-
PDF
R3112x_SERIES_Ricoh.pdf
3 4 3 R3112N231A 2 2 3 R3112N441A 2 4 4 R3112N231C 3 2 3 R3112N441C 3 4 4 R3112N241A 2 2 4 R3112N451A 2 4 5 R3112N241C 3 2 4 R3112N451C 3 4 5 R3112N251A 2 2 5 R3112N461A 2 4 6 R3112N251C 3 2 5 R3112N461C 3 4 6 R3112N261A 2 2 6 R3112N471A 2 4 7 R3112N261C
in „IC von Tiefentladungsschutz identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
hs_sed1375.pdf
Design Center 7 A.C. Characteristics Conditions: IO V DD = 2.7 V to 5.0 V T A -40° C to 85° C T riseand T fallfor all inputs must be < 5 nsec (10% ~ 90%) C = 60pF (Bus/MPU Interface) L C L 60pF (LCD Panel Interface) 7.1
in „TFT an M16C62“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
S1D13506_Spec_Rev_12.2.pdf
] K K FC0, FC1 Decoder M/R# L C C FPDAT[8:0] D[8:0] Decoder CS# FPSHIFT FPSHIFT 9-bit A[20:0] TFT AB[20:0] D[31:16] DB[15:0] FPFRAME FPFRAME Display FPLINE FPLINE e DS# DRDY DRDY (MOD) w WE1# P AS# BS# R/W# RD/WR# S1D13506 GPIOx SIZ1
in „Suche TFT-Farb-Display für Mikrocontroller-Projekt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Computer_Kontakt_1986-08_09_-_21.pdf
cB 37 cd d3 Fc 7e 1* 79 IF 38 a8 IF 38 ab IF 38 b7 IF c8 65000 70 00 88 dS a8 Ba BB 00 88 C8 C0 £4420 7a 38 a9 d£ 06 dS ad 4b 43 fb 29 65010 a8 98 88 00 70 BB BB 88 70 00 32 £4430 28 bd d6 02 d8 28 33 d6 02 38 ce 70 48 70 40 40 00 70 83 a8 90 d4 40 £4440 5b 28 47 d6 02 38 4F cB 3d 28 0e 65030 63 00 70 48 70 50 48 00 38 a£ £4450 3d Ab 03 as d£ 04 38 30 28 31 4b 65040 30 08 70 00 FB 20 20 20 20 00 30 £4460 d£ 02 33 2a 28 4c 3d 28 4c 06 01 65050
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Typen.pdf
50 SN74S32N 60 SN74LS136N 100 SN7430N 90 SN7432N 200 SN74LS273N 90 SN74LS30N 50 SN74LS241N 100 SN7430N 70 74HCT138E 14 74F37N 60 74LS32N 100 SN74H21N 90 CD40174BE 60 SN7450N 85 SN7451N 250 OPA445AP 25 MC14069BCP 30 SN7438N 200 SN74LS54N 90
in „Riesensammlung IC Prozessoren Halbleiter - Was tun?“ · Markt ·
-
PDF
Typen_sort.pdf
50 CD74HCT74E 25 CLC400AJP 34 COM81C17 20 CP82C88 13 CP82C93 30 CQX19 60 CQX31 30 CQY31 50 CQY35NF 120 CY7C187 20 CY7C281 30 D71082 11 D71087C 100 D8288 10 D8293 9 DG303ACJ 130 DG411DJ 11 DG412 40 DG412DJ 20 DG444DJ 60 DS8831N 22 F3850PC
in „Riesensammlung IC Prozessoren Halbleiter - Was tun?“ · Markt ·
-
PDF
sqjq160e.pdf
D = 250 μA 2 3 3.5 Gate-source leakage I V = 0 V, V = ± 20 V - - ± 100 nA GSS DS GS V GS = 0 V V DS= 60 V - - 1 Zero gate voltage drain current IDSS V GS = 0 V VDS = 60 V, TJ= 125 °C - - 50 μA V = 0 V V = 60 V, T = 175 °C - - 500 GS DS J On-state drain currenta ID(on) VGS = 10 V
in „Hilfe mit MOSFET Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IS2100EV1.61.pdf
M VC O UT 2 G C LK G O E 1 16.5. Skip Reverse 1C 4nth + 1 fram e 4n th + 2 fram e Raster-row … 240 241 1 3 5 7 9 11 13 15 17 19 … 233 235 237 23 9 241 2 4 6 8 10 12 14 16 18 20 … num ber GFRM VCOUT2 GCLK GOE1 4nth +
in „LCD-Modul OPTREX 351570AG“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ART2K0FE_2K0FES_2K0FEG.pdf
Max Unit C feedback capacitance V = 0 V; V = 65 V; f = 1 MHz - 1.73 - pF rs GS DS C iss input capacitance VGS = 0 V; VDS = 65 V; f = 1 MHz - 610 - pF C oss output capacitance VGS = 0 V; VDS = 65 V; f = 1 MHz -
-
PDF
EDN_DI_6594092.pdf
R 2 IR13=I R2 +I DS4404, IDS4404 = Equation 6 �V FB � V FB . (7) DSOR04 SDAEquation 4 TO I C MASTER OR R 1 R 2 VIN DC/DC- VOUT DS4402 SCL MICROPROCESSOR I = V OUTMAX V FB ; I = V FB , CONVERTER R1 R1 Equation 45DETERMINES I C Equation 8R1ifyquationR71ysolv- R2 R2 CIRCUIT DS4404 A1 SLAVE ADDRESS ing Equation 1 oVOUTMAX thV sFBsi- VFB FB VFB OUT0 IR1 =I R2 +I DS4404 , tuting, wIR1h=yelds: ; R2 = , R2 R FSI
in „Einstellbarer Step-Up Regler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
EDN_DI_6594092.pdf
R 2 IR13=I R2 +I DS4404, IDS4404 = Equation 6 �V FB � V FB . (7) DSOR04 SDAEquation 4 TO I C MASTER OR R 1 R 2 VIN DC/DC- VOUT DS4402 SCL MICROPROCESSOR I = V OUTMAX V FB ; I = V FB , CONVERTER R1 R1 Equation 45DETERMINES I C Equation 8R1ifyquationR71ysolv- R2 R2 CIRCUIT DS4404 A1 SLAVE ADDRESS ing Equation 1 oVOUTMAX thV sFBsi- VFB FB VFB OUT0 IR1 =I R2 +I DS4404 , tuting, wIR1h=yelds: ; R2 = , R2 R FSI
in „mit µc einstellbarer Spannungsregler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DMP10H400SEQ-838150.pdf
(nC) V , DRAIN-SOURCE VOLTAGE (V) DS Figure 11. Gate Charge Figure 12. SOA, Safe Operation Area 4 of 7 DMP10H400SEQ December 2015 Document Number DS38396 Rev. 2 - 2 www.diodes.com © Diodes Incorporated DMP10H400SEQ
in „Externe Festplatte durch falsches Netzteil zerstört“ · PC Hard- und Software ·
-
PDF
Infineon-IRFP4668-DataSheet-v01_01-EN.pdf
Conditions gfs Forward Transconductance 150 ––– ––– S VDS = 50V, D = 81A Qg Total Gate Charge ––– 161 241 nC ID= 81A Q Gate-to-Source Charge ––– 54 ––– V = 100V gs DS Qgd Gate-to-Drain ("Miller") Charge ––– 52 ––– VGS = 10V f Qsync Total Gate Charge Sync. (g - gd) ––– 109 ––– ID= 81A, VDS=0V, V GS= 10V
in „Ersatz Mosfet für 6kw Wechselrichter "Reliable/WZRELB"“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Therm.txt
1 ...poke to PSW to use DSEG ; This is internal data memory ORG 20H ; Bit adressable memory SENP: DS 1 SENP1 BIT SENP.0 MINUS BIT SENP.1 MIN1 BIT SENP.2 COUNT: DS 1 SPEED: DS 1 VALUE_1: DS 1 VALUE_2: DS 1 VALUE_3: DS 1 TEMP1: DS 1 TEMP1D: DS 1 RAM: DS 9 TEP1: DS 1 TEP2: DS 1 STACK: DS 1 ; Stack begins
in „Programm(A51) DS1820 auf DS18b20 Umstellen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Therm.txt
1 ...poke to PSW to use DSEG ; This is internal data memory ORG 20H ; Bit adressable memory SENP: DS 1 SENP1 BIT SENP.0 MINUS BIT SENP.1 MIN1 BIT SENP.2 COUNT: DS 1 SPEED: DS 1 VALUE_1: DS 1 VALUE_2: DS 1 VALUE_3: DS 1 TEMP1: DS 1 TEMP1D: DS 1 RAM: DS 9 TEP1: DS 1 TEP2: DS 1 STACK: DS 1 ; Stack begins
in „Programm(A51) DS1820 auf DS18b20 Umstellen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DC-DC-Wandler-Berechnungen.pdf
frequency 2. Ensure proper attenuation of the EMI filter In [11]: import math C_in = 10 * 10**-6 # 10 uF L = 4.7 * 10**-6 # 4.7 uH f_S = 1.3 * 10**6 # 1.3 MHz Attenuation = 90 # dB C_fa = C_in / (C_in * L * (2 * math.pi * f_S/10)**2 -1) C_fb = 1/L * ( 10**(Attenuation/40)/(2 * math.pi
in „DC/DC-Wandler mit Filtern am Ein- und Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
pk2cmdminus_supported_devices.txt
Others/dsPIC33CK 0x00007C00 DSPIC33CK32MP203 Others/dsPIC33CK 0x00007C01 DSPIC33CK32MP205 Others/dsPIC33CK 0x00007C02 DSPIC33CK32MP206 Others/dsPIC33CK 0x00007C03 DSPIC33CK32MP502 Others/dsPIC33CK 0x00007C40 DSPIC33CK32MP503 Others/dsPIC33CK 0x00007C41 DSPIC33CK32MP505 Others/dsPIC33CK 0x00007C42 DSPIC33CK32MP506 Others/dsPIC33CK 0x00007C43 DSPIC33CK64MP202 Others/dsPIC33CK 0x00007C10 DSPIC33CK64MP203 Others/dsPIC33CK 0x00007C11 DSPIC33CK64MP205
in „Programmieren eine PIC18F2585 mir einem HEX-File“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Display_Controller.pdf
314~319 VOUT_OUT 313 VDD 312 DS1 311 DS0 310 MF0 8 309 MF1 308 MF2 2 307 TA 21 V0 306 Mode 20 V1 5 300~305 VSS 19 V2 C C . . 7 284~299 VSS2 18 V3 C 268~283 VDD2 17 V4 C 262~267 VDD 16 VOUT T 260~261 D7 15 D7 C S 258~259 D6 14 D6 256
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
DataDump.txt
*************** DSPRINTMAX START - 2010-08-20 - 10:11:38 *************** Ds_global->Ob_list =088C379C DsDb::Act=088C3798 OB_ID=088C379C noOfScenes=1 Eintraege in GUID-Tabelle: 0 ******************* SCENE DsScene=088FF338 OB_ID=088FF33C **************** * Name: Modell Flags:
-
PDF
device_list_hilo_all03_v9-12.pdf
/I <<DALLAS>> DS1213B (2K*8) DS1213B (8K*8) DS1213C (32K*8) DS1213C (8K*8) DS1213D (128K*8) DS1213D (32K*8) DS1213D (512K*8) DS1213D (8K*8) DS1216B (2K*8) DS1216B/C/E (8K*8) DS1216C/D/E (32K*8) DS1216D/F (128K*8) DS1216F
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN162.pdf
ROM for(i=0;i<8;i++) { write_byte(FoundROM[numROMs][i]); //send ROM code } return true; } Appendix A DS5000 (8051 source code) // 1wiretalk.c -- Functions for the Dallas Semiconductor DS18x20/DS1822 // Two-Wire Temperature Sensor // Designed for 8051 microcontrollers // This code was developed using the
in „Temperaturfühler identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
app162__Interfacing_DS1820_in_a_MC_environment_.pdf
;i<8;i++) { write_byte(FoundROM[numROMs][i]); //send ROM code } return true; } 12 AN162 Appendix A DS5000 (8051 Source Code) // 1wiretalk.c -- Functions for the Dallas Semiconductor DS18x20/DS1822 // Two-Wire Temperature Sensor // Designed for 8051 microcontrollers // This code was developed using the
in „DS18B20 zu komplizierte Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
app162__Interfacing_DS1820_in_a_MC_environment_.pdf
;i<8;i++) { write_byte(FoundROM[numROMs][i]); //send ROM code } return true; } 12 AN162 Appendix A DS5000 (8051 Source Code) // 1wiretalk.c -- Functions for the Dallas Semiconductor DS18x20/DS1822 // Two-Wire Temperature Sensor // Designed for 8051 microcontrollers // This code was developed using the
-
PDF
LM2621.pdf
Pins −0.5V to 10V DD Operating Conditions (Note 1) FREQ Pin 100µA VDD Pin 2.5V to 5V θJA(Note 2) 240˚C/W FB, EN Pins 0 to DD TJmax(Note 2) 150˚C Storage Temperature Range −65˚C to +150˚C BOOT Pin 0 to 10V Ambient Temperature (T ) −40˚C to +85˚C Lead Temp. (Soldering, 5 sec) 260˚C A Electrical Characteristics
-
PDF
542-01945-0-Z86E04.pdf
I M I N A R Y DS97Z8X1104 Z86E04/E08 Zilog CMOS Z8 OTP Microcontrollers AC ELECTRICAL CHARACTERISTICS Timing Table (Standard Mode for SCLK/TCLK = XTAL/2) Standard Temperature 1 15 T = 0 °C to +70 °C A 8 MHz 12 MHz No
in „Pollin Ladegerät WCFD0801500IFOON : Rückwärts Ingenieur gesucht !“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
K4B4G1646Q-Samsung.pdf
ps 13,14, f DQ high-impedance time from CK, CK tHZ(DQ) - 400 - 300 - 250 - 225 ps 13,14, f 1.35V tDS(base) AC160 90 - 40 - - - - - ps d, 17 tDS(base) 140 - 90 - 45 - 25 - ps Data setup time to DQS, DQS referenced to AC135 V IHAC)V ILC) levels 1.5V tDS(base) 75 - 25 - - - - - ps d, 17 AC175 tDS(base)
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS_K4B8G1646Q-MY_Rev10.pdf
ps 13,14, f DQ high-impedance time from CK, CK tHZ(DQ) - 400 - 300 - 250 - 225 ps 13,14, f 1.35V tDS(base) AC160 90 - 40 - - - - - ps d,17,33 tDS(base) 140 - 90 - 45 - 25 - ps Data setup time to DQS, DQS referenced to AC135 V IHC)V (IL) levels 1.5V tDS(base) 75 - 25 - - - - - ps AC175 d,17,33 tDS(base
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
74hct595.pdf
output latches; 3-state handbook, halfpage 11 12 handbook, halfpage OE EN3 SH_CP ST_CP ST_CP 12 9 C2 Q7' MR 10 R SRG8 15 11 Q0 SH_CP C1/ 1 Q1 14 15 2 DS 1D 2D 3 Q0 Q2 1 14 Q3 3 Q1 DS 2 Q2 Q4 4 3 5 Q3 Q5 4 6 Q4 Q6 5 Q5 7 Q7 6 Q6 7 MR OE Q7 9 Q7' 10 13 MLA002 MSA698 Fig.3 Logic symbol. Fig.4 IEC logic
in „74HC595 wie steuert man das latch an?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
74HC595_Philips.pdf
output latches; 3-state handbook, halfpage 11 12 handbook, halfpage OE EN3 SH_CP ST_CP ST_CP 12 9 C2 Q7' MR 10 R SRG8 15 11 Q0 SH_CP C1/ 1 Q1 14 15 2 DS 1D 2D 3 Q0 Q2 1 14 Q3 3 Q1 DS 2 Q2 Q4 4 3 5 Q3 Q5 4 6 Q4 Q6 5 Q5 7 Q7 6 Q6 7 MR OE Q7 9 Q7' 10 13 MLA002 MSA698 Fig.3 Logic symbol. Fig.4 IEC logic
in „Definierter Einschaltzustand beim 74HC595“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
74HC595_Shiftregister.pdf
output latches; 3-state handbook, halfpage 11 12 handbook, halfpage OE EN3 SH_CP ST_CP ST_CP 12 9 C2 Q7' MR 10 R SRG8 15 11 Q0 SH_CP C1/ 1 Q1 14 15 2 DS 1D 2D 3 Q0 Q2 1 14 Q3 3 Q1 DS 2 Q2 Q4 4 3 5 Q3 Q5 4 6 Q4 Q6 5 Q5 7 Q7 6 Q6 7 MR OE Q7 9 Q7' 10 13 MLA002 MSA698 Fig.3 Logic symbol. Fig.4 IEC logic
in „Unterschied 74HCT595, 74HC595“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
74HC_HCT595.pdf
output latches; 3-state handbook, halfpage 11 12 handbook, halfpage OE EN3 SH_CP ST_CP ST_CP 12 9 C2 Q7' MR 10 R SRG8 15 11 Q0 SH_CP C1/ 1 Q1 14 15 2 DS 1D 2D 3 Q0 Q2 1 14 Q3 3 Q1 DS 2 Q2 Q4 4 3 5 Q3 Q5 4 6 Q4 Q6 5 Q5 7 Q7 6 Q6 7 MR OE Q7 9 Q7' 10 13 MLA002 MSA698 Fig.3 Logic symbol. Fig.4 IEC logic
in „74HC595 und ATtiny13 Lauflicht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.lst
DC8 150, 165, 248, 181, 219, 206, 155, 206, 155, 206, 155, 206, 154 \ 9BCE9BCE9BCE \ 9A \ 000005E8 C69BC69BC67A DC8 198, 155, 198, 155, 198, 122, 198, 122, 198, 122, 198, 90, 198, 122 \ C67AC67AC65A \ C67A \ 000005F6 C65AC65AC65A DC8 198, 90, 198, 90, 198, 90, 198, 122, 198, 249, 181, 90, 198, 122 \
in „LPC2103 Speicherproblem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tms320lf2407a.pdf
ACTIVE TQFP PAG 64 160 Green (RoHS & CU NIPDAU Level-3-260C-168HR no Sb/Br) TMS320LF2403APAGS ACTIVE TQFP PAG 64 160 Green (RoHS & CU NIPDAU Level-3-260C-168HR no Sb/Br) TMS320LF2406APZA ACTIVE LQFP PZ 100 90 Green (RoHS & CU NIPDAU Level-2-260C-1YR no Sb/Br) TMS320LF2406APZAR ACTIVE LQFP PZ 100 1000 Green (RoHS & CU NIPDAU Level-2-260C-1YR no Sb/Br) TMS320LF2406APZS ACTIVE LQFP PZ 100 90 Green (RoHS & CU NIPDAU Level-2-260C-1YR no Sb/Br) TMS320LF2407APGEA ACTIVE LQFP PGE 144 60 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TMS320LF2407APGES
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
-
Datei
OneWire.c
cdata = (cdata ^ crc) & 0xff; crc >>= 8; if (oddparity[cdata & 0x0F] ^ oddparity[cdata >> 4]) crc ^= 0xC001; cdata <<= 6; crc ^= cdata; cdata <<= 1; crc ^= cdata; } return crc; } #endif #endif /************************************************************************ * * readOneWireDS18B20 of DS 18B20 (example
in „Böses One-Wire device“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
si1539cd.pdf
V,GS = 0 V,JT = 55 °C N-Ch 10 V DS= - 30 V,GS = 0 V,JT = 55 °C P-Ch - 10 V =5 V, V = 10 V b I DS GS N-Ch 2 A On-State Drain Current D(on) V = -5 V, V = - 10 V P-Ch - 1 DS GS VGS = 10 V,DI = 0.6 A N-Ch 0.323 0.388 b VGS=
in „7-Segment Display (elektromagnetisch) Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
plugin.xml
" name="MB90F347D" /> <enumeratedOptionValue command="-cpu MB90F347DS" id="org.eclipse.cdt.fujitsumcu.targetselector.mcpu.MB90F347DS" name="MB90F347DS" /> <enumeratedOptionValue command="-cpu MB90F347S" id="org.eclipse.cdt.fujitsumcu.targetselector.mcpu.MB90F347S
in „GNUARM Eclipse Plugin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
S1D13504_MF1072-04.pdf
Capacitance 10 pF 1-18 EPSON S1D13504 SERIES HARDWARE FUNCTIONAL SPECIFICATION (X19A-A-002-17) 7: A.C. CHARACTERISTICS 7 A.C. C HARACTERISTICS Conditions: IOV DD = 2.7V to 5.5V unless otherwise specified TA = -40°C to 85°C Trisand Tfalfor all inputs must be ≤ 5 nsec (10% to 90%) CL = 50pF (Bus / MPU Interface
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
-
PDF
AMIS-30543-D.pdf
. SPI Timing http://onsemi.com 9 AMIS−30543 TYPICAL APPLICATION SCHEMATIC 100 nF 100 nF D 1 100 nF C 2 C VBAT C4 C3 1 C 5 C 6 100 mF R2 R 3 R4 100 nF VDD VBB VBB 220 nF 32 14 27 VCP 11 POR/WD 28 9 CPN DIR C 7 5 NXT AMIS−30543 220 nF 4 10 DO CPP 31 MOTXP DI 25, 26 2 mC CLK MOTXN 3 21, 22 CS 13 M CLR
in „Puls aus Sinuswelle herausrechnen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
klassed_facharbeit.pdf
: UDS100V und I =DSA (bei 25°C; 20A bei 100°C) maximal. Benötigt wird U DS =70V, der Mosfet ist also um 23% überdimensioniert. Als Strom werden für 400 W bei 4 Ω 10A RMS verlangt (d.h. 14.1 A Spitzenstrom bei Sinus). Der Strom teilt
in „Suche Schaltplan für PWM Endstufe“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MPASM__MPLINK__MPLIB_User_s_Guide.pdf
C Compiler for PIC18 MCUs Getting Started (DS51295) • MPLAB ® C Compiler for PIC18 MCUs User's Guide (DS51288) ® • MPLAB C Compiler for PIC18 MCUs Libraries (DS51297) MPLAB IDE Documentation Information
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
A200-DATASHEET_MAX756_757.pdf
MAX756ESA -40°C to +85°C 8 SO Portable Data-Collection Equipment MAX757CPA 0°C to +70°C 8 Plastic DIP Personal Data Communicators/Computers MAX757CSA 0°C to +70°C 8 SO Medical Instrumentation MAX757C/D 0°C to +70°C
in „MAX756-Schlechter Wirkungsgrad“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
A200-DATASHEET_MAX756_757.pdf
MAX756ESA -40°C to +85°C 8 SO Portable Data-Collection Equipment MAX757CPA 0°C to +70°C 8 Plastic DIP Personal Data Communicators/Computers MAX757CSA 0°C to +70°C 8 SO Medical Instrumentation MAX757C/D 0°C to +70°C
in „Step-Up Wandler MAX756“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ST7567A_V1.2a.pdf
L pulse width (READ) tEWLR 80 — ns Enable H pulse width (READ) tEWHR 140 — Write data setup time tDS6 40 — Write data hold time tDH6 10 — D[7:0] Read data access time tACC6 CL = 16 pF — 70 Read data output disable time tOH6 CL = 16 pF 5 50 ° (VDD1 = 2.8V , Ta =25 C) Item Signal Symbol Condition Min.
in „LCD mit ST7567A und I2C“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX1674-MAX1676.pdf
CURRENT (mA) REFERENCE OUTPUT VOLTAGE EFFICIENCY vs. LOAD CURRENT vs. TEMPERATURE 100 4 1.300 5 t t 90 1 1 M V M 80 E1.298 70 V = 2.4V A % VIN 1.2V IN O REF= 0 Y 60 V1.296 N U C 50 U F 40 O1.294 E C IREF= 100µA 30 R 20 F R1.292 10 VOUT = 3.3V LIMIT= 1A 0 1.290 0.01 0.1 1 10 100 1000 -40 -20 0 20 40 60
in „MAX1674: LED an LBO“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
1wire.c
Various 1 wire routines * Search routine is copied from the Dallas owpd library with mods // 1wire.c: Funktionen zur Kommunikation mit einem 1wire-bus * available from here http://www.ibutton.com/software/1wire/wirekit.html * * $Id: 1wire.c,v 1.4 2004/09/01 08:15:24 darius Exp $ * * Copyright (c) 2004
in „DS18S20 Fehler ab ca. 40°C“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
13504_TM_X19AQ00214.pdf
and register address spaces of the S1D13504. M/R# is set high to access the M/R# I 5 7 C Hi-Z memory and low to access the registers. See Section 8.1, “Register Mapping” on page 90. See Table 5-9: “Host Bus Interface Pin Mapping,” on page 32. CS# I 4 6 C Hi-Z Chip select input. See Table
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
-
PDF
XCS20-3VQ100C.pdf
control signals. DS060 (v1.8) June 26, 2008 www.xilinx.com 5 Product Specification Spartan and Spartan-XL FPGA Families Data Sheet R DIN GSR H1 SD D D Q Q C1 C2 CK SR C3 RD EC C4 Vcc EC Multiplexer Controlled by Configuration
in „[V] Spartan FPGA“ · Markt ·
-
PDF
SpartanXL.pdf
control signals. DS060 (v1.7) June 27, 2002 www.xilinx.com 5 Product Specification 1-800-255-7778 Spartan and Spartan-XL Families Field Programmable Gate Arrays R DIN GSR H1 SD C1 D D Q Q C2 CK SR C3 RD EC C4 Vcc EC Multiplexer
in „Logic Analyzer bauen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Vergleichsliste.pdf
2SC998 ECG488 2SC1947 ECG500A MDA3662 ECG502 MF15-1B ECG503 MF20-1B ECG504 MF22-1B ECG505 MF30-1B HS25 1C ECG506 1S2595 U07N MR818 ECG506A 1S2595 U31N U07N ECG515 DS140 ECG518 SHV20 ECG519 1S2076A DS448 ECG525 ITH61 GH-3F ECG552 1S1834 1N4937 ECG553 1SS85 1SS110 ECG554 MH1201FO2 ECG555 1S2222 1SS103 ECG558
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Switch.pdf
AGN200S4H B 1 4.5 2 Form C SMD 769- DS1E-S-DC5V F 2 5 1 Form C PCB a 769- AGN210A03 B 1 3 2 Form C SMD 769- DS1E-S-DC6V F 2 6 1 Form C PCB l r 769- AGN210A4H B 1 4.5 2 Form C SMD 769- DS1E-S-DC9V F 2 9 1 Form C PCB e 769- DS2E-S-DC12V
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·