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PDF
dp8212.pdf
noted Symbol Parameter Conditions Min Typ Max Units F Input Load Current, VF e 0.45V b0.25 mA STB, DS2, CLR, D1 –D8 Inputs F Input Load Current, MD Input VF e 0.45V b0.75 mA F Input Load Current, DS1 Input VF e 0.45V b 1.0 mA R Input Leakage Current VR e VCC Max 10 mA STB, DS2, CLR, D1 –D8 Inputs R Input Leakage Current, MD Input VR e VCC Max 30 mA R Input Leakage Current, DS1 InputVR e VCC Max 40 mA VC Input Forward Voltage Clamp ICe b 5 mA b 1 V VIL Input ‘‘Low’’ Voltage DP8212M 0.08 V DP8212 0.85 V VIH Input ‘‘High’’ Voltage 2.0 V V Output ‘‘Low’’ Voltage I e 10 mA DP8212M
in „Suche Datenblatt NEC µPB8212“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_MOSFET.pdf
pad on a 0.06-inch thick FR4 PCB. (2) Max R = 20°C/W, pulse duration ≤100 μs, duty cycle ≤1% θJL . R DS(on) vs V GS Gate Charge ) 30 10 27 TC= 25°C,ID= 8A ) 9 D = 8A ( TC= 125°C,ID= 8A ( VDS= 30V e 24 g 8 n l t 21 V 7 s 18 e 6 R u t 15 o 5 t o - 12 e 4 O 9 a 3 ) G o 6 S 2 D V R 3 1 0 0 0 2 4 6 8 10 12
in „DRV8711 Steppermotortreiber - Hohe Geschwindigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
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gravity_g.pdf
---- g=0; n=0; for(i=1;i<9;i++)//play with i=1; ... i=8; for(j=i+1;j<10;j++) { ds1=ds[i]; ds2=ds[j];//meter dt1=dt[i]/f_cpu; dt2=dt[j]/f_cpu;//second because of T2_PS_1_1 g += 2*(ds2*dt1-ds1*dt2)/(dt2*dt2*dt1-dt1*dt1*dt2); n++; } g=g/n;//average value of g my_ftoa(g,txt)
in „Microchip springt auf den Arduino Zug auf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SBR10U40CTFP.pdf
Diodes Incorporated. SBR10U40CT, SBR10U40CTFP 2 of 6 April 2015 Document number: DS30951 Rev. 8 - 2 www.diodes.com © Diodes Incorporated SBR10U40CT, SBR10U40CTFP 8 A0,000 m ( TA= 150°C 7 N ) E TA= 125°C ( 6 R 1,000 N U I C T 5
in „Aufwärtsschaltregler bauen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds.c
DS1820 Sensoren entdeckt wurden */ devices=w1_search(0xf0,rom_code); sprintf(lcd_buffer,"%u DS18S20\nAnzahl aktiv",devices); lcd_puts(lcd_buffer); delay_ms(2000); /* ROM Code für jeden Sensor anzeigen *
in „DS1820 defekt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds.c
DS1820 Sensoren entdeckt wurden */ devices=w1_search(0xf0,rom_code); sprintf(lcd_buffer,"%u DS18S20\nAnzahl aktiv",devices); lcd_puts(lcd_buffer); delay_ms(2000); /* ROM Code für jeden Sensor anzeigen *
in „DS1820 defekt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
93LC56B.pdf
— (RDY/BSY) 11 EWDS 1 00 0 0 X X X X X X — HIGH-Z 11 EWEN 1 00 1 1 X X X X X X — HIGH-Z 11 READ 1 10 X A6 A5 A4 A3 A2 A1 A0 — D15 - D0 27 WRITE 1 01 X A6 A5 A4 A3 A2 A1 A0 D15 - D0 (RDY/BSY) 27 WRAL 1 00 0 1 X X X X X X D15 - D0 (RDY/BSY) 27 1997 Microchip Technology Inc. Preliminary DS21208A-page 3
in „Primo EEPROM umprogrammieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
X_Nucleo_IKS01A1_Shield_Driver.h
LSM6DS0_ACT_DUR 0x05 #define LSM6DS0_INT_GEN_CFG_XL 0x06 #define LSM6DS0_WHO_AM_I 0x0F #define LSM6DS0_CTRL_REG1_G 0x10 #define LSM6DS0_ODR_G2 7 #define LSM6DS0_ODR_G1 6 #define LSM6DS0_ODR_G0 5 #define LSM6DS0_FS_G1 4 #define LSM6DS0_FS_G0 3 #define LSM6DS0_BW_G1 1 #define LSM6DS0_BW_G0 0 #define LSM6DS0_CTRL_REG6_XL 0x20 #define LSM6DS0_ODR_XL2 7 #define LSM6DS0_ODR_XL1 6 #define LSM6DS0_ODR_XL0 5 #define LSM6DS0_FS1_XL 4 #define
in „Verständnisfrage zum #include beim "Auslagern" in .c und .h“ · Mikrocontroller und Digitale Elektronik ·
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PDF
csd18502kcs.pdf
Low Qg and Qgd TA= 25°C TYPICAL VALUE UNIT • Low Thermal Resistance V Drain to Source Voltage 40 V DS • Avalanche Rated Qg Gate Charge Total (10V) 52 nC • Logic Level Qgd Gate Charge Gate to Drain 8.4 nC V = 4.5V 3.3 mΩ • Pb Free Terminal Plating RDS(on) Drain to Source On Resistance GS VGS = 10V 2.4
in „Netzteil: 2 Mosfets parallel OK?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VMM1500-0075P.pdf
Dual Power VMM 1500-0075P V DSS = 75 V ID25 = 1500 A MOSFET Module R DS(on) = 0.55 m Ω Phaseleg Configuration Preliminary data 3 8 9 1 11 10 2 MOSFET T1 + T2 Features Trench MOSFETs Symbol Conditions Maximum Ratings – low R DSon – optimized intrinsic reverse diode VDSS TVJ
in „Impulsströme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC1477_LinearTechnology.pdf
FEATURES DESCRIPTION Extremely Low R Switch: 0.07 The LTC 1477/LTC1478 protected high side switches DS(ON) No Parasitic Body Diode provide extremely low R DS(ON) switching with built-in Built-In Short-Circuit Protection: 2A protectionagainstshort-circuitandthermaloverloadcon- Built-In Thermal Overload
in „TPS61175 Overccurent Protection Mode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PH7030L.pdf
dissipation as a function of mounting base temperature function of mounting base temperature 3 003aaa385 10 D (A) Limit R = V / I DSon DS D t = 10 μs 102 p 100 s 10 DC 1 ms 10 ms 100 ms 1 -1 10 -1 2 10 1 10 10 V DS(V) Fig 3. Safe operating area; continuous and peak drain currents as a function of drain-source
in „Am3 Mainboard Vcore instabil wenn kalt“ · PC Hard- und Software ·
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PDF
Projekt_Hausautomation-Temperatursensoren.pdf
1 2 3 4 5 6 +3.3V A A Temperaturerfassung 1 J7 2 Power 3.3V 3 D 2 V U4 DQ D N DS18B20 G 1 1 1 2 2 3 3 4 4 5 5 3 J12 J116 7 7 D 2 V U5 8 8 DQ D DS18B20 9 9 G 10 10 1 B 11 11 B 12 12 3 Temperatursensoren DS18b20 D 2 V U6 U3 DQ D DS18B20 GND G NodeMCU1.0(ESP-12E) R6 1 3,3k 1 A0(ADC0) D0(GPIO16) 30 2 29 3 RSV D1(GPIO5) 28 RSV D2(GPIO4) 3 4 SD3(GPIO10) D3(GPIO0) 27 5 26 D 6 SD2(GPIO9) D4(GPIO2) 25 2 V U7 SD1(MOSI) 3.3V DQ D 7 CMD(CS) GND 24 N DS18B20 8 23 G SDO(MISO) D5(GPIO14) 1 9 CLK(SCLK) D6(GPIO12) 22 10 21 C 11 GND D7(GPIO13) 20 C 3.3V D8(GPIO15
in „ESP8266 mehrere Temperaturfühler mit Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R7G_-_T7G.pdf
434.225MHz T7G-434-525 SIL Transmitter 434.525MHz T7G-434-525-3V SIL Transmitter 434.525MHz, 3 Volt version DS307-7 Oct 05 ©2004 REG No 277 4001, England. Page 3 T7 / R7 FM 433MHz Narrow Band T7G / R7G Absolute Maximum Ratings: Receiver R7 R7G Min. Max. Min. Max. Operating Temperature -10°C +55°C -10°C +55°C
in „LED als Signalanzeige für Funkempfänger R7G“ · Mikrocontroller und Digitale Elektronik ·
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gdm12864a.pdf
specified about current flowing throuSS.V Internal oscillation circuit: Rf=47kO, cf=20pF Each terminals of DS1, DS2, FS, SHL, and MS is connected to DD and out is no load. *4. This value is specified about current flowing throuSS.V Each terminals is DS1, DS2, FS, SHL, PCLK2 and CR is connected to VDD,MS is connected
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MOSFET_Texas_Instruments.pdf
, L = 0.1 mHG R = 25 Ω 156 mJ (1) Max R θJC = 0.8°C/W, pulse duration ≤ 100 μs, duty cycle ≤ 1%. R DS(on) vs V GS Gate Charge 10 10 ) 9 T C 25°C, ID = 100 A 9 ID= 100 A : T C 125°C, ID = 100 A V V DS= 20 V ( 8 e 8 c a a 7 o 7 i V e 6 c 6 R u a 5 S 5 S 4 t 4 n t - 3 a 3 n - S 2 S 2 D V R 1 1 0 0 0 2 4
in „Übertragung eines Pspice-Makromodells(OpV) in LTSpice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NHD-0420CW-AY3-587980.pdf
Item Symbol Condition Min. Typ. Max. Unit Top ϕY+ 80 - - ⁰ Optimal Bottom ϕY- 80 - - ⁰ Viewing Cr ≥ 10,000:1 Angles Left θX- 80 - - ⁰ Right θX+ 80 - - ⁰ Contrast Ratio Cr 10,000:1 - - - Rise Tr - - 10 - µs Response Time Fall Tf - - 10 - µs Brightness 50% Checkerboard 100 120 - cd/m2 Lifetime Ta=25°C 150,000
in „NHD-0420CW-AY3 4x20 Zeilen OLED in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
l__fung.bas
Wartezeit Taster Declare Sub Getdatetime Declare Sub Settime_date Dim Dsid(32) As Byte 'Die ausgelesenden DS1820 adessen Dsid(1) = &H10 : Dsid(2) = &HA6 : Dsid(3) = &HE1 : Dsid(4) = &HF6 : Dsid(5) = &H01 : Dsid(6) = &H08 : Dsid(7) = &H00 : Dsid(8) = &HA7 '##### Dsid(9) = &H10 : Dsid(10) = &HE4 : Dsid(11) =
in „Ds1307 bleibt einach stehen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5110X.PDF
precharge time (fasCP 10 — 10 — 10 — ns page mode) Row address ASR 0 — 0 — 0 — ns setup time Row address RAH 10 — 10 — 10 — ns hold time Column address setup ASC 0 — 0 — 0 — ns time Column address hold CAH 15 — 15 — 15 — ns
in „Datenblatt TC55100BPL-70L“ · Mikrocontroller und Digitale Elektronik ·
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Datei
thermometer0_1.bas
Portb = 198 '' ************ ENDE VOM DISPLAY CODE Loop Marke: 'Diese Sequenz dient zum Auslesen des DS1820 (vgl.Datenblatt vom DS1820) 1wreset ' 1wire Reset 1wwrite Skip_rom ' Read ROM command 1wwrite Convertt ' Measure Temperature 'Vom Testen übrig, um zu sehen, wann das Umwandeln abgeschlossen ist '
in „Thermometer mit ds18s20 und LED Annzeige“ · Projekte & Code ·
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Funkmodul.pdf
decoders. The data is true data, i.e. as fed to the transmitter. Load impedance should be > 1kΩ and < 1nF DS000022 Rev D July ‘99 1999 REG No 277 4001, ENGLAND. Page 3 FM T RANSMITTER & R ECEIVER FM-TX2-XXX M ODULES . (2 ND G ENERATION ) FM-RX2-XXX Absolute Maximums: Operating temperature: -10°C to +55°CStorage
in „Funkübertragung über uC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Thermo.c
Datenrichtung jeweils festlegen - je nach dem ob daten zum DS gesedent, oder vom DS empfangen werden sollen // Kommandos an den DS1820 #define MATCH_ROM 0x55 //64 Bit code wird vom Master an ale DS gesendet - nur der DS mit dem Passenden 64Bit "namen" antwortet
in „Anfängerfrage: Temperaturgesteuerter Heizer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
//#define INCR_GEBER //#define NO_LCD #define LCD2x20 //#define LCD4x20 #define TASTEN_5 // 5 oder 10 #include <mega32.h> // Alphanumeric LCD Module functions #include <delay.h> #include <stdio.h> #include <math.h> #asm .equ __w1_port=0x12 .equ __w1_bit=4 #endasm #include <1wire.h> #include <ds1820.h
in „Heizungssteuerung mit ATMEGA 32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OV5620_CLCC_DS__1.3_.pdf
14Y1 Y6 36 OV5620 13Y0 • Power-on reset and power-down modes Y7 37 12EXP_STB Y8 38 11RESET_B Y9 39 10FREX Ordering Information PCLK 40 9 PWDN NC 41 8 NC Product Package NC 42 7 NC 43 44 45 46 46 28 3 4 5 6 OV05620-C03A (Color) CLCC-48 N E C D D N D B D F F N S H S S S A O R R R R V D S V V 5620CLCC_DS
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C-4001SR-5.pdf
NO. : DS-11-09-0090 DATE : 2009-06-15 Page : 3 PARALIGHTDCC 4.0 INCH SINGLE DIGIT DISPLAY C-4001SR-5 REV:A / 0 DRAWING NO. : DS-11-09-0090 DATE : 2009-06-15 Page : 4 Releaby PARALIGHTDCC 4.0 INCH SINGLE DIGIT
in „Frage zu 7 Segent Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DUE_Faradays_law.pdf
differentsteps insidethe for-loop: for(n=0; n<4096; n+=dn) { analogWrite(DAC0, n); ... We choose 1 dn 10 for upanddown. To avoid densely packed signals of the C# oscilloscope we usedifferent ds steps in addition. while(brun && n<i) { Serial.println(values[n]); n+=ds; ... To enter all thednnumbers required
in „Arduino Due in plain C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BAUD.ass
speichern **************************** HAUPTPROGRAMM ********************************* bset OFFSET,#$10 hiermit ueberspringen der zeit/datum-eingaben jsr TACT takterzeugung mit ds1077 HPT1 bset PULS,#$FF puls=ff=til311 dunkel schalten in anzeige bset TOC4,#$FF toc4 dezimalpunkt blinken ausschalten bset
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BSN10.pdf
drain-source leakage current VDS = 40 V; GS = 0 − − 1 A ±GSS gate-source leakage current ±VGS = 20 V; DS = 0 − − 100 nA VGS(th) gate-source threshold voltage D = 1 mA; VGS = VDS 0.4 − 1.8 V R drain-source on-resistance I = 100 mA; V = 10 V − 8 15 DS(on) D GS D = 100 mA; VGS = 5 V − 12 20 D = 10 mA; VGS
in „Pegelwandler lässt TWI erfrieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
shift to right, R/L = “0”: shift to left) (When DH = “1”) Determine the line for display shift. Shift (DS1 = “1/0”: 1st line display shift enable/disable Enable 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS2 = “1/0”: 2nd line display shift enable/disable DS3 = “1/0”: 3rd line display shift enable/disable DS4 = “1/0”:
in „RE bit beim KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
shift to right, R/L = “0”: shift to left) (When DH = “1”) Determine the line for display shift. Shift (DS1 = “1/0”: 1st line display shift enable/disable Enable 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS2 = “1/0”: 2nd line display shift enable/disable DS3 = “1/0”: 3rd line display shift enable/disable DS4 = “1/0”:
in „EA DIP204-4 Datenblatt verständnis“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
shift to right, R/L = “0”: shift to left) (When DH = “1”) Determine the line for display shift. Shift (DS1 = “1/0”: 1st line display shift enable/disable Enable 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS2 = “1/0”: 2nd line display shift enable/disable DS3 = “1/0”: 3rd line display shift enable/disable DS4 = “1/0”:
in „LCD Display DIP204-6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
shift to right, R/L = “0”: shift to left) (When DH = “1”) Determine the line for display shift. Shift (DS1 = “1/0”: 1st line display shift enable/disable Enable 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS2 = “1/0”: 2nd line display shift enable/disable DS3 = “1/0”: 3rd line display shift enable/disable DS4 = “1/0”:
in „Initialisierung von KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_driver_ks0073.pdf
shift to right, R/L = “0”: shift to left) (When DH = “1”) Determine the line for display shift. Shift (DS1 = “1/0”: 1st line display shift enable/disable Enable 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS2 = “1/0”: 2nd line display shift enable/disable DS3 = “1/0”: 3rd line display shift enable/disable DS4 = “1/0”:
in „LCD Display ansteuern mit KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
shift to right, R/L = “0”: shift to left) (When DH = “1”) Determine the line for display shift. Shift (DS1 = “1/0”: 1st line display shift enable/disable Enable 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS2 = “1/0”: 2nd line display shift enable/disable DS3 = “1/0”: 3rd line display shift enable/disable DS4 = “1/0”:
in „Probleme mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1325_Metall_Over_Cap.pdf
assuming typically on the order of several hundred kilohertz and reasonable care in the PCB layout. 10s of megahertz. In parallel, they provide a noise trap that is effective across the majority of the microcontroller’s operating frequency range. DS01325A-page 4 2010 Microchip Technology Inc. AN1325
in „Tastenverriegelung (Tastensperre)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLZ44NPBF-HXY.pdf
Mode MOSFET Description The IRLZ44NPBF uses advanced trench technology and design to provide excellDS(ON)ith low gate charge. It can be used in a wide variety of S applications. D G TO-220 General Features VDS=60V,ID=60A PIN2 D ! RDS(ON) 20mΩ @ VGS=10V " ! " PIN1 G " Application ! PIN3 S High efficiency
in „LED-Streifen fiepen bei PWM <=100%“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ISL6545-Renesas.pdf
Overcurrent Protection The error amplifier features a 20MHz gain-bandwidth - Uses Lower MOSFET’s r DS(ON) product and 9V/µs slew rate which enables high converter • Small Converter Size in 8 Ld SOIC or 10 Ld DFN bandwidth for fast transient performance. The resulting - 300kHz or 600kHz Fixed Frequency
in „Synchronwandler ISL6545A wird heiss“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
serieltest1.c
_delay_ms(100); i2c_stop; return 0; } int int_to_char(int B) //int to char { unsigned char Buffer[10]; itoa( B, Buffer, 10 ); return( Buffer ); } int digit_to_int(unsigned char d) //strtol { char str[2]; str[0] = d; str[1] = '\0'; return (int) strtol(str, NULL, 10); } void lcd_puti( int number ) //itoa { char buffer[10]; itoa( number, buffer, 10 ); lcd_puts( buffer ); } void lcd_putu( unsigned int number ) //utoa { char buffer[10]; utoa( number, buffer, 10 ); lcd_puts( buffer ); } void uart_puti( int number ) //itoa
in „PCF8574 Ausgänge“ · Mikrocontroller und Digitale Elektronik ·
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Datei
configx.h
include "C:\zuc\AVR\avr_spi.h" #endif #if zucSTM32 //#include "C:\zuc\stm\spi_stm.h" #endif #ifdef ds1820_port //#include "c:/zuc/sensors/ds1820_ids.h" #include "c:/zuc/sensors/neuds1820.h" #endif #ifdef owx_port #define my_adr 10//slave adress #include "c:/zuc/owx/owx.h" #endif #if USE_MMC //+++++++
in „Header Datei für Konfiguration erstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24lc16.pdf
Note) inputs Low level output voltage VOL — .40 V IOL = 3.0 mA, VCC= 2.5V Input leakage current II -10 10 µA V IN= .1V to CC Output leakage current ILO -10 10 µΑ VOUT = .1V to CC Pin capacitance CIN, COUT — 10 pF V CC= 5.0V (Note) (all inputs/outputs) Tamb = 25°C, F CLK= 1MHz Operating current CC write
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EL12864A.pdf
specified about current flowing througSS. Internal oscillation circuit: Rf=47kΩ, cf=20pF Each terminals of DS1, DS2, FS, SHL, and MS is connected to DD and out is no load. *4. This value is specified about current flowing througSS. Each terminals is DS1, DS2, FS, SHL, PCLK2 and CR is connected to VDD,MS is connected
in „LCD Display Powertip PG-12864A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Typ. Max. Unit Drain-source V (BR)DSS ID= 250µA, VGS =0 30 V breakdown voltage Zero gate voltage V DS= max ratings 1 µA IDSS V DS= max ratings, drain currentGSV= 0) 10 µA TC = 125°C I Gate-body leakage V = ± 20V ±100 nA GSS current DS = 0) GS V GS(th) Gate threshold voltage V DS= VGS, D = 250µA 1 V Static drain-source on V GS= 10V, D = 11A 0.038 0.05 Ω R DS(on) resistance V = 5V, I = 11A 0.045 0.06 Ω GS D Table 5. Dynamic Symbol Parameter Test conditions Min. Typ. Max. Unit Forward gfs(1) V DS= 15V, D= 11A 7 S transconductance
in „Unbekannter Spannungsregler von ST“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
BlinkLED.LST
********************************************************** 00085 00004C 00086 Delay_S 00004C 00087 DS_START 00004C 0E0A 00088 movlw 10 00004E 6E22 00089 movwf DELAYTEMP4 000050 00090 DS_OUTER 000050 0E64 00091 movlw 100 000052 6E23 00092 movwf SysWaitTempMS 000054 EC18 F000 00093 call Delay_MS 000058 2E22 00094 decfsz DELAYTEMP4, F 00005A EF28 F000 00095 goto DS_OUTER 00005E 2E24 00096 decfsz SysWaitTempS, F MPASM 03.90.01 Released BLINKLED.ASM 8-4-2009 10:28:38 PAGE 3 LOC OBJECT CODE LINE SOURCE TEXT VALUE 000060 EF26 F000 00097 goto DS_START 000064 0012 00098
in „Great Cow Basic“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AP3429_A-766309.pdf
0.600 e f U i 40 e 0.595 f k D E 30 a V INV, V OUT=1.0V b 0.590 O 20 V =5V, V =1.8V e R IN OUT F 0.585 10 V INV, V OUT=3.3V P 0.580 0 -60 -40 -20 0 20 40 60 80 100 120 140 W 1 10 100 1000 o I (mA) Temperature ( C) E OUT N PFET Drain-Source On-State Resistance vs. Temperature NFET Drain-Source On-State Resistance
in „Trafo-Treiber für DC/DC-Wandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mosfet.pdf
resistivity or lower background carrier concentration in 0 0 5 10 15 the epi. At lower voltages, the R DS(on)is Drain Voltage (Volts) dominated by the channel resistance and the contributions from the metal to Figure 6. Current-Voltage Characteristics of Power MOSFET
in „MOSFET - welche Leistung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mosfet.pdf
resistivity or lower background carrier concentration in 0 0 5 10 15 the epi. At lower voltages, the R DS(on)is Drain Voltage (Volts) dominated by the channel resistance and the contributions from the metal to Figure 6. Current-Voltage Characteristics of Power MOSFET
in „NT mit Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Mosfet-Basics-IR.pdf
resistivity or lower background carrier concentration in 0 0 5 10 15 the epi. At lower voltages, the R DS(on)is Drain Voltage (Volts) dominated by the channel resistance and the contributions from the metal to Figure 6. Current-Voltage Characteristics of Power MOSFET
in „MOSFET Sättigung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS_40210.pdf
zero-order sample-and-hold effects of peak-CMC to be included in this simple frequency-domain model. 3-10 50 180 40 Gain 135 30 18 IN 90 s ) r d 20 12 V 45 g n 10 9 VIN IN 0 D a e G 0 Phase –45 a –10 18 VIN –90 P 12 VIN –20 9 VIN –135 –30 –180 10 100 1 k 10 k 100 k 1 M Frequency (Hz) Fig. 16. Control-to-output
in „Problem mit dem Hochsetzsteller (TPS 40210)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JCS18N50WH.pdf
On-Characteristics 阈值电压 V GS(th) VDS = VGS , D =250μA 3.0 - 5.0 V Gate Threshold Voltage 静态导通电阻 R DS(ON) VGS =10V , D =9.5A - 0.22 0.27 Ω Static Drain-Source On-Resistance 正向跨导 Forward Transconductance g fs V = 40V , I =9.5A(note 4) - 24 - S DS D 动态特性 Dynamic Characteristics 输入电容 VDS25V, Input capacitance
in „Motordrehzahlregler für Laufband“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BS108_GS.pdf
Drain-Source Breakdown Voltage V(BR)DSS 240 250 – V atDI = 100 A, GS= 0 Gate-Body Leakage Current IGSS – – 10 nA at V = 15 V, V = 0 GS DS Drain Cutoff Current at DS = 130 V,GS = 0 IDSS – – 1 A at DS = 70 V,GS = 0.2 V IDSX – – 25 A Gate-Source Threshold Voltage VGS(th) 0.8 1.5 2.5 V at GS = VDS DI = 1 mA Drain-Source
in „Wär ganz toll wenn sich einer von euch mal meinen Schaltplan ansehen würde“ · Mikrocontroller und Digitale Elektronik ·