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PDF
XPLAIN_Shematic.pdf
SDRAM_CKE 37 53 PC0 R 1 R 1 R 1 SDRAM_CLK 38 CKE NC14 TP104 PC1 PC1 V_XM CLK TP105 PC2 PC2 PC1 DATAFLASH_SS 2 k 2 k TP106 PC2 USB_UART_TX ) ) ) ) ) R 1 R 10 TP107 PC3 PC3 PC3 USB_UART_RX L A L A L V3P3 V3P3 V3P3 V3P3 1 VDD1 VSS1 54 C TP108 PC4 PC4 PC4 USB_SS S S S S S V3P3 14 VDD2 VSS2 41 C TP109 PC5 PC5 PC5
in „Xplain: Schaltplan gesucht“ · Mikrocontroller und Digitale Elektronik ·
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x20c16.pdf
4 7 22 1 1 1 1 1 1 1 3 X20C16 V 14 15 I/O VCC X20C16 I/3 1 2 3 4 5 6 7 8 9 0 2 3 4 5 6 A 2 9 25 OE SS 3 NE 8 21 VSS (TOP VIEW) 3826 FHD F02 9 20 O N A A N A WV V N N A A A A A A 1 10 24 A 10 NC I/2 E C 9 8 C S E C C E C 7 6 5 4 3 A 0 11 23 CE A7 10 19 I/1 11 18 NC 12 22 I/O7 A6 I/0 3826 ILL F17.2 I/O
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lm5026.pdf
OVERLAP CONTROL S Q SLOPE COMP 5V RAMP VCC 45 PA R 0 OUT_B 5k COMP DRIVER 2R PGND 1.4V PWM R 1 : 1 AGND SS CURRENT 5V CS 2k LIMIT CURRENT LIMITING 0.5V (10 PA) OUT_A + LEB CURRENT LIMIT RESTART RES 5V TIMER 5V & RESTART SS CONTROL DELAY SOFT-START NOT SS (1 PA) (50 PA) CURRENT SS LIMITING (10 PA) SOFT-STOP
in „.lib datei einbinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICM7213.pdf
( 60Hz) ( 2 Hz) (1Hz) (2Hz) n ÷ (5 x 3 x 2) ÷2 ÷2 ÷2 n 14 n OUT 4 n 2 10 VDD OUT 3 n n V WIDTH 1 4 SS 3 11 13 12 INHIBIT TEST OUT 2 OUT 1 OR RESET 13-17 Specifications ICM7213 Absolute Maximum Ratings Thermal Information Supply Voltage (DD - SS). . . . . . . . . . . . . . . . . . . .Thermal Resistance6.0V
in „Aus Platinen-Layout Schaltplan mit Fritzing erstellen“ · Analoge Elektronik und Schaltungstechnik ·
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PL560-XX.pdf
100 Hz 1 KHz 10 100 1 MHz 10 (MHz) KHz KHz MHz PL560-08 75 - 200 4 300 - 800 PECL 622.08 -55 -85 -110 -130 -137 -148 -150 PL560-09 75 - 200 4 300 - 800 LVDS 622.08 -55 -85 -110 -130 -137 -148 -150 PL560-37 30 - 80 4 120 - 320 CMOS 155.52 -50 -82 -110 -128 -142 -148 -150 PL560-38 30 - 80 4 120 - 320 PECL 155.52 -50 -82 -110 -128 -142 -148 -150 PL560-39 30 - 80 4 120 - 320 LVDS 155.52 -50 -82 -110 -128 -142 -148 -150 PL560-47 30 - 80 2 60 - 160 CMOS 155.52 -65 -95 -122 -138 -142 -148 -149 PL560-48 30 - 80 2 60 - 160 PECL
in „Suche Analog Frequency Multiplier IC“ · Mikrocontroller und Digitale Elektronik ·
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MapCom.pdf
PIU1006 PIU10017 P03 PIU11045RC RXC PIU11050XCXC CTSCSC PIU11044RC TXC CTS1 PIU1007 PIU10016C GND PIU110CDCC COM1 INTC PIU11048 TCTC U12B2B RTSCSC PIU110RTSC CSC PIU11049SCSC RXD1 PIU1008 PIU10015 PIU1204 PIU110RIC R7R7 HC32 PIU1206 RXC B PIU100INVALID PIR702PIR701 PIU1205 PIU110DSRD TXD PIU11052 B VCC PIU100FORCEON 0 470R PIU1207 PIU110DTRD RXD PIU11065XDXD PIU100FORCEOFF PIU12014 PIU110CTSD V- PIU100V- GND PIU10025ND PIQ301 Q3Q VCC PIU110CDD INTD PIU11054 TDTD R1 PIU110RTSD CSD PIU11053SDSD MAX3243EEWI R8R 02 Q44403 PIQ402I2 PIU110RID
in „[V] Weiterer M8, GPS, GSM Siemens M20, ATmega128“ · Markt ·
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PDF
CM-BF537E_HardwareUserManual_V1.pdf
9 Vin3V3 A17 69 52 112 10 GND A18 70 51 Vin3V3 A19 111 11 GND CM-BF537E ABE0 71 50 PG0/PPI1D0 ABE1 110 12 PG1/PPI1D1 LED_SPEED 72 49 PG2/PPI1D2 LED_ACT 109 PG3/PPI1D3 LED_FD 13 PG4/PPI1D4 GND 73 48 PG5/PPI1D5 TX+ 108 14 PG6/PPI1D6 RX+ 74 47 PG7/PPI1D7 TX- 107 15 PG8/PPI1D8/DR1SEC RX- 75 46 PG9/PPI1D9
in „SDHC Karte Einbindung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21483b.pdf
) Positive Supply During Operation I Quiescent — -1.5 -6 -1.5 -6 — -3 -10 mA Current Required from SS (Note 10) Negative Supply During Operation VDD Supply 4 — 7.5 4 — 7.5 4 — 7.5 V Operating Range of Positive Supply V Supply -4 — -7.5 -4 — -7.5 -4 — -7.5 V Operating Range of SS Negative Supply Reference
in „Frequenzen vervielfachen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SoftwareSerial.cpp
+ 1) % _SS_MAX_RX_BUFF; } else { #if _DEBUG // for scope: pulse pin as overflow indictator DebugPulse(_DEBUG_PIN1, 1); #endif _buffer_overflow = true; } } #if GCC_VERSION < 40302 // Work-around for avr-gcc 4.3.0
in „string an Funktion übergeben - Problem Speicherverbrauch RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1325_Salomon.pdf
the output pin for the voltage output low level for COM signals. This pin should be connected to V SS. VSL O This is the output pin for the voltage output low level for SEG signals. This pin can be kept NC or connected with a capacitor to V SS for stability. Refer to command BFh for VSL pin connection
in „OLED VGY12864Z-S005 über LPT Port ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD-PHILIPS_1999.pdf
XI SOD110 BZX284-C22 ZL SOD110 BZX284-B18 XJ SOD110 BZX284-C24 ZM SOD110 BZX284-B20 XK SOD110 BZX284-C27 ZN SOD110 BZX284-B22 XL SOD110 BZX284-C30 ZO SOD110 BZX284-B24 XM SOD110 BZX284-C33 ZP SOD110 BZX284-B27 XN SOD110 BZX284-C36 ZQ SOD110 BZX284-B30 XO SOD110 BZX284-C39 ZR SOD110 BZX284-B33 XP SOD110 BZX284-C43 ZS SOD110 BZX284-B36 XQ SOD110 BZX284-C47 ZT SOD110 BZX284-B39 XR SOD110 BZX284-C51 ZU SOD110 BZX284-B43
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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harman_kardon_avr507_sm.pdf
DIODE 1SS133T-77 D583 HVD1SS133MT DIODE 1SS133T-77 D584 HVD1SS133MT DIODE 1SS133T-77 D585 HVD1SS133MT DIODE 1SS133T-77 D601 HVD1SS133MT DIODE 1SS133T-77 D801 HVD1SS133MT DIODE 1SS133T-77 D802 HVD1SS133MT DIODE
in „Harman Kardon geht nicht an (hängt im Standby fest)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s81350hg.pdf
voltage Vdif IOUT=40 mA 0.12 0.24 V 1 difference I =50 A to 60 mA Load regulation V OUT OUT 70 110 mV 1 V IN.0 V Current consumption I V =6.0 V, No loaded 16 30 A 2 SS IN V OUT V INV to 15 V Line regulation V •V I =40 mA 0.04 0.2 % / V 1 IN OUT OUT Input voltage VIN 15 V Temperature charac
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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SPI-Level-Shift-MCP.pdf
1785-1-ND ( 6V3) 3 C3 1nF C0603 4 C4 100nF C0603 5 C5 100nF C0603 6 C6 100nF C0603 7 IC1 MCP23S17-E/SS SOP65P784X200-28N-MCP 1268578 MCP23S17-E/SS-ND 8 IC2 SN74AHCT1G125 SOT95P280X145-5N 1105927 296-4708-1-ND 9 IC3 TPS76428DBV SOT95P280X145-5N 296-2710-1-ND 10 IC4 74LVC07APW-T TSOP65P640X110-14N 1236302
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Datei
cache.txt
------------- Connection Index : 0x01 (1) Length : 0x10 (16 bytes) SupportedUsbProtocols : 0x03 Usb110 : 1 (yes) Usb200 : 1 (yes) Usb300 : 0 (no) ReservedMBZ : 0x00 Flags : 0x00 DevIsOpAtSsOrHigher : 0 (Is not operating at SuperSpeed or higher) DevIsSsCapOrHigher : 0 (Is not SuperSpeed capable or higher) DevIsOpAtSsPlusOrHigher : 0 (Is not operating at SuperSpeedPlus or higher) DevIsSsPlusCapOrHigher : 0 (Is not SuperSpeedPlus capable or higher) ReservedMBZ : 0x00 ---------------------- Device Descriptor -------
in „Bin ich bescheuert oder Windows (USB device driver)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
C1.txt
------------- Connection Index : 0x01 (1) Length : 0x10 (16 bytes) SupportedUsbProtocols : 0x03 Usb110 : 1 (yes, port supports USB 1.1) Usb200 : 1 (yes, port supports USB 2.0) Usb300 : 0 (no, port not supports USB 3.0) -> but Companion Port 1-13 does ReservedMBZ : 0x00 Flags : 0x00 DevIsOpAtSsOrHigher : 0 (Device is not operating at SuperSpeed or higher) DevIsSsCapOrHigher : 0 (Device is not SuperSpeed capable or higher) DevIsOpAtSsPlusOrHigher : 0 (Device is not operating at SuperSpeedPlus or higher) DevIsSsPlusCapOrHigher : 0 (Device is not SuperSpeedPlus
in „STM32 Win10 COM-Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solar_Battery_Inverter_48V_TN-1500-SPEC.pdf
for 180 sec. / 1875W for 10 sec. / surge power 3000W for 30 cycles AC VOLTAGE Factory setting set at 110VAC Factory setting set at 230VAC 100 / 110 / 115 / 120VAC selectable by setting button S.W 220 / 230 / 240VAC selectable by setting button S.W FREQUENCY 60±0.1Hz 50/60Hz selectable by setting button
in „[V] True-Sinus-Wechselrichter Meanwell TN-1500“ · Markt ·
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PDF
PVC160203PYL01.pdf
8903 !K595 30907 LJK9 85:7.0 ▯157 70120.9L;0 9\S0 ▯ 1573,2 θ θ 17549 8L/0 ZL9K S52,7L]07 0,8:703049 ,SS,7,9:8▯ θ θ ° LJK9 85:7.0 ▯157 97,483L88L;0 97,48120.9L;0 9\S0 ▯ !, '& / %# , $▯ /% ! ▯ !' !</ ' #$, ▯ : !,J0 ▯ / %#, / $! , , %, $ ,% $< ! , %<3 ; & ,%$ !5Z07 8:SS2\ ' ▯ ' ;529,J0 !5Z07 8:SS2\ , .:77049
in „LCD INIT FEHLER“ · Mikrocontroller und Digitale Elektronik ·
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MCP73837.pdf
VUSB 2 9 THERM VUSB 2 9 THERM STAT1 3 8 PG (TE) STAT1 3 8 PG (TE) STAT2 4 7 PROG2 STAT2 4 7 PROG2 V SS 5 6 PROG1 V SS 5 6 PROG1 Typical Applications MCP73837 Typical Application Ac-dc Adapter 1 10 VAC VBAT Thermsitor 4.7 µF Single USB Port 2 V THERM 9 Li-Ion 4.7 µF USB Cell 1 kΩ 4.7 µF 3 V 5 STAT1 SS
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u2270b.pdf
Application using few external components. This application is for intense magnetic coupling only. 9693 110 kW 5 V V V EXT VS VDD Batt 47 nF 47 mF DVS U2270B RF MS INPUT CFE CIN OE STANDBY Micro- 1N4148 OUTPUT controller HIPASS CHP 470 kW COIL1 1.5 nF R 1.35 mH COIL2 1.2 nF V DGND GND SS Figure 14. Application
in „Pollin RFID Entwicklungsboard“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4067B_4097B.pdf
OVER 15 Vp-p- VG= 15VNPUT RANGE FOR . HIGH OFF RESISTANCE: CHANNEL LEAK- AGE OF 〉 10pA(typ.) DDV- SS= 10V . MATCHED SWITCH CHARACTERISTICS: R ON= 5 (typ.) FORDD-VSS = 15V (Plastic Package) (CeramicPackage) . VERY LOW QUIESCENT POWER DISSIPA- TION UNDER A DIGITAL CONTROL INPUT AND SUPPLY CONDITIONS:
in „Analog Mux - Demux“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD4053.pdf
be achieved by digital signal amplit−15V. For signal-input range DDr−VEE =15V C example, ifDD= 5V, SS =0V and VEE= −5V, analog sig-■ High “OFF” resistance: h i nals from5V to+5V can be controlled by digital inputs ofnnel leakage ±10 pA (typ.) DD −VEE =10V n g 0−5V. The multiplexer circuits dissipate
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PDF
Elektronische_Last_6.pdf
IC102 A X101-2 R101 7 1 0 3 D102 X101-3 3 8 R 3 BAT42 1k 6 TEMP 2 GND C102 OP07CN 0 C104 4 4 C108 C110 C113 C115 C117 C119 C121 C123 1 C 4 5 2 1 V 100n k R 100p 100n 100n 100n 100n 100n 100n 100n 100n 8 IC105P 2 C109 C111 C114 C116 C118 C120 C122 GND GND -5V 6 V HighRes HRES k 1 1 1 100n 100n 100n 100n
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_7.pdf
IC102 A X101-2 R101 7 1 0 3 D102 X101-3 3 8 R 3 BAT42 1k 6 TEMP 2 GND C102 OP07CN 0 C104 4 4 C108 C110 C113 C115 C117 C119 C121 C123 1 C 4 5 2 1 V 100n k R 100p 100n 100n 100n 100n 100n 100n 100n 100n 8 IC105P 2 C109 C111 C114 C116 C118 C120 C122 GND GND -5V 6 V HighRes HRES k 1 1 1 100n 100n 100n 100n
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_8.pdf
IC102 A X101-2 R101 7 1 0 3 D102 X101-3 3 8 R 3 BAT42 1k 6 TEMP 2 GND C102 OP07CN 0 C104 +5V 8 4 C108 C110 C112 C114 C117 C119 C121 C123 C125 1 C 4 5 2 1 V 100n k R 100p 1N4148 100n 100n 100n 100n 100n 100n 100n 100n 100n 8 IC106P 2 D103 C109 C111 C113 C115 C118 C120 C122 C124 GND GND -5V 6 V HighRes HRES
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mcp6004.pdf
SOT-23-5 VDD 4 11 VSS V SS VIN 1 + 5 VDD V INB 5 10 VINC V SS 2 - V INB 6 B+ C - 9 VINC R1 VIN 3 4 VOUT V V R 2 OUTB 7 8 OUTC R 1 Gain = 1 + -- V R 2 REF Non-Inverting Amplifier 2003 Microchip Technology Inc. DS21733D-page 1
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP6V11U_OpAmp.pdf
...........±2 mA Analog Inputs IN+ and VIN) (Note 1) ..............................................SS.– 1.0V toDD.+1.0V...................V All other Inputs and Outputs .....................................................SS..........DD....................................V Difference Input voltage ..
in „OpAmps: Maximale Widerstandswerte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NMEA_manual_for_Fastrax_IT500_Series_GPS_receivers_V1_8.pdf
3,1,11,29,68,228,47,30,59,151,47,31,44,284,45,02,38,062,44*7C $GPGSV,3,2,11,12,28,130,41,10,14,102,35,05,12,110,35,04,11,040,34*70 $GPGSV,3,3,11,21,05,196,29,16,05,297,28,13,02,021,30*4E Format: $GPGSV,n,m,ss,xx,ee,aaa,cn,…………. ,xx,ee,aaa,cn*hh<CR><LF> n Total number of messages, 1 to 9 m Message number, 1 to
in „GPS - Shield von Antrax mit 10hz betreiben [Arduino Mega]“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD5290.pdf
Input Capacitance CIL 5 pF POWER SUPPLIES Positive Supply Current DD V IH +5V orV IL0V, 15 50 μA V DD SS±15V Negative Supply Current SS V IH+5V orV =ILV, −0.01 −1 μA V DD SS±15V Power Dissipation7 P V = +5V orV = 0V, 765 μW DISS IH IL V DD SS±15V Power Supply Rejection Ratio PSRR ΔV DDV =SS15V ± 10% −0.15
in „DigiPot AD5290 und Schaltregler TPS5430 laufen nicht zusammen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TI_tle2426.pdf
current) IO = 0 to 20 mA 25°C 65 ±235 Output impedance 25°C 7.5 22.5 mΩ Noise-reduction impedance 25°C 110 kΩ Sinking current, VO = 5 V 26 Short-circuit current Sourcing current, V = 0 25°C −47 mA O CNR = 0 120 Output noise voltage, rms f = 10 Hz to 10 kHz 25°C µV CNR = 1 µF 30 C = 0 290 V to 0.1%, I = ±
in „[V] Virtual Ground Chips“ · Markt ·
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PDF
Computer_Kontakt_1986-08_09_-_21.pdf
Computer KonlaktB-5/36 U.OiPOKE 13,4 33 POKE 1 40 POKE 842,12 Listing 100 GRAPHICS 2+14lP0SITICN 0,5 110 ? ti| "PROGRAM LAEUFT ...." 120 FDR 1*0 TD 255iPQKE 70B,IiNEXT 1 130 SQTO 120 Listing 2b ,run, EOLJK dbg moo SI A BOOT vor KidSS LDA 45TARTiH STA CA5INU1 . Ein.p un« MKt RESET I0LI5T:L Si ,1„-L1.1 START
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC78211.pdf
Semiconductor Bussiness Headquarters TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110 JAPAN 73096HA (OT)/72994 TH (OT) No. 4817-1/6 LC78211, 78212, 78213 Pin Assignments Top view Allowable Operating Ranges at Ta = 25°C, V SS = 0 V, | V DD | | V EE | Parameter Symbol Conditions min typ
in „Analogen Inputselector mit Atmega8 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lc7821x.pdf
Semiconductor Bussiness Headquarters TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110 JAPAN 73096HA (OT)/72994 TH (OT) No. 4817-1/6 LC78211, 78212, 78213 Pin Assignments Top view Allowable Operating Ranges at Ta = 25°C, V SS = 0 V, | V DD | | V EE | Parameter Symbol Conditions min typ
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_geclont.pdf
------------- Connection Index : 0x03 (3) Length : 0x10 (16 bytes) SupportedUsbProtocols : 0x03 Usb110 : 1 (yes) Usb200 : 1 (yes) Usb300 : 0 (no) ReservedMBZ : 0x00 Flags : 0x00 DevIsOpAtSsOrHigher : 0 (Is not operating at SuperSpeed or higher) DevIsSsCapOrHigher : 0 (Is not SuperSpeed capable or higher) DevIsOpAtSsPlusOrHigher : 0 (Is not operating at SuperSpeedPlus or higher) DevIsSsPlusCapOrHigher : 0 (Is not SuperSpeedPlus capable or higher) ReservedMBZ : 0x00 Data (HexDump) : 03 00 00 00 10 00 00 00 03 00 00
in „FT232R USB Eeprom clonen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_original.pdf
------------- Connection Index : 0x03 (3) Length : 0x10 (16 bytes) SupportedUsbProtocols : 0x03 Usb110 : 1 (yes) Usb200 : 1 (yes) Usb300 : 0 (no) ReservedMBZ : 0x00 Flags : 0x00 DevIsOpAtSsOrHigher : 0 (Is not operating at SuperSpeed or higher) DevIsSsCapOrHigher : 0 (Is not SuperSpeed capable or higher) DevIsOpAtSsPlusOrHigher : 0 (Is not operating at SuperSpeedPlus or higher) DevIsSsPlusCapOrHigher : 0 (Is not SuperSpeedPlus capable or higher) ReservedMBZ : 0x00 Data (HexDump) : 03 00 00 00 10 00 00 00 03 00 00
in „FT232R USB Eeprom clonen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3703fc.pdf
SYNC 6 23 NC FB 4 13 SW fSET 7 22 NC COMP 8 21 VCC MAX 5 12 VCC INV 6 11 DRV CC FB 9 20 DRV CC RUN/SS 7 10 BG MAX 10 19 BG INV 11 18 NC GND 8 9 BGRTN NC 12 17 NC RUN/SS 13 16 NC GN PACKAGE 16-LEAD NARROW PLASTIC SSOP GND 14 15 BGRTN TJMAX 150°C,JA = 110°C/W G PACKAGE 28-LEAD PLASTIC SSOP TJMAX= 125°CJAθ
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_S6B1713_R42.pdf
ð (TOP VIEW) (0,0) ð ð X ð ð ð 111 324 ðððððððð ðððððððððððððð ----------ððððððððððððð ððððððððð 1 110 Figure 2. S6B1713 Chip Configuration Table 1. S6B1713 Pad Dimensions Size Items Pad No. Unit X Y Chip size - 10860 2920 1 to 110 90 Pad pitch 111 to 324 70 1 to 110 56 114 Bumped 111 to 147 108 50 μm
in „Frage zu static indicator glcd“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronische_Last_3.pdf
1 2 3 4 5 6 7 8 A A +10V 4 8 8 8 8 C108 C110 C112 C114 C116 20A== 1,65V Frontplatte EXT 90k9 10 IC103C 100n 100n 100n 100n 100n 0-10V == 0-20AX101-1 I/U-OUT 8 C109 C111 C113 C115 C117 0-20A== 0-5V X101-2 R105 9 X101-3 15k7 1 4 4 4 4 100n 100n
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_4.pdf
1,65V Frontplatte EXT 82k5 10 IC103C 100n 100n 100n 100n 100n 0-10V == 0-20AX101-1 I/U-OUT 8 C108 C110 C112 C114 C116 0-20A== 0-5V X101-2 R106 9 X101-3 16k2 1 4 4 4 4 100n 100n 100n 100n 100n GND TLC274P N 5 IC103B GND +10V +5V G 7 D103 6 B BAT42 TLC274P B X102-1eil -5V GNDV X102-2 N -5V X102-3 V G GND
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_final.pdf
4 5 2 1 V 100n k R 100p 1N4148 10k E 100n 100n 100n 100n 100n 100n 100n 100n 100n 8 2 D103 -20mV C110 C112 C114 C116 C119 C121 C123 C125 C127 GND IC106P -5V E HighRes GND 0 47k 3 IC104A 4 1 100n 100n 100n 100n 100n 100n 100n 100n 100n 7 V HRES X102-1 HRES 1 R 1 NC X102-2 R109 1 2 R110 2 R 47k TLC272P
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD1327_1.2.pdf
select. Table 6-2 : Bus Interface selection BS[2:0] Interface 000 4 line SPI 001 3 line SPI 010 I C 110 8-bit 8080 parallel 100 8-bit 6800 parallel Note (1)0 is connected to V (2) SS 1 is connected to VCI SSD1327 Rev 1.2 P 13/65 Jul 2009 Solomon Systech Pin Name Pin Type Description IREF I This pin is
in „OLED Display mit SSD1327 Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Philips_53-56.pdf
SS1060 F DV5 R9124 4 1 6 2 1 R9179 1 R9143 10K 1/8W 1% S 2 R9181 D9106 C9143 510K 3 2 5 H S 0 W 1 2 100N 50V CL 9 O R9180 3 5 4 1 2 R 0 10K 1/8W 1% 9 N 9 ZD9104 0 1 % C 0 R 1 SS1060FL 5 3 1 47K 1/8W 1%
in „Mosfet 5R190CE“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP41010.pdf
5.5V, CS = SS,SCK = 10 MHz, SO = Open, Code FFh (Note 6) Supply Current, Static IDDS — 0.01 1 µA CS, SHDN, RS = VDD = 5.5V, SO = Open (Note 6) Power Supply Sensitivity PSS — 0.0015 0.0035 %/% V DD= 4.5V - 5.5VA V
in „Widerstand regeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11195c.pdf
5.5V, CS = SS,SCK = 10 MHz, SO = Open, Code FFh (Note 6) Supply Current, Static IDDS — 0.01 1 µA CS, SHDN, RS = VDD = 5.5V, SO = Open (Note 6) Power Supply Sensitivity PSS — 0.0015 0.0035 %/% V DD= 4.5V - 5.5VA V
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp41xxx.pdf
5.5V, CS = SS,SCK = 10 MHz, SO = Open, Code FFh (Note 6) Supply Current, Static IDDS — 0.01 1 µA CS, SHDN, RS = VDD = 5.5V, SO = Open (Note 6) Power Supply Sensitivity PSS — 0.0015 0.0035 %/% V DD= 4.5V - 5.5VA V
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
w2465a.pdf
UNIT Supply Voltage to V SS Potential -0.5 to +7.0 V Input/Output to VSS Potential -0.5 to DD +0.5 V Allowable Power Dissipation 1.0 W Storage Temperature -65 to +150 °C Operating Temperature 0 to +70 °C Note: Exposure to conditions
in „Welches SRAM für M16C?“ · Mikrocontroller und Digitale Elektronik ·
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Treiber_IC-SSD0323_OLED_128x64_GELB.pdf
should be connected between this pin and V SS VSL This pin is the output pin for the voltage output low level for SEG signals. A capacitor should be connected between this pin and V . SS VSLCAP This pin is the output pin for the voltage output low level for SEG signals. A capacitor should be connected between this pin and V . SS VCL This pin is the output pin for the voltage output low level for COM signals. This pin should be connected to V SS. VDDB This is the power supply pin for the GDR pin buffer. It must be connected when
in „[Q]Erfahrungen mit (Reichelt) Pictiva OLED Displays“ · Mikrocontroller und Digitale Elektronik ·
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LM35.pdf
temperature Y Low self-heating, §.08 C in still air n D range, while the LM35C is rated for 40§to a 110§C Y Nonlinearity onl(/4 C typical s range ( 10§with improved accuracy). The LM35 series Ys § o Low impedance output, 0.1 X for 1 mA load s Connection Diagrams TO-46 TO-92 SO-8 Metal Can Package* Plastic
in „LM35 an ATmega8 anschließen“ · Mikrocontroller und Digitale Elektronik ·
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LM35DZ.pdf
temperature Y Low self-heating, §.08 C in still air n D range, while the LM35C is rated for 40§to a 110§C Y Nonlinearity onl(/4 C typical s range ( 10§with improved accuracy). The LM35 series Ys § o Low impedance output, 0.1 X for 1 mA load s Connection Diagrams TO-46 TO-92 SO-8 Metal Can Package* Plastic
in „Temperatursensor LM35 DZ will nicht funktionieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD5290.pdf
Input Capacitance CIL 5 pF POWER SUPPLIES Positive Supply Current DD V IH +5V orV IL0V, 15 50 μA V DD SS±15V Negative Supply Current SS V IH +5V orV IL0V, −0.01 −1 μA V DDVSS ±15V Power Dissipation7 P V = +5V orV = 0V, 765 μW DISS IH IL V DD SS±15V Power Supply Rejection Ratio PSRR ΔV DDV =SS15V ± 10% −
in „frage zum Open Drain Ausgang + Pull up Widerstand“ · Mikrocontroller und Digitale Elektronik ·