-
PDF
OV528_DS_1.3.pdf
-T100 Pin Assignment 8 Figure 5. OV528-T64 Package 32 Figure 6. OV528-T100 Package 33 Figure 7. OV528-B64 Package 34 OV528 Datasheet Doc #DS201 © OmniVision Technologies Inc., 2002, version 1.0 Page 2 D ATASHEET Tables Table 1. OV528-64 vs. OV528-100 4
-
PDF
MPASM__MPLINK__MPLIB_User_s_Guide.pdf
(runs Dly32 Macro, ;1 sec in this case). nop ;ZERO STOPWATCH, put breakpoint here. DS33014K-page 132 © 2009 Microchip Technology Inc. Assembler Examples, Tips and Tricks goto TestCode ;Go back to top of program
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IPD053N06N_Infineon.pdf
Q gd V DD=30 V, ID=45 A, - 5 7 Switching charge Q sw V GS=0 to 10 V - 9 - Gate charge total Q - 27 32 g Gate plateau voltage Vplateau - 4.8 - V V =0.1 V, Gate charge total, sync. FET Q g(sync) DS - 24 - nC V GS=0 to 10 V Q V =30 V, V =0 V Output charge oss DD GS - 32 - Reverse Diode Diode continuous
in „12V mit Logic Mosfet schalten - funktioniert nicht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ks0073.pdf
HS4 to “High” (Refer to Table 8). (2) (DH = 1) RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display Shift per Line Enable This instruction selects the line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate each
in „RE bit beim KS0073“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ks0073.pdf
HS4 to “High” (Refer to Table 8). (2) (DH = 1) RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display Shift per Line Enable This instruction selects the line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate each
in „EA DIP204-4 Datenblatt verständnis“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ks0073.pdf
HS4 to “High” (Refer to Table 8). (2) (DH = 1) RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display Shift per Line Enable This instruction selects the line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate each
in „LCD Display DIP204-6“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ks0073.pdf
HS4 to “High” (Refer to Table 8). (2) (DH = 1) RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display Shift per Line Enable This instruction selects the line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate each
in „Initialisierung von KS0073“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Display_driver_ks0073.pdf
HS4 to “High” (Refer to Table 8). (2) (DH = 1) RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display Shift per Line Enable This instruction selects the line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate each
in „LCD Display ansteuern mit KS0073“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ks0073.pdf
HS4 to “High” (Refer to Table 8). (2) (DH = 1) RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display Shift per Line Enable This instruction selects the line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate each
in „Probleme mit LCD“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
P5504EDG.pdf
250µA V Gate Threshold Voltage V GS(th) VDS = VGS ID= -250µA -1 -1.5 -2.5 Gate-Body Leakage IGSS V DS= 0V, VGS = ±20V ±250 nA V = -32V, V = 0V 1 Zero Gate Voltage Drain Current I DS GS DSS V = -30V, V = 0V, T = 125 °C 10 µA DS GS J 1 On-State Drain Current D(ON) V DS= -5V, VGS = -10V -32 A AUG-19-2004
in „Suche Ersatz für SMD Sicherung K“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
___MPASM_USER_S_GUIDE_with_MPLINK_and_MPLIB.pdf
If this directive is used with the PIC17CXX family, the hex file output format must be set to INHX32 through the command line or the LIST directive. Example list p=17c42,f=INHX32 _ _config H’FFFF’ ; Default configuration bits 1997 Microchip Technology Inc. DS33014F - page 29 MPASM USER’S GUIDE with
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Leiterplatte Nucleo Board Clock Shield
IRF9310 WordClock Shield Nucleo B used to connect ESP8266, DS32 STM32F411RE, DS32 OR, DS1820, DCF77, DS32 U5 - 01 (c) Jan 2016 by T. Giese
in „WordClock mit WS2812“ · Projekte & Code · · Platinenfotos
-
PDF
DS_K4B4G1646D-BC_I_P_Rev102.pdf
rate and 2V/ns DQS slew rate 3. Optional in DDR3 SDRAM [ Table 58 ] Derating values DDR3-800/1066 tDS/tDH - (AC175) 1 tDS, tDH Derating in [ps] AC/DC based DQS,DQS Differential Slew Rate 4.0 V/ns 3.0 V/ns 2.0 V/ns 1.8 V/ns 1.6 V/ns 1.4V/ns 1.2V/ns 1.0V/ns tDS tDH tDS tDH tDS tDH tDS tDH tDS
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS1302.pdf
SOIC (Industrial) PIN DESCRIPTION DS1302S-16 16-Pin SOIC (300-mil) X1, X2 - 32.768kHz Crystal Pins DS1302SN-16 16-Pin SOIC (Industrial) GND - Ground RST - Reset I/O - Data Input/Output SCLK - Serial Clock V CC1, VCC2 - Power Supply Pins
in „genauer TIMER“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS1302.pdf
SOIC (Industrial) PIN DESCRIPTION DS1302S-16 16-Pin SOIC (300-mil) X1, X2 - 32.768kHz Crystal Pins DS1302SN-16 16-Pin SOIC (Industrial) GND - Ground RST - Reset I/O - Data Input/Output SCLK - Serial Clock V CC1, VCC2 - Power Supply Pins
in „RTC DS 1302“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
3003E.pdf
VCC AA17 a VCC VB36 b VB26 b VB16 b AB36 b AB26 b AB16 b VC34 a VC24 a VC14 a AC34 a AC24 a AC14 a VD32 c f b VD22 c f b VD12 c f b AD32 c f b AD22 c f b AD12 c f b d g d g d g d g d g d g VE31 e VE21 e VE11 e AE31 e AE21 e AE11 e VF39 f e d c VF29 f e d c VF19 f e d c AF39 f e d c AF29 f e d c AF19 f
in „Suche Schaltplan Netzgerät QJ3003E“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
QJ3003E_S_netzteil.pdf
VCC AA17 a VCC VB36 b VB26 b VB16 b AB36 b AB26 b AB16 b VC34 a VC24 a VC14 a AC34 a AC24 a AC14 a VD32 c f b VD22 c f b VD12 c f b AD32 c f b AD22 c f b AD12 c f b d g d g d g d g d g d g VE31 e VE21 e VE11 e AE31 e AE21 e AE11 e VF39 f e d c VF29 f e d c VF19 f e d c AF39 f e d c AF29 f e d c AF19 f
in „QJE 3005E III Schaltbild“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
PIC12F508_Datasheet.pdf
Value Timer0 Rate WDT Rate 000 1 : 2 1 : 1 001 1 : 4 1 : 2 010 1 : 8 1 : 4 011 1 : 16 1 : 8 100 1 : 32 1 : 16 101 1 : 64 1 : 32 110 1 : 128 1 : 64 111 1 : 256 1 : 128 DS41236E-page 24 © 2009 Microchip Technology Inc. PIC12F508/509/16F505 REGISTER 4-4: OPTION REGISTER (PIC16F505) W-1 W-1 W-1 W-1 W-1 W-
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
-
PDF
PIC12F508.pdf
Value Timer0 Rate WDT Rate 000 1 : 2 1 : 1 001 1 : 4 1 : 2 010 1 : 8 1 : 4 011 1 : 16 1 : 8 100 1 : 32 1 : 16 101 1 : 64 1 : 32 110 1 : 128 1 : 64 111 1 : 256 1 : 128 DS41236E-page 24 © 2009 Microchip Technology Inc. PIC12F508/509/16F505 REGISTER 4-4: OPTION REGISTER (PIC16F505) W-1 W-1 W-1 W-1 W-1 W-
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
-
PDF
ESP32Radio.pdf
+ C þ R R1 FB U1 C8 J7 SD SCK IO18 IO35 IO35 RST GND DEMP C49 C50 C51 C52 1 R46 U8B 7 2,4k TDA7439DS L IN 100k 7 EN 10n C11 SD Miso 31 IO19 IO34 6 IO34 IO36 2 SD SDA 2 6 1 33 9 3 3 4,7k - BS þÿ22µ SP SDA IO21 IO33 IO33 IO39 SP SCL þÿ2,2µ þÿ2,2µ 2,2n 2,2n C53 4 k SS 8 SP SCL 36 IO22 IO32 8 IO32 IO34
in „TDA7439DS Störgeräusche und ein kochender TDA7377“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IRF_1404_S.pdf
Drain-to-Source On-Resistanc––– 0.00350.004 VGS= 10V, D = 95A VGS(th) Gate Threshold Voltage 2.0 ––– 4.0 V V DS= 10V, D = 250µA gfs Forward Transconductance 106 ––– ––– S VDS= 25V, D = 60A DSS Drain-to-Source Leakage Current ––– ––– 20 µA VDS= 40V, VGS = 0V ––– ––– 250 VDS= 32V, VGS = 0V, J = 150°C I Gate-to-Source
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
1-buz171.pdf
Transconductance gfs S V ≥2 I R I = -5 A 1.5 2.3 - DS * D * DS(on)max, D Input capacitance C iss pF V GS= 0 V, DS = -25 V, f = 1 MHz - 750 1000 Output capacitance C oss V = 0 V, V = -25 V, f = 1 MHz - 270 400 GS DS Reverse transfer capacitance C rss V GS
in „IRF9Z34N als Ersatz für BUZ171“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IXFH13N50.PDF
10 V; D = 0.5 ID25 pulse test 7.5 9.0 S C 2800 pF iss C V = 0 V, V = 25 V, f = 1 MHz 300 pF oss GS DS C 70 pF rss td(on) 18 30 ns tr VGS = 10 V, V DS = 0.5 V DSS, 27 40 ns td(off) D = 0.5 I D25, RG= 4.7 W (External) 76 100 ns tf 32 60 ns Q 110 120 nC g(on) Dim. Millimeter Inches Q V = 10 V, V = 0.5 V , I = 0.5 I 15 25 nC Min. Max. Min. Max. gs GS DS DSS D D25 A 19.81 20.32 0.780 0.800 Q 40 50 nC B 20.80 21.46 0.819 0.845 gd C 15.75 16.26 0.610 0.640 R thJC 0.7 K/W D 3.55 3.65 0.140 0.144 R thCK 0.25 K/W E 4.32 5.49 0.170 0.216 F 5.4 6.2 0.212 0.244
in „Betriebsstrom des MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IXFH13N50.PDF
10 V; D = 0.5 ID25 pulse test 7.5 9.0 S C 2800 pF iss C V = 0 V, V = 25 V, f = 1 MHz 300 pF oss GS DS C 70 pF rss td(on) 18 30 ns tr VGS = 10 V, V DS = 0.5 V DSS, 27 40 ns td(off) D = 0.5 I D25, RG= 4.7 W (External) 76 100 ns tf 32 60 ns Q 110 120 nC g(on) Dim. Millimeter Inches Q V = 10 V, V = 0.5 V , I = 0.5 I 15 25 nC Min. Max. Min. Max. gs GS DS DSS D D25 A 19.81 20.32 0.780 0.800 Q 40 50 nC B 20.80 21.46 0.819 0.845 gd C 15.75 16.26 0.610 0.640 R thJC 0.7 K/W D 3.55 3.65 0.140 0.144 R thCK 0.25 K/W E 4.32 5.49 0.170 0.216 F 5.4 6.2 0.212 0.244
in „Wie heiß wird mein MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IXFH13N50.PDF
10 V; D = 0.5 ID25 pulse test 7.5 9.0 S C 2800 pF iss C V = 0 V, V = 25 V, f = 1 MHz 300 pF oss GS DS C 70 pF rss td(on) 18 30 ns tr VGS = 10 V, V DS = 0.5 V DSS, 27 40 ns td(off) D = 0.5 I D25, RG= 4.7 W (External) 76 100 ns tf 32 60 ns Q 110 120 nC g(on) Dim. Millimeter Inches Q V = 10 V, V = 0.5 V , I = 0.5 I 15 25 nC Min. Max. Min. Max. gs GS DS DSS D D25 A 19.81 20.32 0.780 0.800 Q 40 50 nC B 20.80 21.46 0.819 0.845 gd C 15.75 16.26 0.610 0.640 R thJC 0.7 K/W D 3.55 3.65 0.140 0.144 R thCK 0.25 K/W E 4.32 5.49 0.170 0.216 F 5.4 6.2 0.212 0.244
in „Puls weiten modulation“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
FS14KM-9.PDF
DSSDrain-sourcebreakdownvoltagD = 1mA, GS = 0V 450 — — V V (BR) GSSGate-sourcebreakdownvoltageG = ±100 A, DS = 0V ±30 — — V IGSS Gate-source leakage currentVGS = ±25V, DS= 0V — — ±10 A IDSS Drain-source leakage currenVDS = 450V,GS = 0V — — 1 mA VGS (th) Gate-sourcethresholdvoltageI = 1mA, DS = 10V 2 3 4 V rDS
in „High speed switching mosfet“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CCP_Tricks.pdf
seconds a) Timer1 overflows at: Tosc*4*65536* prescaler b) For a prescaler of 1:1, Timer1 overflows in 32.8 ms. c) A prescaler of 8 will cause an overflow at a time greater than 0.2 seconds. 8 x 32.8 ms = 0.25s DS41214A-page 18 © 2003 Microchip Technology Inc. Tips ‘n Tricks Step #2: Calculate CCPR1 (CCPR1L
in „Lüfter über PWM, Bauteilauswahl?!?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
http.cpp
rtc_temp, ".5"); } strcat (rtc_temp, "°C"); } else { strcpy (rtc_temp, "offline"); } uint_fast8_t ds18xx_is_up = get_numvar (DS18XX_IS_UP_NUM_VAR); if (ds18xx_is_up) { temp_index = get_numvar (DS18XX_TEMP_INDEX_NUM_VAR); sprintf (ds18xx_temp, "%d", temp_index / 2); if (temp_index % 2) { strcat (ds18xx_temp
-
PDF
listing.pdf
Registerbank_Adresse Variable in der Reg_Bank 1 (Beispiele) dseg at 8 ;nutzt RG1 R0.. max. 8 Byte MASKE: ds 1 ;ein Byte für MASKE res. (entspricht R0) OINTER: ds 1 ;ein Byte für POINTER res. (entspricht R1) Variable im frei nutzbarem Reg_bereich (ein Beispiel) rseg main_data A_normiert: ds 2 ; lo/hi Byte für Normierten Analogwert A_Mittelwert: ds 2 ; lo/hi Byte des Mittelwertes, gerundet CD_Daten: ds 8 ; Char's fürs Display P_Daten: ds 32 ; lo/hi Byte Ringpuffer P_Hilfswert: ds 1 ; aktuelle Position im Ringpuffer 0_Hilfswert: ds 1 ; Erweiterung
in „Problem mit ADC an mega128“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
listing.pdf
Registerbank_Adresse Variable in der Reg_Bank 1 (Beispiele) dseg at 8 ;nutzt RG1 R0.. max. 8 Byte MASKE: ds 1 ;ein Byte für MASKE res. (entspricht R0) OINTER: ds 1 ;ein Byte für POINTER res. (entspricht R1) Variable im frei nutzbarem Reg_bereich (ein Beispiel) rseg main_data A_normiert: ds 2 ; lo/hi Byte für Normierten Analogwert A_Mittelwert: ds 2 ; lo/hi Byte des Mittelwertes, gerundet CD_Daten: ds 8 ; Char's fürs Display P_Daten: ds 32 ; lo/hi Byte Ringpuffer P_Hilfswert: ds 1 ; aktuelle Position im Ringpuffer 0_Hilfswert: ds 1 ; Erweiterung
-
PDF
70599B.pdf
low noise amplifier, IC5, when receiving. A low-pass filter is formed by components: L10, L11, C31, C32 and C36. The remaining passive components provide bias and decoupling. 2009 Microchip Technology Inc. Preliminary DS70599B-page 9 MRF24J40MB FIGURE 2-1: MRF24J40MB SCHEMATIC F . 2 M 1 H 0 2 M 1 DS70599B-page
in „AVR32UC3B mit Funkmodul MRF24J40MB“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.lst
DS8 1404 \ 0000057C REQUIRE `?<Initializer for einstellungen_txt_28x28>` \ In segment DATA_I, align 4, align-sorted \ unsigned char __data messen_32x29[1855] \ messen_32x29: \ 00000000 DS8 1856 \ 00000740 REQUIRE `?<Initializer for messen_32x29>` \ In segment DATA_I, align 4, align-sorted \ unsigned char __data messen_txt_43x8[703] \ messen_txt_43x8: \ 00000000 DS8 704 \ 000002C0 REQUIRE `?<Initializer for messen_txt_43x8>` \ In segment
in „LPC2103 Speicherproblem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Masterarbeit.pdf
dies in Abbildung 7.31b anhand der geringen Abweichungen ersichtlich ist [97][98]. Die Verläufe von uDS,2 und u GS,2 bei verschiedenen Ausgangsleistungen, sind in Abbildung 7.32a und 7.32b dargestellt. Aus den Verläufen sind keine Abweichungen zu den Schalt- vorgängen im Einzelbetrieb aus dem Abschnitt
in „False Turn On bei Synchron Buck mit eGaN FETs“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
delay.asm
---------------------------------------------------- .area OSEG (OVR,DATA) __delay_loop_8_PARM_1: .ds 1 .area OSEG (OVR,DATA) __delay_loop_16_PARM_1: .ds 2 .area OSEG (OVR,DATA) __delay_loop_32_PARM_1: .ds 4 ;-------------------------------------------------------- ; absolute external ram data ;-----
in „PFS154 und Assembler im C-Quellcode mit SDCC 4.4.4“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BTS_100_High_Side.pdf
0, D = — 0.25 mA — 50 — — Gate threshold voltage V GS(th) V = V , I = — 1 mA — 2.5 — 3.0 — 3.5 GS DS D Zero gate voltage drain current I DSS A V = 0 V,V = — 50 V GS DS Tj= 25 °C — — 1 — 10 Tj= 150 °C — — 100 — 300 Gate-source leakage current I GSS VGS = — 20 V,V DS= 0 Tj= 25 °C — — 10 — 100 nA Tj= 150
in „Motorsteuerung mit kollektorschaltung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
bts100.pdf
0, D = — 0.25 mA — 50 — — Gate threshold voltage V GS(th) V = V , I = — 1 mA — 2.5 — 3.0 — 3.5 GS DS D Zero gate voltage drain current I DSS A V = 0 V,V = — 50 V GS DS Tj= 25 °C — — 1 — 10 Tj= 150 °C — — 100 — 300 Gate-source leakage current I GSS VGS = — 20 V,V DS= 0 Tj= 25 °C — — 10 — 100 nA Tj= 150
in „BTS 100 Ersastzlösung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC24FJ256DA210_Development_Board_User_s_Guide__.pdf
and the like is provided only for your convenience The Microchip name and logo, the Microchip logo, dsPIC, and may be superseded by updates. It is your responsibility to K EELOQ , KEEL OQ logo, MPLAB, PIC, PICmicro, PICSTART, ensure that your application meets with your specifications. PIC 32 logo, rfPIC
in „VGA Display am PIC24FJ256DA210 läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ssd1803_2_0.pdf
and HS4 to "High". (refer to Table 9-2) DH = 1 RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display shift per line enable this instruction selects shifting line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
I2C_Sheet.pdf
SP7 16 LED-K 3 SP2W VCC U12 DS3232 GND 8x2 Q6 NXV75UP R77 JP19 4 Vcc INT/SQW 5 2 1 2 J47 GND Vgs > 1V BL-SEL PB4 6 RTCRES R79 tr~4us 3 4K7 TP7 RESET- 3 15 RST PWM 1 INT/SQW 2 R89 C59 GND GND * 33 OHM, 0.5W 32KHZ OUT 1 0u1 SCL 20 LCD-BL
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TM56E6422-tenxtechnology.pdf
2.2V~4.15V 1.73V~3.5V PWM0CLK: CPUCLK or FIRC PWM0CLK: CPUCLK or FIRC/256 or PWM (16MHz) or FIRC*2 (32MHz) FIRC (16MHz) or FIRC*2 (32MHz) Normal PWM Normal and Half-bridge PWM ATD X V All Pin Change X V Wakeup Interrupt PWM Trigger X V ADC DS-TM56E6422_E 5 Rev 0.9, 2024/04/10 TM56E6422 Data Sheet FEATURES
in „MCU identifikation/Datenblatt - MC9989A0ZQ“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MASM61PROGUIDE.pdf
and code (including system resources) are in a single 32-bit segment. The operating system automatically initializes segment registers at load time; you need to modify them only when mixing 16-bit and 32-bit segments in a single application. CS, DS, ES, and
in „SumArray Proc Uses SI, Was heisst bitte das Uses bei MASM?“ · Softwareentwicklung ·
-
PDF
KS0073.pdf
are set to "Low" (disable), no display is shifted. 32 34COM/60SEG DRIVER & CONTROLLER FOR DOT MATRIX LCD S6A0073 Table 8. Relationship between DS and COM signal Enable bit Enabled common signal Description during shift HS1/DS1 COM1 - COM8 HS2/DS2 COM9 - COM16 The part of display line that corresponds to enabled HS3/DS3 COM17 - COM24 common signal can be shifted. HS4/DS4 COM25 - COM32 33 S6A0073 34COM/60SEG DRIVER & CONTROLLER FOR DOT MATRIX LCD 9) Function Set (1) RE = 0 RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0
in „Eigene Zeichen bei LCD mit KS0073 für blöde“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
A100_IRF3415_IF.pdf
4.5V ,D 4.5V ,D I I 20us PUoSE WIDTH 20us PULoE WIDTH 10 T J 25 C 10 TJ= 175 C 1 10 100 1 10 100 V DS , Drain-to-Source Voltage (V) VDS , Drain-to-Source Voltage (V) Fig 32 pCuical Oytuyt hfaracteristics Fig 12 pCuical Oytuyt hfaracteristics 1000 3.0 e D = 37A n A t t i 2.5 e e r R C n )2.0 e O d r TJ
in „Suche IR 513H“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CP2104-EK.pdf
interface J1 UART signal access connector J2, J3 GPIO access connector J4 Power connector DS0–DS3 Green GPIO LEDs DS4 Red SUSPEND indicator LED _________ SUSPEND LED J2 DS4 DS3 DS2 P1 P2 RS232 Transceiver CP2104 Pin 1 J3 DS1 Pin 2 J1 J4 DS0 Figure 3. CP2104 Evaluation Board with Default Shorting
in „[V] kleines Eval Kit Silabs CP2104-EK ( USB- RS232)“ · Markt ·
-
PDF
MOSFET.pdf
Normalized On-Resistance vs. Temperature 35000 V = 0V, f = 100 kHz 16 GS ID= 180A C iss= Cgs+ Cgd C dsSHORTED V V = 80V 30000 C rss= Cgd ( DS C = C + C g V DS = 50V ) oss ds gd l 12 V = 20V F 25000 o DS ( Ciss e c r n 20000 o i - 8 a t a 15000 e C a C G 10000 ,S 4 Coss G V 5000 Crss 0 0 0 50 100 150 200
in „LeistungsMosfet Kühlfläche als Drain-Anschluss nutzen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
drm001.pdf
Tables 13 List of Figures and Tables Figure Title Page 4-10 Real-Time Clock, Dallas Semiconductor DS1307 Connections. . . . . . . . . . . . . . . . . . . . . . . . . . . . . .67 4-11 MC68HC908GP32 Monitor Mode Connections . . . . . . . . . . . .72 5-1 MC68HC908GP32 PLL Connections . . . . . . . . .
in „AVR ATTiny84A mit C++ Werte an bestimmte Speicherstelle schreiben“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
40001722A.pdf
and Design” (DS00943) that is associated with the Timer1 peripheral. It is • AN949, “Making Your Oscillator Work” optimized for timekeeping operations with a 32.768 kHz crystal connected between the SOSCO and (DS00949
in „PIC16(L)F1703 low voltage Programmierung?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Seiten_aus_Websterphysik.pdf
.35),1.38) |S(x)| ∆ xP(x ,t)dS x S(x) 1 ′ = lim ∆ xP(x ,t)dV x′ ǫ→+0 ǫ|S(x)| Gx,ǫ = lim 1 ∇ x(x ,t) dS x′ Gauß ǫ→+0 ǫ|S(x)| ∂G x,ǫ 1 1 = lim ∇ x′P(x ,t) dS x ′− ∇ x(x ,t) dS x′ . |S(x)| ǫ→+0 ǫ S(x+ǫ) S(x) Mit ϑ=ϑ 0 2π ∂ ∇ x(x ,t) dS x′ = P(r,ϑ,ϕ,t) r sinϑdϑdϕ S(x) ϑ=0 ϕ=0 ∂r |r=x ϑ=ϑ0 2π = r2 ∂ P(r,ϑ,
-
PDF
DS3232M_RTC_Board_R1.pdf
1 2 3 4 DS323M RTC BOARD D D 3V3 3V3R U2 VCC 3V3 JP1 2 3 TP2 32KHZ VoutVin 1 TP4 REGEN C3 C5 Vss C4 32kHz 10uF, 16V R6 R1 3.3V 1u MCP1700 1u 100R0 1K R2 (CSNN) U1 100K GND GND GND GND J1 3V3 DS3232M C1 2 3 INTSQWDR RST- 1 SPARE GND Vcc INT/SQW 2 RESET 0u1 32KHZ 3 32KHZ RST 4 RST- INTSQW 4 INTSQW GND 5 GND R4 5 +5V 100R0 SDA TP1 1 8 R5 SCL 6 SDA CURR 32KHz SCL 7 7 SCL C B1 SDA 100R0 8 GND C TP3 2 3 2 3 6 Vbat GND HEADER 6 RTC+ R10 Q1 R11 Q3 BR1225-1HC C2
in „RTC DS3231 - Temperatur Daten?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CLC_Configurable_Logic_Cell_Tips__n_Tricks.pdf
(RC3) CLC2OUT OUTPUT D Q (CLC3OUT) CLOCK CLC1OUT R CLC1 CLC2 CLC3 2012 Microchip Technology Inc. DS41631B-page 21 Configurable Logic Cell Tips ’n Tricks TIP 10: DELAY BLOCK/DEBOUNCER FIGURE 32: BLOCK DIAGRAM In this example, the Configurable Logic Cell (CLC) is being used to implement a delay block
in „Funktionsgenerator, NCO, PIC“ · Mikrocontroller und Digitale Elektronik ·