FREQUENCY fL - 70 85 kHz Ta=25°C LAMP CURRENT IL 4 5 6 mA Ta=25°C STARTING VS (1000) - - V Ta=25°C DISCHARGE COLTAGE PLEASE CERTAINLY INFORM HITACHI BEFORE DESIGNING LAMP DRIVE CIRCUIT ACCORDING
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PDF
AT070TN07-V2.pdf
component Input logic high voltageV IH 0.8V CC - V CC V Note 3 Input logic low voltage V 0 - 0.2V V IL CC No te 1: Refer to Fig.3-3-(a). Note 2: The brightness of LCD panel could be changed by adjusting the AC component of V COM. Note 3: STHL, STHR, OEH, L/R, CPH1~CPH3, STVD, STVU, OEV, CKV, U/D. Note
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mp2307.pdf
Resistance Load) OUT IN OUT OUT V EN VEN VEN 5V/div. 5V/div. 5V/div. V OUT V 2V/div. V 2V/div. OUT 2V/div. IL IL 1A/div. 2A/div. IL 2A/div. VSW VSW 10V/div. 10V/div. VSW 10V/div. 2ms/div. 2ms/div. MP2307-TP04 MP2307-TPC05 MP2307-TPC06 Load Transient Test Short Circuit Test Short Circuit Recovery Waveforms Waveforms
in „Spannungsregelung mit MP1584 und MP2307“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
Resistance Load) OUT IN OUT OUT V EN VEN VEN 5V/div. 5V/div. 5V/div. V OUT V 2V/div. V 2V/div. OUT 2V/div. IL IL 1A/div. 2A/div. IL 2A/div. VSW VSW 10V/div. 10V/div. VSW 10V/div. 2ms/div. 2ms/div. MP2307-TP04 MP2307-TPC05 MP2307-TPC06 Load Transient Test Short Circuit Test Short Circuit Recovery Waveforms Waveforms
in „Step Down - Stabil 5V 3A“ · Analoge Elektronik und Schaltungstechnik ·
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CA723CT.pdf
R6 D4 100 V C1 Q10 Q13 Z Q1 5pF FREQUENCY D2 COMPENSATION Q6 6.2V R7 R9 R10 R11 Q16 CURRENT 30k R8 300 20k 150 LIMIT 5k CURRENT SENSE VREF NON-INVERTING V- INVERTING INPUT INPUT FIGURE 1. EQUIVALENT SCHEMATIC DIAGRAM OF THE CA723 AND CA723C Typical Performance Curves (CA723) MAX JUNCTION TEMP (T ) =
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PDF
mp2307.pdf
Resistance Load) OUT IN OUT OUT V EN VEN VEN 5V/div. 5V/div. 5V/div. V OUT V 2V/div. V 2V/div. OUT 2V/div. IL IL 1A/div. 2A/div. IL 2A/div. VSW VSW 10V/div. 10V/div. VSW 10V/div. 2ms/div. 2ms/div. MP2307-TP04 MP2307-TPC05 MP2307-TPC06 Load Transient Test Short Circuit Test Short Circuit Recovery Waveforms Waveforms
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCF8591.pdf
PACKAGE TYPE NUMBER NAME DESCRIPTION VERSION PCA8591P DIP16 plastic dual in-line package; 16 leads (300 mil); long body SOT38-1 PCA8591T SO16 plastic small outline package; 16 leads; body width 7.5 mm SOT162-1 1998 Jul 02 3 This text is here in white to force landscape pages to be rotated correctly when
in „Datentransfer an PCF8591“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8591.pdf
PACKAGE TYPE NUMBER NAME DESCRIPTION VERSION PCA8591P DIP16 plastic dual in-line package; 16 leads (300 mil); long body SOT38-1 PCA8591T SO16 plastic small outline package; 16 leads; body width 7.5 mm SOT162-1 1998 Jul 02 3 This text is here in white to force landscape pages to be rotated correctly when
in „I2C Analog Mux/Demux im DIP gesucht“ · Mikrocontroller und Digitale Elektronik ·
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G6RN_0911.pdf
Maximum Switching Power Endurance 100 1000 ) 50 n 500 ) i A DC resistive load AC resistive load a 300 t 10 e 250 VAC resistive load e o r 3 c 5 1 100 g x i ( 250 VAC induction t 1 c 50 30 VDC resistive load (cosφ=0.4) w a load S u 30 n E 0.1 10 1 5 10 30 50 100 300 500 1000 0 2 4 6 8 10 Switching Current
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PDF
SEMIKRON_DataSheet_SKT_100_01236311.pdf
glass Tvj 130 °C ; 8,3...10 ms 15300 A s insulator Threaded stud ISO M12 x 1,75 V T Tvj 25 °C, IT= 300 A max. 1,75 V V T(TO) Tvj 130 °C max. 1 V or ½” - 20 UNF 2A rT Tvj 130 °C max. 2,4 m Interchangeable with international standard case IDD; RD Tvj 130 °C; V RD= V RRM; VDD = VDRM max. 30 mA tgd Tvj
in „Thyristor Steuerung mit Teensy 4.0“ · Analoge Elektronik und Schaltungstechnik ·
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LT3800.pdf
Current 25 nA FB VFB(SS) Soft-Start Disable Voltage VFBising 1.185 V Soft-Start Disable Hysteresis 300 mV ICSS Soft-Start Capacitor Control Current 2 μA g Error Amp Transconductance ● 275 350 400 μmhos m AV Error Amp DC Voltage Gain 62 dB VC Error Amp Output Range Zero Current to Current Limit 1.2 V
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PDF
LM3409__LM3409HV.pdf
DCMandtheripplewilldecreasewiththepeakcurrentthresh- internally limited maximum off-time (typically 300µs) will oc- old. The approximation shows how the LM3409/09HV cur. achieves constant ripple over a wide operating range, how- ever tOFF should be calculated using the actual equation first presented.
in „High Power LED Stroboskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DatenblattOriginalLEDAiptekt20.pdf
m ) 400 A 300 m r u 300 Amber e d 200 u Amber C d 200 o 100 F r o 100 F 0 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 Graph 7 0 Forward Voltage (V) 0.0 0.5 1.0 1.5 Graph 7 2.5 3.0 3.5 4.0 4.5 5.0 Forward Voltage
in „Abstrhlfläche LED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT070TN01_.pdf
1.7 2.0 2.3 DC component V CC V Input signal H level VIH 0.8VCC - Voltage 0.2VCC V Note3 L level V IL 0 - Note: 1. Refer to Fig.3-(a). 2. The brightness of LCD panel could be changed by adjusting the AC component of VCOM. 3. SRHL, STHR, OEH, L/R, CPH1~CPH3, STVR, STVL, OEV, CKV, U/D 4. Be sure to apply
in „TFT mit PIC24FJ256DA210“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektor_7-8_1983.PDF
lR-Fernbedienungen,ber der nTf Frequenzbereichistso ausgelegt, I||l daß das77,5-kHz'signalesZeitsen- l|il1 dersauch nochverarbeitetird.An' lil|l stelleer IR-Empfangsdiodechließtl u|j|J man jedoch eineaktiventenne (mit T1 aufgebaut)an den Eingangdes Die Antenne selbstesteht lCsan. von 20 cm c14 auseinem Ferritstab R12 1l6v Längeund 1 cm Durchmesser.auf den 300 Windungen Kupferlackdraht (OO,2mm) miteinem Abgriffbei lOOn 90Windungen gewickelwt erden. llaon Das Signalder aktivenAntenne gelangtan dieEingangsstufedes UZSOB und wird dann von A1 verstärkt.ach dererforderlichen
in „DCF77 SChaltplansuche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pt6202b.pdf
capacitor for proper operation in all applications. 20 Power Trends, Inc. 27715 Diehl Road, Warrenville, IL 60555 (800) 531-5782 Fax: (630) 393-6902 For assistance or to order, call (800) 531-5782 C H A R A C T E R I S T I C D A T A PT6203, 3.3 VDC PT6202, 5.0 VDC PT6204, 12.0 VDC (See Note 1) (See Note 1)
in „SHARP LJ640U34 von Pollin?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NHD-C12864WO-B1TMI-M.pdf
View #-M- Mounting holes RoHS Compliant Newhaven Display International, Inc. 2661 Galvin Court Elgin IL, 60124 Ph: 847-844-8795 Fax: 847-844-8796 www.newhavendisplay.com nhtech@newhavendisplay.com nhsales@newhavendisplay.com Document Revision History Revision Date Description Changed by 0 9/1/2008 Initial
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i2c_pullups_slva689.pdf
÷ è ø (2) For V = 0.7 × V : IH CC æ -t1 ö V = 0.7 V = V ´ç1 e RP´Cb ÷ IH CC CC ç ÷ è ø (3) For V =IL.3 × V : CC æ -t2 ö V = 0.3 V = V ´ ç1 e RP´Cb÷ IL CC CC ç ÷ è ø (4) The rise time for the I2C bus can be written as: tr = t2- t1= 0.8473´R ´C p b (5) The maximum pullup resistance is a function of the
in „I2C Pullup bei vielen I2C Devices“ · Mikrocontroller und Digitale Elektronik ·
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1971_Motorola_Comparatoren.pdf
Diff.erential Input Signal Vio ±5.0 Volts Common Mode Input Swing ±7.0 Volts CMVin F SUFFIX Peak Load Current IL 10 mA CERAMIC PACKAGE I CASE 606 Power Dissipation (package limitations) Po TO·91 MDerate above TA +25 C 4.6 mwroc Flat Package 500 mW Derete above TA =+25 C 3.3 mwroc PINCONNECTIONS Operating Temperature
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PDF
qt300_102.pdf
components are required. The device operates on demand, and can be synchronized to allow several QT300’s to operate near each other without cross-interference. AVAILABLE OPTIONS T SOIC 8-PIN DIP 0C to +70 C - QT300-D 0 0 -40 C to +85 C QT300-IS - LQ Copyright © 2002 QRG Ltd QT300 R1.02/0204 Table 1-1
in „Techniker-Projekt: Füllstandsanzeige für Modellfahrzeug“ · Mikrocontroller und Digitale Elektronik ·
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hcf4094.pdf
conditions is not implied. All voltage values are referSSdpin voltage. (*) 500mW at 6°C; derate to 300mW by 10m°C from 6°C to 8°C RECOMMENDED OPERATING CONDITIONS Symbol Parameter Value Unit V Supply Voltage 3 to 20 V DD V I Input Voltage 0 to VDD V Top Operating Temperature -55 to 125 °C 4/13 HCF4094B
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PDF
BS612__2_.zh-CN.de.pdf
Der EinstellbereicD/2zwischenUndV Eingangsruhestrom μA - 1 1 OEN aktivieren Eingang Niederspannung V IL existieren0,8V-1,2Vzwis0,8n OENSpannung hoher bis niedriger Schwellenwert ist der Hysteresebereich V Eingang Hochspannung OENSpannungsschwellenwert niedrig bis hoch VICH H 1.2 V Eingangsstrom μA ICICH
in „Bewegungsmelder BS612 - Sensorprobleme“ · Mikrocontroller und Digitale Elektronik ·
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esp-12s_product_specification_en.pdf
power, according to 802.11 standards (such as U-APSD). For example, in DTIM3,when ESP8266EX sleeps for 300 ms and wakes up for 3 ms to receive Beacon packages from AP, the overall average current consumption is about 20 mA. Light-sleep is used for applications whose CPU may be suspended, such as Wi-Fi
in „Richtige Bestückung eines PCB mit RJ45 Buchse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1210.pdf
TOL 3 6 CEO ▯ Automatically switches to battery when GND 4 5 CE power-fail occurs DS1210 8-pin DIP (300-mil) ▯ Space saving 8-pin DIP See Mech. DrawinSection ▯ Consumes less than 100 nA of battery current NC 1 16 NC ▯ Tests battery condition on power up VCCO VCCI ▯ Provides for redundant batteries 2 15
in „Suche Chip aus Mega-Drive-2-Spielplatine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1210.pdf
TOL 3 6 CEO ▯ Automatically switches to battery when GND 4 5 CE power-fail occurs DS1210 8-pin DIP (300-mil) ▯ Space saving 8-pin DIP See Mech. DrawinSection ▯ Consumes less than 100 nA of battery current NC 1 16 NC ▯ Tests battery condition on power up VCCO VCCI ▯ Provides for redundant batteries 2 15
in „DS1210 als Ersatz für BA6162?“ · Mikrocontroller und Digitale Elektronik ·