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Datei
fcntl.lst
GAS LISTING c:\windows\TEMP\ccTDIigb.s page 1 1 .file "fcntl.c" 2 .arch at90s8535 3 __SREG__ = 0x3f 4 __SP_H__ = 0x3e 5 __SP_L__ = 0x3d 6 __tmp_reg__ = 0 7 __zero_reg__ = 1 8 _PC_ = 2 9 .stabs "D:\\Projects\\miconox/",100,0,0,.Ltext0 10 .
in „Compiler-Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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MAX196-MAX198.pdf
NUMBER OF BITS vs. DIGITAL CODE FFT PLOT vs. INPUT FREQUENCY A 0.250 - 0 - 12.0 - 9 1 9 ) M fTONE= 10kHz M SAMPLE = 100kHz M M B 0.200 -20 fSAMPLE = 100kHz S / ( I Y 0.150 F 11.5 6 I B -40 O A 0.100 ( E 9 I D B L 0.050 T -60 U 11.0 1 O L N L 0 M I X A A -80 C G E A T-0.050 E 10.5 I -100 -0.100 M -0.150
in „12 bit AD- und DA-Wandler (parallel) gesucht“ · Mikrocontroller und Digitale Elektronik ·
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max5056.pdf
5000pF) (CL = 5000pF) (CL = 5000pF) 60 1 60 0 60 3 t t t 5 5 TA= +125 C 5 50 M 50 M 50 A TA= +125 C s M TA= +125 C ( s 40 s 40 A 40 ( ( E M TA= +25 C M N T A +25 C T 30 T 30 T = +25 C I 30 I L A A R F A 20 20 O 20 P T = -40 C 10 10 10 A TA= -40 C TA= -40 C 0 0 0 4 6 8 10 12 14 16 4 6 8 10 12 14 16 4
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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NCP5104-D.PDF
CURVES ) 25 ) 40 A C = 1 nF/Q = 15 nC A CLOAD = 2.2 nF/Q = 33 nC R GATE= 0 R ( LOAD ( 35 Y 20 Y R GATE= 10 R P P 30 P P S S T 15 T 25 RGATE = 22 R N N R R 20 R 10 R C U 15 T T O O 10 I 5.0 I + R GATE= 0 R to 22 R + C C 5.0 I I 0 0 0 100 200 300 400 500 600 0 100 200 300 400 500 600 SWITCHING FREQUENCY (kHz
in „Suche SMD Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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uwe-100-120.pdf
120W.C05 Page 31 of 35 UWE-100-120W Series Wide Input, Isolated Eighth-Brick DC-DC Converters r m uat o s +VOUT +VIN r m p r m ow +SENSE . o t utput 1MΩ ON/OFF TRIM 5-20 LOAD CONTROL TURNS 13.3(V O 1.226) 16.31 R TUP(kΩ) = 10.2 R TDOWN(kΩ) = 10.2 –SENSE V O 3.3 3.3 V O o t utput –VIN –VOUT 20.4(V O 1.226) 10.2 R T (kΩ) = 25.01 10.2 Figure 6. Trim Connections Using a Trimpot R TUP(kΩ) = V O 5 DOWN 5 V O o t utput I R T (kΩ) = 49.6(V O 1.226) 10.2 R T (kΩ) = 60.45 10.2 UP V O 12 DOWN 12 V O E E C I D A single
in „DC DC Konverter schwingt auf PWM-Frequenz“ · Mikrocontroller und Digitale Elektronik ·
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LTC3490.pdf
C to 125°C Output Voltages (CAP, LED, SW)................ –0.3V to 6V Lead Temperature (Soldering, 10 sec, S8) .......... 300°C U W U PACKAGE /O RDER I FOR ATIO TOP VIEW TOP VIEW CELLS 1 8 CTRL/SHDN CELLS 1 8 CTRL/SHDN VIN 2 9 7 LOBAT VIN 2 7 LOBAT SW 3 6 CAP GND 4 5 LED SW 3 6 CAP GND 4 5 LED DD PACKAGE
in „Step Up Wandler 1.5V -> 3.2 V“ · Mikrocontroller und Digitale Elektronik ·
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ST7735S.pdf
Command transter V 1.1 Page 132 of 201 2011-11-21 ST7735S 10.1.23 RGBSET (2Dh): Color Setting for 4K, 65K and 262K 2DH RGBSET (Color Set for 4K, 65K, 262K and 16.7M) Inst / Para D/CX WRX RDX D17-8 D7 D6 D5 D4 D3 D2 D1 D0 HEX RGBSET 0 ↑ 1 - 0 0 1 0 1 1 0 1 (
in „[STM32/HAL] Treiber für ST7735 160 x 80 TFT“ · Projekte & Code ·
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slyt441.pdf
To PE Mains PE VS2 ISO VS2 Slave 1 kΩ 0.1 µF 0.1 µF1 kΩ 1 kΩ 0.1 µF Node VS2 DE VCC VCC1 EN1 EN2 VCC2 0.1 µF 100 Ω 1A R F 1R IA OUT A 1B C VCC F CLKIN A0 100 Ω 2A R F IN OUT 2B 2R B B SDI ADC C F 1Y SDO A0 R F OUTC IN GND 1Z 1 C CF 2Y 2D
in „SPI über Distanz (3,5m)“ · Mikrocontroller und Digitale Elektronik ·
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LCD_Dislpay_Treiber_NT7534_132_x_65_Pixel.pdf
terminals must be connected. This is the liquid crystal alternating current signal I/O terminal M/S = “H”: Output 10 FR I/O M/S = “L”: Input When the NT7534 chip is used in master/slave mode, the various FR terminals must be connected. This is the liquid crystal display blanking control terminal. M
in „LCD Display TG12864R-04 Ansteuern!“ · Mikrocontroller und Digitale Elektronik ·
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K4B4G1646Q-Samsung.pdf
,ID-LEVEL. 2. DQ signals are MID-LEVEL. - 36 - Preliminary Rev. 0.5 K4B4G1646Q datasheet DDR3LSDRAM 1) [ Table 37 ] IDD1 Measurement - Loop Pattern p d ] K o e e a : 1 ] ] ] ] 2 / K - c b m S A A E D [ 5 1 9 6 2 t K C b C u m C R C W O A [ A A A A D C S N C B A 0 0 ACT
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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78f9116.pdf
Symbol Conditions MIN. TYP. MAX. Unit Cycle time (minimuminstruction T CY VDD = 2.7 to 5.5 V 0.4 8 s execution time) 1.6 8 s TI80 input high/low tTI, VDD = 2.7 to 5.5 V 0.1 s level width tTIL 1.8 s TI80 input fTI VDD = 2.7 to 5.5 V 0 4 MHz frequency 0 275 kHz Interrupt input tINT, INTP0-INTP2 V DD=
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AD811.pdf
N E S VOLTAGE NOISE V =S±15V L GAIN = –2 C R FB= 649Ω VOLTAGE NOISE V S = ±5V 0.01 5 1 1 8 - - 10k 100k 1M 10M 100M 6 10 100 1k 10k 100k 6 8 8 FREQUENCY (Hz) 0 FREQUENCY (Hz) 0 Figure15.Closed-LoopOutputResistancevs.Frequency
in „2 Spannungen in einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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NPX-35TFR-product-data-sheet.pdf
Terminal M6 Threaded Receptacle JST No. VHR-2N INCH = MM INCH = MM INCH = MM INCH = MM I 0.860 21.84 J K 1.100 27.94 L 0.870 22.01 1.024 26.01 0.530 13.46 0.910 23.11 0.910 23.11 0.550 13.97 0.430 10.92 0.430 10.92 0.510 12.95 0.430 10.92 0.295 7.49 0.335 8.51 0.390 9.91 0.230 5.84 0.315 8.00 0.330 8.38
in „[S] Polschutzkappen für 5.5mm Anschlüsse von Akkus“ · Markt ·
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HWSC_S_A0014431442_1-3073393.pdf
Dual radial 016MD ±16 mbar 1.6KD ±1.6 kPa 010ND ±10 i2H O JJ same sideports, JJ same sideports, 025MD ±25 mbar 2.5KD ±2.5 kPa 020ND ±20 i2H 010BD -10 10 bar — 17 17 17 ±0.75 ±0.25 ±0.25 17 040MD ±40 mbar 004KD ±4 kPa 030ND ±30 i2H O Gage 060MD
in „ESP32 Wroom mit Honeywell Drucksensor verbinden“ · Mikrocontroller und Digitale Elektronik ·
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Thermoelement.pdf
x t oder ±2,5K Dies bedeutet, dass ein Fe-CuNi-Thermoele- Pt10Rh-Pt „S“ Klasse 1 0…+1600 °C: ±[1+(t-1100) x 0,003] oder ±1,0K und Klasse 2 - 40…+1600 °C: ±0,0025 x t oder ±1,5K ment vom Typ „J“ beispielsweise durch
in „Wie funktioniert Thermosensor in Heizofen“ · Haus & Smart Home ·
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sharp_r733.pdf
.. S4(12) SEG 3 (4) ..............................SEG 9 (10)........................ S3(13) SEG 4 (5) ..............................SEG 10 (11)...................... S2(14) SEG 5 (6) .....................
in „Fragen zu einem Trafo einer Sharp R733(W) Mikrowelle“ · Analoge Elektronik und Schaltungstechnik ·
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sharp_r733.pdf
.. S4(12) SEG 3 (4) ..............................SEG 9 (10)........................ S3(13) SEG 4 (5) ..............................SEG 10 (11)...................... S2(14) SEG 5 (6) .....................
in „Fragen zu einem Trafo einer Sharp R733(W) Mikrowelle“ · Analoge Elektronik und Schaltungstechnik ·
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Thread
C-Code für Fahrtregler anpassen
CALIBRATION; while (calibrating) { //If we are getting RC pusles if (failsafe > 10) { //if we are getting a pulse see if its up the top. if (newState == forward && desiredPWM > 100) { //Wait for 2s and see if it stays high
1 ;2 sbiw y, 1 ;2 brcs ge5 ;1 ;exit with c=1 if timeout (10mS) nop ;1 nop ;1 sbic pind, 2 ;1 rjmp ge3 ;2 ;set to 1500uS if below 900uS or above 2100uS ldy 720 cp xl, yl cpc xh, yh brlo ge4 ldy 1680 cp xl, yl
Mikrocontroller und Digitale Elektronik ·Andre Meschke · ·24 Antworten
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MGA31189.pdf
Figure10.IRLvsFrequencyandTemperature 0 -26 85°C -5 25°C -28 -40°C -10 ) -30 ) ( ( o R-15 a -32 O s -20 I -34 85°C -25 -36 25°C -40°C -30150 250 350 450 550 650 750 -3150 250 350 450 550 650 750 Frequency(MHz
in „RF-Amplifier ausserhalb von Spezifikation benutzen“ · HF, Funk und Felder ·
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at27c256.pdf
• Hardware and Software Data Protection • Fast Program Cycle Times – Page (64 Byte) Program Time - 10 ms – Chip Erase Time - 10 ms 256K (32K x 8) • DATA Polling for End of Program Detection • Low Power Dissipation 5-volt Only – 50 mA Active Current – 300 µA CMOS Standby Current • Typical Endurance >
in „AT27C256 Was kann man damit Anstellen???“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rscalc2.c
include <stdlib.h> #include <time.h> #include <string.h> void usage(char* pname) { printf("USAGE: %s <lat> <lon> <timezone> [date] [option]\n", pname); puts("<lat> <lon> is latitude and longitude"); puts("<timezone> is the offset from UTC (include daylight saving time if necessary)"); puts("[date] a
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MAX187_MAX.pdf
____________________________ +5V, Low-Power, 12-Bit Serial ADCs M 20 A OUTPUT CODE X FULL-SCALE 0 fS= 75ksps TRANSITION fT= 10kHz 1 11…111 TA= +25°C 8 11…110 -20 7 / 11…101 ) M ( -40 D A L -60 X FS = +4.096V M 1LSB =FS A 1 4096 -80 8 9 00…011 00…010 -100 00…001 00…000 -120 0 1 2 3 FS INPUT VOLTAGE (LSBs) FS - 3/2LSB -140 0 18.75 37.5 FREQUENCY (kHz) Figure 10. MAX187/MAX189 Unipolar Transfer Function, Figure 11. MAX187/MAX189 FFT plot 4.096V = Full Scale Minimum cycle time is accomplished by using DOUT’s input frequency. ADCs have traditionally
in „AD-Wandler mittels Optokoppler anbinden“ · Mikrocontroller und Digitale Elektronik ·
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pr4402.pdf
t 80 ( 60 n c r 70 n 50 22 µH u 60 22 µH c 40 14,7 µH C 10 µH f 10 µH l 50 E 30 p 40 u 30 20 S 20 10 10 0 0 0,8 1 1,2 1,4 1,6 1,8 2 0,8 1 1,2 1,4 1,6 1,8 2 Supply Voltage (V) Supply Voltage (V) Mean LED Current vs. Supply Voltage Peak LED Current vs. Supply
in „LED mit 0,5 V zum Leuchten bringen“ · Mikrocontroller und Digitale Elektronik ·
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toshiba_satellite_l755.pdf
1 5 GPIO3 7 4 D3A 1110 6 5 Q19 PCI_PLTRST# 2 B2A 10/05 B2A 10/14 *2N7002_200MA 4 PLTRST# PLTRST# [2,16,17,20,22] 10KX8 +3V_S5 1 +3V_S5 3 U28 R324 IV@10K_4 PCIE_CLKREQ_PEG# *TC7SH08FU(F) R700 R323 *EV@10K_4 100K_4 R393 +3V_S5 2 2.2K_4 A R358 *NS3@10K_4 S3_STRAP A R847 10K_4 [22] 2ND_MBDATA 3 1 SMB_ME1_DAT R701 0_4 F3A 1224 Q24 B2A 10/14 *2N7002_200MA CLK_BUF_BCLKN R191 10K_4 CLK_BUF_BCLKP R180 10K_4 +3V_S5 CLK_BUF_PCIE_3GPLLN R195 10K_4 R745 10K_4 DRAMRST_CNTRL_PCH
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038-05058-01-X-MLCC_REVB03_SKIT.pdf
C12 MPM3810AGQB-Z 1000PF R10 10UF ETH_REG_EN 5 50V 2 40.2K 2 10V 7 5-6 EN 2 VIN OUT 4 ETH_2V5_FB 1 C6 1 1 C7 1 C8 FB 22UF R14 22UF 22UF 3 A 2 1 2 25V 12 68 kOhms 2 10V 2 10V [4,7,8]CC_PS_PGOOD PG _ N NC1 7 R15 OUT_S 2 1 C15 E G
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LT3092fb.pdf
3092 G17 Noise Spectral Density 100 z √ A 10 N ( R I R S C E C L 1 N A R RT F EC R S S 0.1 O N 0.01 10 100 1k 10k 100k FREQUENCY (Hz) 3092 G19 3092fb 6 LT3092 PIN FUNCTIONS (DD/ST/TS8) IN (Pins 7, 8/Pin 3/Pins 7, 8): Input. This pin supplies SET
in „Konstantstromquelle LT3092 - Widerstandswahl“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ds-mb86r01-jade-rev1-4.pdf
419 E7 VSS 20 Y1 VSS 120 AA2 VDDE 220 AD9 IDE_DA[1] 320 V23 MDM[0] 420 E6 VSS 21 AA1 CCLK1 121 AB2 I2S_SDO2 221 AD10 IDE_XDIOR 321 U23 MDQ[11] 421 K10 VDDI 22 AB1 VINFID1 122 AC2 PWM_O1 222 AD11 MPX_MODE_1[1] 322 T23 MDQ[12] 422 L10 VDDI 23 AC1 I2S_SCK2 123 AD2 PWM_O0 223 AD12 PLLBYPASS 323 R23 MDQ[14
in „Bild im Bild in der Instumententafel Range Rover“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HS_Systems_Part_2_for_Print_A.pdf
2.4V ADA4937-1 C 2.2V p-p 5nV/√Hz Differential V OCM Input Span 226Ω 24.9Ω – AIN+ 0.1µF VREF 200Ω f = s 80/105MSPS +1.2V + / – 0.275V +2.4V + / – 0.55V AD6645 SPECS: 6 INPUT BW = 270MHz OUTPUT NOISE = 5nV/√Hz 1.57×270×10 = 103µV rms 1 LSB = 134µV 0.778 SNR = 75dB OUTPUT SNR = 20 log 103×10–6 = 77.6dB This
in „ADCs: Digitale Masse und Oszillator an Analogmasse?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
P6201_x10_900MHz_FET_Probe.pdf
TRANSISTOR,SIG:BIPOLAR,NPN;45V,50MA,40MHZ, 04713 MPS6520 AMPLIFIER R1 321-0807-01 RES,FXD,FILM:900K OHM,0.5%,0.125W,TC=T0 19701 5033RD900K0D R2 307-0240-00 B010100 B081604 RES,FXD,CMPSN:50 OHM,10%,0.075WPELLET 23223 50A10L W/PARALLEL LEADS R2 325-5043-00 B081605 RES,FXD,FILM:49.9 OHM,1%,0.062W 56845
in „Eigenbautastköpfe“ · Analoge Elektronik und Schaltungstechnik ·
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st7565r.pdf
2287 -374 243 SEG[125] 2345 -374 244 SEG[126] 2403 -374 245 SEG[127] 2461 -374 Ver 1.5 17/72 2006/03/10 ST7565R Block Diagram S S E C O C E 1 O M M 0 1 0 3 S VDD V0 V1 C V2 M V3 132 SEGMENT 64 COMMON S V4 VSS DRIVERS DRIVERS COM output control circuit Voltage Display data latch D HPM circuit p follower
in „Neue DOG LCD-Grafikmodule SPI ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
db_lcd-controller-ST7565R.pdf
2287 -374 243 SEG[125] 2345 -374 244 SEG[126] 2403 -374 245 SEG[127] 2461 -374 Ver 1.5 17/72 2006/03/10 ST7565R Block Diagram S S E C O C E 1 O M M 0 1 0 3 S VDD V0 V1 C V2 M V3 132 SEGMENT 64 COMMON S V4 VSS DRIVERS DRIVERS COM output control circuit Voltage Display data latch D HPM circuit p follower
in „G-LCD ST756-Controller , Schriftart und einzelne Pixel ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DAC7552.pdf
1-kHz full-scale sine wave, –100 dB outputs unloaded Digital feedthrough 0.1 nV-s Output noise density (10-kHz offset 120 nV/rtHz frequency) Total harmonic distortion FOUT = 1 kHz, S = 1 MSPS, –85 dB BW
in „Problem mit DAC7552“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad420_datasheet.pdf
Current 7 mA REF IN Resistance 30 k VLL Output Voltage 4.5 V Externally Available Current 5 mA Short Circuit Current 20 mA DIGITAL INPUTS VIH (Logic 1) 2.4 V VIL(Logic 0) 0.8 V IIH(VIN 5.0 V) 10 A I (V = 0 V) 10 A IL IN Data Input Rate (“3-Wire” Mode) No Minimum 3.3 MBPS Data Input Rate (“Asynchronous” Mode) No Minimum 150 kBPS DIGITAL OUTPUTS FAULT DEFECT VOH (10 k Pull-Up Resistor toLL ) 3.6 4.5 V V (10 k Pull-Up Resistor to V ) 0.2 0.4 V OL LL VOL @ 2.5 mA 0.6 V DATA OUT VOH (IOH= –0.8 mA) 3.6 4.3 V VOL (OL = 1.6 mA)
in „Suche AD420 in SMD Format“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
) Slave address Slave address MSByte address LSByte address MSByte data LSByte data 2 SDA I C read S 0 1 1 0 0 1 1 W A A A S 0 1 1 0 0 1 1 R A A NAK P SCL Figure 5 I C read command format (default SA=0x33 is used) REVISION 11 – 3 AUGUST 2018 Page 11 of 60 MLX90640 32x24 IR array Datasheet 10.3. Measurement
in „MLX90640 IR-Array 32x24 pixel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
) Slave address Slave address MSByte address LSByte address MSByte data LSByte data 2 SDA I C read S 0 1 1 0 0 1 1 W A A A S 0 1 1 0 0 1 1 R A A NAK P SCL Figure 5 I C read command format (default SA=0x33 is used) REVISION 11 – 3 AUGUST 2018 Page 11 of 60 MLX90640 32x24 IR array Datasheet 10.3. Measurement
in „Wärmebildkamera mit dem MLX90640 und Arduino Due“ · Mikrocontroller und Digitale Elektronik ·
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ug_bbii.pdf
As specified by CCIO FLEX 10K, FLEX 8000, and FLEX 6000 devices 5 V FLEX 10KE devices 2.5 V FLEX 10KA and FLEX 6000A devices 3.3 V Altera Corporation 2–1 December 2004 ByteBlaster II Connections Table 2–1. ByteBlaster II CC(TRGT
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Display_Controller.pdf
Relative VOUT_IN = COMn *6 — 3.2 5.4 To VSS) 8.0 V Default Internal Oscillator fOSC 570.57 600.6 630.63 kHz *7 Oscillator External Mode0 Ta = 25°C Frequency fCL 128 line 60 PWM 570.57 600.6 630.63 kHz OSC Input Max OSC under FR=1,1,1,1 fOSC 767.52 959.4 1151.28 kHz Mode 10 Default Frame fFRAME 73.15 77 80.85
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
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TL431.pdf
versus Ambient Temperature B 60 80 ( Output I 50 15 k IK G 9.0 mF 230 z E 40 √ 60 A 8.25 k V L GND ( V 30 G V = V P T 40 KA ref O 20 O K = 10 mA L V TA= 25°C E 10 K = 10 mA I Input Output O TA= 25°C O 20 IK ,L N V 0 A −10 0 1.0 k 10 k 100 k 1.0 M 10 M 10
in „Linenarregeler“ · Analoge Elektronik und Schaltungstechnik ·
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opa2134.pdf
–45 ) G = +100 ) d 30 B 100 ) ( ( f t a i 80 –90 h G 20 G S p G = +10 e 60 s o 10 a a - o 40 –135 P e V l 0 20 G C G = +1 0 –180 –10 –20 –20 0.1 1 10 100 1k 10k 100k 1M 10M 1k 10k 100k 1M 10M Frequency (Hz) Frequency (Hz) Figure 9. Open-Loop Gain and Phase vs
in „Unerwünschtes Rauschen bei Allpassfiltern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS_Datasheet.pdf
Size Capacitor Code Tolerance Rated DC Voltage Packaging Maximum ESR in See table pF code: 1st two K = ±10% 002 = 2.5Vdc R = 7" T/R Milliohms above digits represent M = ±20% 004 = 4Vdc date 1/1/04)ince productionSee note below significant figures, 006 = 6.3Vdc S = 13" T/R 3rd digit represents 010 =
in „Was für besondere Kondensatoren sind das??“ · Mikrocontroller und Digitale Elektronik ·
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Ferrite.pdf
A standards, ultra stable vs. temperatuBSRF-35N ( = 3,50 € each ) nH GHz Ω +/- 15 ppn /°C Piconics S350K 3 packs of 5 pcs = 48,00 € provided in 5 pcs pack ( = 3,20 € each ) >1.5GHz 43 200 100 tip. 2.50.08 4 A 6.5 x 3.2 mm Coilcraft B10TJ 5 % BCQ-43N 0,60 nH GHz Ω ultra high Q ( Q > 90 100-300 MHz )
in „Gefunden und für gut befunden.Filterliste.“ · HF, Funk und Felder ·
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MC34161-D_1_.pdf
Microprocessor Reset with Time Delay http://onsemi.com 12 MC34161, MC33161, NCV33161 B+ MAC + 220 75k 250V 228A6FP T MR506 Input 92 Vac to 8 10k + 220 75k 250V 276 Vac 3.0A 2.54V RTN 1 Reference 1.2k 10k - 7 + + + 2.8V 6 2 + - 100k 1.27V - + + 1.6M + 0.6V 5 3 + - + 1.27V 1N + 10 47 4742 4 10k 3W The
in „Brauche Hilfe zur Berechnung den MC34161“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Under_the_Hood_of_Flyback_SMPS_Designes_slup261__TI.pdf
frequency: 250 kHz The transformer’s magnetizing inductance (Lmag_pri) seen at primary is nominally 70 µH. The Fig. 11. Transformer winding stackup. coresizeusedwasEFD20/10/7.Notethatmultifilar (side-by-side)wireswereusedforboththeprimary
in „Flyback-Wandler Störungen auf Versorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Frequenznutzungsplan2011pdf.pdf
Frequenznutzungs- Übertragung von Daten mit einem satellitengestützten persönlichen Kommunikationsdienst (S-PCS) bedingungen: Maximale zulässige spektrale Leistungsflussdichte: 10 W/4 kHz (10 dB(W/4 kHz)) Kanalbandbreite: 5 kHz Die technischen Parameter der Nutzung werden durch die internationale Koordinierung
in „Interessante Frequenzen zwischen 100KHz und 2GHz“ · HF, Funk und Felder ·
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PDF
BBK-29LEM-5093T2C_MSD308C-1.pdf
1K 1 PWR ON/OFF 1 KEY1 SAR1 R187 1 10K market S1 K2 1 1 2 306 shield box 1 GND 1 K AGND R189 1K 3 K1 4 7 1 1 KEY0 SAR0 N R 4 1 VCC 4 20121120 C175 C135 C97 C98 1 1 1 0.1uF 0.1uF 1nF 1nF NC market H4 1 1
in „Datenblatt zu MSH9010-lf gesucht“ · Mikrocontroller und Digitale Elektronik ·
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LD1117.pdf
Symbol Parameter Test Conditions Min. Typ. Max. Unit V Reference Voltage V - V = 2 V I = 10 mA T = 1.238 1.25 1.262 V ref in O O J 25°C V Reference Voltage I = 10 to 800 mA V - V = 1.4 to 10 1.225 1.275 V ref O in O V ∆V Line Regulation V - V = 1.5 to 13.75 V I = 10 mA 0.035 0.2 % O in O O
in „Probleme mit 12 Volt Spannungsversorgung“ · Analoge Elektronik und Schaltungstechnik ·
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CD287.pdf
Max Imp Max Imp Ripple Size R.DC Rated Max ESR Max Imp Max Imp Ripple Size (Surge Capa- 20°C, 20°C, -10°C, Current (Surge Capa- 20°C, 20°C, -10°C, Current Voltage) citance 120Hz 100kHz 100kHz 105°C, Ø D x L Voltage) citance 120Hz 100kHz 100kHz 105°C, Ø D x L Code 100kHz Code 100kHz (V) (µF) (Ω) (Ω) (Ω)
in „Empfehlung für Low-ESR LONG LIFE Elkos?“ · Mikrocontroller und Digitale Elektronik ·
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MAX312-MAX314.pdf
TEMPERATURE 24 4 5 100 0 1 V+ = 12V, 3 100 V+ = 15V, T V+ = 15V, T 4 22 V- = 0V M V- = -15V, X V- = -15V, X 10 M 10 V = ±10V M 20 VNC OR VNO = ±10V COM 18 A VCOM = ±10V A 1 A 1 ) 16 B ( ( ( 14 G G N C K 0.1 K 0.1 R 12 D L L E F N 10 O 0.01 O 0.01 8 A: TA= +125°C B: TA= +85°C 6 C: TA= +70°C 0.001 0.001 4 D: TA
in „Frage zum Datenblatt max313 analogschalter“ · Analoge Elektronik und Schaltungstechnik ·
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80C51.pdf
low for 100 s (〉 10 s) and high for a minimum of 10 s. Table 9. Program Security Bits for EPROM Devices PROGRAM LOCK BITS 1, 2 SB1 SB2 SB3 PROTECTION DESCRIPTION 1 U U U No Program Security features enabled. (Code
in „Prüfen von Chips“ · Mikrocontroller und Digitale Elektronik ·
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wama-online-dokumentation-public.pdf
/?ARTICLE=45026 0,10 0,10 1GS 40 IC-Sockel 40-pol http://www.reichelt.de/?ARTICLE=8224 C6 0,04 0,04 1RAD 105 100/35 Elko 100uF http://www.reichelt.de/?ARTICLE=42401 R1, R2 0,16 0,08 2METALL 10,0K Widerstand 1% 10K http:/