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lcd1.pdf
00000000 to 00000111 ($00 to $07), or codes 00001000 to 00001111 ($08 to $0F), both of which produce the same result, i.e. 64 command codes available for user programming. Address Data Address Address hex hex (binary) hex hex 40 0E 48 78 41 11 (00010001) ) 49 79 42 0E (00001110) 4A 7A 43 04 (00000100) 4B 7B
in „LCD ohne Datenblatt oder Hinweise zur Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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ADF4002.pdf
BITS C DB23 DB22 DB21 DB20 DB19 DB18 DB17 DB16 DB15 DB14 DB13 DB12 DB1 1 DB10 DB9 DB8 DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 X X G1 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 X X X X X X C2(0) C1(1) FUNCTION LATCH K - -2 C C E E T R 1 E T RESERVED EN CURRENT CURRENT TIMER COUNTER OD O B R T R MUXOUT E N TE
in „Phasenfrequenz-Detektor unter 1 k Hz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RF12.pdf
circuit parameters and antenna design guide for information. Tel: +86-755-82973806 Fax: +86-755-82973550 E-mail: sales@hoperf.com http://www.hoperf.com RF12 Note 4: Optimal antenna admittance/impedance: RF12 Yantenna [S] Zantenna [Ohm] Lantenna [nH] 315 MHz 1.5E-3 -j5.14E-3 52 + j179 98.00 433 MHz 1.4E-3
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RFM12.pdf
circuit parameters and antenna design guide for information. Tel: +86-755-82973806 Fax: +86-755-82973550 E-mail: sales@hoperf.com http://www.hoperf.com RF12 Note 4: Optimal antenna admittance/impedance: RF12 Yantenna [S] Zantenna [Ohm] Lantenna [nH] 315 MHz 1.5E-3 -j5.14E-3 52 + j179 98.00 433 MHz 1.4E-3
in „RF12 Funkmodul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RF12.pdf
circuit parameters and antenna design guide for information. Tel: +86-755-82973806 Fax: +86-755-82973550 E-mail: sales@hoperf.com http://www.hoperf.com RF12 Note 4: Optimal antenna admittance/impedance: RF12 Yantenna [S] Zantenna [Ohm] Lantenna [nH] 315 MHz 1.5E-3 -j5.14E-3 52 + j179 98.00 433 MHz 1.4E-3
in „RFM 12 Wake-Up und start nach POR“ · HF, Funk und Felder ·
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Spread_Spectrum_Ultrasonic_Positioning_System.pdf
coplanar, a minimum of two distances are needed to estimate the 2D transmitter position. T r a n s m it t e d c o d e 1 0 . 5 ( 0 (a) c - 0 . 5 - 1 0 1 0 2 0 3 0 4 0 5 0 6 0 T im e ( m s ) P S D o f t h et r a n s m it ts i g n a l - 3 0 - 3 5 - 4 0 z - 4 5 d - 5 0 n q - 5 5 e - 6 0 P - 6 5 (b) - 7 0 - 7 5 - 8 0 0 5 1 0 1 5 2 0F r e q u e n c( k H z )0 3 5 4 0 4 5 5 0 Fig.3 (a) The transmitted code (b) the PSD of the transmitted signal 3.2.1 Distance measurements Processing The distance between the transmitter and the receiver is
in „Datenübertragung per Ultraschall“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USR-K6-user-manual-V1.0.0.pdf
transport transmission. 3.More information reference the below: http://www.usr.cn/Search/getList/keyword/%E8%99%9A%E6%8B%9F%E4%B8%B2%E5%8F%A3/ 4.3. Serial Port Function Jinan USR IOT Technology Limited 37 / 107 inquiry@usriot.com USR-K6 User Manual www.usriot.com 4.3.1. Basic Parameters Diagram 4.3.1-1Basic
in „[V] 3St.(neu) Ethernet- SeriellModule USR-K6 (alle für 20€)“ · Markt ·
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PDF
ADE7758.pdf
FrequencywithInternalReferenceandIntegratorOff 0.3 0.10 PF = 1 PF = 1 0.08 0.2 0.06 % ) 3 ( 0.1 % V 0.04 R GAIN = +4 ( 5 R O O 0.02 VDD = 5.25V R R T E 0 R C N E E 0 E N S VDD = 5V C E E–0.02 E –0.1 R R P GAIN = +1 E H P I–0.04 GAIN = +2 W –0.2 –0.06 VDD = 4.75V 0 3 –0.08 0 4 4 –0.3 0 4 0.01 0.1 1 10 100 –0.10 0 0.01
in „Energy Meter mit ADE7769 - AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS75LX.pdf
t c D t 5 D e e D t r 0 B o l 3 B 7 y s B s s f r D t D D B M D t a 0 d A t 4 a m 4 a m 4 a M d n i D S f D D f D S o 1 A a p D L ( D ( 5 M ( 1 t D t 6 D e P N n D D D 1 e R P O o r 7 ) 7 ) 7 ) S R A n S d u D e D X D X S o r t ( A C s A C 5 A K 5 A K t N C t e r A M A S A S C X c 0 A a n t D ( 1 ( P ( P A L l D N ( c i 1 1 7 r 1 1 e D ) 0 P P D t D ) , R 2 e L 0 e 0 e 0 ( i D L D T D y 7 y y t o t 7 V Y D a S 0 r 0 r 0 B t D B S t T 4 a D t t e n 4 t D t r
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STK520.pdf
M P b y C 1 0 E u d 2 & t e 2 5 R e n2 E E E C C C C E T E m > e R P P P P P P P S W c o W G P D < V l e A t 0 2 4 6 8 0 2 4 6 8 0 2 4 6 8 0 i i a 2 4 6 8 1 1 1 1 1 2 2 2 2 2 3 3 3 3 3 4 T S D D O T T T L E E E D T
in „DALI EVG stk520“ · Mikrocontroller und Digitale Elektronik ·
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Ethernet-DK.pdf
Port 5 Port 6 Port 3 Board CP2200 Port 4 Port 7 Port 1 RJ45 Pin 2 J10 J8 J6 J9 T Pin 1 Port 0 Port 2 E J3 E J23 R MONEN P1.6 . Prototyping C8051F12x P Area J4 C8051F120 J21 J1 J3 G J5 Target Board T Pin 2 J22 Pin 2 J LED1 J6 R1 J4 LED2 Pin
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CW100.pdf
19=0) SPEneen 0.00s ~ 650.00s(P0-19=2) Model P0-18 | Decelerationtime1 | 0.0s~ 6500.0s(P0-19=1)| , °4 | * 0s~ 65000s(P0-19=0) epencen 0: 1s p0:19 f e r e n c e ant | 2:0.01s 7 * Frequency offset of auxiliary frequency 0.00Hz ~~ maximum po:24 source forX and Y frequency PO-10 O:00H2 * operation P0-22
in „Frequenzumrichter, max Freq lässt sich nicht einstellen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
BJTBasics_Georgia_Inst..pdf
ac current gain given by α = β (20) 1 + β 4 Thus the current i can be written i0= αi 0 (21) c e The voltage v π can be related to i as follows: e ic αie 0 αrπ 0 rπ 0 vπ = ibrπ= rπ = rπ = ie = i e = i ere (22) β β β 1 + β It follows that the intrinsic emitter resistance r is given by e v π rπ V T VT re = 0 = = = (23) e 1 + β (1 + β)IB IE The T model of the BJT is shown in Fig. 4(b). The currents in both models are related by the equations i0 = g v = βi = αi 0 (24) c m π b e An Emitter
in „Anfänger frage: Wiederstand in Transitor schaltung warum?“ · Analoge Elektronik und Schaltungstechnik ·
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MC_product_selection_AN.pdf
6.0 600 EQUATION 2: POWER DISSIPATION ) V 5.0 500 A PowerDissipation = (VDDMAX – VPTHMIN ) ×REGMAX e ( g 4.0 400 n Where: l e V 3.0 300 u V = the maximum input voltage r e DDMAX t 2.0 200 r IREGMAX = the maximum fast charge current a MCP73831-2AC/IOT h B 1.0 VDD= 5.2V 100 C VPTHMIN = the minimum transition
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
to fade #define FADE_4 2 // fade 4 of the same ports of the 4 channels from 0 to 4095 - at half of max. value the next port starts to fade #define FADE_ALL 3 // fade all ports at the same time from 0 to 4095 and backwards #define BLINK 4 // hard blink from every of the 96 ports #define BLINK_4 5 // hard blink from 4 of the same ports of the 4 channels #define BLINK_ALL 6 // hard blink of every port at the same time #define WAVE 7 //
in „PIC18-Projekt restartet unerklärlich“ · Mikrocontroller und Digitale Elektronik ·
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QEagleBeta.pdf
Its type becomes the "X". Beispiel – Example: .SUBCKT BSN20 1 2 3 * 1=drain 2=gate 3=source Cgs 2 3 6E-12 Cgd1 2 4 16.5E-12 Cgd2 1 4 2E-12 M1 1 2 3 3 MOST1 M2 4 2 1 3 MOST2 D1 3 1 Dbody .MODEL MOST1 NMOS(Level=3 Kp=20.71u W=3.1m L=2u Rs=20m Vto=1 Rd=3.231) .MODEL MOST2 NMOS(VTO=-5 Kp=20.71u W=3.1m L=2u
in „QSPICE von Mike Engelhardt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STC89C51RC-english.pdf
current.drive LED directly or matrix key scan, needs add a 470ohm to 1Kohm resistor to STC MCU Limited. websi:e www.STCMCU.com 57 www.STCMCU.com Mobile:(86)13922809991 Tel:086-755-82948412 Fax:86-755-82905966 4.4 Head File/New SFRs Declarations, P4 of STC89C51RC/RD+ series The processes accessing P4 are same with common P1, P2 and P3 which all are bit addressable. The address of P4 is E8H. The address of P4 port is E8h. Every bit in P4 all can be bit-addressable, bit address of P4 are shown below: bit - P4.6 P4.5 P4.4 P4.3 P4.2 P4.1 P4.0 bit address EFh EEh EDh ECh EBh EAh E9h
in „Einstieg in 8051 - Atmels AT89S52 oder?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Voltageinverter.pdf
Same as inverter. (LM2663) operation. 2 CAP+ Connect this pin to the positive terminal of charge-pump Same as inverter. capacitor. 3 GND Power supply ground input. Power supply positive voltage input. 4
in „Das große ADC Quiz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lattice_Timing_Closure.pdf
the timing relationship between two clocks (e.g. they both come from the same PLL). However, if both clocks come from external pins, the user must specify their relationship. This is done using the CLKSKEWDIFF preference. Figure 2 illustrates the
in „IO constraints für asynchrone Inputs in Lattice Diamond“ · FPGA, VHDL & Co. ·
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PDF
M64282FP.pdf
- µs tSR RESET setup time 0.4 - - µs tHR RESET hold time 0.4 - - µs 4/18 ver. 1 .1E 5/21/98 Mitsubishi Integrated Circuit MITSUBISHI PRELIMINARY M64282FP Image Sensor (Artificial Retina LSI) (A) Xck, SIN Timing tcr 75% Xck 25% tr
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PDF
M64282FP.pdf
- µs tSR RESET setup time 0.4 - - µs tHR RESET hold time 0.4 - - µs 4/18 ver. 1 .1E 5/21/98 Mitsubishi Integrated Circuit MITSUBISHI PRELIMINARY M64282FP Image Sensor (Artificial Retina LSI) (A) Xck, SIN Timing tcr 75% Xck 25% tr
in „c-mos kamera auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_IRFB7430.pdf
www.irf.com 3 IRFB7430PbF 1000 1000 VGS TOP 15V TOP 10V 10V ) 8.0V ) 8.0V ( 7.0V ( 7.0V n 6.0V n 6.0V e 100 5.5V e 5.5V u 4.8V u BOTTOM 4.5V C BOTTOM 4.5V C c c u u 100 S S o o - 10 n 4.5V a a D 4.5V D , , ID ID 60μs PULSE WIDTH 60μs PULSE WIDTH Tj = 25°C Tj = 175°C 1 10 0.1 1 10 100 0.1 1 10 100 V ,
in „MOSFET Steuer vs Hauptkreis“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
en.DM00051352.pdf
0x00000000 Table 4.2.4: Interrupt set-pending register (ISPR) on page 72 Table 4.2.5: Interrupt clear-pending register (ICPR) on 0XE000E280 ICPR RW 0x00000000 page 72 0xE000E400- 0xE000E41C IPR0-IPR7 RW 0x00000000 Table
in „Umbau von STM32F030F4P6 auf AVR mit Software“ · Mikrocontroller und Digitale Elektronik ·
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UBN30-Protocol-Manual.pdf
RST <ETX><BCC> R3D UPM 300A (NEW VERSION) COM PATIBLE ANSWER FORMA T In case of wiring mode:3Ph-4W/3CT A nswer format: <STX> VS V1 V2 V3 V12 V23 V31 AS A1 A2 A3 PFS PF1 PF2 PF3 VAS VA1 VA2 VA3 WS W1 W2 W3 varS var1 var2 var3 +Wh +varhI F WDMD ADMD RST NUL <ETX><BCC> Value format: see R3D R3E UPM
in „[V] Digitalzähler“ · Markt ·
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PDF
FIN1002.pdf
Signaling (■ 3.3V power supply operation h technology. The receiver translates LVDS levels, wit■ 0.4ns maximum pulse skew S ical differential input threshold of 100 mV, to LVTT■ 2.5ns maximum propagation delay e levels. LVDS provides low EMI at ultra low power dissipa- e tion even at high frequencies
in „Was für einen Buffer hinter DDS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W77E058Aj.pdf
53 52 51 50 29h 4F 4E 4D 4C 4B 4A 49 48 28h 47 46 45 44 43 42 41 40 Bit Addressable 27h 3F 3E 3D 3C 3B 3A 39 38 26h 37 36 35 34 33 32 31 30 20H−2FH 25h 2F 2E 2D 2C 2B 2A 29 28 24h 27 26 25 24 23 22 21 20 23h 1F 1E 1D
in „[V] 12St. 8051er- NUVOTON / WINBOND PLCC44 ( 2UARTS u. 4 clocks/machine cycle- 40MHz)“ · Markt ·
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PDF
at24c1024.pdf
5.99 6.09 E 4.83 4.93 5.03 e1 L e 1.27 BSC e1 0.56 REF Bottom View L 0.62 0.67 0.72 1 L1 0.92 0.97 1.02 1 Note: 1. Metal Pad Dimensions. 11/14/01 TITLE DRAWING NO. REV. 2325 Orchard Parkway 8CN3, 8-lead, (6 x 5
in „i2c at24c1024 page P0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NT56V661_2_0C0T-X8X16-891026.pdf
PC133 / PC100 Synchronous DRAM Mode Register Set ) 2 2 T = c 2 t T l 0 A 2 C T ( 9 T 8 T 1 T 1 T 1 T 4 1 T 3 T 2 T 1 T 1 T T T 7 K T t 6 d T y a n m 5 A o T C C tR 4 e r d T k d s t a e o g S m T r M R o a P C t T g n k a m a 1 - e m l T H P C A 0 T L E S S S E 1 1 9 M Q C C C R C W B , 0 Q D 0 1 A D
in „Verständnisfrage SD-RAM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
xTalk_10-01-2022_225401_MYL7K01616.txt
FFD0: 586FFC57 FFD1: 1 Media ID: 0 Packet #0028, POH=13, PwrCycles=4, Rev:10.0 UpTime:0d::0:01:30.965_725 Temp:24.5C ***ScsiEvent***->ErrorCode:E0400045 Key=00, Asc=00, Ascq=00 FFD0: 0 FFD1: 0 Media ID: 0 Packet #0029, POH=13, PwrCycles=4, Rev:10.0 UpTime:0d::0:02:31.073
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xbee.pdf
and the time unit is 100mS. The default value is 0x64 (10 seconds). Note: before firmware version 10e4 the maximum setting was 0xffff and the 10e6 product manual still has that figure. The change is noted in the firmware revision history. 3.4 Flow Control Flow control is necessary on any serial line if
in „Xbee Pro 868: Hat jemand ein gutes Datenblatt/Infos?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24fc256.pdf
EF6 EF5 4AD — 24LC256 — 24LC256 4L256T 24LC256T 24LC256 EF4 EF3 4LD — 24FC256 — 24FC256 4F256T 24FC256T 24FC256 EF8 — 4FD AAFKYY Legend: XX...X Part number or part number code T Temperature (I, E) Y Year code
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
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PDF
VFD_datasheet.pdf
lower row. If the cursor is at the right end of the lower row, it can’t shift anymore. DC2 Mode: Same as above. $0A LF: Line feed DC1 Mode: All characters are cleared while the cursor remains at the same position. DC2 Mode: Same as above. $0C CLR: Clear DC1 Mode: The command clears display and memory
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PDF
doc8209.pdf
0x13 16.000 0.3125 16 7 4 4 1 0x08 0x0C 0x37 200 75% 0.625 8 3 2 2 1 0x12 0x04 0x13 0.500 16 7 4 4 1 0x0E 0x0C 0x37 125 75% 1.000 8 3 2 2 1 0x1E 0x04 0x13 0.625 16 7 4 4 1 0x12 0x0C 0x37 100 75% 1.250 8 3 2 2 1 0x26 0x04 0x13
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PDF
ADC_ApplicNotes.pdf
is the same as that of the ADC, the step response of the –200 312kHz 313kHz overall system will be adversely affected. d. Gain = 8–128 Figure 7. Detail at 0 dB Passband –4– The frequency response of a moving average filter has INTERNAL GAIN VS. EXTERNAL GAIN exactly the same form as the internal programmable Where extremely high resolution is required, better gain amplifier of the ADC which is shown in Figure 4. noise performance may be achieved by setting the gain Figure
in „ADC-Überspannungschutz mit Z-Diode; Einfluss auf die Messgenauigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TASE_submitted_corrections-libre.pdf
The goal for i 6 i Y the microrobot-mounted needle tip is to follow a predefined i 6 Nee le ti Y t t e en siti n horizontal corridor-like path of width 2ε, reach a desired target D 7 4 4 6 point, and then stop. X is () Det il iis () While the needle tip motion is recorded by the same video- ) )7 ( (6
in „MIni-Roboter mit Vibrations-Motor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel_8051__Cs.pdf
, A 1 A 1 x C 1 E 1 A , A , A 2 A 2 A 2 A 2 I C A , L C A - A 1 A - L 1 P 1 I D D 1 D 1 L L L V D 4 B 1 M 4 E 3 S D 1 C C A 2 D 2 O A X M 1 U 2 1 N A S C C T m m m T P P 1 , i i i P A + R 0 C 1 R 1 A 1 A . A 1 A , r 2
in „serielle Ausgaben auf AT89S52 Baud-Raten-Generator startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1980-09.pdf
HEWLETT-PACKARD JOURNAL SEPTEMBER 1980 © Copr. 1949-1998 Hewlett-Packard Co. ccgrad arcsec + 1 0 - r -T +3.24 4 P h o t o d i o d e s L i m i t S e n s o r P h o t o t r a n s i s t o r Patterns are 2 0 0 x 2 0 0 p i m Transparent - 1 0 - - 3 . 2 4 U — 3240 Aim -j 4 P h o t o d i o d e s 5 0 1 0 0 1 5 0 2 0
in „Time-interpolation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
66712.pdf
43 IM –1320 –2446 87 SEG2 2277 448 — Dummy3 2302 –2446 44 EXT –1192 –2446 88 SEG3 2277 576 — Dummy4 2277 2437 371 HD66712U HD66712 Pin Arrangement 4 4 4 4 3 3 3 3 3 3 3 3 3 3 2 2 2 2 2 2 2 2 2 2 1 1 G G G G G G G G G G G G G G G G G G G G G G G G G G E E E E E E E E E E E E E E E E E E E E E E E E
in „ds89c420 @ 32mhz“ · Mikrocontroller und Digitale Elektronik ·
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Atiny2313.pdf
( d w s u1000 P 500 85 °C 25 °C -40 °C 0 1.5 2 2.5 3 3.5 4 4.5 5 5.5 V cc(V) 214 ATtiny2313/V 2543I–AVR–04/06 ATtiny2313/V Register Summary Address Name Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 Page 0x3F (0x5F) SREG I T H S V N Z C 10 0x3E (0x5E) Reserved
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24C32.pdf
0.045 6 c 0.008 0.010 0.014 D 0.355 0.365 0.400 3 b2 L D1 0.005 3 b3 E 0.300 0.310 0.325 4 4 PLCS b E1 0.240 0.250 0.280 3 e 0.100 BSC Side View eA 0.300 BSC 4 L 0.115 0.130 0.150 2 Notes: 1. This drawing is for general information only; refer to JEDEC Drawing MS-001, Variation
in „EEproms 24C32 zu verschenken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Differenzverstärker als Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „messen der Netzspannung am Mega32“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Wechselstrom messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Transkonduktanz Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Audio-Signal-Erkennung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Suche OVP Schaltung für ideale Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Gleichrichteschaltung mittels op“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Leistungsaufnahme 220V erkennen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Strommessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
(Note 6) (Note 6) V Output Swing V a e 5V 4.9 4.8 4.8 4.8 V O a R Le 2 kX to V /2 4.7 4.7 4.7 min 0.1 0.18 0.18 0.18 V 0.24 0.24 0.24 max V a e 5V 4.7 4.5 4.5 4.5 V R e 600X to V /2 4.24 4.24 4.24 min L 0.3 0.5 0.5 0.5 V 0.65 0.65 0.65 max a e V 15V 14.7 14.4 14.4 14.4 V R Le 2 kX to V /2 14.2 14.2 14.2 min 0.16 0.32 0.32 0.32 V 0.45 0.45 0.45 max V a e 15V 14.1 13.4 13.4 13.4 V R e 600X to V /2 13.0 13.0 13.0 min L 0.5 1.0 1.0 1.0 V 1.3 1.3
in „Synchrongleichrichter“ · Analoge Elektronik und Schaltungstechnik ·