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PDF
LCD_Extender_SMD_4Bit_schematics.pdf
R5 0R0 R6 R7 0R0 0R0 R8 5 + R9 0R0 TC2030NL +5V k 2 1 k 4 1 2 1 R 2 1R 3 4 n 0R0 R10 5 6 2 0 3 C 1 D 0R0 N MA14-1 X2 GND G D 74HC573D 1 N +5V 2 G 1 OC 3 VEE 11 C 4 RS IC2 5 RW D 9 12 19 1 6 E N 8 8D 8Q 13 18 (SCK)PB7 RESET 7 G 7 7D 7Q 14
in „HD44780 Extender“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_Extender_SMD_4Bit_schematics.pdf
R5 0R0 R6 R7 0R0 0R0 R8 5 + R9 0R0 TC2030NL +5V k 2 1 k 4 1 2 1 R 2 1R 3 4 n 0R0 R10 5 6 2 0 3 C 1 D 0R0 N MA14-1 X2 GND G D 74HC573D 1 N +5V 2 G 1 OC 3 VEE 11 C 4 RS IC2 5 RW D 9 12 19 1 6 E N 8 8D 8Q 13 18 (SCK)PB7 RESET 7 G 7 7D 7Q 14
in „LCD Extender“ · Projekte & Code ·
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PDF
ks0066u.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „4x40 LCD Display ohne HD Controller ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066_Samsung_553815_1.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD unter Bascom, welches?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „[ AVR ] Probleme mit LCD-Display (KS0066)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066u.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD zeigt was falsches nach Reset; ATmega8 avrgcc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD nur 8 von 16 zeichen lassen sich beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD-20x2-ganz.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „Init Problem mit KS0066 (Conrad)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „Reloadwertberechnung C167“ · Mikrocontroller und Digitale Elektronik ·
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PDF
553815_1.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „Probleme mit 2ter Zeile bei KS0066 LCD: Lösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066u.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD einfach nur ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066U.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
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datasheet.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „KS0066: datasheet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD KS0066 an 16F871“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD Displaytech 204B (von Reichelt)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066U.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LC Display (KS0066) programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD "AV1624" (2x16 Zeichen, KS0066 komp.) zeigt nur die ersten 8 Zeichen an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „Unbekanntes lcd Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „AV4040 LCD mit einem MCB2300 Evaluation Board Initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066U.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „20x4 Text-Display YM2004A mit KS0066“ · Mikrocontroller und Digitale Elektronik ·
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PDF
553815_1.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD Routine Funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066_Datenblatt.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „HD44780 kompatibles Display - Initialisierung klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
- Data Hold Time tH2 10 - - E Cycle Time tc 500 - - E Rise / Fall Time tR F - - 20 E Pulse Width (High, Low) tw 230 - - Read Mode R/W and RS Setup Time tsu 40 - - ns (Refer to Fig-7) R/W and RS Hold Time tH 10 - - Data Output Delay Time tD - -
in „LCD-Modul Controller KS0066“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Panasonic_JD_700_800_Series_Service_Manual_1_.pdf
loL M74LS74P " for JD740M/JD840M 18L M74LS157P " 4M M74LS373P " bM M74LS373P " 8M M74LS244P " 12M SN74367AN " 13M M74LS51P " for JD740M/JD840M 14M M74LS74P " 15M- M74LS04P " for JD740M/JD840M 16M M74LS32P "
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Platinfuchs_IIa_Schematic-and-Layout.pdf
R100 1 5 R77 voltage measurement 27K Vin Vout 20K hilo-Hi refv hilo-Lo U4C 2 9 13,50 V ^= 4000 LSB 74LVC14A GND P dcdc-Hi Uvcc C93 L dcdc-Lo Uvdd ldor ldor 5 6 9 8 3 Ven Bybass 4 2,2µF GND aGND mcrl-16 aGND 13K/3,6K 25V Pin connected to GND 27K/7,5K U4D LP3985im5-3.0 with a cable. 47K/ 13K 74LVC14A Replacement: TC1015 a3V3 3V0 R102 C94 7,5K 6,8nF Rext1 aGND 3,9K C 3V3 3V3 C Amplifier aGND GND GND GND 3,3V +6% => 3,50V 3,3V -6% => 3,10V TmpA TmpA d R99 3,0V +6% => 3,18V a 8 3,9K 3,0V -6% => 2,82V ) b P e i L 3,50
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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PDF
Hauptplatine.pdf
C 1 8 2 R5 1 V 3 C 1 R6 R7 R8 2 n FB6 & Ref-In C-Pump-Out 740 Vctrl RFout 22 39 18 Ref-Out C 4 R9 74HC132 5 G N Ext-Ref 1k MMZ2012R150 G 7 74HC132 2 0 2 Crystek Ref-Lock MMZ2012R150 U2C C 1 6 D Int-Sel 9 RF-In CVHD-950X-100.000 8 5 RF-In & FB7 3 10 14 R10 Q1 FB8 Mux-Out 10k 1 74HC132 BC817 SDA 12 Data
in „Oszillator YIG 1,9-4,4 GHz Avantek ASF-9882/7841“ · HF, Funk und Felder ·
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PDF
ads1220.pdf
(15.48) 17.96 (15.61) 17.78 (15.34) 17.53 (14.87) 16.91 (14.29) 330 17.70 (15.23) 17.74 (15.30) 17.88 (15.25) 17.54 (15.15) 17.43 (15.05) 17.30 (14.74) 16.96 (14.54) 16.50 (13.97) 600 17.33 (14.72) 17.23 (14.79) 17.23 (14.66) 17.09 (14.70) 16.89 (14.29) 16.77 (14.18) 16.48 (13.72) 15.83
in „ADS1220 Temperatur SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIPL791Af.PDF
TIPL791 5 Collector-emitter V = 1000 V V = 0 TIPL791A 5 CES CE BE µA cut-off current V CE= 850 V V BE= 0 TC = 100°C TIPL791 200 V = 1000 V V = 0 T = 100°C TIPL791A 200 CE BE C Collector cut-off V CE= 400 V IB = 0 TIPL791 5 ICEO µA current V CE= 450 V IB = 0 TIPL791A 5 Emitter cut-off EBO V EB= 10 V IC= 0 1
in „Kühlkörper für mehrere Bauteile berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TeileATxMega4.pdf
Menge Wert Package Bauteile 2 27p C0603 C102, C103 4 22p C0603 C21, C22, C69, C70 3 10n C0603 C61, C74, C83 1 220u ELKO‐ESR‐F C62 1 100n C1206 C63 14 100n C0603 C64, C67, C72, C73, C75, C76, C84, C85, C86, C87, C88, C89, C90, C101 3 3u3 ELKO‐B C65, C77, C91 1 100u ELKO‐D C66 1 3n3 C0603 C68 1 100p C0603
in „ATxMegaBoard 4“ · Markt ·
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PDF
2Gb_1_35V_DDR3L.pdf
derated (increased) on IT-option devices when operated outside the range 0°C ≤CT ≤ +85°C: a. When TC< 0°C: DD2P0 DD2P1nd IDD3Pmust be derated by 4%;DD4Rand IDD4Wmust be derated by 2%; and I , I and I must be derated by 7%. DD6 DD6ET DD7 b. When TC> 85°C: DD0,DD1, DD2N DD2NT,DD2Q, DD3N DD3P,DD4R,DD4W
in „DDR3 Datenblatt richtig lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VARO_VSK231.pdf
noted) SYMBOL VSK 231 VSK 232 UNITS Maximum Instantaneous Forward VoltageDrop per 25°C 175°C diode 0.74 0.6 lF=30 Amps 0.92 0.82 Volts lF=60 Amps Maximum Instantaneous Reverse Currentperdiode 10 lF=25°C 25 mA lF= 125°C I =150°C 50 JunctionCapacitance V =5V R 2000 pF TypicalReverse Recovery Time :1A.T„
in „Ersatz für obsolete Schottky Gleichrichterdiode VARO VSK231 verifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M37560_Prozessor.pdf
, V SS =0 V, Ta = –20 to 85°C, unless otherwise noted) Limits Symbol Parameter Unit Min. Typ. Max. tC (SCLK1 )/2–30 ns wH(S CLK1) Serial I/O1 clock output “H” pulse width wL(S CLK) Serial I/O1 clock output “L” pulse width tC (SCLK1 )/2–30 ns d(SCLK1–TXD) Serial I/O1 output delay time (Note 1) 140 ns
in „M37560 (Buderus-Steuerung) puffern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_LC470.pdf
13 100Ω RO0P RED6 59 RED7 61 29 RED8 4 TB- 14 100Ω RO1N TB+ 28 15 RO1P RED9 5 GREEN0 40 GREEN1 41 TC- 25 16 RO2N 24 100Ω GREEN2 42 TC+ 17 RO2P GREEN3 44 GREEN4 45 23 TCLK- 19 ROCLKN GREEN5 46 TCLK+ 22 20 100Ω ROCLKP GREEN6 62 GREEN7 63 21 GREEN8 6 TD- 22 RO3N GREEN9 8 TD+ 20 23 100Ω RO3P BLUE0 48 BLUE1
in „LVDS Display Controller Board (für LC470EUF-PFF1 LCD)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lbo-5880_LEADER_anleitung.pdf
socdwit n srn eanbcrca dorueina p g g pOduc ung n, forxamp ,sotn sdc cd ThcBGIN nd ED ddesc,Onee,aepro\ tc dbybckp mmory Prgammed aacan beancled O nohr LB588 SAVE ord acnbe ( ) rccv ¿om nohrLBO5880(OAD) PrOam ncton dcion ndc g , , xchng grcpO edasmmoryedig unlons toimp yp gam d g o etchng gposscquimens Al
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PDF
lbo-5880_LEADER_anleitung.pdf
socdwit n srn eanbcrca dorueina p g g pOduc ung n, forxamp ,sotn sdc cd ThcBGIN nd ED ddesc,Onee,aepro\ tc dbybckp mmory Prgammed aacan beancled O nohr LB588 SAVE ord acnbe ( ) rccv ¿om nohrLBO5880(OAD) PrOam ncton dcion ndc g , , xchng grcpO edasmmoryedig unlons toimp yp gam d g o etchng gposscquimens Al
in „Problem Oszilloskop-Bedienung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irl630.pdf
Continuous Drain Current, @ 5.0V 5.7 A D C GS IDM Pulsed Drain Current 36 PD@T =C25°C Power Dissipation 74 W Linear Derating Factor 0.59 W/°C VGS Gate-to-Source Voltage ±10 V EAS Single Pulse Avalanche Energy 250 mJ I Avalanche Current 9.0 A AR EAR Repetitive Avalanche Energy 7.4 mJ dv/dt Peak Diode Recovery
in „Kontrolle der Kühlkörperberechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IXTA-TP3N50D2_.pdf
nC A 4.06 4.83 .160 .190 gd b 0.51 0.99 .020 .039 b2 1.14 1.40 .045 .055 R thJC 1.00 °C/W c 0.40 0.74 .016 .029 c2 1.14 1.40 .045 .055 R thCS TO-220 0.50 °C/W D 8.64 9.65 .340 .380 D1 8.00 8.89 .280 .320 E 9.65 10.41 .380 .405 E1 6.22 8.13 .270 .320 e 2.54 BSC .100 BSC Safe-Operating-Area Specification
in „J-FET N-Channel mit gößer 70V Drain / Source Spannung für Konstantstromsenke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_SAB-C167CR-LM_SiemensSemiconductorGroup.pdf
to 20 MHz min. max. min. max. RD to valid data in t14 SR – 30 + C – 2TCL – 20 ns (with RW-delay) + tC RD to valid data in t15 SR – 55 + C – 3TCL – 20 ns (no RW-delay) + tC ALE low to valid data in t16 SR – 55 – 3TCL – 20 ns + t + t + t + t A C A C Address to valid data in t17 SR – 70 – 4TCL – 30 ns +
in „Ersatz für alten Hitach H8/3337 µP?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
394035_DS.pdf
end of the active area. symbol Min. Typ. Max. Parameter – U tit Remark ENAB signal Setup time Tes 5 Tc- 10 ns Pulse width Tep 10 640 640 clock – “.,: Hsync-ENAB phase difference THe 44 164 clock Note) When ENAB is fixed “Low”, the display starts from the data of C104(clock) as shown in Fig.2-@z@. When
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PDF
Powersoft_DigiMod_1000_schematic.pdf
5 1.00K▯ ±1% 7 CN8-7 7 4P 2.54mm 180° 2 2P PH5.08mm 0 7 C 9 5 V m CN9-13 8 8 0 R 5 0 N HCPL-0611 4 TC4423EPA / 7 SM1 9 9 0 B F C D / F 1 D 0 Q3 0 V0 . t C P 1 3 . T 4 IRFP260NPBF P-DGMFILT14 R47 10 10 / / t 2 C 1 8 2 5 10.0K▯ ±1% 1 11 11 0 u u = 2 8 3 CN9-16 12 CN9-12 12 F 0 0 C31 % 4 0.33uF/160V±5%
in „Powersoft DigiMod 1500 Endstufe - DC Offset am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
wr2_rcm_revb.pdf
CUST5refertothe line numbers of the selected customparameters. SOURCE VALUES <sourceN> : = { TA, TB, TC, TD, M1, M2, M3, M4, C1, C2, C3, C4} <function> : = { TA, TB, TC, TD} <custom_line> : = { CUST1, CUST2, CUST3, CUST4, CUST5} <extended_source> : = { C1, C2, C3,C4, TA, TB, TC, TD, M1, M2, M3, M4} VALUES
in „Oszi einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA1562_PHI.pdf
input MID LOW Vref reference VRT voltage 0 HIGH status I/O input MID LOW HIGH status I/O MID class-H (Tc< 120 °C) output class-B (Tc> 120 °C) LOW output voltage 0 across load quick start zerocross change fast mute zerocross mute supply mute mute class B/H-operation function function function MGL272 Fig.3
in „Frage zu TDA1562 I/O Pin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA1562.pdf
input MID LOW Vref reference VRT voltage 0 HIGH status I/O input MID LOW HIGH status I/O MID class-H (Tc< 120 °C) output class-B (Tc> 120 °C) LOW output voltage 0 across load quick start zerocross change fast mute zerocross mute supply mute mute class B/H-operation function function function MGL272 Fig.3
in „Maximale Kapazitat an Lift Supply (TDA1562)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S1L50282F23K200.pdf
INTERFACE CONDITION 10.1 Input Signal AC Timing Parameter Symbol min. typ. max. Unit Remarks Frequency 1/Tc - - 15 MHz - DCK Duty Tch/Tc 0.4 - 0.6 - - Rise, Fall tcrf - - 10 ns - Setup Ties 2 - - DE - DCK Hold Tieh 2 - - ns - Rise, Fall terf - - 10 Setup Tids 2 - - RI5:0 to BI5:0 - DCK Hold Tidh 2 - - ns - Rise, Fall tdrf - - 10 Tc Tch 0.7VCC CLK 0.5VCC 0.3VCC tcrf tcrf Tids Tidh DATA INVALID INVALID (RI0 to RI5) 0.7VCC (GI0 to GI5) 0.5VCC (BI0 to BI5) 0.3VCC tdrf tdrf Tieh Ties Tieh Ties 0.7VCC DE 0.5VCC 0.3VCC terf terf NEC LCD
in „LCD Timing-Controller gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
REN_icl7106-07-07s_DST_20251218.pdf
, units with a negative TC may cycle between overrange FIGURE 4B. and a non-overrange count as the die alternately heats and cools. All these problems are of course eliminated if an external FIGURE 4. USING AN EXTERNAL REFERENCE
in „Panel-Meter KAIFU FR-4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLN540.pdf
Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @ 10V 30 D C GS D @ TC= 100°C Continuous Drain CurrenGS @ 10V 21 A DM Pulsed Drain Current 120 PD@T =C25°C Power Dissipation 94 W Linear Derating Factor 0.63 W/°C VGS Gate-to-Source Voltage ± 16 V EAS Single Pulse Avalanche
in „HEXFET als Widerstand?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRL540N.pdf
Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @ 10V 30 D C GS D @ TC= 100°C Continuous Drain CurrenGS @ 10V 21 A DM Pulsed Drain Current 120 PD@T =C25°C Power Dissipation 94 W Linear Derating Factor 0.63 W/°C VGS Gate-to-Source Voltage ± 16 V EAS Single Pulse Avalanche
in „Welcher R_DS(on) stimmt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Frequenzregler.pdf
power output Terminal Function description u,vw Outp't terminal connect to Three label 380V AC motor TC Relay output C EtrI 0 E L,N Single phase AC 220V input terminal GND Grounding terminal 250VAC 5A/30VDC 3A EE t B TB Relayoutput B TA and TB Normal Close,TA and TC rp Outout terminal connect to Three
in „Pumpe ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
fes8jt.pdf
FES8GT FES8HT FES8JT UNIT Max. instantan(1)s 8.0 A VF 0.95 1.3 1.5 V forward voltage Max. DC reverse TC= 25 °C 10 current at rated DC IR μA blocking voltage TC= 100 °C 500 Max. reverse recovery F = 0.5 AR I = 1.0 trr 35 50 ns time rr= 0.25 A Typical junction capacitance 4.0 V, 1 MHz CJ 85 50 pF Note
in „Ersatz für Schottky SB 3200?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vergleichsliste.pdf
2SC2026 MPSH10 ECG71 2N3599 2N3598 2N3266 ECG72 2N3625 2N5731 2N5008 ECG73 2N3622 2N5049 BLX21 ECG74 2N5480 2N5479 ECG75 2N2880 2N3998 ECG76 MRF511 BFR94 2N6135 2N5947 ECG77 MM8002 2N5943 PT5943 PT4610 ECG78 SD1212-4 ECG79 SD1214-4 SD1214-11 ECG80 2SC1810 ECG81 2N3587 2N5794 2N3907 2N2480A ECG82 2N3352
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·