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Datei
Raspi_temp_Sender.ino
Chantrell http://nathan.chantrell.net // Updated by Martin Harizanov (harizanov.com) to work with DS18B20 // To use with DS18B20 instead of TMP36, a 4K7 resistor is needed between the Digital 9 and Digital 10 of the ATTiny (Vdd and DQ) // To get this to compile follow carefully the discussion here:
in „RFM 12B SP Rev.1 mit 5V oder nicht ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top200yai.pdf
on and charges the external inversely proportional to the current voltage,V withathresholdvoltage. DS(ON), capacitance again. Charging current is flowing into the CONTROL pin. The High drain current causes V DS(ON)to shown with a negative polarity and error signal across E is filtered by an exceed the
in „Reparatur Ladegerät DBL430-14 Überspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2sk955.pdf
Breakdown Voltage V I = 1mA, V = 0 900 – – V (BR)DSS D GS Zero–Gate Voltage Drain Current DSS V GS= 0, DS = Max Rating – – 1.0 mA Gate–Source Leakage Current IGSS V DS= 0, GS = ±30V – – ±100 nA Cutoff Voltage V GS(off) DS= 10V, D = 1mA 2 – 3 V Static Drain–Source On ResistancR DS(on)V GS= 10V, D = 4A – 1.2
in „N-MOSFET defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irf540n.pdf
––– ––– 44 mΩ VGS = 10V,DI = 16A▯R V Gate Threshold Voltage 2.0 ––– 4.0 V V = V , I = 250µA GS(th) DS GS D gfs Forward Transconductance 21 ––– ––– S VDS = 50V,DI = 16AR ––– ––– 25 V = 100V, V = 0V DSS Drain-to-Source Leakage Current µA DS GS ––– ––– 250 VDS = 80V, GS = 0V, J = 150°C Gate-to-Source Forward
in „Mosfet vor negativer Spannung / Wechselspannung schützen“ · Mikrocontroller und Digitale Elektronik ·
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IRF7416_datasheet.pdf
20V GS Q g Total Gate Charge ––– 61 92 ID= -5.6A Q Gate-to-Source Charge ––– 8.0 12 nC V = -24V gs DS Q gd Gate-to-Drain ("Miller") Charge ––– 22 32 VGS = -10V, See Fig. 6 and 9 td(on) Turn-On Delay Time ––– 18 ––– VDD = -15V tr Rise Time ––– 49 ––– ID= -5.6A ns td(off) Turn-Off Delay Time ––– 59 –––
in „Datenblatt / Prinzip richtig verstanden?“ · Mikrocontroller und Digitale Elektronik ·
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625945.pdf
Type (π-MOSVI) 2SK3569 Switching Regulator Applications Unit: mm • Low drain-source ON resistance: R DS (ON) = 0.54Ω (typ.) • High forward transfer admittance: |Y fs = 8.5S (typ.) • Low leakage current: IDSS = 100 μA (V DS = 600 V) • Enhancement mode: V th= 2.0~4.0 V (VDS = 10 V, D = 1 mA) www.DataSheet4U.com
in „Bauteilbestimmung H32 U3J“ · Mikrocontroller und Digitale Elektronik ·
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IRLIZ44N_IR.pdf
Temperature IRLIZ44NPbF 15 2800 V = 0V, f = 1MHz ID = 25A CGS = C + C , C SHORTED ▯V = 44V Ciss = Cgs gd ds ) DS 2400 rss gd ( ▯VDS = 28V C▯iss Coss = Cds + Cgd e 12 ) t F 2000 o ( V c e 9 n 1600 r i o a C▯oss - p 1200 - C t 6 , a C 800 , S C▯rss G 3 400 V FOR TEST CIRCUIT SEE FIGURE 13 0 A 0 A 1 10 100 0
in „Toggle Schaltung mit NE555 schaltet ein, aber nicht aus“ · Analoge Elektronik und Schaltungstechnik ·
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irl2203ns.pdf
20µs PULSE WIDTH T = 25 C TJ= 175 C 1 J 1 0.1 1 10 100 0.1 1 10 100 V , Drain-to-Source Voltage (V) V DS , Drain-to-Source Voltage (V) DS Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000 2.5 I = 100A c D ) n ( s n TJ= 25 C s 2.0 e e u n C TJ= 175 C O ) c e ed1.5 u r zl o100
in „FETs - 5V steuerspannung - selbstleitend selbstsperrend“ · Analoge Elektronik und Schaltungstechnik ·
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IRF3205S.pdf
Temperature www.irf.com 3 IRF3205S/IRF3205L 6000 V = 0V, f = 1 MHZ 16 I = 62A GS D Ciss= Cgs + Cgd, ds SHORTED V 14 V DS= 44V 5000 Crss = Cgd ( V DS= 27V C = C + C g V DS= 11V ) oss ds gd l 12 F4000 o e Ciss V 10 n r i u c3000 S 8 p o C - 6 ,2000 Coss a C G , 4 1000 G Crss V 2 0 0 1 10 100 0 20 40 60
in „Mosfet Treiber TC4426 + IRF IRF3205S (Ersatz gesucht)“ · Analoge Elektronik und Schaltungstechnik ·
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LM2660_DC_Inverter.pdf
Resistance vs Supply Voltage DS012911-7 DS012911-8 DS012911-9 Output Source Efficiency vs Load Resistance vs Output Voltage Drop Temperature Current vs Load Current DS012911-11 DS012911-12 DS012911-10 3 www.national.com 1 6 2 Typical
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PDF
IRF7314_P-Channel_Dual_20V_5.3A_0.058Ohm.pdf
DI = -2.9A ––– 0.082 0.098 V GS= -2.7V,DI = -1.5A VGS(th) Gate Threshold Voltage -0.70 ––– ––– V V DS= VGS, D = -250µA gfs Forward Transconductance ––– 5.9 ––– S V DS= -10V, D = -1.5A I Drain-to-Source Leakage Current ––– ––– -1.0 µA V DS= -16V, VGS= 0V DSS ––– ––– -25 V DS= -16V, GS = 0V, TJ= 55°C IGSS
in „mit 2,7V schalten“ · Mikrocontroller und Digitale Elektronik ·
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irf7314.pdf
DI = -2.9A ––– 0.082 0.098 V GS= -2.7V,DI = -1.5A VGS(th) Gate Threshold Voltage -0.70 ––– ––– V V DS= VGS, D = -250µA gfs Forward Transconductance ––– 5.9 ––– S V DS= -10V, D = -1.5A I Drain-to-Source Leakage Current ––– ––– -1.0 µA V DS= -16V, VGS= 0V DSS ––– ––– -25 V DS= -16V, GS = 0V, TJ= 55°C IGSS
in „FTDI FT232RL - Probleme mit Platine/Verbinden mit PC“ · Mikrocontroller und Digitale Elektronik ·
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irl630.pdf
On-Resistance GS D ––– ––– 0.50 V GS= 4.0V, D = 4.5A VGS(th) Gate Threshold Voltage 1.0 ––– 2.0 V V DS= VGS ,DI = 250µA gfs Forward Transconductance 4.8 ––– ––– S V DS= 50V, D = 5.4A DSS Drain-to-Source Leakage Current ––– ––– 25 µA V DS= 200V, VGS = 0V ––– ––– 250 V DS= 160V, VGS = 0V, J = 125°C GSS
in „Kontrolle der Kühlkörperberechnung“ · Mikrocontroller und Digitale Elektronik ·
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MT48LC16M16A2.PDF
AUTOPRECHARGE ENABLE AUTOPRECHARGE A10 ROW ROW ROW t t AS AH BA0, BA1 BANK 0 BANK 0 BANK 1 BANK 1 BANK 0 DS DH tDS tDH tDS tDH DS tDH DS tDH tDS DH tDS tDH DS tDH DINm DINm+ 1 D INm+ 2 DINm+ 3 DINb DINb + 1 DINb + 2 DINb + 3 DQ t t t t RCD - BANK 0 WR - BANK 0 RP - BANK 0 RCD - BANK 0 t RAS - BANK 0 tRC -
in „[Verkaufe] 5xSDRAM (4Meg x 16 x 4 Banks) und 5xFLASH (64Meg 8 o. 16 Bit)“ · Markt ·
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klassed_facharbeit.pdf
...................................................................................................22 Verstärker..................................................................................................................................22 Versorgung..............................................
in „Suche Schaltplan für PWM Endstufe“ · Mikrocontroller und Digitale Elektronik ·
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netgear-fs108-benutzerhandbuch.pdf
and throughput. The Model FS108 switch can segment networks that are built with the NETGEAR Model DS108 Dual Speed Hubs. Model FS108 switch FAST ETHERNET S100 Mbps LINK Rx 1 2 3 4 5 6 7 8 Power Collision 1 2 3 4 5 6 7 8 Model DS108 hub Model DS108 hub Auto 10/1DUAL SPEED Auto 10/1DUAL SPEED 8903FA Extending
in „[V] Netgear 8-fach Switch FS 108 + 18 Stk. Netzwerk-/Patchkabel“ · Markt ·
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MCP73871-Data-Sheet-20002090E__2_.pdf
Junction Temperature (T ). J vs. Ambient Temperature (T ). A 2008-2019 Microchip Technology Inc. DS20002090E-page 13 MCP73871 Note: Unless otherwise indicateIN= [REG (typical) + 1OUT = 10 mA and A = +25°C, Constant Voltage mode. FIGURE 2-19: Power Supply Ripple FIGURE 2-22: Load Transient Response.
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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0900766b8139d711.pdf
5mm ROUND LED LAMP ATTENTION Part Number: L-19294VBC/DS-D Blue OBSELECTROSTATICONS SDEVICESE z High luminous emission. The Blue source color devices are made with InGaN Light z Low power consumption. Emitting Diode. z Reliable and rugged.s. It is recommended
in „Deratingkurve einer Leuchtdiode“ · Analoge Elektronik und Schaltungstechnik ·
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SI4946BEY.pdf
Static Drain-Source Breakdown Voltage VDS VGS = 0 V,DI = 250 µA 60 V V Temperature Coefficient ΔV /T 53 DS DS J D = 250 µA mV/°C VGS(th)Temperature Coefficient ΔVGS(th)TJ - 6.7 Gate-Source Threshold Voltage VGS(th) V DS= V GS, D = 250 µA 1.0 2.4 3.0 V Gate-Source Leakage GSS VDS = 0 V, GS = ± 20 V ± 100 nA
in „Frage zu Ic SI4948“ · Analoge Elektronik und Schaltungstechnik ·
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Wohnraumuhr1_280820_Rev1.2A.pdf
5V IC2 D IC3 VDD 3 J3-3 D D1 78S05 X2-1 + IN OUT DQ 2 J3-2 1N4001 C5 C6 GND C7 X2-2 100n 100n GND 1 22J3-17038-03 AK500 1000µ/25V DS16S20TO92 GND GND GND GND GND GND 1 2 3 4 5 6 Gehäuse BOPLA ET-233 . 1 Gehäuse RND 455-00186 Gehäuse Fischer GD 135 38 220 (200) ELV_DC2_91610DCF2 2 1 J DCF1 + Sig- C8 1
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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Datei
l__fung.bas
Bewegung Alias Pind.7 Config Sda = Portc.1 '##### I2C Bus konfigurieren Config Scl = Portc.0 Const Ds1307w = &HD0 '##### Addresse der Ds1307 Uhr Const Ds1307r = &HD1 Config Clock = User '##### Interne Time/Date Routinen für Bascom konfigurieren Config Date = Dmy , Separator = . Const Pause = 150 '###
in „Ds1307 bleibt einach stehen?“ · Mikrocontroller und Digitale Elektronik ·
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tc4420.pdf
C to +125°C 300 mV OUTPUT INPUT 4.7V TC4420 GND EFFECTIVE INPUT C = 38 pF © 2001 Microchip TechnoloDS21419A TC4420/9-6 10/18/96 6A HIGH-SPEED MOSFET DRIVERS TC4420 TC4429 ABSOLUTE MAXIMUM RATINGS* Storage Temperature Range ................– 65°C to +150°C Operating Temperature (Chip) ................
in „Mosfet Driver gesucht“ · Mikrocontroller und Digitale Elektronik ·
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2N7000-D.PDF
http://onsemi.com • AEC Qualified 200 mAMPS • PPAP Capable • This is a Pb−Free Device* 60 VOLTS R DS(on) = 5 W N−Channel MAXIMUM RATINGS D Rating Symbol Value Unit Drain Source Voltage VDSS 60 Vdc Drain−Gate Voltage GS = 1.0 MW) VDGR 60 Vdc G Gate−Source Voltage − Continuous V GS ±20 Vdc S − Non−repetitivp
in „ESD-Demonstrator / 2n7000 MOS-FET zerstören“ · Analoge Elektronik und Schaltungstechnik ·
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DS1000Z_Firmware_Release_Notes.pdf
Instrument Firmware Release Notes Models DS1054Z, DS1074Z, DS1104Z, DS1054Z-S, DS1074Z-S, DS1104Z-S, MSO1074Z, MSO1104Z, MSO1074Z-S, MSO1104Z-S VersionInformation Releasedversion:00.04.03.01.05 ReleaseDate:6/16/2015 Compatibility Compatiblewithearlierversionsof
in „Rigol-DS1054Z“ · Mikrocontroller und Digitale Elektronik ·
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_APT30M40JVFR_A-601394.pdf
= ±30V, DS = 0V) ±100 nA VGS(th) Gate Threshold Voltage DS = VGS, D = 2.5mA) 2 4 Volts CAUTION: These Devices are Sensitive to Electrostatic Discharge. Proper Handling Procedures Should Be FollowAd. APTWebsite
in „SOT-227 Leistung Gehäuse im Linearbetrieb?“ · Analoge Elektronik und Schaltungstechnik ·
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LMD18200.pdf
factory. Typical Performance Characteristics V vs Flag Current R (ON) vs Temperature R (ON) vs SAT DS DS Supply Voltage DS010568-16 DS010568-17 DS010568-18 Supply Current vs Supply Current vs Supply Current vs Supply Voltage Frequency (V S = 42V) Temperature (V S = 42V) DS010568-19 DS010568-20 DS010568-21 Current Sense Output Current Sense vs Load Current Operating Region DS010568-22 DS010568-23 www.national.com 4 M D Test Circuit 1 2 0 0 DS010568-8 Switching Time Definitions DS010568-9 Pinout Description (See Connection Diagram) it is also necessary to apply logic high
in „Halbbrücke für BLDC“ · Mikrocontroller und Digitale Elektronik ·
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CAN-BootloaderPIC18F.pdf
FOR CAN NETWORKS (POWER SUPPLY, DISPLAYS AND CONNECTION HEADERS) 2003 Microchip Technology Inc. DS00247A-page 13 AN247 FIGURE A-3: EXAMPLE DIALOGS FOR THE CANCOMM HOST SOFTWARE: OUTPUT STATUS MESSAGES (TOP) AND PROGRESS BAR (BOTTOM) DS00247A-page 14 2003 Microchip Technology Inc. AN247 Software
in „CAN-Bootloader für PIC18F“ · Mikrocontroller und Digitale Elektronik ·
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BUK100-50.pdf
clamping voltage V IS0 V; I DM= 1 A; tp≤ 300 s; - - 70 V δ ≤ 0.01 IDSS Zero input voltage drain current V DS= 12 V; VIS 0 V - 0.5 10 A IDSS Zero input voltage drain current V DS= 50 V; VIS 0 V - 1 20 A I Zero input voltage drain current V = 40 V; V = 0 V; T = 125 ˚C - 10 100 A DSS DS IS j R DS(ON) Drain-source
in „MOSFET SCHMILZT“ · Analoge Elektronik und Schaltungstechnik ·
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irlr3717.pdf
HEXFET Power MOSFET l High Frequency Synchronous Buck Converters for Computer Processor Power V DSS R DS(on) max Qg l High Frequency Isolated DC-DC 20V 4.0m : 21nC Converters with Synchronous Rectification for Telecom and Industrial Use Benefits l Very Low R DS(on)at 4.5V VGS l Ultra-Low Gate Impedance
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nrf.pdf
Interrupt not reflected on the IRQ pin 0: Reflect RX_DR as active low interrupt on the IRQ pin MASK_TX_DS 5 0 R/W Mask interrupt caused by TX_DS 1: Interrupt not reflected on the IRQ pin 0: Reflect TX_DS as active low interrupt on the IRQ pin MASK_MAX_RT 4 0 R/W Mask interrupt caused by MAX_RT 1: Interrupt
in „NRF24L01 und Atmega328P“ · Mikrocontroller und Digitale Elektronik ·
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mic3202.pdf
H 250 D25% U VCC= 5V C ILED 1A S I L = 47uH 0.5 NO-SWITCHING W 2LED 4LED 6LED 8LED S 0 0% 0.0 6 14 22 30 38 6 14 22 30 38 6 14 22 30 38 INPUT VOLTAGE (V) INPUT VOLTAGE (V) INPUT VOLTAGE (V) V INutdown Current VCC Voltage CS Voltage vs. Input Voltage vs. Input Voltage vs. Input Voltage 0.5 5.050 250 )
in „MIC3202 : welche empfohlene Schaltung ist geeignet?“ · Mikrocontroller und Digitale Elektronik ·
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LM1086.pdf
-43 DS100948-44 Ripple Rejection vs. Frequency (LM1086-5) Ripple Rejection vs. Output Current (LM1086-5) DS100948-46 DS100948-45 Line Transient Response Load Transient Response DS100948-47 DS100948-48 7 www.national.com
in „Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Test.c
PIC hardware mapping #define _XTAL_FREQ 500000 //config bits that are part-specific for the PIC18F14K22 __CONFIG(1, FOSC_IRC & PLLEN_OFF & FCMEN_OFF); __CONFIG(2, PWRTEN_OFF & BOREN_OFF & WDTEN_OFF); __CONFIG(3, HFOFST_OFF & MCLRE_OFF); __CONFIG(4, STVREN_ON & LVP_OFF & DEBUG_ON); __CONFIG(5, CP0_OFF &
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Wohnraumuhr2_Rev1.2.pdf
WR CON2_2 A25 42 B CON1_21 AREF PG1,/RD CON2_11 A18 DCF77-Modul GND B CON2_20 VCC1 PG2,ALE S2 CON1_22 VCC2 CON2_19 A0 3 IC2 N GND1 PA0,AD0 R L 1 31 3 CON2_21 GND2 PA1,AD1 CON2_18 A1 PON PON L A44 2 4 CON2_31 GND3 PA2,AD2 CON2_17 A2 A35 OUT DATA O 42 PA3,AD3 CON2_16 A3 GND GND 1 GND GND CON1_20 /RESET
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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version_1p3_assembler.lst
7896: 0000 N 0004 DS 4 7897: 0004 N 0001 IBCNT: DS 1 ;LENGTH OF A LINE 7898: 0005 N 0002 IBLN: DS 2 ;THE LINE NUMBER 7899: 0007 N 0049 IBUF: DS LINLEN ;THE INPUT BUFFER 7900: 0050 N 000F CONVT: DS 15 ;CONVERSION LOCATION
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lcd.asm
-> 094H..0A7H ;|Z 000,000mm | Zeile3 -> 0BCH..0CFH ;+--------------------+ Zeile4 -> 0D0H Zeile0: DS 20 Zeile2: DS 20 Zeile1: DS 20 Zeile3: DS 20 ;------------------------------------------------------------------------------- CSeg Include Macros.INC ;------------------------------------------------
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Datei
diagramm.asm
max. Gr áe der Datei pop ds ;Datensegment restaurieren mov dx,0 ;Offsetadresse des Puffers int 21h push ds ;Datensegment retten mov dx,cs mov ds,dx mov si,offset hinweis2 mov di,beginhinweis2 mov cx,hinweis2laenge PR000: movsb
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PDF
Infineon_IRLB8721_DataSheet_v01_01_EN-3363432.pdf
On-Resistance vs. Temperature www.irf.com 3 IRLB8721PbF 10000 14 V GS = 0V, f = 1 MHZ ID= 25A C iss= gs + gd, dsSHORTED ) C = C ( 12 V DS= 24V rss gd g V = 15V ) C oss= ds + gd t DS F Ciss o 10 ( 1000 V c r 8 a Coss u c S a t 6 a Crss e , 100 a C , 4 S G V 2 0 10 1 10 100 0 4 8 12 16 20 24 28 V , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) DS Fig 5. Typical Capacitance vs. Fig 6. Typical Gate Charge vs. Drain-to-Source Voltage Gate-to-Source Voltage 1000 1000 OPERATION IN THIS AREA LIMITED BY R (on) ) ) DS ( ( n 100 n 100 100μsec e T = 175
in „LED Ansteuerung für Lazertag Projekt“ · Mikrocontroller und Digitale Elektronik ·
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miniboard.pdf
IO_L21P_6 IO_L5P_6 D5 SE_2_26 FLASH_D00 C9 IO_L8P_D17_CC_LC_1 C VC IO_L4P_D25_LC_1 E7 FLASH_A17 J19 IO_L22N_5 IO_L6N_5 B18 DDR_WE_N SE_2_00 H2 IO_L20N_VREF_6 IO_L4N_VREF_6 C4 SE_2_25 FLASH_A07 C12 IO_L7N_D18_LC_1 V IO_L3N_D26_LC_1 E14 FLASH_A01 K20 IO_L22P_5 IO_L6P_5 A18 DDR_CAS_N SE_2_28 H3 IO_L20P_6 IO_L4P
in „Xinlinx Virtex-4 FX12 363 / Miniboard / Clock Pin“ · FPGA, VHDL & Co. ·
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Datei
Plotclock_v1_2.ino
instructions on how to hook up a real time clock, // see here -> http://www.pjrc.com/teensy/td_libs_DS1307RTC.html // DS1307RTC works with the DS1307, DS1337 and DS3231 real time clock chips. // Please run the SetTime example to initialize the time on new RTC chips and begin running. #include <Wire.h>
in „Plotclock zusammenbauen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAMA5D2_PTC_Firmware_UG.pdf
Hysteresis Hysteresis Adjacent Key Suppression Group = No Adjacent Key Suppression Group = No Y4 X2 Y4 X3 DS50002705A-page 22 © 2017 Microchip Technology Inc. PTC Subsystem Firmware 4.4 Data Parameters Example Figure 4-4. Data Parameters Example for QT1 Mutual Capacitance Node Group Data Frequency Hopping Autotune
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Datei
main.c
include "ks0108.h" #include "arial_bold_14.h" #include "corsiva_12.h" #include "mcp4921.h" #include "ds1307.h" ISR( TIMER1_COMPA_vect ) // Interruptbehandlungsroutine { OCR1A = 2500-OCR1A; // Das Servosignal wird aus der Differenz von // Periodenlänge (2500*0,008ms=20ms) und letztem // Vergleichswert (
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PDF
LM2661.pdf
Resistance vs Supply Voltage DS012911-7 DS012911-8 DS012911-9 Output Source Efficiency vs Load Resistance vs Output Voltage Drop Temperature Current vs Load Current DS012911-11 DS012911-12 DS012911-10 3 www.national.com 1 6 2 Typical
in „pegelanpassung analog“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PseudoKunstkopfStereo.pdf
FFFF BCR equ $FFFE SSISR equ $FFEE PLL equ $FFFD START equ $40 org x:0 RX_BUFF_BASE equ * RX_data_1_2 ds 1 ;data time slot 1/2 for RX ISR RX_data_3_4 ds 1 ;data time slot 3/4 for RX ISR RX_data_5_6 ds 1 ;data time slot 5/6 for RX ISR RX_data_7_8 ds 1 ;data time slot 7/8 for RX ISR TX_BUFF_BASE equ * TX_data_1_2 ds 1 ;data time slot 1/2 for TX ISR TX_data_3_4 ds 1 ;data time slot 3/4 for TX ISR TX_data_5_6 ds 1 ;data time slot 5/6 for TX ISR TX_data_7_8 ds 1 ;data time slot 7/8 for TX ISR RX_PTR ds 1 ; Pointer
in „Pseudo Kunstkopf Stereo mit DSP56002, alte Motorola Applikation“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
L-KISS_Schema_v01.pdf
PB7 10 C U3 C7 GND C 1 DS14RS232 GND 2 14 12 BZ1 100n 18 3 Dout1 Rout1 PD4 D8 D7 D6 D5 D4 D3 D2 D1 8x LED 4 5 13 Rin1 Din1 11 19 PD5 6 Vcc 7 C11 1 C1+ _VCC 16 SMAT-13 MSB LSB 8 12 XTAL1 9 22u 3 C1- V+ 2 C13 22u C15 13 10 GND C12 4 XTAL2 C2+ 6 C14 22u Q1 8MHz 9 8 7 6 5 4 3 2 22u 5 V- 22u C2- 15 GND R3 GND 8x1k 10 Din2 Rin2 8 GND WidNet Vcc GND GND 1 X5 1 PORTC Vcc 22 GND GND 2 X1 U4 PC0 23 3 B Power Jack LM2940T-5.0 PC1 24 4 B 1 IN DVOUT 3 PC2 25
in „ATMEGA644 programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MX26LV400__2_.pdf
A10 A7 A2 ManufacturerCode L L H X X VID X L X L L C2H Read Device ID Word L L H X X VID X L X L H 22B9H Silicon (Top Boot Block)Byte L L H X X VID X L X L H XXB9H ID Device ID Word L L H X X VID X L X L H 22BAH (Bottom Boot BlocByte L L H X X VID X L X L H XXBAH NOTE:SA=Sector Address, X=Don't Care,
in „falsche u-boot nand geflasht,J-Tag möglichkeit für Flytouch2?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm35_Temp.pdf
Characteristics 5 Thermal Resistance Thermal Time Constant Thermal Response Junction to Air in Still Air DS005516-26 DS005516-25 DS005516-27 Thermal Response in Minimum Supply Quiescent Current Stirred Oil Bath Voltage vs. Temperature vs. Temperature (In Circuit of Figure 1.) DS005516-28 DS005516-29 DS005516
in „Temperatursensor LM35 DZ will nicht funktionieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2117592.pdf
..... 21 6.2.2 Side View of CX870 Module with Bottom Shield part number CX870-3JB only............ 22 6.3 3D V IEW OFCX870 M ODULE WITHOUT B OTTOM SHIELD ....................................................... 22 6.4 MODULE W EIGHT .....................................................................
in „CX870-31B Jukeblox SMCS Microchip Firmware Update“ · Mikrocontroller und Digitale Elektronik ·
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PDF
edison-module_HG_331189.pdf
Edison 70-pin connector part numbers Hirose P/N Mating stack height DigiKey P/N Mouser P/N DF40C-70DS-0.4V(51) 1.5 mm n/a 798-DF40C70DS04V51 DF40C(2.0)-70DS-0.4V(51) 2.0 mm H11908CT-ND (low quantity) 798-DF40C2070DS04V51 H11908TR-ND (tape and reel) DF40HC(3.0)-70DS-0.4V(51) 3.0 mm n/a n/a The Intel®
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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S2-L2-5V.pdf
.100 12 11 10 9 8 7 .300.472 .020 5.08 .200 General tolerance: ±0.3 ±.012 Tolerance: ±0.1 ±.003 2 en_ds_61105_0000: 130804D S Schematic (Bottom view) Single side stable 2a2b 1 2 3 4 5 6 3a1b 1 2 3 4 5 6 4a 1 2 3 4 5 6 Deenergized position + + + - - - 12 11 10 9 8 7 12 11 10 9 8 7 12 11 10 9 8 7 2 coil
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