-
PDF
LM2576_On.PDF
Given Parameters: V = Regulated Output Voltage (3.3 V, 5.0 V, 12 V or 15 V) V = 5.0 V out out V in(max)= Maximum Input Voltage Vin(max)= 15 V ILoad(max) = Maximum Load Current Load(max) = 3.0 A 1. Controller IC Selection 1. Controller IC Selection According to the required input voltage, output voltage
in „Ruhige negative Spannung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
T6963C.pdf
character generator ROM (code 0101) T6963C−0101 is built in as standard. ▯External display memory : 64 KB Max The addresses in display memory of the text area, graphic area and external character generator area are determined by software. ▯Read or Write operations from the CPU do not disturb the display. 000707EBA1
in „[V] Grafikdisplay 240x128“ · Markt ·
-
PDF
T6963C.pdf
character generator ROM (code 0101) T6963C−0101 is built in as standard. ▯External display memory : 64 KB Max The addresses in display memory of the text area, graphic area and external character generator area are determined by software. ▯Read or Write operations from the CPU do not disturb the display. ▯A
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IS2200E_V1.61.pdf
214 O80 2314.00 487.05 A 144 O10 5954.00 487.05 A 215 O81 2262.00 487.05 A 145 O11 5902.00 487.05 A 216 O82 2210.00 487.05 A 146 O12 5850.00 487.05 A 217 O83 2158.00 487.05 A 147 O13 5798.00 487.05 A 218 O84 2106.00 487.05 A 148 O14 5746.00 487.05 A 219 O85 2054.00 487.05 A 149 O15 5694.00 487.05 A 220
in „LCD-Modul OPTREX 351570AG“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
wr2_rcm_revb.pdf
equation>’ Functionequationas definedbelow LENGTH <length> Number of points tousefrom first waveform MAX_EVENTS <max_values> Maximum number of values inhistogram MAXBINS <bins> Number of bins in histogram MAXPTS <max_points> Maximum number of points tocompute 1 06 ISSUED: January2002 LTXXX-RCM-E Rev B
in „Oszi einstellen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
APPCHP6.PDF
current, I T(RMS) and load power over the full period of the a.c mains, with trigger angle are given T(MAX) in equation 7. Thyristor (1−cosα) IT(MAX) Current IT(AV)= IT(AV)max 2 IT(AV)max= π Trigger 2 IT(MAX) Fig. 3 Half wave control α− sin2α IT(RMS)max= IT(RMS)= IT(RMS)max 2 2 π a) b) Supply
in „Motorsteuerung verbessern bei el. Nähmaschine“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
APPCHP6.pdf
current, I T(RMS) and load power over the full period of the a.c mains, with trigger angle are given T(MAX) in equation 7. Thyristor (1−cosα) IT(MAX) Current IT(AV)= IT(AV)max 2 IT(AV)max= π Trigger 2 IT(MAX) Fig. 3 Half wave control α− sin2α IT(RMS)max= IT(RMS)= IT(RMS)max 2 2 π a) b) Supply
in „defekter Drehzahlsteller eines Schwingschleifers“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
APPCHP6.PDF
current, I T(RMS) and load power over the full period of the a.c mains, with trigger angle are given T(MAX) in equation 7. Thyristor (1−cosα) IT(MAX) Current IT(AV)= IT(AV)max 2 IT(AV)max= π Trigger 2 IT(MAX) Fig. 3 Half wave control α− sin2α IT(RMS)max= IT(RMS)= IT(RMS)max 2 2 π a) b) Supply
in „AQH2213 SSR Snubber dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CS5560_PP2.pdf
VL = 2.5V, ±5% or 1.8V, ±5%; VLR = 0V Parameter Symbol Min Typ Max Unit Group Delay - - 160 - MCLKs 10 DS713PP2 5/4/09 CS5560 GUARANTEED LOGIC LEVELS TA= -40 to +85 °C; V1+ = V2+ = +2.5 V, ±5%; V1- = V2- = -2.5 V, ±5%; VL - VLR = 3.3 V, ±5%, 2.5 V, ±5%, or 1.8 V, ±
in „Bipolare Eingänge ADC“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
WIMA_DC_Link_MKP_4.pdf
Führungslöcher W 1 9,0± 0, 9,0± 0, 9,0± 0, 9,0± 0, 9,0± 0,5 9,0± 0,5 9,0± 0,5 Lage Klebeband W 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 2 Führungsloch-Durchmesser D 4,0± 0, 4,0± 0, 4,0± 0, 4,0± 0, 4,0± 0,2 4,0± 0,2 4,0± 0,2 0 Abstandder Bauelemente
-
PDF
M30201F6SP.pdf
Parameter Unit Min. Max. c(TX) TXiINOUT input cycle time 400 ns t(TXH) ns TXiINOUT input HIGH pulse width 200 w(TXL) TXiINOUT input LOW pulse width 200 ns Table 1.55. Serial I/O Standard Symbol Parameter Min. Max. Unit tc(
in „Biete Mitsubishi / Renesas M30201F6SP aus der M16C60 Serie“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HD66766-10.pdf
all 0 Ta = 25C, fosc = 276khz (1/176duty), 1/12 Bias CT minimum, display all 0 typ: T.B.D typ: 480 Max: T.B.D Max: 600 96 HD66766 Rev. 1.0 / 30 November 2001 Rev.0.3 page part Before After 2001.11.12 79 Clock Characteristics Min: T.B.D Min: 151 (External clock frequency) Typ: 268 Typ: 275 Max: T.B.D Max: 640 (R-C oscillation clock) Test Condition Rf Test Condition Rf = 150 Ω 200Ω Min: - Min: 220 Typ: T.B.D Typ: 275 Max: - Max: 330 84 Reset Timing Characteristics Max: 10 Max: 100 (Reset rise time) 90
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
-
PDF
ISl6298.pdf
range of 4.3V to 6.5V, unless otherwise noted. (Continued) PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNITS TRICKLE CHARGE THRESHOLD Trickle Charge Threshold Voltage VMIN For ISL6298 only 2.63 2.73 2.93 V Trickle Charge Threshold Voltage VMIN For ISL6298-2 only 2.7 2.8 3.0 V TEMPERATURE MONITORING Low
-
PDF
FAT_Beschreibung.pdf
Disk-Signatur (seit Windows 2000) 4 0x1BC 444 Nullen – ja 0x00000 2 0x1BE 446 Partitionstabelle – (max. 4 Einträge) 64 0x1FE 510 0x55 - MBR-Signatur 1 0x1FE 511 0xAA- MBR-Signator 1 Boot-Loader: Der Boot-Loader ist ein kleines Programm, das vom BIOS aufgerufen wird. Im Normalfall sucht dieses in der
in „Beschreibung des FAT12/FAT16 Dateisystems“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CY8C4147AZI.pdf
SID274 GBW_LO power=lo – 1 – Input and output are 0.2 V toDDA -0.2 V I V = 2.7 V, 500 mV from rail OUT_MAX DDA power=hi 10 – – Output is 0.5 V DDAV SID275 IOUT_MAX_HI -0.5 V SID276 IOUT_MAX_MID power=mid 10 – – mA Output is 0.5 V DDAV -0.5 V Output is 0.5 V to V SID277 IOUT_MAX_LO power=lo – 5 – DDA -0.5 V IOUT VDDA = 1.71 V, 500 mV from rail SID278 I power=hi 4 – – Output is 0.5 V DDAV OUT_MAX_HI -0.5 V SID279 IOUT_MAX_MID power=mid 4 – – mA Output is 0.5 V to VDDA -0.5 V SID280 IOUT_MAX_LO power=lo – 2 – Output is 0.5 V to V DDA-0.5 V IDD_Int Opamp block current Internal Load I – – SID269
-
PDF
WVC-600_SJS_Cert_EN55032_EN55035_EN61000_Report.pdf
Model# Serial# Last Cal. Next Cal. Receiver R&S ESR 102075 Aug. 14, 2019 Aug. 14, 2020 LISN R&S ENV216 101375 Aug. 14, 2019 Aug. 14, 2020 ISN HPX ISN T800 S1509001 Aug. 14, 2019 Aug. 14, 2020 Radiated emissions Test (966 chamber) Equipment Manufacturer Model# Serial# Last Cal. Next Cal. 966 ChengYu 966
in „Mikrowechselrichter WVC Zertifikate“ · Haus & Smart Home ·
-
PDF
B400_NTC-02_Serie.pdf
) and (2) are interchangeable with an = {1.05 × 1.0089 – 1 } × 100% = 5.9345% ( ≈ 5.93% ) error of max. 0.005 °C in the range 25 °C to 125 °C and max. 0.015 °C in the range −40 °C to +25 °C . ∆T = -- = -- - = 1.167 °C ( ≈ 1.17 °C) TC 5.08 A NTC with a R -v25ue of 10 kΩ has a value of 32.56 kΩ between
in „Temperatur Messung mit Mega8 und NTC-Widerstand 4,7k“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
B400_NTC-02_Serie.pdf
) and (2) are interchangeable with an = {1.05 × 1.0089 – 1 } × 100% = 5.9345% ( ≈ 5.93% ) error of max. 0.005 °C in the range 25 °C to 125 °C and max. 0.015 °C in the range −40 °C to +25 °C . ∆T = -- = -- - = 1.167 °C ( ≈ 1.17 °C) TC 5.08 A NTC with a R -v25ue of 10 kΩ has a value of 32.56 kΩ between
in „NTC Berechnung nach Steinhart and Hart, 2. Gleichung geht nicht!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
20120224183241077.pdf
0 1 1 0 0 0 720 x 200 dots 200 G1 ~ 200 0 1 1 0 0 1 720 x 208 dots 208 G1 ~ 208 0 1 1 0 1 0 720 x 216 dots 216 G1 ~ 216 0 1 1 0 1 1 720 x 224 dots 224 G1 ~ 224 0 1 1 1 0 0 720 x 232 dots 232 G1 ~ 232 0 1 1 1 0 1 720 x 240 dots 240 G1 ~ 240 0 1 1 1 1 0 720 x 248 dots 248 G1 ~ 248 0 1 1 1 1 1 720 x 256
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
report_par.txt
| 1.25 | 2.50 | PAD217 | G5 | None L | fpga_0_DDR_SDRAM_DDR_DQ_p | IO | SSTL2_I | 1.25 | 2.50 | PAD216 | H6 | None L | fpga_0_DDR_SDRAM_DDR_DQ_p | IO | SSTL2_I | 1.25 | 2.50 | PAD215 | H5 | None L | fpga_0_DDR_SDRAM_DDR_Addr | O | SSTL2_I | | 2.50 | PAD213 | H4 | None L | fpga_0_DDR_SDRAM_DDR_Addr |
in „Place and Route partially locked IO bus“ · FPGA, VHDL & Co. ·
-
PDF
de10-nano_a0.pdf
14 45 FX2_PD0 C_USB_MAX_TDI H2 TMS GCLK1p F8 CLK_MAX_24 C5 C6 RESERVED PD0 46 FX2_PD1 C_USB_MAX_TDO J2 TDI GCLK2p E10 UB2_CLK_OUT E6 GNDINT VCCINT E7 PD1 FX2_PD2 TDO GCLK3p GNDINT VCCINT 6 AGND PD2 47 F5 GNDINT VCCINT F4 VCC3P3
in „Low Cost Board“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
KONTAKT_LR_Sicherheitsdatenblatt.pdf
Ethoxy-2-propanol; CAS-Nr.: 1569-02-4 5 – 10 Flam. Liq. 3, H226 Propylenglycol-monoethylether EG-Nr.: 216-374-5 Eye Irrit. 2, H319 Stoff mit nationalem Arbeitsplatzgrenzwert (DE) EG Index-Nr.: 603-177-00-8 STOT SE 3, H336 REACH-Nr: 01-2119462792- 32 Kohlendioxid (CO2) CAS-Nr.: 124-38-9 1 – 5 Press. Gas
in „Leiterplattenreinigung(Flussmittelreste entfernen)? Isoprop ist zu schwach, was kann man beimischen?“ · Platinen ·
-
PDF
1TD05-11d_-_EMV_Fehleranalyse_mit_den_Oszilloskopen_RS_RTO_und_RS_RTE.pdf
entlang der Leitung bewegt, durch die Max-Hold-Funktion wird das Maximum festgehalten. Bei dem 1.1d Rohde & Schwarz EMV Fehleranalyse mit den Oszilloskopen R&S®RTO und R&S®RTE 34 EMV Fehleranalyse mit dem digitalen Oszilloskop R&S®RTO in der Praxis untersuchten Gerät ergeben sich allerdings keine neuen Erkenntnisse durch die Max- Hold Messung bezogen auf sporadische Störer. Man kann aber deutlich sehen, dass der maximale Störstrom (rote Spektralkurve) vom aktuell gemessenen Wert an der aktuellen Position der Stromzange (farbcodiertes
in „Pre Compliance mit Spectrum Analyzer“ · HF, Funk und Felder ·
-
PDF
Si8931_32_analog_isolator.pdf
mechanical specifications. 1 Table 4. Si8931 and Si8932 Absolute Maximum Ratings Parameter Symbol Min Max Unit Storage temperature T STG –65 150 °C Ambienttemperatureunderbias TA –40 125 °C Junctiontemperature TJ 150 °C Supply voltage VDDA, VDDB –0.5 6.0 V InputvoltagerespecttoGNDA VIN –0.5 VDDA + 0.5 V
-
PDF
HX8238A.pdf
370 18x100 968 S541 -1080 370 18x100 919 S492 -198 240 18x100 969 S542 -1098 240 18x100 920 S493 -216 370 18x100 970 S543 -1116 370 18x100 921 S494 -234 240 18x100 971 S544 -1134 240 18x100 922 S495 -252 370 18x100 972 S545 -1152 370 18x100 923 S496 -270 240 973 S546 -1170 240 18x100 18x100 924 S497
in „TFT- Ansteuerung ET0350G0DH6 (Glyn) mit HX8238 LCD Driver und Microchip Graphic Lib“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ee24xx.lst
master transmitter mode 51:ee24xx.c **** */ 52:ee24xx.c **** restart: 53:ee24xx.c **** if (n++ >= MAX_ITER) 54:ee24xx.c **** return -1; 55:ee24xx.c **** begin: 129 .LM9: 130 0046 822F mov r24,r18 131 0048 2F5F subi r18,lo8(-(1)) 132 004a 883C cpi r24,lo8(-56) 133 004c 08F0 brlo .+2 134 004e 7CC0 rjmp
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
block-cordic.asm
S2X A9,ILC || LDDW .D1T1 *+xyPtr(48),y6:x6 ; |51| || [ blocks] ADD .S1 0xffffffff,blocks,blocks ; |216| ;*----------------------------------------------------------------------------* ;* SOFTWARE PIPELINE INFORMATION ;* ;* Loop source line : 72 ;* Loop closing brace source line : 175 ;* Known Minimum Trip Count : 19 ;* Known Maximum Trip Count : 19 ;* Known Max Trip Count Factor : 19 ;* Loop Carried Dependency Bound(^) : 7 ;* Unpartitioned Resource Bound : 12 ;* Partitioned Resource Bound(*) : 12 ;* Resource Partition: ;* A-side B-side ;* .L units 4 4 ;* .
in „TMS320 - welche Bedeutung hat der DSP heute noch“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
-
PDF
12f1840_programming_41439A.pdf
stated) AC/DC CHARACTERISTICS Operating Temperature -40°C T+85°C Sym. Characteristics Min. Typ. Max. Units Conditions/Comments Supply Voltages and Currents VDD VDD PIC12F1840 2.1 — 5.5 V Read/Write and Row Erase PIC16F1847 operations PIC12LF1840 2.1 — 3.6 V PIC16LF1847 PIC12F1840 2.7 — 5.5 V Bulk
in „PIC16LF1847 flashen mit ATmega / USBasp / Arduino Nano / ponyser?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SIM800_Hardware_Design_V1.09.pdf
Normal operation:-40°C ~ +85° C Storage temperature -45C ~ +90° C GPRS data downlink transfer: max. 85.6 kbps GPRS data uplink transfer: max. 85.6 kbps Coding scheme: CS-1, CS-2, CS-3 and CS-4 GPRS PAP protocol for PPP connect Integrate the TCP/IP protocol. Support Packet Broadcast Control
in „SIM800L Verbindung instabil“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
S29GL512N.pdf
Max 25 25 35 35 ns C t t Output Enable to Output Delay Max 25 25 35 35 ns GLQV OE EHQZ DF Chip Enable to Output High Z (Note 1) Max 20 ns tGHQZ DF OutputEnabletoOutput HighZ(Note1) Max 20 ns t t Output
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN1010.pdf
14 11 21 PD1 (TX) 22 pF EXTAL 7 TxD 13 12 20 PD0 (RX) + 1 10 M 8 MHz CTS C1 MC68HC11A1 XTAL 8 DSR 3 MAX232 52-PIN PLCC + 4 22 pF DCD DTR C2 5 3 MODA 0 V 15 2 GND MODB V RESET 17 2 + 6 DD 0 V C3 C4 26 4.7 k 1 µF + 0 V 0.1 µF C1, C2, C3, C4 — 22 mF, 25-V aluminum or tantalum CERAMIC +5 V Note: To improve
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ACT2803_Data_Sheet.pdf
CHARACTERISTICS (VIN 5V, A = 25°C, unless otherwise specified.) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Buck mode/Discharge Buck Under Voltage Lock-Out VABT falling, VBAT1,2 2.9 V REG3[1:0]=00, Default 5.07 V REG3[1:0]=01 5.12 V VOUT Output Regulation Voltage REG3[1:0]=10 5.17 V REG3[1:0]=11 5.22
in „ACT2803 dual cell lipo charger - Problem“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
ODM100.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „Frage zum ODM100 OLED Bausatz von ELV“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
oled1.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „AVR Oled Display odm 100-Wie ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
oled.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „ODM100 OLED bleibt schwarz“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ODM100.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „SSD 1351 - OLED ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at91rm9200-ek.pdf
4 5 4 + 8 NTRST REF Q201 1 RES/PG C12 8 1 IRF7425 + + CR8 2 GND 7 100NF GND OUT CR7 3.3 V EN FB/NC MAX1626ESA STPS340U TPS77518D R288 C254 C255 4K7 100NF 2.2µF C25 220uF C 16V C C24 C23 220uF 220uF 16V 16V R244 0R100 I limit = 0.1V / R ... about 2.9A C221 R245 0R100 2.2µF U1 5V 5 V+ + 1 8 L1 22uH C2
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
GN80_2_NMEA_Protocol__1_.pdf
syntax below: “Param”: Log Output Sentence <Log Output Sentence Length in bytes> “GGAnn”:$GPGGA<82 max> GGA00-GGA60 [5](sec){GGA01} “ZDAnn”:$GPZDA<36> ZDA00-ZDA60 [5](sec){ZDA01} “GLLnn”:$GPGLL<47> GLL00-GLL60 [5](sec){GLL00} “GSAnn”:$GPGSA<69 max> GSA00-GSA60 [5](sec){GSA00} “GSVnn”:$GPGSV<70 max> GSV00-GSV60 [5](sec){GSV01} “VTGnn”:$GPVTG<46 max> VTG00-VTG60 [5](sec){VTG01} “RMCnn”:$GPRMC<77 max> RMC00-RMC60 [5](sec){RMC00} “ancnn”:$PFEC,GPanc<62> anc00-anc60 [5](sec){anc00} “accnn”:$PFEC,GPacc<49> acc00-acc60 [5](sec){acc00} “astnn”:$PFEC,
in „DGPS korreliert nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AND8391-D.pdf
voltage of 16 Vdc. Ambient For a series circuit (Figure 11), the power dissipation of temperature max of 85°C. Available heat sink area for the CCR is determined by: (V – (V + V )) x I . Using the worst case device is 300 mm of 1 oz Cu. source LEDS RPD reg scenario; i.e, highestsource Lowest LED V ,
in „12 Kanäle a 12 x 1W LEDs dimmen /steuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2011-01_digitale_Senderliste_mit_Frequenzen_1_.pdf
RTVi Europe (WT) russisch 762 256 K57 russisch 214 RTVi Nashe Kino (WT) russisch 762 256 K57 russisch 216 Rusiya Al-Yaum arabisch 794 256 K61 arabisch 217 Russia Today englisch 794 256 K61 englisch 218 Samanyolu TV (WT) türkisch 714 256 K51 türkisch 219 Sarafan russisch 786 256 K60 russisch 220 SAT 7 arabisch
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RESR_angular_encoder_system_data_sheet.pdf
optical centreline Ring centreline and Nominal ring readhead optical centreline 11.6 diameter +21.5 max 7.55 A-9559-0650 4.1 14 4.6 A-9531-0250 9.75 1 9 Nominal ring 7.5 1 0 diameter -18 min 0.65 7 . 10.5 7 15 M3 x 0.5 x 10 long into Use A-9531-0342 11.75 any existing tapped hole adhesive to affix reference
in „Schrittmotor mit Motortreiber und Encoder in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IL3829.pdf
VDD: 1.8V, regulate from VCI supply • Gate driving output voltage: ¾ 2 levels output (VGH, VGL) ¾ Max 42Vp-p ¾ VGH: 15V to 22V; ¾ VGL: -20V to -15V ¾ Voltage adjustment in steps of 500mV. • Source / VBD driving output voltage: ¾ 3 levels output (VSH, VSS, VSL) ¾ VSH: 10V to 17V ¾ VSL: -10V to -17V ¾
in „IL3829 - E-Paper Display Treiber“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN10496-NXP.pdf
P89LPC901 9. Appendix D Main Loop Key 1 & Key 2 N pressed together? N Y Key 1 pressed? Key Value = Max Y Key value N exceed? Process Increase or Decrease soft Y switch Increase Key Value Convert Key Value into Phase Value N Key 2 pressed? Phase Value between N 40 and 140 Degree? Y Key Value N Y Negative
in „Controller an 230VAC wie realisieren?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HX8340-B_T__DS_preliminary_v01_080313.pdf
is determined by BT3-0 bits. Connect to a capacitor stabilizing capacitor between GND and VGH. VGH=max 15.3V A negative power output from the step-up circuit 2 for the gate line drive circuit. VGL O 1 Stabilizing The step-up rate is determined by BT(3-0)its. Connect to a capacitor stabilizing capacitor
in „SAMMELBESTELLUNG: 2"2 TFT Display mit 16bit digital interface“ · Markt ·
-
PDF
top247.pdf
FUNCTION (M) THERMAL SHUTDOWN VBG CONTROLLED TURN-ON STOP SOFT- GATE DRIVER OV/UV START LINE D DC DC MAX SENSE MAX MAX CLOCK S Q SAW - LEADING EDGE + R BLANKING OSCILLATOR WITH JITTER PWM COMPARATOR LIGHT LOAD FREQUENCY R E REDUCTION SOURCE (S) PI-2631-061200 PI-2641-061200 Figure 2b. Functional Block
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
top247.pdf
FUNCTION (M) THERMAL SHUTDOWN VBG CONTROLLED TURN-ON STOP SOFT- GATE DRIVER OV/UV START LINE D DC DC MAX SENSE MAX MAX CLOCK S Q SAW - LEADING EDGE + R BLANKING OSCILLATOR WITH JITTER PWM COMPARATOR LIGHT LOAD FREQUENCY R E REDUCTION SOURCE (S) PI-2631-061200 PI-2641-061200 Figure 2b. Functional Block
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
VisiLogic_-_Communications.pdf
Main Routine of the Ladder application. CANbus Specifications Power Requirements: 24VDC ( ±4%), 40mA max. per unit Galvanic Isolation between CANbus and controller: Yes Baud rate Max. Network Cable Length: 1 Mbit/s 25 m 500 Kbit/s 100 m 250 Kbit/s 250 m 125 Kbit/s 500 m 100 Kbit/s 500 m 50 Kbit/s 1000
in „USB-Host / industrielle SPS / Frequency Counter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ABLIC-S-8520-8251_Series.pdf
due to the input voltage up to 16 V. Features Low current consumption During operation: 60 A max. (A, B types) 21 A max. (C, D types) 100 A max. (E, F types) During shutdown: 0.5 A max. Input voltage: 2.5 V to 16 V (B, D, F types) 2.5 V to 10 V (A, C, E types) Output voltage: Selectable
in „EHAYP 7606 - Welcher IC?“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
w2000a-screenshot.cpp
/* * W2000A Screenshot Utility */ #define REVMAJ 0 #define REVMIN 96 #define MIN_DSO_FW 216 #define MAX_DSO_FW_DT 10 #include <stdio.h> #include <stdlib.h> #include <unistd.h> #include <string.h> #include <strings.h> #include <math.h> #ifndef WIN32 #include <fcntl.h> #include <err.h> #include
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil4)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
w2000a-screenshot.cpp
/* * W2000A Screenshot Utility */ #define REVMAJ 0 #define REVMIN 96 #define MIN_DSO_FW 216 #define MAX_DSO_FW_DT 10 #include <stdio.h> #include <stdlib.h> #include <unistd.h> #include <string.h> #include <strings.h> #include <math.h> #ifndef WIN32 #include <fcntl.h> #include <err.h> #include
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil4)“ · Mikrocontroller und Digitale Elektronik ·