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PDF
DIS.pdf
mode Characteristic Symbol Min. Typ. Max. Unit Test pin E cycle time C 500 --- --- ns E E rise time r --- --- 25 ns E E fall time tf --- --- 25 ns E E pulse width (High, Low) tW 220 --- --- ns E R/W and RS set-up time SU1 40 --- --- ns R/W
in „Ansteuern eines LCD über ATmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIS.pdf
mode Characteristic Symbol Min. Typ. Max. Unit Test pin E cycle time C 500 --- --- ns E E rise time r --- --- 25 ns E E fall time tf --- --- 25 ns E E pulse width (High, Low) tW 220 --- --- ns E R/W and RS set-up time SU1 40 --- --- ns R/W
in „Ansteuern eines LCD über ATmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIS.pdf
voltage EON (VAC) EL frequency LF (Hz) EL Backlight Min Typ Max Min Typ Max EL (B) --- 100 150 --- 400 1000 u AC Characteristics l Write mode Characteristic Symbol Min. Typ. Max. Unit Test pin E cycle time tC 500 --- --- ns E E rise time tr --- --- 25 ns E E fall
in „LCD 202A Conrad und Atmega 8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIS_1_.pdf
voltage EON (VAC) EL frequency LF (Hz) EL Backlight Min Typ Max Min Typ Max EL (B) --- 100 150 --- 400 1000 u AC Characteristics l Write mode Characteristic Symbol Min. Typ. Max. Unit Test pin E cycle time tC 500 --- --- ns E E rise time tr --- --- 25 ns E E fall
in „LCD Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
scas116b_Treiber.pdf
REVISED APRIL 1996 recommended operating conditions (see Note 3) SN54ACT16244 74ACT16244 UNIT MIN MAX MIN MAX VCC Supply voltage (see Note 4) 4.5 5.5 4.5 5.5 V V High-level input voltage 2 2 V IH VIL Low-level input voltage 0.8 0.8 V VI Input voltage 0 VCC 0 VCC V V Output voltage 0 V 0 V V O CC CC
in „Treiber Baustein“ · Mikrocontroller und Digitale Elektronik ·
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Betriebsanleitung_optoNCDT_1420pdf__1_.pdf
3.3 Technische Daten ILD1420 Modell ILD1420-10 ILD1420-25 ILD1420-50 ILD1420-100 ILD1420-200 ILD1420-500 Messbereich 10 mm 25 mm 50 mm 100 mm 200 mm 500 mm Messbereichsanfang 20 mm 25 mm 35 mm 50 mm 60 mm 100 mm Messbereichsmitte 25 mm 37,5 mm 60 mm 100 mm 160 mm 350 mm Messbereichsende 30 mm 50 mm 85
in „Sensor mit RS422 interface und Konverter verbunden an Esp32 via TTL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lmx1602.pdf
Characteristics (VCCMAIN= VCCAUX= 3.0V; TA= 25°C except as specified) Symbol Parameter Conditions Min Typ Max Units GENERAL CC Power 2 GHz + 500 MHz Crystal Mode(1) 5.0 mA Supply (1) Current 1.1 GHz + 500 MHz Crystal Mode 4.0 mA 1.1 GHz + 1.1 GHz Crystal Mode(1) 5.0 mA 2 GHz Only Crystal Mode(1) 3.5 mA 1.1
in „Software <> Funkgerät, Kommunikation“ · HF, Funk und Felder ·
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PDF
LP171W01-A4K3.pdf
V) Aspect: 16:10 Module Outline Size: 382.2 mm (W) x 244.5 mm (H) x 6.2 mm (D), typical 6.5 mm (D, max) and 6.2 mm (max) at the cable pass through Weight: 760 g (max), 740 g (typical) Luminance: 160 nits @ 6.0 mA (typical) Power Consumption: 6.5 W @ Black (typical, the logic plus the backlight, 6 mA
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XGZP6857D-Pressure-Sensor-V2.7.pdf
0 ~ 200 0~2bar / 0~29PSI XGZP6857D200KPG 0 ~ 500 0~5bar / 0~72.5PSI XGZP6857D500KPG 0 ~ 700 0~7bar / 0~100PSI XGZP6857D700KPG 0 ~ 1000 0~10bar / 0~29PSI / 0~1MPa XGZP6857D001MPG -100 ~ 0 -1~0bar / -14.5~0PSI XGZP6857D100KPGN -30 ~ 0 -300~0mbar / -
in „CFSensors XGZP6857D Drucksensor Informationen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
semi_eng_ge2a_aqw21_e.pdf
0.08 ms 0.04 ms IF= 5 mA a Turn off time* Ton IL= Max. a Maximum 1.0 ms c Typical 0.8 pF e I/O capacitance Ciso f = 1 MHz s Maximum 1.5 pF V B= 0 V a T Initial I/O isolatioMinimum Riso 1,000 MΩ 500 V DC resistance *Turn on/Turn off time Input 90% Output
in „China-PC817 Optokoppler PCBs“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
log1.txt
calibration 0 0 0 0 no 1 0 0 0 0 0x00 0x00 signature 0 0 0 0 no 3 0 0 0 0 0x00 0x00 Programmer Type : STK500V2 Description : Atmel STK500 Version 2.x firmware Programmer Model: AVRISP Hardware Version: 15 Firmware Version Master : 2.10 Vtarget : 0.0 V SCK period : 210.6 us avrdude: AVR device initialized and
in „Bootloader mega2560“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CM300DY-24H.pdf
Supplies D 2.441±0.01 62.0±0.25 N 0.28 7.0 Ordering Information: Example: Select the complete part E 1.18 Max. 30.0 Max. P 0.26 Dia. Dia. 6.5 module number you desire from F 1.18 30.0 Q 0.33 8.5 the table below -i.e. CM300DY-24H G 0.98 25.0 R 0.24 6.0 is a 1200V (V ), 300 Ampere CES H 0.85 21.5 S M6 Metric
in „teslaspulenverzweiflung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
20D180K-SUNSTAR.pdf
Voltage S: Square M: f20% Revision:15-Feb-12 Z O V 20ĭ SERIES PACKAGE DIMENSIONS D D D T H H1 H1 4.0 max Kİ 3.0 Kİ 3.0 d1 d d L1 L1 D1 D1 D1 F TYPE TABLE 1 TABLE 2 unit:mm unit:mm Symbol Dimensions Model T(Max.) Model T(Max.) H(max.) 26.5 180K 4.35 361K 5.38 H1(max.) 28.0 220K 4.44 391K 5.55 L(min.) 20.0 270K 4.59 431K 5.77 L1(min.) 15.0 330K 4.80 471K 5.99 D(max.) 23.0 390K 4.56 511K 6.21 D1 7.5±0.8/10.0±1.0 470K 4.77 561K 6.48 T(max.) TABLE 2 560K 5.02 621K 6.81 d(±0.05) 0.8/1.0 680K 5.32 681K 7.14 d1(±0.4) 1.4/1.6 820K 4.48 751K 7.53 101K 4.65 781K 7.69 121K
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Adj_Charge_Pump_Linear_Technology_LT1761ES5-SD__1663783_.pdf
TYPICAL PERFOR A CE CHARACTERISTICS Typical Dropout Voltage Guaranteed Dropout Voltage Dropout Voltage 500 500 500 = TEST POINTS 450 450 450 ) 400 ) 400 )400 V V V ( 350 TJ= 125°C ( 350 TJ≤ 125°C (350 G G G L = 100mA T 300 T 300 T300 O O T ≤ 25°C O250 V 250 V 250 J V I = 50mA U 200 TJ= 25°C U 200 U200 L
in „Adjustable Charge Pump: LT1761ES5-SD - Problem“ · Mikrocontroller und Digitale Elektronik ·
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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
bq24070.pdf
Jnd the recommended supply voltage range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Voltage on ISET1, V ≥ 4.35 V, Battery charge current set VCC V(SET) voltage(6) VI(OUT) VI(BAT) V(DO-MAX) 2.47 2.50 2.53 V VI(BAT) V(LOWV) K Charge current set factor, BAT 100 mA ≤ IO(BAT)≤ 1.5
in „Akku-Typ Entscheidung“ · Mikrocontroller und Digitale Elektronik ·
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OP07.pdf
Rejection Ratio PSRR VS= ±3V to ±18V 5 20 μV/V Large SignalVoltage Gain AVO RL≥ 2 kΩ,V O ±10V 200 500 V/mV 4 RL≥ 500 Ω,V O ±0.5V,V =S±3V 150 400 V/mV 0°C ≤T A 70°C Input OffsetVoltage1 V 45 130 μV OS Voltage DriftWithout ExternalTrim4 TCVOS 0.3 1.3 μV/°C Voltage Drift with ExternalTrim TCVOSN RP= 20
in „Spannungsregler für Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
as6c4008.pdf
outputs remain in a high impedance state. 6.OW and WHZ are specified witL= 5pF. Transition is measured ±500mV from steady state. AUG09 v1.4 Alliance MemoryInc Page 6 of14 AUGUST 2009 AS6C4008 512K X 8 BIT LOW POWER CMOS SRAM DATA RETENTION CHARACTERISTICS PARAMETER SYMBOLTEST CONDITION MIN. TYP. MAX. UNIT
in „AS6C4008 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XTR105U-4-20mA-current-transmitter.pdf
0.01µF (3)RLIN1 LIN 2 1 2(2R1– R 2 R Z where R1= RTD Resistance at MIN+ TMAX)/2 R2= RTD Resistance atMAX RLIN= 1kΩ (Internal) FIGURE 1. Basic 2-Wire RTD Temperature Measurement Circuit with Linearization. XTR105 7 SBOS061B www.ti.com MEASUREMENT TEMPERATURE SPAN ∆T ( °C) T 100°C 200°C 300°C 400°C 500°C
in „[V] Verschiedene SMD-IC's“ · Markt ·
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PDF
HFBR-14XX_Optolink.pdf
THREAD 7.87 TYP. AVAILABLE (0.310) DIA. 14.27 TYP. (0.563) DIA. WALL NUT 6.61 DIA. (0.260) 0.14 10.41 MAX. (0.005) (0.410) DIA. 0.46 WASHER (0.018) WASHER WASHER (Each HFBR-4401 and HFBR-4411 kit consists of 100 nuts and 100 washers). Port Cap Hardware HFBR-4402: 500 SMA Port Caps HFBR-4120: 500 ST Port
in „Debuggen bei EMV-Tests“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4011fb.pdf
PIN CHEMISTRY TIMER TMIN TMAX CHRG TERMINATION CONDITION PC Both t /12 5°C 45°C I /5 Timer Expires MAX PROG FC Open NiCd tMAX 5°C 60°C PROG –20mV per Cell or 2°C/Minute GND NiMH t 5°C 60°C I 1.5°C/Minute for First/12 Minutes if Initial MAX PROG V < 1.325V MAX CELL –10mV per Cell or 1°C/Minute AMAX/12 Minutes or if InitCELL> 1.325V TOC GND NiMH t /3 5°C 60°C I /10 Timer Expires MAX PROG AR Both 5°C 45°C 0 VCELL< 1.325V PC: Precharge FC: Fast Charge (Initial –∆V Termination Hold O/12 Minutes May Apply) MAX TOC: Top-Off Charge (Only for NiMH ∆T/∆t FC Termination AfMAX/12 Period)
in „Ladeabschaltung beim LTC 4011“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TEST2.4.asm
Maxwert überschritten? ; brlo taste2 ;nein... ; mov soll1,max ;ja, auf Maxwert begrenzen ;taste2: ; sbrs tfl,2 ;Taste 2? ; rjmp taste3 ;nein... ; add soll2,ri ;ja, ändern ;rcall t3 ; cp soll2,max ;Maxwert überschritten? ; brlo taste3 ;nein... ; mov soll2,max ;
in „MENÜ-STEUERUNG“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ODM100.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „Frage zum ODM100 OLED Bausatz von ELV“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled1.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „AVR Oled Display odm 100-Wie ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „ODM100 OLED bleibt schwarz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ODM100.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „SSD 1351 - OLED ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TUA6100.pdf
divide ratio of the prescaler [ P/(P+1) = (32/33) or (64/65) ] A : divide ratio of the A-counter (max. 7 bit) N : divide ratio of the N-counter (max. 11 bit) R : divide ratio of the R-counter (max. 10 bit) M = (P N)+A : total divide ratio of the PLL (with A<N) Note : for continuous frequency steps following
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Linear_Power_MOSFETS_Basic_and_Applications.pdf
No V dss d RthJC The SOA Specification Package Type (V) (A) C /W Power (W), Tc = 90 Co IXTH24N50L 500 24 0.31 200 TO-247 @ Vd= 400V,d= 0.5A IXTX46N50L 500 46 0.18 240 PLUS247 @ Vds 400Vd I = 0.6A IXTN46N50L 500 46 0.18 240 SOT-227B @ Vds 400V,dI = 0.6A IXTK46N50L 500 46 0.18 240 TO-264 @ Vds 400V,dI = 0.6A IXTN62N50L 500 62 0.156 SOT-227B @ V = 400V, I = 0.75A ds d IXTB62N50L 500 62 0.156 300 PLUS264 @ Vds 400V,dI = 0.75A IXTH12N100L 1000 12 0.31 200 TO-247 @ Vd= 600V,d= 0.25A IXTX22N100L 1000 24 0.18 240 PLUS247 @
in „Gleichstromlast MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PHI.pdf
KTY81-110 KTY81-120 RESISTANCE RESISTANCE ( ) TEMP. ( ) TEMP. (°C) (°F) (%/K) ERROR ERROR MIN. TYP. MAX. (K) MIN. TYP. MAX. (K) −55 −67 0.99 475 490 505 ±3.02 470 490 510 ±4.02 −50 −58 0.98 500 515 530 ±2.92 495 515 535 ±3.94 −40 −40 0.96 552 567 582 ±2.74 547 567 588 ±3.78 −30 −22 0.93 609 624 638 ±2.55
in „Genauere Messung der Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC14541.pdf
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ (Voltages Referenced tSS) VDD – 55_C 25_C 125_C Characteristic Symbol Vdc Min Max Min Typ (4.) Max Min Max Unit Output Voltage “0” Level V 5.0 — 0.05 — 0 0.05 — 0.05 Vdc OL Vin= VDD or 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 „unbekannte Platine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HCT4543_2.pdf
CC CC CC t Input transition (rise and fall) time 500 500 500 ns NOTE 3: All unused inputs of the device must be heCC aor GND to ensure proper device operation. Refer to the TI application report, Implications of Slow or Floating CMOS Inputs, literature
in „Welcher Treiber zu 7 Segment LED mit Common Anode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Gesamtlieferprogramm_DE_2012.pdf
700 °C 250 8,4 -70 bis (CP 102) +150 Cu-Rophos ®18 CuP286 18 75 7 650 °C 250 8,4 (CP 101) Lieferform 500 mm Stäbe, 1 kg Fabrikationsringe, Draht auf Spulen, Bänder ab 0,05 mm Stärke, max. Breite 70 mm, Formteile aus Draht, als Ringe oder Abschnitte, Formteile aus Band, als Plättchen oder Scheiben. Cu-Rophos
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PDF
M12021PB_SM_PANASONIC_EN.pdf
1nput Impedance 300 ohms min. 40pF max. 300 ohms min. 40pF max. 300 ohms min. 40pF max. Vertical Input Sync Signal: Active Polarity Positive Positive Positive Pulse Rate 60.0Hz 60.0Hz 60.0Hz Amplitude Low;0+ Q.4V· Low;0+0.4V Low;0+0.4V -
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
1nput Impedance 300 ohms min. 40pF max. 300 ohms min. 40pF max. 300 ohms min. 40pF max. Vertical Input Sync Signal: Active Polarity Positive Positive Positive Pulse Rate 60.0Hz 60.0Hz 60.0Hz Amplitude Low;0+ Q.4V· Low;0+0.4V Low;0+0.4V -
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TCETDLSANF-10.0MHz_bei_RS.pdf
NC . 10 VDD 1 [ SIDE VIEW ] a 1.8 m 2 ELECTRIC AL SPECIFIC ATIO N Parameter 5.0 V 3.3 V Unit Min. Max. Min. Max. Supply Voltage Variation (V DD ) 5% 4.75 5.25 3.13 3.47 V Frequency Range 10 32 10 32 MHz Frequency Tolerance* _ ±2.0 _ ±2.0 ppm Frequency stability _ _ Vs Supply Voltage (±5%) change _ ±
in „Zähler HP5300A Ersatz Zeitbasisquarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IAM-B63.pdf
Voltage 30V DC Rated Current Signal terminal : 1A (Power supply terminal : 4A) Withstanding Voltage 500V AC (rms) 1minute Insulation Resistance 100MΩ min. (at 500V) Contact Resitance 30mΩ max. MECHANICAL CHARACTERISTICS Life (Matching Cycle) 200 Total Insertion Force 69N (7kgf) max. Total Withdrawal Force 3~69N (0.3~5kgf) max. Total Withdrawal Force (B63) 3~69N (0.3~7kgf) Using Temperature Range - 30~+85˚C MATERIAL & FINISH Component Parts Material Finish Housing Glass filled PBT resin —— Contact Copper Alloy Tin reflow
in „Interface MMI Splitter Connector Ersatzteile“ · Fahrzeugelektronik ·
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PDF
uCurrentArticle.pdf
count) $380 2V max 500mV max Fluke 77 series III (3.5 digit) $400 6 mV / mA N/A Fluke 77 series IV (6000 count) $425 2mV / mA N/A Fluke 79 series III (3.5 digit) $375 11mV / mA N/A Fluke 177/179 series IV (6000 count)
in „Strom im mA Bereich mit Oszi messen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
TVS_LCDA12C-8.pdf
-8 PROTECTION PRODUCTS Outline Drawing - SO-16 h DIMENSIONS A DIM INCHES MILLIMETERS e D h MIN NOM MAX MIN NOM MAX N H A .053 - .069 1.35 - 1.75 A1 .004 - .010 0.10 - 0.25 A2 .049 - .065 1.25 - 1.65 2X E/2 GAGE c b .012 - .020 0.31 - 0.51 PLANE c .007 - .010 0.17 - 0.25 E1 E D .386 .390 .394 9.80 9.90
in „Dauerhafte Spannungsbegrenzung TVS/ Suppressordioden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MGA-62563__AV02-1237EN_.pdf
C 85 C 85 C ) ) B33 B 20 ( ( 3 B O P 31 18 29 16 27 14 0 500 1000 1500 2000 2500 3000 0 500 1000 1500 2000 2500 3000 FREQUENCY (MHz) FREQUENCY (MHz) Figure 10. OIP3 vs. Frequency (3V 60 mA). Figure 11. P1dB vs. Frequency (3V 60 mA). MGA-62563TypicalPerformance
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PDF
NEO-7_DataSheet__UBX-13003830_.pdf
time pulse signal RMS 30 ns 99% 60 ns Frequency of time pulse signal 0.25 Hz … 10 MHz (configurable) Max navigation update rate 10 Hz 6 Velocity accuracy 0.1 m/s Heading accuracy 6 0.5 degrees 7 Operational limits Dynamics ≤ 4 g Altitude 50,000 m Velocity 500 m/s Table 1: GPS performance 1 2 Ready to support
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PDF
TSL_235.pdf
MAX UNIT VOH High-level output voltage IOH = –4 mA 4 4.3 V VOL Low-level output voltage IOL = 4 mA 0.17 0.26 V DD Supply current 2 3 mA Full-scale frequency 500 kHz Temperature coefficient of output frequency
in „Beleuchtungszeit in LUx mit TSL235“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tn15_spi_interface_specification.pdf
last bit of the SPI command is sampled in on the rising edge of SCK • maximum SPI clock frequency is 500kHz • maximum data transfer speed for RDAX and RDAY is 6600 samples per sec / channel SPI command can be either an individual command or a combination of command and data. In the case of combined command
in „vti sca1000-d01 spi problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSH2-323-36AA.pdf
A 2 / 8 に 5.5. Vout Output Voltage Single Power Supply Non-Detection : *)Timing Chart : See Fig.2 Max. 1.0 V Detection : Min. Vdd-1.0 V 5.6 ON TIME ON TIME Pin Voltage = GND Typ. 2.3 sec. (1.3 sec. ~ 3.3 sec.) 5.7. Warm-up Time *)Timing Chart : See Fig.2 Max. 30 sec. 6. OPTICAL CHARACTERISTICS Table
in „PIR Sensor Reverse Engineering“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PDC_10-1_Datasheet.pdf
dB dB (:1) INPUT, W STYLE N $ MHz C MODEL T L M J U L M J U L MU O Qty. NO. f -f Nom. Flatness Typ. Max. Typ. Max. Typ. Max. Typ. Min. Typ. Min. Typ. MinTyp. Max. Max. Note B N (1-9) L U TDC-6-1 10-400 6.3±0.4 ±0.4 2.0 2.4 2.0 2.4 2.0 2.5 36 30 30 25 20 15 1.5 1.0 2.0 B02 cw 23.95 TDC-10-1 1-400 10.0±
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PDF
62256-80.pdf
I Output Leakage Current -1 1 uA OL /OE=V INV IOV to V CC Output Low Voltage V =MAX, I = 1mA 0.4 V OL CC OL V V OH Output High Voltage VCCMIN, I OH= -1mA 2.2 V Operating Power Supply /CE=V ILIDQ=0mA, ICC 20 mA Current F=F MAX=1/ RC ICCSB TTL Standby Supply /CE=V IHIDQ=0mA, 1 mA /CE
in „Retro SRAM alternative NEC C43256-12L“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4238-MAX4239.pdf
5V, V CM = 0V, R =L10kΩ connected to V CC /2, SHDN = V CC , TA= +25°C, unless otherwise noted.) 3 2 MAX4239 MAX4239 4 GAIN AND PHASE vs. FREQUENCY GAIN AND PHASE vs. FREQUENCY SUPPLY CURRENT vs. SUPPLY VOLTAGE X 80 1 80 c 600 1 9 60 9 9 A 60 3 3 TA= +125 C 3 S 40 X S 40 A 500 x E 20 M E 20 M ) M M G E
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FELDER-Katalog-2012.pdf
330x20x20 mm), 3,5 kg Blöcke (545x47x20 mm). Fadenlötzinn nach DIN EN ISO 9453 Lieferform Abmessungen VE 500 mm Stäbe 2-3 mm 25,0 kg 500 mm Stäbe 3-4 mm 25,0 kg 500 mm Stäbe 4-5 mm 25,0 kg 500 mm Stäbe 5-6 mm 25,0 kg Legierung Schmelzbereich Beschreibung und Anwendung S-Pb70Sn30 183 - 255 °C Kühlerbau S-Pb65Sn35
in „Lötspitzen-Modifikation“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
ET035009DH6.pdf
. I T E M OPERATING STORAGE REMARK MIN. MAX. MIN. MAX. AMBIENT TEMPERATURE -10°C 60°C -20°C 70°C NOTE ( 1 ), ( 2 ) WITHOUT HUMIDITY NOTE ( 3 ) NOTE ( 3 ) CONDENSATION 5~20Hz , 1HR 2.45m/s 11.76m/s 20~500Hz(20Hz) , 1HR VIBRATION 20~500Hz(500Hz
in „AP7000 und ICnova ADB1000: Bisschen wenig?“ · Mikrocontroller und Digitale Elektronik ·
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ACTEL_1020B.pdf
GND. 5. V , V = V or GND. O IN CC Electrical Specifications (3.3V) Commercial Parameter Units Min. Max. 1 (IOH = –4 mA) 2.15 V VOH (IOH = –3.2 mA) 2.4 V 1 VOL (IOL = 6 mA) 0.4 V V –0.3 0.8 V IL V 2.0 V + 0.3 V IH CC Input Transition TimeRt F2 500 ns CIO I/O Capacitance2, 3 10 pF 4 Standby Current, CC
in „Reparatur eines Hamlet Vector Scope 301“ · Analoge Elektronik und Schaltungstechnik ·
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2010_05_Stellung_15_erneuerbareStromversorgung.pdf
auf DE–DK–NO 100 % SV- DE–DK–NO 100 % SV- jährliche Produktion 500 700 Austausch von max. 15 % der Jahresarbeit mit DK/NO möglich Maximal 15 % Nettoimport aus Szenario 2.2.a Szenario 2.2.b DK/NO zulässig (und Austausch DE–DK–NO 85 % SV- DE–DK–NO 85 % SV- von max. 15 % der Jahresarbeit) 500 700 3 Maximal 15 % Nettoimport aus Szenario 3.a Szenario 3.b EUNA möglich (und Austausch DE–EUNA 85 % SV-500 DE–EUNA 85 % SV-700 von max. 15 % der Jahresarbeit) SRU/Stellungnahme Nr. 15–2010/Tab. 2-