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150141M173100_1_.pdf
100 20° Luminous Intensity (Green) V G 20 mA 700 950 mcd 90 30° Luminous Intensity (Red) V R 20 mA 200 270 mcd ) 80 40° Forward Voltage (Green) VF G 20 mA 3.2 3.6 V ( 45° t 70 Forward Voltage (Blue) VF B 20 mA 3.2 3.6 V n Forward Voltage (Red) V 20 mA 2 2.4 V t 50° F R I 60 Spectral Bandwidth (Blue)
in „[V] ca. 320St. Würth SMD RGB LEDs PLCC4 Type: 150 141 M17 310 0“ · Markt ·
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DATASHEET-LI10600T070IA3098-TR.pdf
Outside Dimension 165.0(W)*100.0(H)*3.5(D) mm Active Area 154.21(W)*85.92(H) mm Mechanical Luminance 200 cd/m² Characteristics LED Numbers 21 LEDS - From left to right Pin Order - 50PIN_0.5mm Interface RGB_24bit - Electrical Color Depth 16.7M colors Characteristics HX8282-A11DPD300+HX8696-A01APD300 Driver
in „Parallel RGB Frequenz/Einzelbild?“ · Mikrocontroller und Digitale Elektronik ·
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top222y.pdf
e w o 200 P 100 0 0 200 400 600 DRAIN Voltage (V) C 12/97 17 TOP221-227 Free TOPSwitch Flyback Transformer Design Spreadsheets Toreceiveyourfreecopyofthelatestversionofthespreadsheetsona31/2"IBMcompatiblefloppy
in „Suche Ersatz für TOP222Y“ · Mikrocontroller und Digitale Elektronik ·
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an721.pdf
graphic and numerical methods of impedance matching will be reviewed here. The examples given will refer ZIN CC CDE CTE RE to high frequency power amplifiers. Although matching networks normally take the form of filters and therefore are also useful to provide frequency Where: discrimination, this aspect
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an721.pdf
graphic and numerical methods of impedance matching will be reviewed here. The examples given will refer ZIN CC CDE CTE RE to high frequency power amplifiers. Although matching networks normally take the form of filters and therefore are also useful to provide frequency Where: discrimination, this aspect
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UB084S01-2.pdf
Vertical stripe 6 Overall dimension(mm) 203.0(W)×142.5(H)×7.5(D) Note 1 7 Weight(g) 310 ±10 Note 1: Refer to Fig. 1. ALL RIGHTS STRICTLY RESERVED. ANY PORTION OF THIS PAPER SHALL NOT BE REPRODUCED, COPIED, OR TRANSFORMED TO ANY OTHER FORMS WITHOUT PERMISSION FROM UNIPAC OPTOELECTRONICS CORP. : 413-212-
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Datei
decodeMeterSML.h
t value1; uint32_t value2; uint16_t CRC_ccitt; uint16_t CRC_meter; char ExtractValue[14]; uint16_t refUint(uint16_t reflector, int bits); void readValuesOBIS(); int SearchOBIS(char *searchCode, int slength); int CheckOBIS(char *checkCode, int i, int searchLength); int dropValues(int actPointer, int drops
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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LT084AC27500-v05R.pdf
Remarks Insulation Resistance Z 20 --- --- MOhm DC25V Resistance Measured at connector #1 - #3(X) Rx 200 --- 1500 Ohm between #2 - #4(Y) Ry 100 --- 1200 Ohm pin(including conductor Terminals resistance). Linearity - --- --- 4.0 % Chattering - --- --- 15 msec Mechanical Specifications Item Min. Typ. Max
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HDLx-2416.pdf
inch) Smart 5×7 Alphanumeric DisplaysPackage Dimensions Package Dimensions 25.15 0.38 (0.990) (0.015)REF. 3.05 (0.120) 6.35 0.25±0.13 TYP. (0.250)TYP. (0.010±0.005) 10.03 (0.395) 5.08 10.16 REF. 15.24 (0.200) (0.400) (0.600) 20.07 (0.790) IMAGEPLANE PIN1IDENTIFIER 3.43 1.52 2.41 (0.060)REF. (0.095) (0.135
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am29dl323db.pdf
Unprotect allows changing data in — 10 mA active read current at 5 MHz protected sectors in-system — 200 nA in standby or automatic sleep mode Publication# 2153Rev: D Amendment/+8 Issue Date: December 13, 2005 Refer to AMD’s Website (www.amd.com) for the latest information. GENERAL DESCRIPTION The Am29DL322D
in „55 Stk. Flashbausteine 32Mbit, TSSOP48, 3,3V AM29DL323DB-90“ · Markt ·
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SC17_GENERAL_MAG_98_1.pdf
Vout VCC GND IC2A R10 R12 KMZ51 R8 IC2C GND IC2D IC6B COMP Ua+ R11 R2 R3 R5 R13 C1 S1 IC2B R6 Uref U ref IC2B OFFSET COMPENSATION block 3 U flipping pulse V U ref CC ref FLIPPING U GENERATOR ref R17 R19 GENERATOR OP-AMP R15 SUPPLY TR2 R14 C4 IC6 C6 IC1B FLIP IC1A IC2 IC4 C3 C5 TR1 R16 R18 R20 C7 C8 block
in „OPV umschaltbar zwischen Invertieren/Nichtinvertieren“ · Analoge Elektronik und Schaltungstechnik ·
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SC17_GENERAL_MAG_98_1.pdf
Vout VCC GND IC2A R10 R12 KMZ51 R8 IC2C GND IC2D IC6B COMP Ua+ R11 R2 R3 R5 R13 C1 S1 IC2B R6 Uref U ref IC2B OFFSET COMPENSATION block 3 U flipping pulse V U ref CC ref FLIPPING U GENERATOR ref R17 R19 GENERATOR OP-AMP R15 SUPPLY TR2 R14 C4 IC6 C6 IC1B FLIP IC1A IC2 IC4 C3 C5 TR1 R16 R18 R20 C7 C8 block
in „Typical Application Circuit - Kondensatoren wechselbar?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
Vout VCC GND IC2A R10 R12 KMZ51 R8 IC2C GND IC2D IC6B COMP Ua+ R11 R2 R3 R5 R13 C1 S1 IC2B R6 Uref U ref IC2B OFFSET COMPENSATION block 3 U flipping pulse V U ref CC ref FLIPPING U GENERATOR ref R17 R19 GENERATOR OP-AMP R15 SUPPLY TR2 R14 C4 IC6 C6 IC1B FLIP IC1A IC2 IC4 C3 C5 TR1 R16 R18 R20 C7 C8 block
in „Suche einen Magnetfeldsensor“ · Mikrocontroller und Digitale Elektronik ·
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kmz11b1.pdf
Vout VCC GND IC2A R10 R12 KMZ51 R8 IC2C GND IC2D IC6B COMP Ua+ R11 R2 R3 R5 R13 C1 S1 IC2B R6 Uref U ref IC2B OFFSET COMPENSATION block 3 U flipping pulse V U ref CC ref FLIPPING U GENERATOR ref R17 R19 GENERATOR OP-AMP R15 SUPPLY TR2 R14 C4 IC6 C6 IC1B FLIP IC1A IC2 IC4 C3 C5 TR1 R16 R18 R20 C7 C8 block
in „Strom-Messung + PIC16C76“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
Vout VCC GND IC2A R10 R12 KMZ51 R8 IC2C GND IC2D IC6B COMP Ua+ R11 R2 R3 R5 R13 C1 S1 IC2B R6 Uref U ref IC2B OFFSET COMPENSATION block 3 U flipping pulse V U ref CC ref FLIPPING U GENERATOR ref R17 R19 GENERATOR OP-AMP R15 SUPPLY TR2 R14 C4 IC6 C6 IC1B FLIP IC1A IC2 IC4 C3 C5 TR1 R16 R18 R20 C7 C8 block
in „Magnet und Hallsensor als Türkontakt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
Vout VCC GND IC2A R10 R12 KMZ51 R8 IC2C GND IC2D IC6B COMP Ua+ R11 R2 R3 R5 R13 C1 S1 IC2B R6 Uref U ref IC2B OFFSET COMPENSATION block 3 U flipping pulse V U ref CC ref FLIPPING U GENERATOR ref R17 R19 GENERATOR OP-AMP R15 SUPPLY TR2 R14 C4 IC6 C6 IC1B FLIP IC1A IC2 IC4 C3 C5 TR1 R16 R18 R20 C7 C8 block
in „Magnetfeldsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
Vout VCC GND IC2A R10 R12 KMZ51 R8 IC2C GND IC2D IC6B COMP Ua+ R11 R2 R3 R5 R13 C1 S1 IC2B R6 Uref U ref IC2B OFFSET COMPENSATION block 3 U flipping pulse V U ref CC ref FLIPPING U GENERATOR ref R17 R19 GENERATOR OP-AMP R15 SUPPLY TR2 R14 C4 IC6 C6 IC1B FLIP IC1A IC2 IC4 C3 C5 TR1 R16 R18 R20 C7 C8 block
in „KMZ51 Sensor - Reset frequenz“ · Analoge Elektronik und Schaltungstechnik ·
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slaa074.pdf
one reference clock fset .set dco_set*1000/(f_ref*Tclk_div) In Listing 4 the 32-kHz ACLK is used as the reference frequency to generate a 1-MHz DCO frequency. To get more time for DCO measurement, ACLK is divided by 8 in the basic clock module. Listing
in „MSP430 CPU Takt erhöhen“ · Mikrocontroller und Digitale Elektronik ·
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TLE4945-2G_InfineonTechnologiesAG.pdf
6 B OPmax 15 B RPmax 4 VS=24V B OPtyp 10 B RPtyp VS=4.0V 2 B OPmin 5 B RPmin 0 0 -50 0 50 100 C 200 -40 0 50 100 ˚C 200 T T j j Data Sheet 11 2000-07-01 TLE 4905 G; TLE 4935 G TLE 4935-2 G; TLE 4945-2 G TLE 4935 Operate-and Release-Point TLE 4935-2 Operate-and Release-Point versus Junction Temperature
in „Untersuchung defektes VW Türsteuergerät“ · Fahrzeugelektronik ·
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OP184_284_484.pdf
Rev. G | Page 7 of 24 OP184/OP284/OP484 500 1.50 V = ±15V S T A 25°C 400 A m 1.25 300 ( ) E n F ( 200 L N P 1.00 E 100 A R U E C 0 / 0.75 S T I –100 E B R T R 0.50 P –200 C I Y –300 L P 0.25 1 U 1 –400 3 S 3 2 2 –500 0 0 0 –15 –10 –5 0 5 10 15 0 ±2.5 ±5.0 ±7.5 ±10.0 ±12.5 ±15.0 ±17.5 ±20.0 COMMON-MODE
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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HD44780.pdf
frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U Instruction and Display
in „LCD Dotmatrix kaputt“ · Mikrocontroller und Digitale Elektronik ·
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hd44780u.pdf
frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U Instruction and Display
in „Falsche Zeichen bei LCD-Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u.pdf
frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U Instruction and Display
in „2. Zeile LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780U.pdf
frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U Instruction and Display
in „444780 LCD 5x10 klappt nicht richtig!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency = = 61.4 Hz 16.3 ms 1/16 duty cycle 200 clocks COM1 1 2 3 4 1 2 V 16 CC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U Instruction and Display
in „Ist der HD44780 nun 8 oder 16 Zeichen lang?“ · Mikrocontroller und Digitale Elektronik ·
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BTA08-400.pdf
provides voltage insulated tab (rated at (BTA08) (BTB08) 2500V RMS ) complying with UL standards (file ref.: E81734). Table 2: Order Codes Part Number Marking BTA08-xxxxxRG BTB08-xxxxxRG See page table 8 on T8xx-xxxG page 10 T8xx-xxxH T8xx-xxxB February 2006 REV. 6 1/11 BTA08, BTB08 and T8 Series Table 3
in „Triac am atmega anstelle MOC3041 und BTA08-400“ · Analoge Elektronik und Schaltungstechnik ·
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Wuerth__9774060360R.pdf
Ramp-down Rate (T toPT ) L 6 °C/ second max. p Time 25°C to peak temperature 8 minutes max. m T 1)refer to IPC/JEDEC J-STD-020D tS refer to IPC/ JEDEC J-STD-020E Package Classification Reflow Temperature (T ): c Volume mm³ Volume mm³ Volume mm³ 25 Properties <350 350-2000 >2000 Time 25°C to Peak PB-Free
in „Gehäuse von z.B. Jung für eigene Elektronik“ · Mikrocontroller und Digitale Elektronik ·
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SSD1306B_1.1.pdf
(1~255) is set by Set Contrast command 81h; and the scale factor is 8 by default. When external I REF is used, the magnitude of I REF is controlled by the value of resistor, which is connected between I REF pin and V SS shown in Figure 7-15. It is recommended to set I REF to 30±2uA so as to achieve
in „OLED zeigt nur wirre Pixel am I2C“ · Mikrocontroller und Digitale Elektronik ·
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pc847x_SHA.pdf
epedflcation applies to the outline and chalaIzterlstlcs of photocoupxer Model No. PCS17 (B tupc). Refer to the attached drawing No. CY537OKfI2. 3. Rating8sndclxmxctQistiw Ref’ to the attached she& pege 4.6. 4. Reliabilig Rekrbtheattachedsheet.page7. 5. Incoming lIlspecffon Rcfkrtotheatkchcdshcct,pa@8
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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ENG_DS_RT1_0411.pdf
., DC coil 8/6ms 006 6 4.2 0.6 90 400 Bounce time max., DC coil, form A/form B 4/6ms 009 9 6.3 0.9 200 400 1) Electrical endurance see electrical endurance graph 012 12 8.4 1.2 360 400 024 24 16.8 2.4 1440 400 Contact ratings 048 48 33.6 4.8 5520 417 Type Contact Load Cycles 060 60 42.0 6.0 8570 ) 420
in „Belastbarkeit Relais“ · Analoge Elektronik und Schaltungstechnik ·
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BREMI_BRS-36-Schematics.pdf
6 MOUT MRL2 1 D M2NB 7 TR1A 100n B1 100n Q B MBDB 8 1 8 M+ D B E E M- 9 1 6 S B 2 2 R D P R 7 25A 200V C4 +C5 +C6 C7 M M M M to main PCB +C8 C9 P 6 M24V S C3 100n 100n 4700u/63v 4700u/63v 100n 220u/50V 100n MASTER_OUT 4 5 M0V MASTER_PWR 1 M- M- M- JP2 E I L _ R M T R4 F E Q2 M_FCOMP TP1 X N BC550C 10k
in „Schaltplan für Labornetzgerät BREMI BRS 33 gesucht / Strombegrenzung defekt“ · Analoge Elektronik und Schaltungstechnik ·
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MKC1862.pdf
CAPACITANCE RANGE 0.01µF to 10µF 6.0- 1 PERMISSIBLE AC VOLTAGES (RMS) UP TO 60HZ 40 VAC, 63 VAC, 160 VAC, 200 VAC ± 0.4 pcm ± 0.4 0.8 TEST VOLTAGE (ELECTRODE/ELECTRODE) 1.6 x R for 2 s MAIN APPLICATIONS INSULATION RESISTANCE Storage, filter, timing and integrating circuits. Measured at 100 VDC (63 VDC series
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APM2601.pdf
1.90 BSC 0.07480 BSC H 2.60 3.00 0.1024 0.1181 L 0.30 - 000118 - L1 0.08 0.25 0.0031 0.0098 L2 0.60 REF 0.024 REF α 0° 10° 0 ° 10 ° S1 0.85 1.05 0.0335 0.0413 Copyright ANPEC Electronics Corp. 6 www.anpec.com.tw Rev. A.1 - Jun., 2003 APM2601 Physical Specifications Terminal Material Solder-Plated Copper
in „SMD-Bauteilbestimmung“ · Mikrocontroller und Digitale Elektronik ·
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WS2812B-V5.pdf
Mini Typ Max Unit (Working current) Red 300 310 500 Brightness IV Green 600 780 1000 mcd 12mA Blue 200 215 300 Red 620 621 630 Wavelength λd nm 12mA Green 515 520 525 Blue 465 471 475 Data Transfer Time T0H 0 code, high voltage time 220ns~380ns T1H 1 code, high voltage time 580ns~1µs T0L 0 code, low
in „PWM-Signal verstärken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WS2812B-V5.pdf
Mini Typ Max Unit (Working current) Red 300 310 500 Brightness IV Green 600 780 1000 mcd 12mA Blue 200 215 300 Red 620 621 630 Wavelength λd nm 12mA Green 515 520 525 Blue 465 471 475 Data Transfer Time T0H 0 code, high voltage time 220ns~380ns T1H 1 code, high voltage time 580ns~1µs T0L 0 code, low
in „WS2812B mit 3.3V ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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IRF4905.pdf
Continuous Drain CurrentGSV@ -10V -52 A DM Pulsed Drain Current -260 PD@T C 25°C Power Dissipation 200 W Linear Derating Factor 1.3 W/°C V Gate-to-Source Voltage ± 20 V GS EAS Single Pulse Avalanche Energy 930 mJ AR Avalanche Current -38 A E Repetitive Avalanche Energy 20 mJ AR dv/dt Peak Diode Recovery
in „P Kanal Mosfet schlägt immer wieder mal Durch.“ · Analoge Elektronik und Schaltungstechnik ·
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WS2812B__Ver._No._V5__EN_19112715001349.pdf
Mini Typ Max Unit (Working current) Red 300 310 500 Brightness IV Green 600 780 1000 mcd 12mA Blue 200 215 300 Red 620 621 630 Wavelength λd nm 12mA Green 515 520 525 Blue 465 471 475 Data Transfer Time T0H 0 code, high voltage time 220ns~380ns T1H 1 code, high voltage time 580ns~1µs T0L 0 code, low
in „Adressierbare RGB LEDs 3.3V gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL2631.pdf
terminals Tracking (Internal to output terminals, along Creepage) internal cavity. Tracking Resistance CTI 200 200 200 Volts DIN IEC 112/VDE 0303 Part 1 (Comparative Tracking Index) Isolation Group IIIa IIIa IIIa Material Group (DIN VDE 0110, 1/89, Table 1) Option 300 - surface mount classification is Class
in „HCPL2631 Vorwiderstand“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2630_Copy2.pdf
terminals Tracking (Internal to output terminals, along Creepage) internal cavity. Tracking Resistance CTI 200 200 200 Volts DIN IEC 112/VDE 0303 Part 1 (Comparative Tracking Index) Isolation Group IIIa IIIa IIIa Material Group (DIN VDE 0110, 1/89, Table 1) Option 300 - surface mount classification is Class
in „Optokopler (input zwischen 90 und 180V dc) Output transistor an 24V verbunden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
171573-da-01-en-LT_1073_5_DIP_8_STEP_UP_1V_5V.pdf
125 250 mV LT1073-12 300 600 mV fOSC Oscillator Frequency 15 19 23 kHz DC Duty Cycle Full Load FB = REF 65 72 80 % tON Switch ON Time 30 38 50 s I Feedback Pin Bias Current LT1073, V = 0V 10 50 nA FB FB ISET Set Pin Bias Current VSET= VREF 60 120 nA V AO Output Low I = –100 A 0.15 0.4 V AO AO Reference
in „LT 1073 Spg.schwankungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EM638325_SDRAM.pdf
Synchronous DRAM (SDRAM) Preliminary (Rev 1.4 October/2005) Features Pin Assignment (Top View) • Clock rate: 200/183/166/143/125/100 MHz Fully synchronous operation VDD 1 86 VSS • DQ0 2 85 DQ15 • Internal pipelined architecture VDDQ 3 84 VSSQ DQ1 4 83 DQ14 • Four internal banks (512K x 32bit x 4bank) DQ2 5 82
in „SDRAM Burst lesen ohne Unterbrechung über Column, Row und Banks hinaus“ · FPGA, VHDL & Co. ·
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PDF
HCPL-0872.pdf
0.5˚C/SEC. REFLOW HEATING RATE 2.5˚C ± 0.5˚C/SEC. PEAK TEMP. PEAK 245˚C TEMP. 240˚C PEAK TEMP. 230˚C 200 2.5˚C ± 0.5˚C/SEC. ) SOLDERING ˚ TIME E 160˚C 30 R 150˚C SEC. 200˚C T 140˚C R 30 P 3˚C + 1˚C/-0.5˚C SEC. M T 100 PREHEATING TIME 150˚C, 90 + 30 SEC. 50 SEC. TIGHT ROOM TYPICAL TEMPERATURE LOOSE 0 0 50 100 150 200 250 TIME (SECONDS) Recommended Pb-Free IR Profile TIMEWITHIN5˚CofACTUAL PEAKTEMPERATURE p 20-40SEC. 260+0/-5˚C Tp 217˚C C TL RAMP-UP ( 3˚C/SEC.MAX. RAMP-DOWN R 6˚C/SEC.MAX. T Tsmax 150-200 ˚C A E Tsmin
in „HCPL-0872 digital Interface für ISO-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CLAA154WB05AN.pdf
min) Optimum Viewing Angle 6 o’clock Response Time (ms) 16ms Viewing Angle 40°、 40° /10°、30°(Min.) 2 200 cd/m (5point)/6 mA (Typ.) Brightness (cd/m^2) 170 cd/m (5point)/6 mA (Min.) Uniformity 5point:80% 13point:75% Consumption of Power (W) 7W(Max) Module Size (mm) 344.5(W)×222.5(H)×6.2(D)(Max) Module Weight
in „Display CLAA154WB05AN an Pollinboard PI-MDV6822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_FET-P__JCET_AO3401.pdf
1.050 0.035 0.041 b 0.300 0.500 0.012 0.020 c 0.080 0.150 0.003 0.006 D 2.800 3.000 0.110 0.118 E 1.200 1.400 0.047 0.055 E1 2.250 2.550 0.089 0.100 e 0.950TYP 0.037TYP e1 1.800 2.000 0.071 0.079 L 0.550REF 0.022REF L1 0.300 0.500 0.012 0.020 θ 0° 8° 0° 8° SOT-23 Suggested Pad Layout 4 C,Apr,2015 SOT-
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PDF
210_PERC_120Cells_390W-410W_Mono_Solar_panel_specification__1760_1098_30mm.pdf
CURVES OF PV MODULE(400 W) can be customized 14.0 12.0 11.0 Connector MC4 10.0 ) 9.0 ( 8.0 *Please refer to regional datasheet for speci ed connector. t 7.0 e u 6.0 TEMPERATURE RATINGS MAXIMUMRATINGS C 5.0 4.0 NOCT (Nominal Operating Cell Temperatur43°C (±2°C) Operational Temperature -40~+85℃ 3.0 2.0
in „2 PV-Panels in Reihenschaltung für einen Micro Grid Tie Inverter?“ · Haus & Smart Home ·
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PDF
210_PERC_120Cells_390W-410W_Mono_Solar_panel_specification__1760_1098_30mm.pdf
CURVES OF PV MODULE(400 W) can be customized 14.0 12.0 11.0 Connector MC4 10.0 ) 9.0 ( 8.0 *Please refer to regional datasheet for speci ed connector. t 7.0 e u 6.0 TEMPERATURE RATINGS MAXIMUMRATINGS C 5.0 4.0 NOCT (Nominal Operating Cell Temperatur43°C (±2°C) Operational Temperature -40~+85℃ 3.0 2.0
in „Was passiert, wenn Solarzellen in Reihe geschaltet sind und einige im Schatten liegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
quarzfilter_rev2a.pdf
----------------- 2990 '------- Graphische Darstellung --------- 3000 CLS :SCREEN 2 3010 WINDOW (0,200)-(200,0) 3020 VIEW (400,0)-(639,189) 3030 LINE (0,0)-(200,200),,B 3040 FOR N=1 TO 9 3050 LINE (N*20,0)-(N*20,200),,,&H2222 3060 LINE (0,N*20)-(200,N*20),,,&H2222 3070 NEXT N 72 Quarzfilter, eine kleine
in „DDR- Oszilloskop OG2-30/ OG2-31 Restauration“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
quarzfilter_rev2a.pdf
----------------- 2990 '------- Graphische Darstellung --------- 3000 CLS :SCREEN 2 3010 WINDOW (0,200)-(200,0) 3020 VIEW (400,0)-(639,189) 3030 LINE (0,0)-(200,200),,B 3040 FOR N=1 TO 9 3050 LINE (N*20,0)-(N*20,200),,,&H2222 3060 LINE (0,N*20)-(200,N*20),,,&H2222 3070 NEXT N 72 Quarzfilter, eine kleine
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PDF
Quarzfilter_Rev2b.pdf
----------------- 2990 '------- Graphische Darstellung --------- 3000 CLS :SCREEN 2 3010 WINDOW (0,200)-(200,0) 3020 VIEW (400,0)-(639,189) 3030 LINE (0,0)-(200,200),,B 3040 FOR N=1 TO 9 3050 LINE (N*20,0)-(N*20,200),,,&H2222 3060 LINE (0,N*20)-(200,N*20),,,&H2222 3070 NEXT N 72 Quarzfilter, eine kleine
in „Schmalbandiges LC-Filter, praktischer Aufbau“ · HF, Funk und Felder ·
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PDF
Quarzfilter_Rev2b.pdf
----------------- 2990 '------- Graphische Darstellung --------- 3000 CLS :SCREEN 2 3010 WINDOW (0,200)-(200,0) 3020 VIEW (400,0)-(639,189) 3030 LINE (0,0)-(200,200),,B 3040 FOR N=1 TO 9 3050 LINE (N*20,0)-(N*20,200),,,&H2222 3060 LINE (0,N*20)-(200,N*20),,,&H2222 3070 NEXT N 72 Quarzfilter, eine kleine
in „Messen von Quarz-Parametern - Probleme“ · HF, Funk und Felder ·