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MAX603-MAX604.pdf
MAX60_C 2.7 11.5 Input Voltage VIN SET = OUT, RL = 1kΩ MAX60_E 2.9 11.5 V MAX60_M 3.0 11.5 IOUT = 20µA to 500mA, 6.0V < V < 11.5V MAX603 4.75 5.00 5.25 Output Voltage (Note 2) VOUT IN V IOUT = 20µA to 300mA, 4.3V < VIN< 11.5V MAX604 3.15 3.30 3.45 MAX603C/E 60 100 Load Regulation ∆VLDR IOUT = 1mA to
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Common_Base_Transformer_Feedback_Norton_Amplifiers.pdf
amplifiers using 2N5109 bipolar junction transistors (BJTs). These kinds of amplifiers, known as common base transformer feedback (CBTF) amplifiers, and also known as common base noiseless feedback amplifiers, if properly designed and used, offer MW DXers (and SW DXers, though their needs are not as extreme
in „Preamp / Vorverstärker für 0,3 - 150 MHz“ · HF, Funk und Felder ·
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PDF
scall8.pdf
WPA2™ WPS-Version Version 2.0 ∫ANSCHLUSS-TEIL AUX Buchse Stereo, ‰3,5 mm -Buchse LAN-Anschluss 10 Base-T/100 Base-TX - 34 - ∫Unterstützte Audio-Formate (AllPlay) MP3/AAC Abtastfrequenz 32/44,1/48 kHz Audio-Wortlänge 16 bit Anzahl Kanäle 2 ch Bit-Rate 8-320 kbps FLAC/ALAC Abtastfrequenz 32/44,1/48/88,2
in „Wlan Lautsprecher“ · Platinen ·
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IOWA-LX-600_UMN_v1.00.pdf
options are: None 360K, 5.25 in. 1.2M, 5.25 in. 720K, 3.5 in. 1.44M, 3.5in (Default) 2.88M, 3.5 in. Base Memory: The Base Memory is NOT user configurable. The POST determines the amount of base (or conventional) memory installed in the system. The value of the base memory is typically 512K for systems
in „DOS mit aktueller Technik / RAM“ · PC Hard- und Software ·
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PDF
MagJack_BM00801.pdf
INTEGRATED CONNECTOR MODULES 10/100Base-TX belMag™ with LEDs BM00801 • Single port shielded RJ-45 connector with integrated • Complies with IEEE standards and all 10/100 Ethernet 10/100 magnetics specifications including 350µH with 8mA DC
in „eagle-lbr für Bel 0810-1xx1-03 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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BelFuse_MagJack_BM00801.pdf
INTEGRATED CONNECTOR MODULES 10/100Base-TX belMag™ with LEDs BM00801 • Single port shielded RJ-45 connector with integrated • Complies with IEEE standards and all 10/100 Ethernet 10/100 magnetics specifications including 350µH with 8mA DC
in „Pinbelegung enc28j60 und Belfuse Magjack“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RJPLB203TC1.pdf
NUMBER:RD-SDRJPLB-203TC1 DATE : 2008/02/04 R(REV:A4) Single 10/100 BASE-TX Filtered Connector Integrated LED (PoE ) MODEL NO. : RJPLB-203TC1 Features: ◎ RoHS Compliant ◎ Fully shielded magnetics protect data from internally generated digital noise ◎ Reduces the overall
in „Suche Quelle für 10/100 Base-TX POE-Ethernet RJ45-Buchse mit Übertragern und Gleichrichtern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-0500.pdf
Widebody 40 Average Output Current* (Pin 6) I 8 mA O(AVG) Peak Output Current* O(PEAK) 16 mA Emitter-Base Reverse Voltage* VEBR 5 V (Pin 5-7, except 4502/3, 0452/3) Supply Voltage (Pin 8-5) VCC -0.5 30 V Output Voltage (Pin 6-5) V -0.5 20 V O Supply Voltage* (Pin 8-5) VCC -0.5 15 V Output Voltage* (Pin
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15121.pdf
Widebody 40 Average Output Current* (Pin 6) I 8 mA O(AVG) Peak Output Current* O(PEAK) 16 mA Emitter-Base Reverse Voltage* VEBR 5 V (Pin 5-7, except 4502/3, 0452/3) Supply Voltage (Pin 8-5) VCC -0.5 30 V Output Voltage (Pin 6-5) V -0.5 20 V O Supply Voltage* (Pin 8-5) VCC -0.5 15 V Output Voltage* (Pin
in „Optokoppler HCPL 4504/4503/4502“ · Mikrocontroller und Digitale Elektronik ·
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PDF
704013.pdf
50 Hz, distance à l'objet 1200 mm, niveau de gris (rémission de 18 %) Répétabilité selon le tableau 20 mm x facteur 1,5 = 30 mm → Point de consigne bas 1200 mm + (30 mm / 2) = 1215 mm → Point de consigne haut 1200 mm - (30 mm / 2) = 1185mm Le point de consigne bas est toujours supérieur au point de consigne
in „Efector Pmd, Datenblatt??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RP6Base_I2CSlave.c
here: #define RP6BASE_I2C_SLAVE_ADR 10 /*****************************************************************************/ // This bitfield contains the main interrupt event status bits. This can be // read out and any Master
in „PIC < > AVR (mit IIC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS8863MLL_FLL_RLL_DEMO_BOARD_V1.pdf
Duplex JP202 Pull Up = Full Duplex Pull Down = Half Duplex Force Speed Force Speed JP103 Pull Up = 100BaseTX Pull Down = 10BaseT JP203 Pull Up = 100BaseTX Pull Down = 10BaseT Auto-negotiation Auto-negotiation JP104 A Pull Up = ENABLE JP204 Pull Up = ENABLE A Pull Down = DISABLE Pull Down = DISABLE(default
in „KSZ8863RLL Paketverlust“ · Mikrocontroller und Digitale Elektronik ·
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Datei
singen-release.c
(active low) #define PIN_DAC_L {1 << 10, AT91C_BASE_PIOA, AT91C_ID_PIOA, PIO_OUTPUT_1, PIO_DEFAULT} static const Pin pPinsDac[]={PINS_SPI0, PIN_SPI0_NPCS0, PIN_DAC_L}; static void ConfigurePio() { PIO_Configure(pPinsDac, PIO_LISTSIZE(pPinsDac)); PIO_Configure
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e2928_a8v-vm_se.pdf
on top of the installed CPU, making sure that the heatsink fits properly on the retention module base. • The retention module base is already installed on the motherboard upon purchase. • You do not have to remove the retention module base when installing the CPU or installing other motherboard components
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
Noteortestcondition Min. Typ. Max. Transition frequency T 31 42 – GHz VCE= 3V,CI =70mA, f= 1GHz Collector base capacitance CCB – 0.26 0.4 pF VCB= 3V, BE=0, f=1MHz, emittergrounded Collector emitter capacitance CCE 0.45 – VCE= 3V, BE=0, f=1 MHz, basegrounded Emitter base capacitance CEB 1.3 VEB= 0.5 V,CB= 0,
in „keysight ads bjt transistor (Bipolartransistor) Parameter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
Noteortestcondition Min. Typ. Max. Transition frequency T 31 42 – GHz VCE= 3V,CI =70mA, f= 1GHz Collector base capacitance CCB – 0.26 0.4 pF VCB= 3V, BE=0, f=1MHz, emittergrounded Collector emitter capacitance CCE 0.45 – VCE= 3V, BE=0, f=1 MHz, basegrounded Emitter base capacitance CEB 1.3 VEB= 0.5 V,CB= 0,
in „Clapp Oszillator mit oder ohne Bandpassfilter“ · HF, Funk und Felder ·
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PDF
bom-v1-0.pdf
should do it too B 140 F 0,08 € 0,08 € D12 1TS 4148-0805, Diode, 75V, 0.15A TS 4148-0805 0,03 € 0,03 € D20, D21, D62, D63, D64 5BAT54C, Dual schottky, 30V, 0.2A, common cathode BAT 54C NXP 0,04 € 0,20 € D22 1TS 431 BCX, 2.45V 0.5% regulator TS 431 BCX 0,25 € 0,25 € D23, D24, D90, D91, D92, D93 6BAS32, Schottky
in „Universalplatine für STM32, grobe Fehler vor der Herstellung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-9010.PDF
Easy to Drive If the VDS rate of increase is large in the high speed To maintain the on−state, a base drive current 1/5th or turn−off state, there is a voltage drop between the base and 1/10th of collector current is required for the the emitter, which causes the BJT to turn on. This is current−controlled
in „SMD Mosfet mit Z-Diode für induktive Last“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
pt1000_rp2040.ino
Spannungsteilers verwendet. Mit steigender Temperatur erhoeht sich der PT1000 Widerstand im Bereich -20 bis +100 Grad C mit hier hinreichender Genauigkeit um den Faktor 0,00385. Die beiden Messungen dauern ca. 14 µs, was bei 5 Messungen/s eine Einschaltzeit von 70 µs/s ergibt. Durch dieses kleine Tastverhaeltnis
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Datei
tools_LC_Meter.c
of pulses */ /* frequencies */ uint32_t LC_Freq; /* measured frequency (in Hz) */ uint32_t f_i; /* base frequency (in Hz) */ uint32_t f_x; /* frequency with C_x/L_x (in Hz) */ /* capacitances */ uint32_t C_i; /* C_i (in 0.1 pF) */ #endif /* *************************************************************
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Datei
tools_LC_Meter.c
CALC_CX 1 /* calculate C_x */ /* math */ #define PI 3.14159265358979323846 /* pi */ /* limits for f_i (base frequency, around 595 kHz) */ #define FI_MIN 550000 /* 550 kHz */ #define FI_MAX 650000 /* 650 kHz */ /* limits for f_p (frequency with C_p, around 423 kHz) */ #define FP_MIN 400000 /* 400 kHz */ #define
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T100_Scaler.pdf
02h 10h Character Delay_2 03h 08h Character Delay_3 04h 09h Character Font Size 05h 50h Char_RAM Base Address 06h 00h Character Border / Shadow Control 07h 00h Character Border / Shadow Color 08h 20h Character Height Scaling 09h 0Ah Blinking Control 0Ah 00h Bit_Map Window Size : Width/Height Upper Bits
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Datei
Sound.asm
Flag .def Tonh =r18 ; Tonhöhe .def SndEnable =r19; Flag, ob Soundausgabe oder nicht .def TmWait =r20; Wartezeit .def tp2 =r21 .def tp3 =r22 ; ---- Definition der BasisZeit ----- .equ BaseTime = 24 ;***** Interruptvektoren rjmp RESET rjmp NIX ; IRQ0 Handler nicht freigegeben rjmp NIX ; Pin Change Handler
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Datei
at89c51snd1c.h
*/ #define MSK_VOL 0x1F /* MP3VOR bits */ #define MSK_VOR 0x1F /* MP3BAS bits */ #define MSK_BAS 0x1F /* MP3MED bits */ #define MSK_MED 0x1F /* MP3TRE bits */ #define MSK_TRE 0x1F /* MP3CLK bits */ #define MSK_MPCD 0x1F /* MP3DBG bits */ #define MSK_MPFULL 0x08 /* AUDCON0
in „Suche Compiler/IDE für AT89C51AC3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F4-BASE.pdf
1 2 3 4 5 6 29.02.2012 17:56:40 C:\Users\SuperK\13-Eagle\1-Projekte\STM32F407Vx_Baseboard\STM32F4-BASE.sch (Sheet: 3/5) 1 2 3 4 5 6 A A B B C C D D 1 2 3 4 5 6 29.02.2012 17:56:40 C:\Users\SuperK\13-Eagle\1-Projekte\STM32F407Vx_Baseboard\STM32F4-BASE.sch (Sheet: 4/5) 1 2 3 4 5 6 B . 7 B 1 / / 1 B S X
in „STM32F407 (100pin) Basisboard - Review bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN593.pdf
CC V Pout= 160 W PEP VCC = 28 V P = 160 W PEP out W 4 P – 20 V P T W P 0 I 3 1 =t o 2 T – 30 D I 1 2 5 10 20 50 FREQUENCY(MHz) – 40 2 5 10 20 50 Figure 11. VSWR versus Frequency FREQUENCY(MHz) AN 80 WATT (PEP) 12.5 – 13.6 V AMPLIFIER Figure 8. IMD versus Frequency
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
AN593_BroadbandAmp.pdf
CC V Pout= 160 W PEP VCC = 28 V P = 160 W PEP out W 4 P – 20 V P T W P 0 I 3 1 =t o 2 T – 30 D I 1 2 5 10 20 50 FREQUENCY(MHz) – 40 2 5 10 20 50 Figure 11. VSWR versus Frequency FREQUENCY(MHz) AN 80 WATT (PEP) 12.5 – 13.6 V AMPLIFIER Figure 8. IMD versus Frequency
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PDF
2009171807_XINLUDA-XH2596-ADJ_C609783.pdf
Output Ripple Voltage, 50 mV/div. Figure 15. Figure 16. Horizontal Time Base: 2 μs/div. Discontinuous Mode Switching Waveforms Load Transient Response for Continuous Mode VIN= 20V, VOUT = 5V, LOAD = 500 mA VIN= 20V, VOUT = 5V, LOAD= 500 mA to 2A L = 10 μH, OUT = 330 μF, COUT
in „SMD Spule 470 Aufdruck“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TransistorTester_eng_095k.pdf
acceptable if measured by this way. In this kind of connection there is low risk to overload the base, even if the base is supplied with the 680Ω resistor. In case of Darlington transistor the voltage over the base resistor is too little, so this measurement is done also with the 470kΩ base resistor
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PDF
HarmanKardon-SUBTS18_actsub.pdf
-e ELECTROLYTIC CAP. 22U 50V ±20% (RoHS) 1 C225 135-3475m16-e ELECTROLYTIC CAP.4.7U 16V ±20% (RoHS) 1 C233 135-3107m50-e ELECTROLYTIC CAP. 100U 50V ±20% (RoHS) 1 C301 135-3227m50-e ELECTROLYTIC CAP. 220uF 50V ±20% (RoHS) 1 C300 Semiconductors
in „[gelöst] Wer kennt diese Bauteile (Feldeffekttransistor)?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3193_datasheet.pdf
≥ 2kΩ,▯A ▯=▯+1 SR - 0.25 - - 0.25 - V/µs L V Gain-Bandwidth▯Product AOL ▯=▯0dB,▯L ▯=▯2kΩ,▯ ▯T - 1.20 - - 1.20 - MHz C ▯=▯100pF,▯V ▯=▯20mV ,▯ L IN P-P f▯=▯1kHz Rise▯and▯Fall▯Time VIN▯=▯20mV P-P,▯f▯=▯1kHz R - 0.29 - - 0.29 - µs Supply▯Current R ▯=▯∞,▯V ▯=▯±15V I+ - 2.3 3.5 - 2.3 3.5 mA L S Test▯Circuits
in „OP Temperatursteuerung von 1984 verstehen und Reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA5144.pdf
20 27 and 28 ground (0 V) motor supply return for output stages June 1994 4 Philips Semiconductors Product specification Brushless DC motor drive circuit TDA5144 Fig.2 Pin configuration (SOT163-1; SO20L)
in „BLDC Motor Treiber Geschwindihkeitsregelung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
plugin.xml
version="3.3"?> <plugin> <extension point="org.eclipse.core.runtime.contentTypes"> <content-type base-type="fujitsuF2MC16.contenttype.hex" id="org.eclipse.cdt.fujitsuF2MC16.contenttype.hex" name="FLASH Hex-File" priority="high" /> <content-type base-type="fujitsuF2MC16.contenttype.mhx" id="org.eclipse.cdt.fujitsuF2MC16
in „Eclipse Plugin für Fujitsu 16bit µcs“ · Projekte & Code ·
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Datei
usb_vcp.c
uint32_t *)(USB_BASE + 0x04)) #define USB_EP2R (*(volatile uint32_t *)(USB_BASE + 0x08)) #define USB_EP3R (*(volatile uint32_t *)(USB_BASE + 0x0C)) #define USB_EP4R (*(volatile uint32_t *)(USB_BASE + 0x10)) #define USB_EP5R
in „STM32 USB Übertragungsproblem mit Code von S.F.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s202se2_e.pdf
Surge Current vs. Power-on Cycle Fig.6 Maximum ON-state Power Dissipation vs. RMS ON-state Current 20 100 f=60Hz ) T a25˚C Tj=25˚C Start ( 18 n 80 t 16 i A i 14 (g d s 60 e 12 t o e e 10 u t e 40 - 8 r N S O 6 u 20 i 4 a M 2 0 0 1 10 100 0 2 4 6 8 10 12 Power-on cycle (Times) RMS ON-state currentTI (
in „Solid State Relais an 3,3 Volt PIC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Pcm4823.pdf
..........................19 2.13 Ethernet interface connections ................................ 20 2.13.1 10Base-T RJ-45 connector (CN10) .........................20 2.14 Ethernet LED and HDD/power LEDs .................... 20 2.14.1 LED1 (Ethernet LED)..............................................20 2.14.2 LED2 (Power and HDD LED)................................20 2.15 Watchdog timer configuration .................................. 21 2.15.1 Watchdog timer action (J8)............................
in „Hitachi SP10Q003 // SP10Q005 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pcm4823.pdf
..........................19 2.13 Ethernet interface connections ................................ 20 2.13.1 10Base-T RJ-45 connector (CN10) .........................20 2.14 Ethernet LED and HDD/power LEDs .................... 20 2.14.1 LED1 (Ethernet LED)..............................................20 2.14.2 LED2 (Power and HDD LED)................................20 2.15 Watchdog timer configuration .................................. 21 2.15.1 Watchdog timer action (J8)............................
in „Astec LPT42 Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vn820-e.pdf
temperature 135 °C Thyst Thermal hysteresis 7 15 °C Status delay in overload SDL condition Tj> Tjsh 20 ms 9 V < VCC < 36 V 9 13 20 A Ilim Current limitation 5.5 V < VCC < 36 V 20 A Turn-off output clamp IOUT = 3 A; V demag V IN= 0V; VCC - 41 VCC - 48 VCC - 55 V voltage L = 6 mH 1. To ensure long term
in „P2PAK in Eagle“ · Platinen ·
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PDF
Benezan_Breakout3.pdf
oder 17 des LPT-Ports ausgegeben. Dabei entspricht 0% (low) einer Spannung von 0V, 10% entspricht 1V, 20% 2V usw. bis 100% und 10V. Die Frequenz des PWM-Signals (PWM base frequency) sollte mindestens 45Hz betragen, damit die Welligkeit des Analogsignals nicht zu gross ist. Dies ermöglicht bei Mach3 eine
in „Leadshine M542 - Geräusche bei Stillstand der Motoren“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Wohnraumuhr1_Rev1.1.pdf
OVERALL ASSEMBLY DIMENSIONS: M3 SCREW A EXTERNAL - 220 x 145 x 50 LID A INTERNAL - 215 x 140 x 43.5 BASE 135.20 135.20 25 SECTION B-B 22.80 125 ISO VIEW 1:5 1.80 TYP A 122.50 14x 2 C 1 4x M3 INSERT 30.81 30.81 2.51 2 89 RECESS DEPTH B B B B 44 28.31 42 37.80 210.20 190.50 220 143.80 94 22.80 195 220 94 153.80 200 21.50 37.80 C C 44 28.31 42 1.80 TYP LID A SECTION A-A 145 C BASE 89 SECTION C-C 122.50 125 UNLESS OTHERWISE SPECIFIED: DO NOT SCALE DRAWING REVISION. A DIMENSIONS ARE IN MILLIMETERS D TITLE: 145 GENERAL TOLERANCES +/- 0.2 7000 SERIES DESIGNER CASES SIZE FINISH. LIGHT
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DATA_Sheet_TINY_Tiger_Module_V002_en.pdf
pins 0.64 x 0.64 mm / 0.025 x 0.025“ i w Weight: approx. 28g / 1 ounce n w Operating temperature: -20°C to +80°C w Power supply: 4.6V - 5.5V / 45-60 mA typ. h w System timebase accuracy: +/-50 ppm base tolerance, c +/-30 ppm over temp. range -20°C to +70°C +/-5 ppm per year max. aging e Other specifications
in „geeigneter Transistor zur Schrittmotor/Treiberansteuerung über Puls/Richtungssignal mit MC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UM0223.pdf
to evalu- ate and begin development with the ePIR Motion Detection Zdots SBC. The kit includes a base board into which the ePIR Motion Detection Zdots SBC is plugged and a prototyping area that enables you to add your own custom application hardware. The ePIR Motion Detection Zdots SBC is a complete
in „Bewegungsmelder Zilog ePIR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s101s06v_e.pdf
j ■ Electro-optical Characteristics (Ta=25˚C) Parameter Symbol Conditions MIN. TYP. MAX. Unit V I =20mA − 1.2 1.4 V Input Forward voltage F F Reverse current IR VR=3V − − 100 µA V =V Repetitive peak OFF-state current IDRM D DRM − − 100 µA ON-state voltage V Trms) T (rms)=1.5A, Resistance loFd, I =20mA
in „Netztrafo, SSR und Zerocrossing, kann das funktionieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
d71-600.pdf
or in any future correspondence relating to your order. D71-600- - 0 polarity code: N –cathode on base, R –anode on base base voltage class (hundreds of volts) ELECTRICAL PARAMETERS Voltage ratings URRM URSM IRRM Voltage class V V mA 04 400 500 06 600 700 08 800 900 50 10 1000 1100 12 1200 1300 Zakłady
in „Diode für 175 Ampere“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Agilent_ADNS-2051_-_153206449.pdf
Recommended PCB mechanical cutouts and spacing (top view). the surface at the optimum angle.f z the sensor, base plate, and clip TOP VIEW with the LED. The lens also has a d (1.744) long creepage path for any ESDa of the base plate (see Figure 4). - +x (0.752) LED in relation to the lens. The c clip and the LED’s leads formed +y BASE PLATE clip interlocks the sensor to the y ESD LENS RING lens, and through the lens to the plate.ent features on the base . SIDE VIEW The HLMP-ED80 LED is recom- PLASTIC SPRING CLIP with the bin table
in „USB Maus mit USART auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3GW_22048_1_2009.05.20.09.50.48_14403_EN.pdf
per set of 8 channels Threshold Selections TTL, CMOS, ECL, PECL, User Defined (all channels) Time-base Range (s/div) 4 ns to 100 s 2 ns to 100 s User-defined Threshold ±20 V Time-base Delay Time -10 divisions to 5000 s Range Range Maximum Input Voltage ±40 V Channel-to-Channel ±100 ns Threshold Accuracy
in „Tektronix DPO 2012“ · Markt ·
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PDF
3GW_22048_1_2009.05.20.09.50.48_14403_EN.pdf
per set of 8 channels Threshold Selections TTL, CMOS, ECL, PECL, User Defined (all channels) Time-base Range (s/div) 4 ns to 100 s 2 ns to 100 s User-defined Threshold ±20 V Time-base Delay Time -10 divisions to 5000 s Range Range Maximum Input Voltage ±40 V Channel-to-Channel ±100 ns Threshold Accuracy
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Datei
beispiel.html
SIOV-S14K510 | SIOV-S14K550 | SIOV-S14K60 | SIOV-S14K625 | SIOV-S14K680 | SIOV-S14K75 | SIOV-S14K95 | SIOV-S20K10001 | SIOV-S20K11 | SIOV-S20K115 | SIOV-S20K130 | SIOV-S20K14 | SIOV-S20K140 | SIOV-S20K150 | SIOV-S20K17 | SIOV-S20K175 | SIOV-S20K20 | SIOV-S20K230 | SIOV-S20K25 | SIOV-S20K250 | SIOV-S20K275 | SIOV-S20K30 | SIOV-S20K300 | SIOV-S20K320 | SIOV-S20K35 | SIOV-S20K385 | SIOV-S20K40 | SIOV-S20K420 | SIOV-S20K440 | SIOV-S20K460 | SIOV-S20K50 | SIOV-S20K510 | SIOV-S20K550 | SIOV-S20K60 | SIOV-S20K625 | SIOV-S20K680 | SIOV-S20K75
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
C-4001SR-5.pdf
Forward Voltage , Per Segment(DP)IF= 40mA 9.0(1.8) 11.0(2.2V IR Reverse Current , Per Segment(DP)RV=20 (10)V 100 mA lP Peak Emission Wavelength IF= 20mA 660 nm lD Dominant Wavelength IF= 20mA 643 nm Δl Spectral Line Half-Width IF=20mA 20 nm IV Luminous Intensity Per Segment IF= 20mA 20.0 50.0 mcd DRAWING
in „Frage zu 7 Segent Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
solidstate.pdf
CA L SPECI FI CA TI O N S Weight: (typical) 0.7 oz. (20g) Encapsulation: Thermally Conductive Epoxy BOTTOM VIEW CURRENT DERATING CURVES 1 draft top to base 4.0 1.00 S3.0 (25.4) .025 M (.64) ( N LOAD CONTROL R2.0 MP240D4 U .25 TYP. (6.35) 1 2 3 4 D MP120D3 O MP240D3 .20 .16 L MPDCD3 (5.1) (4.1) 1.0 .70 .40 .040 (1.0) DIA. (17.8) (10.2) (4 PLACES) 1.10 .30 (27.9) (7.6) AC Output 0 1.70 PIN 1: AC LOAD 20 40 60 80 (43.1) PIN 2: AC LOAD AMBIENT TEMPERATURE (C) PIN 3: +DC
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·