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Cyclone-FPGA wird sehr heiß - normal?
Assigments -> Pins Ab der Version 6.0 kannst du dir die Pins auch grafisch anzeigen lassen. Vom EP1C6T144 habe ich dir den Bildschirmausdruck angehängt. Die Corespannung (VCCINT) beträgt bei Cyclone 1,5V (1,425V .. 1,575V). Siehe Seite 4-1 (PDF: 85) im Cyclone Device Handbook, Volume 1 . Die Pinbelegung
FPGA, VHDL & Co. ·Alexander I. · ·12 Antworten
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SCA100T_inclinometer_datasheet_8261800A.pdf
SCA100T Series Data Sheet THE SCA100T DUAL AXIS INCLINOMETER SERIES The SCA100T Series is a 3D-MEMS-based dual axis inclinometer family that provides instrumentation grade performance for leveling applications
in „HCS12 - SPI Schnittstelle programmieren“ · Mikrocontroller und Digitale Elektronik ·
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LED_WEISS_5MM_18000_MCD_TYP15.pdf
NxPxxxxxx LOT xxxxxx-U QTY PCS NICHIA CORPORATION 491 OKA, KAMINAKAJAPANN, TOKUSHIMA, Cardboard box 425 135 355 4t N h a C T NxPxxxxxx t S Model N - . W One box contains 20 bags at maximum. NICHIA CORPORATION Title PACKING 5 5 1 0 0 4 No. 031029201123 > A Cardboard Print NICHIA XXXX LED Anti-electrostatic
in „LED Helligkeit mit 8-bit steuern“ · Mikrocontroller und Digitale Elektronik ·
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vti_sca100t-2.pdf
SCA100T Series Data Sheet THE SCA100T DUAL AXIS INCLINOMETER SERIES The SCA100T Series is a 3D-MEMS-based dual axis inclinometer family that provides instrumentation grade performance for leveling applications
in „MSP430 SPI 11BIT !?“ · Mikrocontroller und Digitale Elektronik ·
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IgorPlug-USB__AVR__firmware.pdf
18:49:42 1;*************************************************************************** 2;* U S B S T A C K F O R T H E A V R F A M I L Y 3;* 4 5;* File Name :"USB90S2313.asm" ;* Title :USB stack + Infrared remote control to nonUSB MCU 6;* Date :5.4.2003 7;* Version :1.6 8;* Target MCU :AT90S2313-10,
in „Per USB mit ATMega32 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_moc3022.pdf
PulseWidth 1.4 25 ) D ) 1.3 Z D L 20 NORMALIZED TO: Z A PWin≥ 100 µs L 1.2 M A O R ( O 1.1 F15 ( - F T - N T 1.0 R 10 N R R U R 0.9 C C E R G 5 E I G 0.8 R I T T 0 0.7 1 2 5 10 20 50 100 NORMALIZED TO T A = 25∞C LED TRIGGER WIDTH - PW in(µs) 0.6 -40 -20 0 20 40 60 80 100 o AMBIENT TEMPERATURE - T ( C)
in „Phasenanschnitt- Fehler“ · Mikrocontroller und Digitale Elektronik ·
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MSP430F2xxx_ppt.pdf
installed MSP430 IDEs © 2005 Texas Instruments Inc, Slide 6 All F2xx Have Zero Power BOR Brrwn-out- t • MSP430 BOR is always-on and zero-power © 2005 Texas Instruments Inc, Slide 7 F2xx: ISP Flash Interrupt Vectors • Fast <20us /byte ISP Segment 0 • Interruptible ISP/Erase Segment 1 FLASH (x) 512B •
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LED-Dot.pdf
Forward Current per Dot I AVG 25[3] 25[4] mA F Reverse Voltage per Dot V R 5 5 V Operating Temperature T O –35 to +85 –35 to +85 °C Storage Temperature T –35 to +85 –35 to +85 °C S Soldering Conditions Temperature 260 260 °C (2 mm [0.079 in.] below seating plane) Time 3 3 s Notes: 1. Do not exceed maximum
in „V : Grosse LED Dot-Matrix Anzeigen 5mm Leuchtpunkt DUO !!“ · Markt ·
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AD5415.pdf
maximum clock frequency. SDO timing specifications measured with a load circuit, as shown in Figure 4. t1 SCLK t t t t4 2 3 8 t7 SYNC t 6 5 DIN DB15 DB0 10 t9 1 LDAC t11 LDAC 2 NOTES 1ASYNCHRONOUS LDAC UPDATE MODE 2SYNCHRONOUS LDAC UPDATE MODE 0 - ALTERNATIVELY, DATA CAN BE CLOCKED INTO INPUT SHIFT REGISTER
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main.lst
else 436 MEMMAP_bit.MAP = 2; 437 #endif 438 439 __disable_interrupt(); \ 0000004E ........ _BLF ??DiI_t,??rT??DiI_t 440 //Sicherer Bereich 441 // Init VIC 442 443 VicInit(); \ 00000052 ........ BL VicInit 444 KeysInit(); \ 00000056 ........ BL KeysInit 445 __enable_interrupt(); \ 0000005A ........ _BLF ??EnI_t,??rT??EnI_t 446 447 SpiInit(); \ 0000005E ........ BL SpiInit 448 449 IOSET = (1<<9); \ 00000062 .... LDR R0,??DataTable369 ;; 0xe0028004 \ 00000064 8021 MOV R1,#+128 \ 00000066 8900 LSL R1,R1,#+2 ;;
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DS1337-DS1337C_1_.pdf
Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Timekeeping Current ICCTOSC (Notes 5, 7, 8, 9) 425 600 nA (Oscillator Enabled) Data-Retention Current ICCTDDR (Notes 5, 9) 100 nA (Oscillator Disabled) 2 of 15 DS1337 I C Serial Real-Time Clock AC ELECTRICAL CHARACTERISTICS (VCC = 1.8V to 5.5V, TA=
in „Datum & Uhrzeit AVR“ · Mikrocontroller und Digitale Elektronik ·
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bd139.pdf
Collector Current 1.5 A C ICM Collector Peak Current 3 A IB Base Current 0.5 A P tot Total Dissipation ac T 25 C 12.5 W o P tot Total Dissipation aamb 25 C 1.25 W T stg Storage Temperature -65 to 150 C o Tj Max. Operating Junction Temperature 150 C September 2001 1/4 BD135 / BD139 THERMAL DATA R thj-caseThermal Resistance Junction-case Max 10 oC/W o ELECTRICAL CHARACTERISTICS (T case= 25 C unlessotherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit CBO Collector Cut-off V CB= 30 V 0.1 A Current (E = 0) V CB= 30 V TC= 125 Co 10 A EBO Emitter Cut-off Current
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203493453ADF7020_0.pdf
kHz and to toggle the Tx/Rx bit. Rev. 0 | Page 25 of 44 ADF7020 ID 0 0 F A 19mA TO 22mA 14mA XTAL T 0 3.65mA 2.0mA AFC T10 REG. AGC/ TIME READY WR0 WR1 VCO WR3 WR4 WR6 RSSI CDR RxDATA T1 T2 T3 T4 T5 T6 T7 T8 T9 T11 4 7 TON TOFF 0 Figure37.RxProgrammingSequenceandTimingDiagram Table11.Power-UpSequenceDescription
in „LFCP_VQ löten/belichten?“ · Mikrocontroller und Digitale Elektronik ·
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LT1083_LT1084_LT1085_LT.pdf
Voltage Short-Circut Current Load Regulation ) 2 12 0.10 ( INDICATES GUARANTEED TEST POINT I = 7.5A I ) T –40°C ≤ TJ≤ 150°C A 10 25°C ( 0.05 E T N E 0°C ≤ J ≤ 125°C N 150°C T I R 8 I 0 D U E U C D T 1 U 6 G–0.05 O TJ= 150°C C T T C –55°C O P T = 25°C T 4 T–0.10 I J O U M T J –55°C H IFULL LOAD T U S 2 O–
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Bus_Buffer_P82B96_4_datasheet.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 29 4 Philips Semiconductors
in „I2C EEPROM Störung bei 15m mit BusBuffer P82B96“ · Mikrocontroller und Digitale Elektronik ·
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Bus_Buffer_P82B96_4_datasheet.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 29 4 Philips Semiconductors
in „I2C EEPROM Störung bei 15m mit BusBuffer P82B96“ · Mikrocontroller und Digitale Elektronik ·
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ug_bbmv.pdf
Board Design. Italic type Internal timing parameters and variables are shown in italic type. Examples: t PIA, n + 1. Variable names are enclosed in angle brackets (< >) and shown in italic type. Example: <file name>, <project name>.pof file. Initial Capital Letters Keyboard keys and menu names are shown
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Byte_Blaster_MV.pdf
Female Plug Dimensions Dimensions are shown in inches. The spacing between pin centers is 0.1 inch. 0.425 Typ. Color Strip 1 3 5 7 9 0.250 Typ. 2 4 6 8 10 0.100 Sq. 0.025 Sq. 0.700 Typ. 13 Table 2 identifies the 10-pin female plug’s pin names for the corresponding download mode. o s Table 2. ByteBlasterMV
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ee24xx.lst
108 .global ee24xx_read_bytes 110 ee24xx_read_bytes: 35:ee24xx.c **** nt ee24xx_read_bytes(uint16_t eeaddr, int len, uint8_t *buf) 36:ee24xx.c **** { 37:ee24xx.c **** uint8_t sla, twcr, n; 38:ee24xx.c **** uint16_t temp; 112 .LM5: 113 /* prologue: frame size=0 */ 114 /* prologue end (size=0) */ 115
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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DS1337-DS1337C.pdf
INTA , SQW/ INTB 5.5 Logic 0 V IL -0.3 +0.3 x VCC V DC ELECTRICAL CHARACTERISTICS (V = 1.8V to 5.5V, T = -40°C to +85°C.) (Note 1) CC A PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Input Leakage LI (Note 2) -1 +1 mA I/O Leakage ILO (Note 3) -1 +1 mA Logic 0 Output (VOL = 0.4V) IOL (Note 3) 3 mA Active
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Bus_Buffer_P82B96_4_datasheet.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 29 4 Philips Semiconductors
in „Kondensatoren bei I2C + BusBuffer, wofür?“ · Mikrocontroller und Digitale Elektronik ·
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Bus_Buffer_P82B96_4_datasheet.pdf
I C bI , I = 0.2 mA 670 730 790 mV Sx Sy Sx Sy Á ÁÁÁÁÁÁÁÁÁÁÁÁ(Note 2)ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á Á Á Á Á dV /dT, Temperature coefficient of output LOW I , I = 0.2 mA — –1.8 — mV/K ÁÁÁÁSxÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Sx Sy dVSy/dT levels (Note 2) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2004 Mar 29 4 Philips Semiconductors
in „Kondensatoren bei I2C + BusBuffer, wofür?“ · Mikrocontroller und Digitale Elektronik ·
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Intel_RC28fxxxj3_StrataFlash.pdf
to WE# (CE ) Going High 50 ns 1,2,5 DVWH DVEH X W5 t (t ) Address Setup to WE# (CE ) Going High 55 ns 1,2,5 AVWH AVEH X W6 t (t ) CE (WE#) Hold from WE# (CE ) High 0 ns 1,2, WHEH EHWH X X W7 t (t ) Data Hold from WE# (CE ) High 0 ns 1,2, WHDX EHDX X W8 t (t ) Address Hold from WE# (CE ) High 0 ns 1,2, WHAX EHAX X W9 t Write Pulse Width High 30 ns 1,2,6 WPH W11 tVPWH (VPEH ) VPEN Setup to WE# (CEX) Going High 0 ns 1,2,3 W12 tWHGL (EHGL ) Write Recovery
in „Geschwindigkeit Flash Memory“ · Mikrocontroller und Digitale Elektronik ·
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LM74.pdf
) T A = −10˚C to +65˚C ± 1.25 ±1.25 ˚C (max) T = −25˚C to +110˚C ±2.1 +2.65/−2.15 ˚C (max) A T A = −40˚C to +85˚C +2.65/−1.65 ±2.15 ˚C (max) = T A −40˚C to +110˚C +2.65/ +2.65/−2.15 ˚C (max) −2.0 T A = −55˚C to +125˚C ±3.0 ±3.5 ˚C (max) T A = −55˚C to +150˚C ±5.0 ±5.0 ˚C (max) Resolution 13 Bits Temperature Conversion Time (Note 9) 280 425 425 ms (max) Quiescent Current Serial Bus Inactive 310 520 520 µA (max) Serial Bus Active 310 µA
in „suche I2C Themperatursensor, auf 0,1°C genau“ · Mikrocontroller und Digitale Elektronik ·
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CNY17-2.pdf
s o r Package Dimensions (0.4”Lead Spacing) Recommended Pad Layout for O Surface Mount Leadform p t 0.350 (8.89) (White Package Only) o 0.320 (8.13) c PIN 1 ID o u l 0.260 (6.60) 0.070 (1.78) e 0.240 (6.10) s 0.060 (1.52) 0.070 (1.77) 0.040 (1.02) 0.014 (0.36) N 0.010 (0.25) L 0.425 (10.79) 0.100 (2.54) G T 0.305 (7.75) E 0.115 (2.93) 0.030 (0.76) S 0.100 (2.54) 0.015 (0.38) 0.100 [2.54] 0.012 (0.30) 0.016 (0.41) 0.008 (0.21) 0.425 (10.80) 0.400 (10.16) NOTE All dimensions are in inches (millimeters) 10
in „Optokoppler CNY17“ · Mikrocontroller und Digitale Elektronik ·
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AVR450_BattCharger.pdf
, 2 e r y p n P T c e a n i t d k ht t a c i a sl t g c f p 9 e e i t r s 1 ht o a e h e T in c m th o T 1 C T V 2 N C D D T G V L R R 3 3 N R 3 G F 0 C 1 y 3 p p u 5 r + e D DNG w A 2 o 0 P M n I 6 7 V V U L 5 / 1 u
in „Pb-Akku Ladegerät mit µP Selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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BZX399.pdf
Tables 1 and 2 Tamb = 25 °C prior to surge Ptot total power dissipation Tamb = 25 °C; note 1 − 300 mW T storage temperature −65 +150 °C stg Tj junction temperature − 150 °C Note 1. Device mounted on a FR4 printed circuit-board. ELECTRICAL CHARACTERISTICS Total BZX399-C series Tj= 25 °C unless otherwise
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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HCNR200_Optokoppler.pdf
NOM. LEAD COPLANARITY = 0.10 mm (0.004 INCHES). Maximum Solder Reflow Thermal Profile 260 240 220 T = 145°C, 1°C/SEC T = 115°C, 0.3°C/SEC 200 °180 E160 R140 T A120 E100 M 80 E 60 T = 100°C, 1.5°C/SEC T 40 20 0 0 1 2 3 4 5 6 7 8 9 10 11 12 TIME – MINUTES (NOTE: USE OF NON-CHLORINE ACTIVATED FLUXES IS
in „ADC mit galv. Trennung“ · Mikrocontroller und Digitale Elektronik ·
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HD66773.pdf
A A V 1 2 V ‘ C D V ‘ C V V C CV V C C V g V f V c o o o o T T T T G G - D - V g V V V V V E E E E R R 1 1 1 2 V T T T T V V C C C C Figure 1: HD66773 Block Diagram Description 3 HD66773 Rev. 1.0-1 / October 2002 No.786 T No.743 E P 9 1 3 5 T 3 5 7 7 8 8 8 No.1
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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HD66773.pdf
A A V 1 2 V ‘ C D V ‘ C V V C CV V C C V g V f V c o o o o T T T T G G - D - V g V V V V V E E E E R R 1 1 1 2 V T T T T V V C C C C Figure 1: HD66773 Block Diagram Description 3 HD66773 Rev. 1.0-1 / October 2002 No.786 T No.743 E P 9 1 3 5 T 3 5 7 7 8 8 8 No.1
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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HD66766-10.pdf
pins to Vcc or GND. 87 HD66766 Rev. 1.0 / 30 November 2001 80-system Bus Operation VIH VIH RS VIL VIL tAS tAH VIH CS* VIL Note 1) çPWLW, PWLR çWHW, PWHR WR* VIH VIH VIL VIL RD* tWRr tWRf tCYCW, tCYCR çç tDSW ç tHWR ç DB0 VIH VIH to DB15 VIL Wrire data VIL tDDR ç tDHRçç DB0 VOH1 Read data VOH1 to DB15 VOL1
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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151904-da-01-en-HCNR200_Optokoppler.pdf
NOM. LEAD COPLANARITY = 0.10 mm (0.004 INCHES). Maximum Solder Reflow Thermal Profile 260 240 220 T = 145°C, 1°C/SEC T = 115°C, 0.3°C/SEC 200 °180 E160 R140 T A120 E100 M 80 E 60 T = 100°C, 1.5°C/SEC T 40 20 0 0 1 2 3 4 5 6 7 8 9 10 11 12 TIME – MINUTES (NOTE: USE OF NON-CHLORINE ACTIVATED FLUXES IS
in „analoges Signal galvanische Trennung“ · Mikrocontroller und Digitale Elektronik ·
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SSD1332_R1.61.pdf
Select High Pulse Width (write) 60 - - ns t Rise Time - - 15 ns R F Fall Time - - 15 ns D/C# tAS tAH R/W# E cycle PW CSH PW CSL CS# tR tF t DSW DHW D0~D 7WRITE) Valid Data tACC tDHR D 0D 7READ) Valid Data OH Figure 27 - 6800-series MPU parallel
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
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Ethernet_Hub_LXT914PE.pdf
E L L L L L E T I C 1 2 3 4 5 L O U N P P P P P A P A B T T T T T T O O O T T M T O N O O R P T T B T E T G N G B O D K R K D D L I T I L L S B A B S D E E E E E E I C 1 2 3 4 5 U N P P P P P A B T T T T T 23 ▯▯ LXT914
in „Ethernet Transceiver und Hub auf einer Platine verbinden“ · Mikrocontroller und Digitale Elektronik ·
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MOC304_MOT.pdf
current, then WETTED X100 removingthecurrent.ThevariableR allowsthedv/dttobe SCOPE TEST RELAY D.U.T. PROBE gradually increased until the D.U.T. continues to trigger in response to the applied voltage pulse, even after the LED current has been removed. The dv/dt is then decreased until the D.U.T. stops
in „Solid state Relais“ · Mikrocontroller und Digitale Elektronik ·
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2n6075.pdf
I t 3.7 A s (t = 8.3 ms) PIN ASSIGNMENT *Peak Gate Power P GM 10 Watts 1 Main Terminal 1 (Pulse Width 1.0 sC T = 85⋅C) 2 Main Terminal 2 *Average Gate Power P G(AV) 0.5 Watt (t = 8.3 msC T = 85⋅C) 3 Gate
in „Probleme mit Triac bzw. Entstörung“ · Mikrocontroller und Digitale Elektronik ·
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KM62256C.pdf
, WE=V IH) tRC Address tAA OH Data Out Previous Data Valid Data Valid TIMING WAVEFORM OF READ CYCLE(2) (WE=V I) tRC Address tOH AA tCO CS tHZ OE OE OLZ tOHZ tLZ Data ou t High-Z Data Valid NOTES (READ CYCLE) 1.tHZ
in „billig RAM's abzugeben“ · Markt ·
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13_FAI_H11L2M_01.pdf
Current vs. Supply Temperature Figure 5. Output Voltage, Low vs. Load Current E 1.6 2 L A M 1.4 O N ) T 1.2 ( 1 N W 0.9 E O 0.8 R 1.0 , 0.7 U E 0.6 C G L 0.8 T 0.5 O NORMALIZED TO : O H VCC = oV V 0.4 E TA= 25 C T R 0.6 P 0.3 T T -) U O 0.4 - IF O 0.2 ,) V I = I ( 0.2 F F(ON) IF -50 -25 0 25 50 75 100
in „Logic-Level-MOSFET über Optokoppler???“ · Analoge Elektronik und Schaltungstechnik ·
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energymeter.pdf
device to produce useful work. Measurement Mathematically it is the definite integral of voltage, u(t), times current, i(t), as follows: Equation 12. Active Power Definition. 1 T P ≡ ∫ u t ×i t dt ≡ U×I×cos ϕ ( ) T O Here U and I are the respective voltage and current Root-Mean-Square (RMS) values and
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
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4N25.pdf
Collector-Emitter SaturationVoltage vs Collector Current (Black Package) (White Package) ) ) (100 ( E E 100 G G T T L O T = 25˚C V V A N 10 N 10 I I T A R R U T A 1 A 1 S S R I = 2.5 mA E I = 2.5 mA T F T F I I M 0.1 E 0.1 - - R O T T C IF= 20 mA E L0.01 F = 10 mA L 0.01 F = 20 mA L F = 5 mA O C C IF= 5 mA ) ) IF
in „optocoupler beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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13_FAI_H11L2M_01.pdf
Current vs. Supply Temperature Figure 5. Output Voltage, Low vs. Load Current E 1.6 2 L A M 1.4 O N ) T 1.2 ( 1 N W 0.9 E O 0.8 R 1.0 , 0.7 U E 0.6 C G L 0.8 T 0.5 O NORMALIZED TO : O H VCC = oV V 0.4 E TA= 25 C T R 0.6 P 0.3 T T -) U O 0.4 - IF O 0.2 ,) V I = I ( 0.2 F F(ON) IF -50 -25 0 25 50 75 100
in „24VDC per Optokoppler an µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3022-M.pdf
PulseWidth 1.4 25 ) D ) 1.3 Z D L 20 NORMALIZED TO: Z A PWin≥ 100 µs L 1.2 M A O R ( O 1.1 F15 ( - F T - N T 1.0 R 10 N R R U R 0.9 C C E R G 5 E I G 0.8 R I T T 0 0.7 1 2 5 10 20 50 100 NORMALIZED TO T A = 25∞C LED TRIGGER WIDTH - PW in(µs) 0.6 -40 -20 0 20 40 60 80 100 o AMBIENT TEMPERATURE - T ( C)
in „Problem beim dimmen von NV-Halogenspots“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTC.pdf
−15 7.425 3.10 5.61 349.0 −10 5.630 2.67 5.45 264.6 −5 4.304 2.24 5.29 202.3 0 3.315 1.84 5.14 155.8 5 2.573 1.44 4.99 120.9 10 2.011 1.07 4.85 94.53 15 1.583 0.70 4.72 74.40 20 1.254 0.34 4.59 58.95 25 1.000
in „NTC berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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MOC_3043_MOT.pdf
current, then WETTED X100 removingthecurrent.ThevariableR allowsthedv/dttobe SCOPE TEST RELAY D.U.T. PROBE gradually increased until the D.U.T. continues to trigger in response to the applied voltage pulse, even after the LED current has been removed. The dv/dt is then decreased until the D.U.T. stops
in „Leistungslos schalten mit Nulldurchgang Erkennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3022-M.pdf
PulseWidth 1.4 25 ) D ) 1.3 Z D L 20 NORMALIZED TO: Z A PWin≥ 100 µs L 1.2 M A O R ( O 1.1 F15 ( - F T - N T 1.0 R 10 N R R U R 0.9 C C E R G 5 E I G 0.8 R I T T 0 0.7 1 2 5 10 20 50 100 NORMALIZED TO T A = 25∞C LED TRIGGER WIDTH - PW in(µs) 0.6 -40 -20 0 20 40 60 80 100 o AMBIENT TEMPERATURE - T ( C)
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volt230.pdf
device to produce useful work. Measurement Mathematically it is the definite integral of voltage, u(t), times current, i(t), as follows: Equation 12. Active Power Definition. 1 T P ≡ ∫ u t ×i t dt ≡ U×I×cos ϕ ( ) T O Here U and I are the respective voltage and current Root-Mean-Square (RMS) values and
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
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Powermeter.pdf
device to produce useful work. Measurement Mathematically it is the definite integral of voltage, u(t), times current, i(t), as follows: Equation 12. Active Power Definition. 1 T P ≡ ∫ u t ×i t dt ≡ U×I×cos ϕ ( ) T O Here U and I are the respective voltage and current Root-Mean-Square (RMS) values and
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
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AN255_I2C__SMBus_REPEATERS_HUBS_AND_EXPANDERS.pdf
Tube PCA9515D PCA9516D PCA9518D P82B715TD P82B96TD SO T & R PCA9515D-T PCA9516D-T PCA9518D-T P82B715TD-T P82B96TD-T TSSOP Tube - PCA9516PW PCA9518PW - P82B96DP T & R PCA9515DP-T PCA9516PW-T PCA9518PW-T - P82B96DP-T Table 1. Ordering Information Data Sheets
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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LM2585.pdf
DS012515-12 DS012515-13 Connection Diagrams Bent, Staggered Leads Bent, Staggered Leads 5-Lead TO-220 (T) 5-Lead TO-220 (T) Top View Side View DS012515-14 DS012515-15 Order Number LM2585T-3.3, LM2585T-5.0, LM2585T-12 or LM2585T-ADJ See NS Package Number T05D 5-Lead TO-263 (S) 5-Lead TO-263 (S) Top View
in „12V + 12V = 24V ?“ · Mikrocontroller und Digitale Elektronik ·
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PDFresult.pdf
of MR1 can be used to make Timer 1 stop or start counting. In a case where Timer 1 clock input is F T : Desired Timer 1 interval = (preset value +1) / F T Desired frequency for MFP outpu t pin = F T÷ (preset value + 1) ÷ 2 (Hz) Preset value: Decimal number of Timer 1 preset value F OSC : Clock oscillation
in „Pocket Comm One µC“ · Mikrocontroller und Digitale Elektronik ·