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139cll.pdf
www.vishay.com Vishay BCcomponents Table 4 ELECTRICAL DATA AND ORDERING INFORMATION NOMINAL I C R R IL5 Z U R 100 Hz CASE SIZE 100 Hz 5 min tan 10 kHz ORDERING CODE (V) (μF) L x W x H 105 °C (μA) 100 Hz () MAL2139....... (mm) (mA) 100 14.3 x 6.2 x 6.9 79 4.3 0.24 3.0 63101E3 6.3 220 14.3 x 7.6 x 8.2
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DS1339-DS1339U.pdf
INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK† DS1339C-2# -40°C to +85°C 2.0 16 SO (300 mils) DS1339C-2 DS1339C-3# -40°C to +85°C 3.0 16 SO (300 mils) DS1339C-3 DS1339C-33# -40°C to +85°C 3.3 16 SO (300 mils) DS1339C-33 DS1339U-2+ -40°C to +85°C 2.0 1339 rr-2 8 µSOP DS1339U-3+ -40°C to
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DS1339-DS1339U.pdf
INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK† DS1339C-2# -40°C to +85°C 2.0 16 SO (300 mils) DS1339C-2 DS1339C-3# -40°C to +85°C 3.0 16 SO (300 mils) DS1339C-3 DS1339C-33# -40°C to +85°C 3.3 16 SO (300 mils) DS1339C-33 DS1339U-2+ -40°C to +85°C 2.0 1339 rr-2 8 µSOP DS1339U-3+ -40°C to
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edison-module_HG_331189.pdf
tSU: DAT Data setup time 250 – 100 – ns 1 tr Rise time of both SDA and SCL signals – 1000 20 + 0.1Cb300 ns 2, Table 9 tf Fall time of both SDA and SCL signals 10 300 1 300 ns 4, Table 9 tSU: STO Setup time for STOP condition 4.0 – 0.6 – µs tBUF Bus free time between a STOP and START condition 4.7 – 1.3
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PDF
spannungen.pdf
GeneratedbyInternalDC/DC) VCC Note 4 7 7.25 7.5 V High Level Input VIH - 0.8 DD - V DD V Low Level Input V IL - 0 - 0.2 VDD V High Level Output V OH OUT=100 A,3.3MHz0.9 VDD - V DD V Low Level Output VOL OUT=100 A,3.3MHz 0 - 0.1 VDD V Operating Current for VDD IDD - - 180 300 A Operating Current for VCC Note
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MCP1700.pdf
-1.0 ±0.75 +1.0 %/V (VR + 1)V VIN 6V (VOUTXV IN Load Regulation V OUT/VOUT -1.5 ±1.0 +1.5 % IL= 0.1 mA to 250 mA for R 2.5V IL= 0.1 mA to 200 mA for R 2.5V Note 4 Dropout Voltage VIN- VOUT — 178 350 mV IL= 250 mA, (Note 1, Note 5) VR 2.5V Dropout Voltage VIN- VOUT — 150 350 mV IL= 200 mA,
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PDF
sp14q002-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 VOLTAGE PLEASE CERTAINLY INFORM HITACHI BEFORE DESIGNING LAMP DRIVE CIRCUIT ACCORDING
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HITACHI-SP14Q002-A1_DM.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
sp14q002-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 VOLTAGE PLEASE CERTAINLY INFORM HITACHI BEFORE DESIGNING LAMP DRIVE CIRCUIT ACCORDING
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M48Z02.pdf
- Mode V CC E G W DQ7 Power Deselect V X X High Z Standby IH WRITE 4.75 to 5.5 V V X V D Active or IL IL IN READ VIL V IL V IH D OUT Active 4.5 to 5.5 V READ VIL VIH V IH High Z Active (1) Deselect V SO to PFD (min) X X X High Z CMOS standby (1) Deselect ≤ VSO X X X High Z Battery backup mode 1. See
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PDF
MAX3816A.pdf
Delay Time to transition decision and assert 300 ns Holdoff Time HOLDOFF Data/clock sensing off during this period 2.5 μs LVTTL/LVCMOS CONTROL INPUTS (DRVR_EN, MODE) Input-High Voltage V IH 2.0 V Input-Low Voltage V IL 0.8 V Input-High Current IH VIH(MIN) < V IN -1 +1 μA Input-Low Current I V < V -1 +1 μA IL IN IL(MAX) Note 1: While the MAX3816A is operable over the continuous range of 3.0V to 5.5V, the DDC application requires V CC connection to DDC +5V. Note 2: All levels in the cable side clock and data
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MICRF104BM.pdf
Temperature (T A ............ 0°C to +85°C V –0.3 to V +0.3 SS DD Programmable Transmitter Frequency Range: 300MHz to Storage Temperature Range ...................-65°C to + 150°C470MHz Lead Temperature (soldering, 10 seconds) ........... + 300°C ESD Rating ....................................................
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lt1305-1504096.pdf
CHARACTERISTICS Low-Battery Detect Trip Point Switch Saturation Voltage Switch Saturation Voltage 1.250 400 300 TA= 25°C ISW = 1A 1.245 V350 V 1.240 ( (250 G300 G )1.235 L L200 (1.230 V250 V A N N L1.225 T200 T150 V R R B1.220 T150 T L1.215 S S100 C100 C 1.210 I I 50 1.205 S 50 S 1.200 0 0 –50 –25 0 25 50 75
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I2SBUS.pdf
= 140 (at typical data rate) clock LOW t LC 160 min > 0.35T = 140 (at typical data rate) delay dtr 300 max < 0.80T = 320 (at typical data rate) hold time htr 100 min > 0 clock rise-timeRC 60 max > 0.15T =tr4 (only relevant in slave mode) Example: Slave receiver with data rate of 2.5MHz (〉 10%) (all values
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PDF
SW017_ISO_tag_DS.pdf
compatible with industry -standard 134.2kHz ISO R/O chips. Ł ID code memory array custom configurable C O IL2 W Ł In factory mixed mask and electrical coding 1 simplify delivery L C c Ł Bit coding according to ISO FDX -B p Ł Full wave rectifier on chip Ł Small size chip for any transponder types Ł Long reading distance C O IL1 Ł Bit duration: 32 periods - of RF field Ł Low power consumption Ł Optional on -chip resonant capacitor to obtain a resonant system with external adapted coil only Product Description The SW017 is a
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CQ-Elettronica-1969-02_S60_67.pdf
nrio, eoi'mlfiaoe nBF (0071, AC125,c),135 e ala lrzzzoe el ale provvedeoretiifuadeionestri. figura2 .il—— 7 T-, 1 , e 4 l• -n, . „.L— . Ih 7. '1-° - . 4,... .'E 12j 11 t. jy_I ,_• tI Tutti Itransistor' sono 0074 .0simili. Irelais sono da 300ĺž12V (Geloso 2301/12). Cs C) lt n .1 1.4ln . 1 .'e i 1a-- i.•
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lm5165.pdf
Figure 6-20. VIN Sleep and Shutdown Supply Current vs Temperature Current vs Input Voltage 400 350 350 300 300 250 ) ) A 250 A t t 200 n 200 n r r 150 C 150 C 100 100 50 COT 50 COT PFM PFM 0 0 -50 -25 0 25 50 75 100 125 150 0 10 20 30 40 50 60 70 Temperature (°C) D016 Input Voltage (V) D017 R RT= 75 kΩ RRT
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RT9080-33GJ5_esp32_8622_low_quiescent_600mA.pdf
TA=−40°C t TA=−40°C t n 300 n 500 r 250 r u u 400 C 200 C D D 300 G 150 N G 200 100 100 50 VIN= 2.2V, OUT= 0.8V VIN= 4.3V, OUT= 3.3V 0 0 1 10 100 1000 1 10 100 1000 Load Current (mA) Load Current (mA) Copyrigh©2017 Richtek Technology
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SAA4700T.pdf
HIGH address 21H 2.4 − VP V note 2 RESET input (pin 11) V input voltage LOW reset active − − 0.4 V IL VIH input voltage HIGH reset non-active 2.4 − − V IL input current LOW − − −10 A IH input current HIGH − 0.01 1 A Notes 1. With standard sync and data amplitude of 68% to 75% black-white. 2. If the open
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24c16.pdf
Commercial Range: 0°C to +70°C Voltage Frequency Range Part Number Package 100 KHz 1.8V IS24C08-2P 300-mil Plastic DIP to 5.5V IS24C08-2G Small Outline (JEDEC STD) 100 KHz 1.8V IS24C16-2P 300-mil Plastic DIP to 5.5V IS24C16-2G Small Outline (JEDEC STD) 400 KHz 2.5V IS24C08-3P 300-mil Plastic DIP to 5.5V
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x24c00p.pdf
extended periods may affect device reliability. (Soldering, 10 seconds).............................. 300°C RECOMMENDED OPERATING CONDITIONS Temperature Min. Max. Supply Voltage Limits Commercial 0°C +70°C X24C00 5V ±10% Industrial –40°C +85°C X24C00-3 3V to 5.5V Military –55°C +125°C X24C00-2.7 2.7V to
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BLE112_Datasheet.pdf
radio (identifier le dispositif à l’aide de son numéro de certification ou de son numéro de modèle s’il appartient à la Catégorie II) a été approuvé par Industrie Canada pour fonctionner avec les types d’antenne énumérés ci-dessous, avec le gain admissible maximum et l’impédance d’antenne requise pour
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PDF
74HC_HCT74.pdf
Tamb = -40 °C Unit to +125 °C Min Typ [1] Max Min Max V HIGH-level V = V or V ; V = 4.5 V OH I IH IL CC output voltage IO= -4 mA 3.84 4.32 - 3.7 - V VOL LOW-level VI= VIH or IL; CC = 4.5 V output voltage IO= 4.0 mA - 0.15 0.33 - 0.4 V I input leakage V = V or GND; V = 5.5 V - - ±1.0 - ±1.0 μA I I CC
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lm3478.pdf
D IL1is less than 20% of I L1AVE , the benefit to output ripple is minimal. By increasing the value of L2 above the minimum recommended, Δ IL2can be reduced, which in turn will reduce the output ripple voltage
in „Frage zu Datenblatt LM3478“ · Analoge Elektronik und Schaltungstechnik ·
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A300_PCA9538_NXP.pdf
0 - 0 - ns t data valid acknowledge time [1] 0.3 3.45 0.1 0.9 s VD;ACK VD;DAT data valid time [2] 300 - 50 - ns SU;DAT data set-up time 250 - 100 - ns LOW LOW period of the SCL clock 4.7 - 1.3 - s HIGH HIGH period of the SCL clock 4.0 - 0.6 - s r rise time of both SDA and SCL signals - 1000 20 + 0.1C b[3] 300 ns [3] f fall time of both SDA and SCL signals - 300 20 + 0.1C b 300 ns t pulse width of spikes that must be - 50 - 50 ns SP suppressed by the input filter Port timing v(Q) data output valid time - 200
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PDF
80C40.pdf
VOH IOH—20 mA 0.93 CC Ñ Ñ V "H" Output Voltage *4 VOH IOH—10 mA 0.93 CC Ñ Ñ V Input Leakage Curent IL VSS£ VIN V CC Ñ Ñ ±5 mA 2 Output Leakage Current *5 OL VSS£ VO£ V CC Ñ Ñ ±5 mA 3 VIN0.7 VCC —20 —50 —80 mA RESET Input current IR VIN0.13 VCC —3 —8 —15 mA 2 Pull-up (IN=IL) 20 50 80 mA SS Input current *6 SS Pull-down (INVIH —6 —15 —25 mA P1, P2 input current P1, P2 VINV IH —300 —600 —900 mA 2 VINV IL —10 —40 —80 mA *7 At hardware power down Ñ Ñ 10 Power Down Mode I Ta=25°C, CC=2.0 V mA Standby Current CCS At HLTS execution7 Ta=25°C, CC=2.0 V Ñ Ñ 10 VCC=4 V, f=1 MHz Ñ Ñ 0.5
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VHF-COMM.1984.3.pdf
We would bu gratefUl if you wou ld 0'" &or,;c.Co.KlJAG address your ordurs end queries 3110 E",,>'IlS'ROSI'VII E "''''',f. 16'?~'IlI.j<'" to your reorescmeuve. VHF-eOMMU~!CATlOJ\S 3184 Contents Josef Grimm, A Lew-Norse Preamplifier 130- 136 OJ6 PI for Weather Satellite Reception at1.7GHz Harald Fleckner
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PDF
VHF-COMM.1984.3.pdf
We would bu gratefUl if you wou ld 0'" &or,;c.Co.KlJAG address your ordurs end queries 3110 E",,>'IlS'ROSI'VII E "''''',f. 16'?~'IlI.j<'" to your reorescmeuve. VHF-eOMMU~!CATlOJ\S 3184 Contents Josef Grimm, A Lew-Norse Preamplifier 130- 136 OJ6 PI for Weather Satellite Reception at1.7GHz Harald Fleckner
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PDF
fn2864.pdf
components. The frequency (or repetition rate) can • Wide Frequency Range . . . . . . . . . . . .0.001Hz to 300kHz be selected externally from 0.001Hz to more than 300kHz /Sub- using either resistors or capacitors, and frequency • Variable Duty Cycle . . . . . . . . . . . . . . . . . . . . . 2% to 98% ject Preci
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AD8656.pdf
V,LR = 10 kΩCMV= 0 V 98 dB −40°C ≤ TA≤ +125°C 90 dB OUTPUT CHARACTERISTICS Output Voltage High VOH IL= 1 mA; −40°C ≤ A ≤ +125°C 2.67 2.688 V Output Voltage Low VOL IL= 1 mA; −40°C ≤ A ≤ +125°C 10 30 mV Output Current IOUT VOUT= ±0.5 V ±75 mA POWER SUPPLY Power Supply Rejection Ratio PSRR VS= 2.7 V to
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Datei
user.ini
disabled ifattach intf=ethport3 logging=disabled ifattach intf=ethport4 logging=disabled config age=300 filter=no_WAN_broadcast [ vlan.ini ] [ eth.ini ] [ pptp.ini ] profadd name=pptp [ ppprelay.ini ] ifadd intf=bridge [ dhcspool.ini ] pool add name=LAN_private [ label.ini ] add name=DSCP add name=Interactive
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PDF
ICL8038.pdf
components. The frequency (or repetition rate) can • Wide Frequency Range . . . . . . . . . . . .0.001Hz to 300kHz be selected externally from 0.001Hz to more than 300kHz /Sub- using either resistors or capacitors, and frequency • Variable Duty Cycle . . . . . . . . . . . . . . . . . . . . . 2% to 98% ject Preci
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PCA82C250_PHI.pdf
voltage output recessive 0.7VCC − VCC + 0.3 V V LOW-level input voltage output dominant −0.3 − 0.3V V IL CC IH HIGH-level input current V1= 4 V −200 − +30 A IL LOW-level input current V1= 1 V −100 − −600 A V6,7 recessive bus voltage V1= 4 V; no load 2.0 − 3.0 V LO off-state output leakage curren−2 V < (
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PDF
82C250.pdf
voltage output recessive 0.7VCC − VCC + 0.3 V V LOW-level input voltage output dominant −0.3 − 0.3V V IL CC IH HIGH-level input current V1= 4 V −200 − +30 A IL LOW-level input current V1= 1 V −100 − −600 A V6,7 recessive bus voltage V1= 4 V; no load 2.0 − 3.0 V LO off-state output leakage curren−2 V < (
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PDF
LCD3320_manual.pdf
逆变电源专用液晶用户手册 EG8010 逆变器方案配套专用液晶 6.电气特性 6.1 直流特性 符号 参数名称 测试条件 最小 典型 最大 单位 VDD 电源 ‐ 2.4 ‐ 5.2 V VDD = 3V ‐ 150 300 uA IDD 工作电流 VDD = 5V ‐ 300 600 uA VDD = 3V 0 ‐ 0.6 V V IL 输入低电平电压 VDD = 5V 0 ‐ 1.0 V VDD = 3V 2.4 ‐ 3 V VIH 输入高电平电压 VDD = 5V 4.0 ‐ 5 V VDD = 3V 0.5 1.2 ‐ mA IOL 输出引脚灌电流 VDD = 5V 1.3 2.6 ‐ mA VDD = 3V
in „EGS002 welches Display ist geeignet ?“ · Mikrocontroller und Digitale Elektronik ·
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lm3914.pdf
CHARACTERISTICS (continued) (1) Parameter Conditions Min Typ Max Units VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤ 4 mA, V = V LED= 5V 1.2 1.28 1.34 V + Line Regulation 3V ≤ V ≤ 18V 0.01 0.03 %/V Load Regulation 0.+ mA ≤ IL(REF)≤ 4 mA, 0.4 2 % V = V LED= 5V Output Voltage Change with 0°C ≤ T ≤ +70°C, I = 1
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HM812.pdf
,,"atany difference between Flip Flop I AC and DC trigg. coupl.1 Balance I [ill] rr - i (Alte n.O,1IlS/cm)1 2/10p rtJ5kHz or DC 4k7 100 ~ (:w:Jcm::Jn~ Channel I Gain Trace Pos 1k 22k taT' Y_ n l ,,-,V'em) Y-ATTENUATOR Channel I and II A: O,9V from ChP 11 to ChP 10 B' O,9V from ChP 12 to ChP 10 I(Turn
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CONTROL_IC_IR2109PBF_DIP_8__IR.pdf
8B. SD Propagation Delay vs. Temperature vs. Supply Voltage 500 500 ) 400 s 400 n ( e e i i 300 T 300 T Max. e s i R n 200 n 200 Typ. - Max. - r Typ. r u T 100 T 100 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 o Temperature ( C) V BIASSupply Voltage (V) Figure 9A. Turn-on Rise Time Figure
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PDF
1933fe.pdf
70 70 W S 200 D1 = MBRM140 D1 = MBRM140 60 L1 = Toko D53LCB 33H 60 L1 = Toko D53LCB 22H 0 100 200 300 400 500 600 0 100 200 300 400 500 600 0 0 20 40 60 80 100 LOAD CURRENT (mA) LOAD CURRENT (mA) DUTY CYCLE (%) 1933 G01 1933 G02 1933 G03 MaximumLoad Current MaximumLoad Current Switch Voltage Drop 800
in „Kann ich eine BAS85 problemslos an Stelle einer 1N4148 verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1933fe.pdf
70 70 W S 200 D1 = MBRM140 D1 = MBRM140 60 L1 = Toko D53LCB 33H 60 L1 = Toko D53LCB 22H 0 100 200 300 400 500 600 0 100 200 300 400 500 600 0 0 20 40 60 80 100 LOAD CURRENT (mA) LOAD CURRENT (mA) DUTY CYCLE (%) 1933 G01 1933 G02 1933 G03 MaximumLoad Current MaximumLoad Current Switch Voltage Drop 800
in „LT Spice ein IC von Texas Insturments einbinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
kcg047qv1aa-a21.pdf
range θ φ=0゜ -30 - 20 deg. CR≧2 φ θ=0゜ -50 - 50 deg. Contrast ratio CR θ=φ=0° 15 30 - - Brightness(IL=5.0mA) L - 110 160 - cd/m2 Chromaticity x 0.48 0.53 0.58 coordinates Red θ=φ=0° y 0.29 0.34 0.39 x 0.24 0.29 0.34 Green θ=φ=0° y 0.44 0.49 0.54 x 0.11 0.16 0.21 Blue θ=φ=0° - y 0.09 0.14 0.19 x 0.25
in „lesbare schrift über PAL generieren“ · Mikrocontroller und Digitale Elektronik ·
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TOFC100-xx.pdf
s, NRZ) (nm) (m) (1) (ns)(1) (V) (°C) (µm) with Fiber-Optic Connectors TODX296 Up to 1000 PCF (200/300) TOCP200Q - BTOCP200X - B DC to 6 800 ± 55 5 ± 0.25 – 40 to 85 Up to 800 H PCF(200/230) CF-2071 Series (5) TODX298 (2) Up to 1000 PCF (200/300) TOCP200Q - BTOCP200X - B DC to 8 800 ± 42 5 ±0.25 – 40
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68hc68p1e.pdf
. . . . .Input Voltage Range, V . . . . . . . . . . . . . . . . . . . . . . . . . . -0.3V Min o o IL Package Type E, M. . . . . . . . . . . . . . . . . . . . . . . . . -55 C to 85 C DC Operating Voltage Range. . . . . . . . . . . . . . . . . .3V Min, 6V Max Serial Clock Frequency,SCK , DD = 3V . . .
in „maximale unabhängige Ausgänge“ · Mikrocontroller und Digitale Elektronik ·
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SAS1-0B0BL-A_UG-2832ASWHG05.pdf
Display V CC Note 5 11.5 12.0 12.5 V High Level Input VIH 0.8×V DD - VDD V Low Level Input V 0 - 0.2×V V IL DD High Level Output V I = 100µA, 3.3MHz 0.9×V - V V OH OUT DD DD Low Level Output V I = 100µA, 3.3MHz 0 - 0.1×V V OL OUT DD Operating Current for V I - 180 300 µA DD DD Note 6 - 8.2 10.3 mA Operating
in „STM32 F103 - I2C Probleme“ · Mikrocontroller und Digitale Elektronik ·
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NL6448AC33-29.pdf
current I B – 480 – mA 250 cd/m <2> Lamp Parameter Symbol MIN. TYP. MAX. Unit Remarks Lamp current IL 2.0 ×2 5.0 ×2 – mArms With two lamps Lamp voltage VL – 510 – Vrms IL = 5 mArms Power supply PL – 2.55 – W – Lamp turn on voltage Vs 840 – – mA T = 25°C 1265 – – mA Ta = 0°C Oscillator frequency Ft 50
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PD4437.pdf
0.600)typ. 0 0.46(0.018)x0.31(0.012)typ. ±0.05(0.002) 4 Atseatingplane andcentered onpackage 7.62(0.300) 38.1(1.500)max. 1.27(0.050) 9.53(0.375)typ. 6.86(0.270)typ. 1 x 0 m 5 ) 0 2 ) . 5 ( . . ( 0 4 2 1 1 Tolerance:0.51(0.020) IDOD5018 Top View 20 11 Digit 3 Digit 2 Digit 1 Digit 0 1 10 20 11 Digit 3
in „(V) PD4437 - 4-stelliges Led Punktmatrix-Display, grün, (NOS)“ · Markt ·
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SKKH_15_Thyristormodul_Datasheet.pdf
Tvj= 125 °C typ. 80 s IH Tvj= 25 °C, typ./max. 80 / 150 mA oxide ceramic isolated metal baseplate IL Tvj= 25 °C; RG= 33 ; typ./max. 150 / 300 mA • Hard soldered joints for high VT Tvj 25 °C; IT= 75 A max. 2,45 V reliability VT(TO) Tvj= 125 °C 1,1 V • UL recognized, file no. E 63 532 rT Tvj= 125 °C 20
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PDF
datasheet.pdf
Time t Ñ 400 Ñ 300 ns SBF Strobe Width SS 200 Ñ 150 Ñ ns Strobe/buffer Empty Delay Time t Ñ 400 Ñ 300 ns RBE Strobe/interrupt-on Delay Time tSI Ñ 400 Ñ 300 ns Read/interrupt-off Delay Time t Ñ 400 Ñ 300 ns RDI Port Input
in „OKI M81C55 benutzen.“ · Mikrocontroller und Digitale Elektronik ·
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mcp3424.pdf
— — ns Clock low time TLOW 4700 — — ns SDA and SCL rise time T — — 1000 ns From V to V (Note 1) R IL IH SDA and SCL fall time TF — — 300 ns From VIHto VILNote 1) START condition hold time THD:STA 4000 — — ns After this period, the first clock pulse is generated. START (Repeated) condition TSU:STA 4700
in „Sensorplatine MPX4115 DS1621 HIH5030 - Schaltungskontrolle“ · Mikrocontroller und Digitale Elektronik ·
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MCP2021.pdf
. When CS/LWAKE is ‘0’ a stronger Positive Supply Voltage Regulator Output pin. An on- pull-down (~300 kΩ) is used to maintain the logic level. chip LDO gives +5.0 or +3.3V 70 mA regulated voltage on this pin. This pin may also be used as a local wake-up input (See FIGURE 1-9: “Typical Application Circuit
in „MCP2021 -> Welcher ESD Level wird erreicht“ · Mikrocontroller und Digitale Elektronik ·