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PDF
FV-1.pdf
to ground (internal programs) or VDD (EEPROM programs). Spin Semiconductor www.spinsemi.com SPN1001-DS-170829 – 29 August 2017 Spin FV-1 Reverb IC Semiconductor Featuring Spin Semiconductor Virtual Analog Technology Outline Dimensions Dimensions shown in inches (mm) .4065 (10.32) TYP .296 (7.51) TYP .050
in „Schaltung mit Mono-Output zu Stereo-Output abändern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FV-1.pdf
to ground (internal programs) or VDD (EEPROM programs). Spin Semiconductor www.spinsemi.com SPN1001-DS-170829 – 29 August 2017 Spin FV-1 Reverb IC Semiconductor Featuring Spin Semiconductor Virtual Analog Technology Outline Dimensions Dimensions shown in inches (mm) .4065 (10.32) TYP .296 (7.51) TYP .050
in „Plattform für Effektgeräte“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
armbian_modules.txt
rc-msi-tvanywhere rc-terratec-cinergy-c-pci rc-lme2510 rc-winfast-usbii-deluxe rc-adstech-dvb-t-pci rc-ati-x10 rc-medion-x10-digitainer rc-reddo rc-snapstream-firefly rc-imon-rsc rc-geekbox rc-powercolor-real-angel rc-encore-enltv2 rc-cinergy rc-nec-terratec-cinergy-xs rc-pinnacle-color rc-dntv-live-dvbt-pro
in „Samba auf Banana Pi Pro installieren“ · PC Hard- und Software ·
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PDF
eeprom_24lc65_i2c.pdf
inpuVHYS .05 VCC — V (Note 1) Low level output voltage VOL — .40 V OL = 3.0 mA Input leakage current ILI -10 10 A VIN= .1V to CC Output leakage current ILO -10 10 A VOUT = .1V to VC Pin capacitance CIN COUT — 10 pF VCC = 5.0V (Note 1) (all inputs/outputs) Tamb = 25˚C, Fclk = 1 MHz Operating current ICCW RITE
in „64K EEPROM 24LC65 Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATmega8515.asm
wr0, dz ; Startdrehzahl siehe oben Definitionen out OCR0, wr0 ; IRQ bei k = 1/2 * fpwm ; Fclk/8 -> DS S.91 T48, Phase Correctly PWM - ein DS. S.90 T44 ; OC0 pin 14 - HIGH = Match->Top->Match -DS. S91 T47 ldi wr0, 0x62 ; 62h = 01100010 out TCCR0, wr0 ldi wr0, 1<<TOIE0^0<<OCIE0 ;Interrupt Overflow/ Compare
in „mC arbeitet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT91SAM7A3-EK.pdf
PA[0..31] 120R 3 SHDN WAKE-UP1 VCC 2 VDDBU 74ALVC04 1 BP4 GND 3V3 MN5G 7 3V3 MN6 A PA8 SPI1_MISO A R10 PA9 SPI1_MOSI 8 SO VCC 6 C26 Friday, June 09, 2006 POWER LED 1 SI 100K PA10 SPI1_SPCK 2 SCK 100NF DS5 PA7 SPI1_NPCS3 4 CS GND 7 MN5F YELLOW S11 C JPG 13/09/05 12 13 10 11 PB15 3V3 3 5 B JPG 10/03/05
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PDF
LT3800.pdf
×2 C7 SHDN SW 1.5nF R4 75k CSS NC L1 R1 R2 5.6μH 100k 309k BURST_EN VCC 1% 1% C3 1μF M2 DS3 V BG 16V X7R Si7370DP FB B160 ×2 ×2 VC PGND R3 62k C10 R5 SENSE– SENSE+ C9 100pF 47k SGND 470pF RS 0.01Ω D2 1N4148 VOUT DS1 C6 + 5V AT 10A DS2 MBRO520L M3 10μF C5 MBRO520L 1/2 Si1555DL 6.3V 220μF Efficiency
in „LT3800 Frage“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Sonoff_Timer_Steuerung.ino
\ var ds;\ var ss;\ $('#save_button').click(function(e){\ e.preventDefault();\ ss = $('#date_ss').val();\ ds = $('#date_ds').val();\ $.get('/save?ss=' + ss + '&ds=' + ds, function(data){\ console.log(data);\
in „2fach Timer für Kaffeemühle“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Thermometer.c
include "lcd-routines.h" #include "USI_TWI_Master.h" #define ADS1112_ADDR 0x4E // (1001110) 4E #define DS1621_int 0x48 // (1001000) 48 #define DS1621_ext 0x4F // (1001111) 4F #define TWI_CMD_MASTER_WRITE 0x10 #define TWI_CMD_MASTER_READ 0x20 #define MESSAGEBUF_SIZE 4 unsigned char messageBuf[MESSAGEBUF_SIZE
in „C-Code optimieren (passt nicht in Attiny2313) :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Designing_a_digital_compass.pdf
accomplished by applying the correct duty cycle value for the PWM signal to obtain the Xoff and Yoff shift. DS00996A-page 10 © 2005 Microchip Technology Inc. AN996 FIGURE 9: QUADRANT DIAGRAM X = 2048 Y = 4096 360° (North) X = (2048 – X A/D counts) X = (X A/D counts – 2048) Y = (Y A/D counts – 2048) Y = (Y A/D
in „Kompassmodul HDMM01 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXM61N02F.pdf
1 - JUNE 2004 mm 4 ZXM61N02F TYPICAL CHARACTERISTICS 100 VGS 100 +150°C +25°C VGS ) ) ( 6V ( 6V t 10 4V t 10 4V e 3V e 33VV r 2.5V r 2.5V u u C 1 2V C 1 2V i i r r 1.5V D D D 100m 1.5V D100m I I 10m 10m 0.1 1 10 0.1 1 10 V DS - Drain-Source Voltage (V) VDS - Drain-Source Voltage (V) Output Characteristics
in „74LS109 Toggelt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nFET_ZXM61N02FTA.pdf
1 - JUNE 2004 mm 4 ZXM61N02F TYPICAL CHARACTERISTICS 100 VGS 100 +150°C +25°C VGS ) ) ( 6V ( 6V t 10 4V t 10 4V e 3V e 33VV r 2.5V r 2.5V u u C 1 2V C 1 2V i i r r 1.5V D D D 100m 1.5V D100m I I 10m 10m 0.1 1 10 0.1 1 10 V DS - Drain-Source Voltage (V) VDS - Drain-Source Voltage (V) Output Characteristics
in „ESP8266 Module mit Batterie betreiben - Strom sparen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nFET_ZXM61N02FTA.pdf
1 - JUNE 2004 mm 4 ZXM61N02F TYPICAL CHARACTERISTICS 100 VGS 100 +150°C +25°C VGS ) ) ( 6V ( 6V t 10 4V t 10 4V e 3V e 33VV r 2.5V r 2.5V u u C 1 2V C 1 2V i i r r 1.5V D D D 100m 1.5V D100m I I 10m 10m 0.1 1 10 0.1 1 10 V DS - Drain-Source Voltage (V) VDS - Drain-Source Voltage (V) Output Characteristics
in „Wellenlänge Infrarot Leuchtdiode?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nFET_ZXM61N02FTA.pdf
1 - JUNE 2004 mm 4 ZXM61N02F TYPICAL CHARACTERISTICS 100 VGS 100 +150°C +25°C VGS ) ) ( 6V ( 6V t 10 4V t 10 4V e 3V e 33VV r 2.5V r 2.5V u u C 1 2V C 1 2V i i r r 1.5V D D D 100m 1.5V D100m I I 10m 10m 0.1 1 10 0.1 1 10 V DS - Drain-Source Voltage (V) VDS - Drain-Source Voltage (V) Output Characteristics
in „3.3V MOSFET ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nFET_ZXM61N02FTA-1.pdf
1 - JUNE 2004 mm 4 ZXM61N02F TYPICAL CHARACTERISTICS 100 VGS 100 +150°C +25°C VGS ) ) ( 6V ( 6V t 10 4V t 10 4V e 3V e 33VV r 2.5V r 2.5V u u C 1 2V C 1 2V i i r r 1.5V D D D 100m 1.5V D100m I I 10m 10m 0.1 1 10 0.1 1 10 V DS - Drain-Source Voltage (V) VDS - Drain-Source Voltage (V) Output Characteristics
in „ATtiny13A: ESP8266 ein- und ausschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nFET_ZXM61N02FTA.pdf
1 - JUNE 2004 mm 4 ZXM61N02F TYPICAL CHARACTERISTICS 100 VGS 100 +150°C +25°C VGS ) ) ( 6V ( 6V t 10 4V t 10 4V e 3V e 33VV r 2.5V r 2.5V u u C 1 2V C 1 2V i i r r 1.5V D D D 100m 1.5V D100m I I 10m 10m 0.1 1 10 0.1 1 10 V DS - Drain-Source Voltage (V) VDS - Drain-Source Voltage (V) Output Characteristics
in „richtiger n-Kanal MOSFET, 3,3V soll 5V und 100mA schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nFET_ZXM61N02FTA.pdf
1 - JUNE 2004 mm 4 ZXM61N02F TYPICAL CHARACTERISTICS 100 VGS 100 +150°C +25°C VGS ) ) ( 6V ( 6V t 10 4V t 10 4V e 3V e 33VV r 2.5V r 2.5V u u C 1 2V C 1 2V i i r r 1.5V D D D 100m 1.5V D100m I I 10m 10m 0.1 1 10 0.1 1 10 V DS - Drain-Source Voltage (V) VDS - Drain-Source Voltage (V) Output Characteristics
in „RaspiPi mit 3,3V einen 5V Kreis wie schalten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3066.pdf
25°C) Characteristics Symbol Test Condition Min Typ. Max Unit Gate leakage current GSS VGS = ±25 V, DS= 0 V — — ±10 μA Gate−source breakdown voltage V (BR) GSS G = ±10 μA, GS = 0 V ±30 — — V Drain cut−off current DSS VDS = 600 V, DS= 0 V — — 100 μA Drain−source breakdown voltage V I = 10 mA, V = 0 V 600 — — V (BR) DSS D GS Gate threshold voltage V V = 10 V, I = 1 mA 2.0 — 4.0 V th DS D Drain−source ON resistance R V = 10 V, I = 3 A — 0.9 1.25 Ω DS (ON) GS D Forward transfer admittance |Y | V = 10 V, I = 3 A 2.0 5.5 — S fs DS D Input capacitance C — 1300
in „Reparatur Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LHC1-22XX_Super_LEDs.pdf
. Lumileds maintains a tolerance of ±6.5% on luminous flux, ±2 on CRI. 2. Maximum luminous flux is 10% above typical luminous flux. 3. Light Emitting Surface (LES) is the inner diameter (phosphor area) inside the dam. DS115 LUXEON CoB Core Range Product Datasheet 20150219 ©2015 Lumileds Holding B.V.
in „Entladeformel einer Spule“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Display_Controller.pdf
L pulse width (READ) tCCLR 140 — RD Enable H pulse width (READ) tCCHR 80 ns WRITE Data setup time tDS8 40 — WRITE Data hold time tDH8 10 — D0 to D7 READ access time tACC8 CL = 100 pF — 70 READ Output disable time tOH8 CL = 100 pF 5 50 tF — 10 tR — 10 Ver2.3 73/97 2007/1/3 ST7528 (VDD = 2.7 V , Ta = -
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC4414_Power_Manegement.pdf
26 35 µA with CTL Active VIN– VSENSE = 0.9V I V and SENSE Pin Leakage Currents V = 28V, SENSE = 0V –10 –1 1 µA LEAK IN IN When Other Pin Supplies Power VIN= 14V, SENSE = –14V –10 1 µA VIN= 36V, SENSE = 8V –10 1 µA VIN 0V, SENSE = 28V –10 1 µA VIN= –14V, SENSE = 14V –10 1 µA VIN= 8V, SENSE = 36V –10 1
in „P-Mosfet als Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Seiten_aus_FDV303N.pdf
BreakdownVoltageTemp.Coefficient ID= 250 µA,Referencedto 25 C 26 mV / C IDSS ZeroGateVoltage DrainCurrent V DS20 V, V =GS V 1 µA TJ= 55°C 10 µA IGSS Gate-BodyLeakageCurrent V GS8 V, V =DS V 100 nA ON CHARACTERISTICS (Note) o o ΔV GS(th) J GateThresholdVoltageTemp. Coefficient ID= 250 µA,Referencedto 25 C -2.6
in „Antiparallele Dioden??“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
INT0_problem.txt
Reale Baudrate .equ BAUD_ERROR = ((BAUD_REAL*1000)/BAUD-1000) ; Fehler in Promille .if ((BAUD_ERROR>10) || (BAUD_ERROR<-10)) ; max. +/-10 Promille Fehler .error "Systematischer Fehler der Baudrate grösser 1 Prozent und damit zu hoch!" .endif .org 0x00 rjmp start ;.org INT0addr ; rjmp int_int0 ; Interruptvektor
in „atmega 168 INT0 löst keinen Interrupt aus! Assembler!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
taster.a51
REP_FLAG: dbit 1 rseg daten ENTPRELLCTR: DS 1 ;MEHRFACH IST IMMER GUT INREG1: DS 2 ;GELESENE TASTER INREG2: DS 2 ;FUER ENTPRELLUNG INREG3: DS 2 ;EBENSO CHANGE: DS 2 ;AENDERUNGEN DER TASTER LAST_CHANGE: DS 2 ;MASKE FUER AUTO-REPEAT RETTEN REP_COUNTER: DS 1 ;ZEIT FUER REPEAT TASTER: DS 1 ;AKTUELLER WERT cseg at 0bh ;timer0 interrupt vector ljmp timer_int rseg ?pr?tastatur?tastatur_leds getkey: jb et0,getkey1 ;init des timers + lesen der Taste lcall init_t0
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PDF
ssd1803_2_0.pdf
line=1) shift / 0 0 0 0 0 0 1 S/C R/L BS1 BS0 BS1:BS0 = “01”: 1/5 bias 39us Bias ratio BS1:BS0 = “10”: 1/6 bias (POR select at display line=2 or 4) BS1:BS0 = “11”: 1/7 bias *Note: BS1 and BS0 are only activated in internal divider option (when DH = "1") Determine the line for display shift. DS1 = "1
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TimerRegs.h
pwm_a| wgm_1| wgm_0 dual slope pwm6 // ------------------------------------------------------------- ds_pwm6_pwm_normal_d_d = 0, ds_pwm6_cleared_oc_upc_set_oc_down = com_a0, ds_pwm6_cleared_oc_upc_set_oc_downc_ = com_a1, ds_pwm6_set_oc_upc_cleared_oc_downc = com_a1|com_a0, // --------------------------
in „struct Name mittels define erstellen - gcc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TimerRegs.h
pwm_a| wgm_1| wgm_0 dual slope pwm6 // ------------------------------------------------------------- ds_pwm6_pwm_normal_d_d = 0, ds_pwm6_cleared_oc_upc_set_oc_down = com_a0, ds_pwm6_cleared_oc_upc_set_oc_downc_ = com_a1, ds_pwm6_set_oc_upc_cleared_oc_downc = com_a1|com_a0, // --------------------------
in „C++ Klassenbibliothek für AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXMN2B01F.pdf
0.150 ⍀ V GS= 2.5V,DI = 2.0A 0.200 ⍀ V GS= 1.8V,DI = 1.7A Forward transconductance (*)(‡gfs 6.1 S V DS= 10V,DI = 2.4A (‡) Dynamic Input capacitance C 370 pF V = 10V, V =0V iss DS GS Output capacitance C 81 pF f=1MHz oss Reverse transfer capacitance C 46 pF rss Switching (†) (‡) Turn-on-delay time td(on) 2.2 ns V DD= 10V, GS= 4.5V I = 1A Rise time tr 3.6 ns D R G 6.0⍀ Turn-off delay time td(off) 17.8 ns Fall time tf 10.5 ns Total gate charge Q g 4.8 nC V DS= 10V, GS= 4.5V Gate-source charge Q 0.6 nC ID= 2.4A gs Gate
in „LED-Spannungswandler mit MOSFET ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readWebsiteFromSD___Funktion.txt
jede Zeile aus //Prüfe auf Codes und ersetzte sie dann mit dem passenden Werten if(strstr(lbuffer, "~ds18b20TempIn~") != NULL) { //DS18B20 Innen if(ds18b20_tempInside != 1000) { sprintf(tempBuffer, "%.2f", ds18b20_tempInside); sprintf(lbuffer, "%s\r\n", replace_str(lbuffer, "~ds18b20TempIn~", tempBuffer)); }else{ sprintf(lbuffer, "%s\r\n", replace_str(lbuffer, "~ds18b20TempIn~", "Can't find the Temp Sensor")); } } if(strstr(lbuffer, "~ds18b20TempOut~") != NULL) { //DS18B20 Außen if(ds18b20_tempOutside != 1000) { sprintf(tempBuffer, "%.2f", ds18b20_tempOutside);
in „ATMega644 hängt sich auf und resettet sich selbst, nach lesen einer SD Karte und ENC28J60“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny212_412-Errata-and-Clarification-DS40002114B.pdf
date. © 2019 Microchip Technology Inc. Errata DS40002114B-page 10 ATtiny212/412 Document Revision History 4. Document Revision History Note: The data sheet clarification document revision is independent of the die revision and the device variant (last
in „Attiny412 Temperatur intern“ · Mikrocontroller und Digitale Elektronik ·
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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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Datei
bootloaderV25.a51
XCALL macro dest LCALL dest endm XJMP macro dest LJMP dest endm endif $list dseg at 0x08 OverLay: DS 10 ; Keil C Overlay Ram for local vars bseg at 0 bWrProtect: DBIT 1 ; 1 disables CodeFlash writing bVerifyErr: DBIT 1 ; 1 when verify failed new v2.40 bSoftReset: DBIT 1 ; 1 for executing software reset
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CT0889_Mini-DOS.asm
DS CMP DS:SIZE,BX ; schon gleich lang? JZ DIMEX ; dann fertig JC DIMEX ; Cf bei BX > Size MOV DX,DS:SIZE ; alte L nge => DX MOV KN_Merk,DS:KN ; merke alte Kenn MOV DS:SIZE,BX ; neue eintragen MOV DS:KN,
in „[S] 8086 oder 8088“ · Markt ·
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PDF
FHP120N08D.pdf
Threshold Voltage V GS(th) V DS= VGS , D=250μA 2.0 3.0 4.0 V 静态导通电阻 Static Drain-Source RDS(ON) V GS=10V , D=40A - 6.0 8.0 mΩ On-Resistance 正向跨导 Forward Transconductance gfs V DS= 20V, D=40A(note 4) - 70 - S 动态特性 Dynamic Characteristics
in „Ersatz-Mosfet Vorschlag gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FDB8832_Logic__N__Temp_ok_.pdf
V = 10V - 1.4 1.9 D GS ID= 80A, VGS= 5V - 1.5 2.1 DS(on) Drain to Source On Resistance I = 80A, V = 4.5V - 1.6 2.2 D GS mΩ ID= 80A, VGS= 10V - 2.3 3.0 TJ= 175°C Dynamic Characteristics Ciss Input Capacitance V = 15V, V = 0V, - 11400 - pF Coss Output Capacitance DS GS - 2140 - pF f = 1MHz Crss Reverse Transfer Capacitance - 1260 - pF RG Gate Resistance V GS= 0.5V, f = 1MHz - 1.2 - Ω Q Total Gate Charge at 10V V = 0 to 10V - 204 265 nC g(TOT) GS Qg(5) Total Gate
in „Mini-heizung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
B--0193_DS18B20_Nr27_29_30_31_Rest32_33_34_b.h
char temp30_lesen(void); unsigned char temp31_lesen(void); //unsigned char temp33_lesen(void); int ds18b20_nr27_lesen(void); int ds18b20_nr29_lesen(void); int ds18b20_nr30_lesen(void); int ds18b20_nr31_lesen(void); //void temp30_ausgeben(void); //void temp31_ausgeben(void); //void temperatur_messen(void
in „Sende/Empfangsvorgang mittels nur 1St. µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GWM120-0075P3.pdf
transfer TVJ 125°C 0.1 mA I V = ±20 V; V = 0 V 0.2 µA GSS GS DS Q 91 nC g Q gs VGS 10 V; V DS= 60 V; ID= 25 A 19 nC Q gd 28 nC td(on) 36 ns t V = 10 V; V = 30 V; 56 ns r GS DS td(off) D = 25 A; RG= 10 Ω 130 ns tf 50 ns VF (diode) F = 60 A; GS= 0 V 0.9 1.4 V trr (
in „Umrichter für E-Kart Anwendung 60V / 120A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PIC16F630_DS1820.asm
& erkennen call delay_600us movlw 0xCC movwf ds1820 call write_ds1820 ; ROM-Kommando 0xCC: Skip ROM call delay_600us movlw 0x44 movwf ds1820 call write_ds1820 ; Kommando 0x44: Convert Temperature call delay_1s call init_ds1820 call delay_600us movlw 0xCC movwf ds1820 call write_ds1820 ; ROM-Kommando 0xCC: Skip ROM movlw 0xBE movwf ds1820 call write_ds1820 ; Kommando 0xBE: Read Scratchpad call read_ds1820 movf ds1820, w movwf temp1 ; Temperatur LSB call read_ds1820
in „DS1820 an PIC16F630 - Softwareprobleme, ich verzweifle!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
70044.pdf
Switch Analog Signal Range V Full –15 15 –15 15 V ANALOG Room 30 50 50 Drain-Source On-Resistance rDS(on) VD= "10 V, IS= –10 mA Full 75 75 Source Off Leakage Current I Room "0.1 –1 1 –5 5 S(off) Hot –100 100 –100 100 VS= "14 V, VD= #14 V Drain Off Leakage Current ID(off) Room "0.1 –1 1 –5 5 nA Hot –100
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PDF
24C64.pdf
CONTROL BYTE ADDRESS HIGH BYTE ADDRESS LOW BYTE A A A A A A A A A A 1 0 1 0 2 1 0 R/W X X X 12 11 10 9 8 7 0 CONTROL CHIP CODE SELECT X = Don’t Care Bit BITS DS21189D-page 6 2000 Microchip Technology Inc. 24AA64/24LC64 6.0 WRITE OPERATIONS 6.2 Page Write 6.1 Byte Write The write control byte, word
in „Merkwürdiger 24C64N“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Techniques_for_Robust_Touch_Sensing_Design_AN1334.pdf
system that must compare each sensor with every other sensor. 2010-2013 Microchip Technology Inc. DS00001334B-page 7 AN1334 If the field lines are able to propagate only through the FIGURE 11: AIRGAP CROSSTALK cover as shown in Figure 10, the effect will be strong. SOLUTION The amount of crosstalk will
in „Wie realisiert man Sensortasten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Tiny15L.pdf
0.300) 0.356(0.014) 1.524(0.060) 0.203(0.008) 0.000(0.000) 10.90(0.430) MAX *Controlling dimension: Inches REV. A 04/11/2001 9 1187DS–12/01 8S2 .020(.508) .012(.305) .213(5.41) .330(8.38) .205(5.21) .300(7.62) PIN1 .050(1.27)BSC .212(5.38) .203(5.16) .080(2.03) .070(1.78) .013(.330) .004(.102) 0 REF .010(.254) 8 .007(.178) .035(.889) .020(.508) 10 ATtiny15L 1187DS–12/01 Atmel Headquarters Atmel Product Operations Corporate Headquarters Atmel Colorado Springs 2325 Orchard Parkway 1150 E. Cheyenne Mtn. Blvd. San Jose, CA 95131 Colorado Springs,
in „Frequenzschalter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code_Wordclock_V3.txt
CSEL2 = 7; //Reihe 2 const int CSEL3 = 8; //Reihe 3 const int CSEL4 = 9; //Reihe 4 const int CSEL5 = 10; //Reihe 5 const int DCF = 3; //Pin für DCF Signal const int DS1307Adr=0x68; // Adresse der Realtimeclock //===========================================================================================
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Bild
4-Kanal Relaismodul auf Holzbrett
SONGLE 6 US 10A 250VAC 10A 125VAC 10A 30VDC 10A 28VDC CQC SRD-5VDC-SL-C DS4 DS3 DS2 DS1
in „Suche jemanden der mir eine Schaltung baut.“ · Offtopic · · Platinenfotos
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PDF
VWM200-01P.pdf
unless otherwise specified) min. typ. max. MOSFETs in trench technology: - -low R DSon R DSon V GS= 10 V;D = 100 A 3.6 5.2 mΩ -optimized intrinsic reverse diode VGSth V DS= 20 V;D = 2 mA e 2 4 V package: I V = 100 V;V = 0 V; T = 25°C 0.02 mA -high level of integration DSS DS GS TVJ 125°C 0.25 mA -solder
in „Umrichter für E-Kart Anwendung 60V / 120A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_L6205N.pdf
OFF; -25°C<Tj<125°C 5.5 10 mA T Thermal Shutdown Temperature 150 °C j Output DMOS Transistors IDSS Leakage Current VS= 52V 10 A R High-side Switch ON Resistance T = 25 °C 0.34 0.4 DS(ON) j Tj=125 °C 0.53 0.59 Low-side Switch ON
in „1. Schaltung Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
PORTCbits.RC3 #define SDA PORTCbits.RC4 #define SDADir TRISCbits.TRISC4 #define _XTAL_FREQ 10000000 #define DS1621_Read 0b10010001 #define DS1621_Write 0b10010000 #define DS1621_RD_Temp 0xAA #define DS1621_ACCESS_TH 0xA1 #define DS1621_ACCESS_TL 0xA2 #define DS1621_ACCESS_CFG 0xAC #define DS1621_RD_CNT 0xA8 #define DS1621_RD_SLOPE 0xA9 #define DS1621_START_CON 0xEE #define DS1621_STOP_CON 0x22 #define DS1621_CFG_DONE 0b10000000 #define DS1621_CFG_TH 0b01000000 #define DS1621_CFG_TL 0b00100000 #define DS1621_CFG_POL
in „PIC16F887 auf MC2V0 - I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0073.pdf
: cursor shift, R/L = "1" : shift to right, R/L = "0" : shift to left. Shift Enable 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 (when DH = "1") 39μs Determine the line for display shift . DS1 = "1/0": 1st line display shift enable/disable DS2 = "1/0": 2nd line display shift enable/disable DS3 = "1/0": 3rd line display
in „Eigene Zeichen bei LCD mit KS0073 für blöde“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN955.pdf
the Motor Call CALCULATE_UPDATE_STEP_SIZE to Find Vector Update Step Size based on the Motor Speed DS00955A-page 10 © 2005 Microchip Technology Inc. AN955 FIGURE 8: SVM IMPLEMENTATION FLOWCHART (INTERRUPT SERVICE ROUTINES) High Priority Interrupt Service Routine ISR_HIGH Is PTIF = 1? No Yes Vector Angle
in „Raumzeigermodulation, PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
owucnet.c
ONEWIRE_CMD_READROM 0x33 #define ONEWIRE_CMD_MATCHROM 0x55 #define ONEWIRE_CMD_SKIPROM 0xcc #define DS18B20_ROM_FAMILYID 0x28 #define DS18B20_CMD_CONVERTTEMP 0x44 #define DS18B20_CMD_RSCRATCHPAD 0xbe #define DS18B20_DECIMAL_STEPS_12BIT 625 //.0625 #define DS18B20_INVALIDTEMP 0xffff #define ONEWIRE_SENSORNAME_MAX
in „DS18B20: Mehrere Sensoren am Bus, nur letzte Temp. stimmt“ · Mikrocontroller und Digitale Elektronik ·