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11195c.pdf
AAh o 2500 VA= no connect, A B -DD= 3.3V, Code = AAh p RWB measured ( 800 C -DD= 5.5V, Code = FFh m n 700 D -DD= 3.3V, Code = FFh B T ) 2000 r e ° u 600 o / 1500 C 500 M m p a ( 1000 p 400 A s S 300 C o 500 e h t 200 R A 100 0 D 0 32 64 96 128 160 192 224 256 0 1k 10k 100k 1M 10M Code (Decimal) Clock
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp41xxx.pdf
AAh o 2500 VA= no connect, A B -DD= 3.3V, Code = AAh p RWB measured ( 800 C -DD= 5.5V, Code = FFh m n 700 D -DD= 3.3V, Code = FFh B T ) 2000 r e ° u 600 o / 1500 C 500 M m p a ( 1000 p 400 A s S 300 C o 500 e h t 200 R A 100 0 D 0 32 64 96 128 160 192 224 256 0 1k 10k 100k 1M 10M Code (Decimal) Clock
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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MPU-6050.pdf
400pF 20+0.1C b 300 ns tf SDA and SCL Fall Time Cbbus cap. from 10 to 400pF 20+0.1C b 300 ns tSU.STO STOP Condition Setup Time 0.6 µs tBUF, Bus Free Time Between STOP and 1.3 µs START Condition C b Capacitive
in „MPU 6050 Gyrosensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
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24lc16.pdf
the master can then proceed with the next read or (either a read or write operation) was to address n, the next current address read operation would access data write command. See Figure 5-1 for flow diagram. from address n + 1. Upon receipt of the slave address FIGURE 5-1: ACKNOWLEDGE POLLING FLOW with
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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asynchronmaschine.pdf
Sy 1 2 1 1 1 2 U ² U M K prop. 1 U U q konst. M konst. f1² q 1 f1 K R 2 R 2 R 2 s K X 1X ' 2 2f 1(L 1L 2 2n Sy p (1 L 2 n s n R 2 konst. K K Sy 2p(L L ') 1 2 nK
in „was ist das und warum ist es kaputt? (Drehstrom)“ · Analoge Elektronik und Schaltungstechnik ·
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LTC1864.pdf
1000 1000 1000 V CC= 5V CONV = VCC = 5V TA = 25°C 900 CONV LOW = 800ns 100 ) 800 800 A A A ( ( (700 N N 600 T600 R 10 R E R R R500 C C C L 1 L 400 P400 P P E U U S300 S S V = 5V 0.1 200 VCC = 5V 200 REF SAMPLE = 250kHz 100 0 CONV HIGH = 3.2μS 0 0.01 –50 –25 0 25 50 75 100 125 –50 –25 0 25 50 75 100 125
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ADC_LTC1865.pdf
1000 1000 1000 V CC= 5V CONV = VCC = 5V TA = 25°C 900 CONV LOW = 800ns 100 ) 800 800 A A A ( ( (700 N N 600 T600 R 10 R E R R R500 C C C L 1 L 400 P400 P P E U U S300 S S V = 5V 0.1 200 VCC = 5V 200 REF SAMPLE = 250kHz 100 0 CONV HIGH = 3.2μS 0 0.01 –50 –25 0 25 50 75 100 125 –50 –25 0 25 50 75 100 125
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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LRTB_GVTG_15_.pdf
a Forward Voltage Group Wavelength Group S Brightness GrouOHA320433 Gurtverpackung Tape and Reel W 1 D0 P0 P 2 2 0 E 1 F W A N P1 Label Directionofunreeling Directionofunreeling W 2 Leader: min.400mm* Trailer: min.160mm* *) Dimensions acc. to IEC 60286-3; EIA 481-D OHAY0324 Tape dimensions in mm (inch
in „LRTBGVT erstellen(LTspice)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
152291_hmip_broll_km.pdf
10 DRAIN GND 1 1 10n 250mW C2 + C3 + C8 1000uH/0,15A SI1 310V-AC/ X2 R3 2u2 2u2 COMP 5 27K L 400V 400V 220n C9 + C10 5AT 3 R22 50V M Shunt LIM 10K D4 47u 100n x 50V 50V L 1 1 7 K VIPER06 oder NCP106Nur bei IC1 = NCP1060
in „Homematic Jalousieaktor Umbau auf Roto 24 NT“ · Haus & Smart Home ·
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datenblatt_HELLIGKEITSSENSOR_NAPICA_SMD_AMS104YJ.pdf
Empfindlichkeitsspektrum (bei 25°C) Dunkelstrom in Abhängigkeit der Umgebungs- temperatur (Bei Sperrspannung = 5 V) 50 1,0 10 e menschl. Auge h NaPiCa 40 l 0,8 W n � 1 , p m n m t s 30 e0,6 l l t k s l u 0,1 r20 R0,4 D V 0,01 10 0,2 0 0 0,001 0 20 40 60 8085 100 400 500 600 700 800 900 1000 1100 20 40 60 80 100 Umgebungstemperatur
in „helligkeit messen, definiertes ausgangssignal“ · Mikrocontroller und Digitale Elektronik ·
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ST7036-V1.7.pdf
data is filled the corresponding position displayed is described as the following table. When SHLS=1, ICON RAM map refer below table ICON RAM bits ICON D7~D5 D4 D3 D2 D1 D0 Address N3 = 0 N3 = 1 N3 = 0 N3 = 1 N3 = 0 N3 = 1 N3 = 0 N3 = 1 N3 = 0 N3 = 1 00H - S1/S81 S1 S2/S82 S2 S3/S83 S3 S4/S84 S4 S5/
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
data is filled the corresponding position displayed is described as the following table. When SHLS=1, ICON RAM map refer below table ICON RAM bits ICON D7~D5 D4 D3 D2 D1 D0 Address N3 = 0 N3 = 1 N3 = 0 N3 = 1 N3 = 0 N3 = 1 N3 = 0 N3 = 1 N3 = 0 N3 = 1 00H - S1/S81 S1 S2/S82 S2 S3/S83 S3 S4/S84 S4 S5/
in „Newbie Probleme bei LCD DOGM Initialisierung in Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
THS4061-4062.PDF
and NC 6 16 NC imaging. The devices offer very good ac IN+ OUT performance with 180-MHz bandwidth, 400-V/ s 7 15 NC 8 14 NC slew rate, and 40-ns settling time (0.1% ). The THS4061/2 are stable at all gains for both 9 10 11 12 13 inverting and noninverting configurations. These C – C C C N C N N N amplifiers
in „Verstärker für DC bis hohe Frequenz“ · Analoge Elektronik und Schaltungstechnik ·
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TPS73133.pdf
CHARACTERISTICS (continued) For all voltage versions at T =J25°C, V = IN OUT(nom) + 0.5V, IOUT = 10mA, V EN = 1.7V, and C OUT = 0.1µF, unless otherwise noted. GROUND PIN CURRENT vs OUTPUT CURRENT GROUND PIN CURRENT vs TEMPERATURE 700 700 IOUT= 150mA 600 600 500 500 ) A 400 A 400 ( ( N N IG300 IG300 200 200 VIN
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TSL2014-E25.pdf
1 V 0.8 500 y s i n 220 pF s — n % 400 p 0.6 1 e t R e 100 pF e i 300 i g a 0.4 i r t 10 pF o S 200 N 0.2 —s t 100 0 300 400 500 600 700 800 900 1000 1100 0 0 200 400 600 800 1000 1200 λ − Wavelength −
in „CCD linear Sensor Zeile“ · Analoge Elektronik und Schaltungstechnik ·
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STR751FR0T6.pdf
description STR750Fxx STR751Fxx STR752Fxx STR755Fxx 4 Pin description Figure 2. LQFP100 pinout I S S K O O 1 9 0 1 Y N _ I _ _ I N N N _ M _ P C _ _ _ E P S P S D D C C G S / S / / 2 4 A A A E / L / T I C I 1 1 / / / M 0 C N U _ _ _ I I 3 3 2 2 1 3 3 2 2 1 1 _ C _ D D 2 0 0 C _ M M M M M M M M M M M M I P I
in „DAB Radio mit ARM Prozessor, HD44780 Display (BlueTinum BT-H1801)“ · Mikrocontroller und Digitale Elektronik ·
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24LC32A.pdf
a 32 Kbit Electrically Erasable PROM. The device is organized as four blocks of 8K x 8-bit 24AA32A 1.8-5.5 400 kHz1) I memory with a 2-wire serial interface. Low-voltage 24LC32A 2.5-5.5 400 kHz I, E design permits operation down to 1.8V, with standby Note 1: 100 kHz forCC <2.5V and active currents of
in „I2C Eeprom: Buskollisionen nach einem schnellen Reset“ · Mikrocontroller und Digitale Elektronik ·
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s101s06v_e.pdf
Date code (2 digit) ∗ Date code (2 digit) ±0.2 + − ±0.2 . + − 4-1.1 A . 4-1.1 A N 4-1.25 ±0.3 M . M 4-1.25 ±0.3 M . M ±0.2 . A . ±0.2 . A . 4-0.8 0 M2 1 4-0.8 0 M2 1 4 4 1 2 3 4 ±0.1 1 2 3 4 ±0.1 (5.08) (7.62) (2.54) 0.6 (1.4) (5.08) (7.62) (2.54) 0.6 (1.4) Product
in „Netztrafo, SSR und Zerocrossing, kann das funktionieren?“ · Analoge Elektronik und Schaltungstechnik ·
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TIC226.pdf
(unless otherwise noted) RATING SYMBOL VALUE UNIT TIC226D 400 TIC226M 600 Repetitive peak off-state voltage (see Note 1) V DRM V TIC226S 700 TIC226N 800 Full-cycle RMS on-state current at (or below) 85°C case temperature (see Note 2) T(RMS) 8 A Peak on-state surge
in „Blitzröhre zünden, Optotriac statt Triac möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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Madli_Full.pdf
level ≤6.5V; high current ≤ 2mA. 10/30/2005 Dmitry Orlov 4 Interface circuit diagram +5V +5V k 0 0 1 1 k 1 0 2 1 R 4 R R 5 R R R6 100k 1 Q1 C 1 n 8 0 D D B 8 U1A 1 4 3 LM393 3 4 + 1 Rx 0 0 D L J1 V V 1 4 3 2 - A B 1 T 1 B O 5 I 6 8 4 2 H 4 1 2 3 S D L k L 4 NET 2 5 6 R D D 0 0 4 1 1 1 - A A O 6 B B
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Datei
Bootloader230.a51
Wizard in Context Menu >>> ; <h> Configuration for CH559 V2.31 Bootloader ; <o> StartAddress <0-0xF400:0x400> ; <i> Startaddress for bootloader originally at 0xF400 StartAddress EQU 0xF400 ; <o> CHANGE_BCD_VER <0=> off ; <1=> on ; <i> use USB BcdVer field for reporting the bootloader version CHANGE_BCD_VER
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan eines Transformators mit Schütz und Sicherungen
Eingang: 400V/50Hz 460V/60Hz RS_L2 RS_L3 1.aa.A1 =GA1-FX1 Einstellwert: ?A 2.5kA 2.5kA 2.5kA Anschluss: 400V/50Hz Eingang Primär: -T1 400V/6,5A 460V/5,6A Bemessungsstrom: 10,9A (UL=8,7A) Bemessungsleistung: 2500VA (UL=2000VA) BLOCK STU2500 SEC 520V 400V 230V -20V 0V +20V PE 115V 0V 115V 0V =FX2 10A L N Verbraucher: 9,4A 230V 50Hz/60Hz Absicherung 16A
in „Transformator Absicherung (bei 400V oder 460V)“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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SL560.pdf
FREQUENCY (MHz) Fig.8 Low Noise preamplifier Fig.9 Frequency response of circuit shown in Fig.8 (typical) 1n 470 VCC 15 1n (b) OUTPUT 3 4 5 ) 10n B (a) 2 6 INPUT (10 1 7 8 1n 15 I T = +25°C A A G VCC = (a) 6V 27p 56p 15 (b) 9V 5 0V Gain 13dB at Vcc = 9V -1dB at 6MHz and 300MHz 10 100 200 300400 FREQUENCY (
in „Vergleichstyp zu SL560C“ · Mikrocontroller und Digitale Elektronik ·
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el84se_12ax7_reva.pdf
Ended Pentode Output A - 12AX7 Small Signal Dual Triode Pre-Amp - Designed & Drawn by Petter Blix OT1 R3 R4 ½ V1 C1 ½ V1 R16* V2 6 1 7 m Con2 R1 7 C3 2 C2R8 2 9 o 8 3 3 R2 R5 VOL TONE2 R6 R7 c C4 R10 C5 R9 r e PT1 R14 R13 R12 R11 k SW1 Con1 D1,nD2 F1 C8 C7 C6 i 4&5 4 R15* V1 V2 o C3,C2 .02uF/450V OT1 i 400VCT @ 50mA & 6.3VAC @ 1.1A (EDCOR XPWR177 OR SIMILAR) C4 4700pF/450V V1 d 12AX7/ECC83NGLE ENDED (EDCOR GXSE10-8-5k OR SIMILAR) C5 10uF/25V V2 EL84 C6 10uF/400V F1u FUSE, 1A D1,D28 1N400700V Con1 IEC
in „Kennzeichnung Widerstand CC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
arc_arc_int.py
if self.move[1]: n=self.c.coords('arc1') mx=n[0]+75;my=n[1]+75 w=math.atan2(event.y-my,event.x-mx) newposy=math.sin(w)*75+my newposx=math.cos(w)*75+mx self.c.coords('a12',newposx-4,newposy-4,newposx+4,newposy+4) w=
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APT10050B2VR_B.pdf
FIGURE 6, MAXIMUM DRAIN CURRENT vs CASE TEMPERATURE FIGURE 7, BREAKDOWN VOLTAGE vs TEMPERATURE E 2.5 1.2 N I = 0.5 I [Cont.] A D D S GS= 10V E S G 1.1 E 2.0 T R L N ) O ) 1.0 E D V D C Z1.5 L Z R L O L O A S A 0.9 - R E R O O1.0 H O - N( T ( 0.8 I ) A T D 0.5 (S ) G 0.7 N V ( B D 0.0 0.6 e R -50 -25 0
in „SMA SB4200TL-MS Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4735676982003210112259.pdf
WITHOUT PERMISSION FROM UNIPAC OPTOELECTRONICS CORP. SPEC NO. : 233-220-073 PAGE : 13/18 ) e o m g i n a c s a m o N e g n r g t i i t y l s d l t n z H r t o H . g t t 1 F p p H ( u C L ( T H S T S ALL RIGHTS STRICTLY RESERVED. ANY PORTION OF THIS PRPER SHALL NOT BE REPRODUCED, COPIED, OR TRANSFORMED
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PDF
TFT_Color_Modul.pdf
WITHOUT PERMISSION FROM UNIPAC OPTOELECTRONICS CORP. SPEC NO. : 233-220-073 PAGE : 13/18 ) e o m g i n a c s a m o N e g n r g t i i t y l s d l t n z H r t o H . g t t 1 F p p H ( u C L ( T H S T S ALL RIGHTS STRICTLY RESERVED. ANY PORTION OF THIS PRPER SHALL NOT BE REPRODUCED, COPIED, OR TRANSFORMED
in „Farb TFT Modul UP018D01 (280 x 220 ) zu verkaufen“ · Markt ·
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PDF
UP018D01.pdf
WITHOUT PERMISSION FROM UNIPAC OPTOELECTRONICS CORP. SPEC NO. : 233-220-073 PAGE : 13/18 ) e o m g i n a c s a m o N e g n r g t i i t y l s d l t n z H r t o H . g t t 1 F p p H ( u C L ( T H S T S ALL RIGHTS STRICTLY RESERVED. ANY PORTION OF THIS PRPER SHALL NOT BE REPRODUCED, COPIED, OR TRANSFORMED
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PDF
1683356.pdf
SSR type 7048 = 0.1 A - 48 V DC 8240 = 2 A - 240 V AC Output 1 = 1 NO (SPST-NO) Input circuit See input specifications Flat pack version m . n Option = 34.51.7xxx.x019 2 1 2 1 4 Copper side view d A A 1 1 1 . w , 0 I V
in „Suche RC-Glied für Finder Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SP8716_18_19.pdf
amb= -40°C to +85°C Value Units Characteristics Symbol Min. Max. Conditions Notes Max. frequency 520 1 fmax MHz Input 100-280mV p-p Min. frequency (sinewave input) fmin 30 MHz Input 400-800mV p-p 2 Power supply current ICC 11.9 mA C L= 3pF; pins 2, 8 linked 1 Output high voltage VOH (Vcc- 1.2) V IL= -
in „Datenblätter zu alten Telefunken-Frequenzteilern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC_AVR.pdf
will be incremented by a fixed number every time. Once it reaches 60, “minute” is incremented by “1” and “second” is set to “0”. Figure 4. Flow Chart, CounterInterrupt Routine Counter A B N ++ Second =60? Y Date = 32? Y N Minute=Minute +1 Second = 0 Y Date = 31 & Month = 4,6,9,11? N Minute = 60? N Y Y Date = 30? Hour = Hour +1 Minute = 0 N N Date = 32? Y Hour = 24? N Y Month=2 Date = Date +1 N Mour = 0? and Not_Leap Y Month = Month +1 A B Date=1 N Month = 13? Y Year =Year +1 Month=1 Return 5 1259B–AVR–05/02 “not_leap” This
in „Läuft der Timer während seinem Interrupt weiter?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MainActivity.java
release"); } } private void initSetting(String string) { String[] arrstring = string.split(","); int n = 0; for (int i = 2; i < arrstring.length - 1; ++i) { n += Integer.parseInt((String)arrstring[i]); } int n2 = 1 + n % 255; if (Integer.parseInt((String)arrstring[1]) != n2) { new Handler(Looper.getMainLooper
in „Bluetooth LE BLE Daten von Powermeter entschlüsseln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MG24065G-SBLWU_240x64_Display.pdf
EVER CATCHER GROUP EV ER BO U Q UE T IN TER N ATIO NA L C O ., LTD . WECATCHTHE BEST TECH. FOREVER AVAILABLE FROM MIDAS COMPONENTS LTD PART NO. : MG24065G SERIES FOR MESSRS. : CONTENTS NO. ITEM PAGE 1. COVER 1 2. RECORD OF REVERSION 2 3. GENERAL
in „Display MG24065G-SBLWU Spannungs-Versorgung Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FTP.pdf
26b70b75 12,000 19.0 8,600 19.0 5,700 19.0 26b70b95 17,000 22.0 12,000 22.0 8,100 22.0 35b64b50 7,400 16.1 5,300 16.1 3,600 16.1 35b64b75 15,000 21.7 10,000 21.7 7,100 21.7 35b64b95 21,000 25.3 15,000 25.3 10,000 25.3 Vdc 350 400 450 SV 400 450 500 Items Capacitance Rated ripple current Capacitance
in „Mein erster ovaler Elko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SU1278.pdf
Satellite Network Interface Module SU1200 series WRITE mode Table 2: Address byte, Program divider byte 1 and 2, Control information byte 1 and 2 BYTE BITS 7 6 5 4 3 2 1 0 MSB LSB Address byte 1 1 0 0 0 MA1 MA0 R/W=0 Program divider byte 1 0 N14 N13 N12 N11 N10 N9 N8 Program divider byte 2 N7 N6 N5 N4 N3 N2 N1 N0 Control information byte 1 1 N16 N15 PE=0 R3 R2 R1 R0 Control information byte 2 C1 C0 XCE=1 XCS=0 P3=0 P2=0 P1=0 P0 Notes: MA1, MA0 the write address of the tuner synthesiser (see table 3). N16
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GaugeMotor.pdf
Driving fmm JL=0.2x10 kgm 2 600 Hz Frequency Mechanical Characteristics Dynamic Torque M200 a =200Hz 1.0 1.2 1.4 MNm M400 a =400Hz 0.7 0.85 1.0 mNm Static Torque Ms U b5V 3.5 4.0 mNm Equivalent Motor Inertia Jm 4.225 Kgm 2 @ Output E-7 Gear ratio 180 :1 Step size in full step mode 1 Degree Step size in partial step 1/3 Degree mode Step size in micro step 1/12 Degree mode Backlash 0.5 1.0 Degree Noise @ 100 °/sec 34 dBA Noise Level SPL @ 200 °/sec 41 dBA @ 400 °/sec 44 dBA Others Angle of Rotation f Motors with internal
in „Bezugsquelle Servo-Zeigerinstrument“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GaugeMotor.pdf
Driving fmm JL=0.2x10 kgm 2 600 Hz Frequency Mechanical Characteristics Dynamic Torque M200 a =200Hz 1.0 1.2 1.4 MNm M400 a =400Hz 0.7 0.85 1.0 mNm Static Torque Ms U b5V 3.5 4.0 mNm Equivalent Motor Inertia Jm 4.225 Kgm 2 @ Output E-7 Gear ratio 180 :1 Step size in full step mode 1 Degree Step size in partial step 1/3 Degree mode Step size in micro step 1/12 Degree mode Backlash 0.5 1.0 Degree Noise @ 100 °/sec 34 dBA Noise Level SPL @ 200 °/sec 41 dBA @ 400 °/sec 44 dBA Others Angle of Rotation f Motors with internal
in „VDO-Schrittmotor läuft unrund“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL7800.pdf
0 R 100 F F R E T -200 - 0 U U N P – -400 I -100 S – V O d -600 V 4.4 4.6 4.8 5.0 5.2 5.4 5.6 d -2004.4 4.6 4.8 5.0 5.2 5.4 5.6 V – INPUT SUPPLY VOLTAGE – V V – OUTPUT SUPPLY VOLTAGE – V DD1 DD2 Figure 3. Input-Referred Offset Drift
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800.pdf
0 R 100 F F R E T -200 - 0 U U N P – -400 I -100 S – V O d -600 V 4.4 4.6 4.8 5.0 5.2 5.4 5.6 d -2004.4 4.6 4.8 5.0 5.2 5.4 5.6 V – INPUT SUPPLY VOLTAGE – V V – OUTPUT SUPPLY VOLTAGE – V DD1 DD2 Figure 3. Input-Referred Offset Drift
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SAM9_EVAL-01.pdf
beachten +3V3 LCD UART with or without HW-handshake RS485 HEADER1 C400 100n X460 C401 100n +3V3 IC460CORE SL1X2_G_T_2.54 6 [6] P [ ..1]] VDISPLAY X405 SN65HVD10_SO8 n +3V3 1 VDIGITAL SL2X3_G_T_2.54X2.54 i DGND TXD 1 2 t 1 2 +5V 4 USART1.TXD 3 4 USART1.RXD RXD 1 RX
in „AT91RM9200 Bootstrap loader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
400Watt_Verstaerker.pdf
(1 • (2 R2 ~ (9 • (10 RB N B CE N N ov T1 10u 47n n 01 40V 1 1 '" 1N 250 4001 250 Eing. CS RS C13 220n 220n 02 R3 1N 220n 1N 220n T2 4001 T4 4001 BO BO b 249 1n5 249 M;sse 8 CE • -· (11 -20V bis -22V Schaltbild
in „400 Watt-HiFi-Stereo-Power-Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD-Controller_NT3881.pdf
Bias 400 CLOCKS COM1 1 2 3 4 5 8 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME A-type, 1/11 Duty Cycle, 1/4 Bias 400 CLOCKS COM1 1 2 3 4 5 11 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME A-type, 1/16 Duty Cycle, 1/5 Bias 200 CLOCKS COM1 1 2 3 4 5 16 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME 22 V2.5 NT3881D B-type, 1/8 Duty Cycle, 1/4 Bias 400 CLOCKS COM1 1 2 3 4 5 6 7 8 9 16 1 2 VDD V1 V2 (V3) V4 V5 1 Frame 1sec 1 1Frame =270K ×400×8 =11.9ms
in „Frage zu GCC Tutorial LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nt3881.pdf
Bias 400 CLOCKS COM1 1 2 3 4 5 8 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME A-type, 1/11 Duty Cycle, 1/4 Bias 400 CLOCKS COM1 1 2 3 4 5 11 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME A-type, 1/16 Duty Cycle, 1/5 Bias 200 CLOCKS COM1 1 2 3 4 5 16 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME 22 V2.5 NT3881D B-type, 1/8 Duty Cycle, 1/4 Bias 400 CLOCKS COM1 1 2 3 4 5 6 7 8 9 16 1 2 VDD V1 V2 (V3) V4 V5 1 Frame 1sec 1 1Frame =270K ×400×8 =11.9ms
in „LCD mit NT3881D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet-Novatec_display_controller.pdf
Bias 400 CLOCKS COM1 1 2 3 4 5 8 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME A-type, 1/11 Duty Cycle, 1/4 Bias 400 CLOCKS COM1 1 2 3 4 5 11 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME A-type, 1/16 Duty Cycle, 1/5 Bias 200 CLOCKS COM1 1 2 3 4 5 16 1 2 VDD V 1 V2 (V3) V 4 V5 1 FRAME 22 V2.5 NT3881D B-type, 1/8 Duty Cycle, 1/4 Bias 400 CLOCKS COM1 1 2 3 4 5 6 7 8 9 16 1 2 VDD V1 V2 (V3) V4 V5 1 Frame 1sec 1 1Frame =270K ×400×8 =11.9ms
in „mal wieder ein LCD am Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1776.pdf
VIN 24V V O-0.6 -0.4 VIN 12V V -0.8 -0.6 -0.8 VIN 12V VIN 24V -1.0 -1.0 VIN 15V -0.8 VIN 15V -1.2 -1.0 -1.2 0 100 200 300 400 500 600 700 0 100 200 300 400 500 600 0 50 100 150 200 250 300 350 400 I (mA) ILOAD (mA) LOAD LOAD (mA) V OUTPUT vs. V IN V OUTPUT vs. V IN
in „Suche Lösung für mein Spannungsregler Problem(Strom sparen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
31027.pdf
according Protection category according to IEC 60529 IP00 to IEC 60529 IP00 Note for Solder pin dimension 1 mm Solder pin dimension 1 mm Type 017 and Type 027 Recommended pc board hole Recommended pc board hole Packaging for automated dia. Ø 1.3 mm dia. Ø 1.3 mm processing is available on Solder pin length
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SFH_2430.pdf
Power Dissipation S = f (λ) E = 1000 lx, V = 5 V P = f T ) rel v R tot A 100 OHF02387 1.15 OHF02389 160 OHF00958 % IP mW Srel Ptot IP(25˚C) 140 80 120 70 1.05 60 100 1.00 50 80 40 0.95 60 30 0.90 40 20 0.85 10 20 0 0.80 0 400 500 600 700 800 900 nm 1100 -40 -20 0 20 40 60 ˚C 100 0 20 40 60 80 ˚C 100 λ TA TA Dark Current Capacitance IR = f (V R), E = 0 C = f(V R ),f = 1 MHz, E = 0 100 OHF02390 OHF02388 nA 1200 R C pF 5 800 -1 10 600 5 400 200 -2 10 0 1 2 3 4 5 V 6 0 -2 -1 0 1 10 5 10 5 10 V 10 V R VR Directional Characteristics S rel f(ϕ) 40 30 20 10 0 OHF01402 ϕ 1.0
in „Suche Fotodiode bis ca 20.000 lx“ · Mikrocontroller und Digitale Elektronik ·
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Wirbelstromverluste_J_Biela_2011.pdf
hopt= 0 4 B n=1 C . (1.85) 5N 1 @ X 2 2 A ✓ 2 ◆ n I n RAC,n = kn= 1 + ⌫ n 2 N 1 (1.83) n=1 R DC 2 0 18 90 mit Diese hängt neben der Frequenz von der Anzahl der Lagen (=Anzahl der Windungen N), dem DC-Strom und den
in „Skineffekt 20A bei 5kHz“ · Analoge Elektronik und Schaltungstechnik ·
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QM30HA-H_Transistormodul_Datasheet.pdf
voltage Charged part to case, AC for 1 minute 2500 V 0.98~1.47 N·m Main terminal screw M4 10~15 kg·cm — Mounting torque 1.47~1.96 N·m Mounting screw M5 15~20 kg·cm — Weight Typical value 90 g ELECTRICAL CHARACTERISTICS (Tj=25°C, unless otherwise