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ds89_controll.pdf
4Y 12 P2.1 2 C20 10u/25V C15 7 3OE 4A 13 P2.2 3 10u/25V 100n GND 4OE c GND 15 U8 V P2.3 4 5 C2 - V 74HCT125 P2.4 5 31 EA/VP ALE/P 30 P2.5 6 P2.6 7 6 GND GND P2.7 8 +5V 9 C21 P1.0 1 P1.0 P0.0 39 P0.0 10 P1.1 2 P1.1 P0.1 38 P0.1 C P1.2 3 P1.2 0 P0.2 37 P0.2 GND 10PIN C 10u/25V P1.3 4 P1.3 4 P0.3 36 P0.3
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oncilla_schaltplaene.pdf
D D S S A2 3 1 1 IN2 V +5VD 8 VCC 2 IN4 R110 4 GND WP 7 3 IN8 1K 0.1% 0 R 4 U??A DIS_/LE2 5 BL D 1 74HCT125 LE N G DIS_D3 2 3 6 4 U??B Referenzquelle 74HCT125 5 6 DIS_D2 1 U??C 74HCT125 U103 +5VD ADR421 9 8 DIS_D1 3 U??D U304 +5VA 2 6 1 74HCT125 5082_7340 VIN VOUT +2.5V_REF 1 1 1 1 +5VD 7 N + DIS_D0 B G 12 11 K 8 IN1 C B 2 3 4 5 0 1 IN2 V 2 2 2 2 1 2 IN4 4 T T T T Versorgung 74HCT125: 3 IN8 C106 C107 Pin14+5VD 10uF 0.1uF Pin7GND 0 3 4 DIS_/LE3 R 5 BL LE N D D G Anschluß Nezteil Bedienelemente V V Trafo + + 6 12V/1A Overrange = "EEEE" 1 2 Schaltregler +5V neg. Werte => "0000
in „Unbekannter Geräteeinschub (Impulszähler)“ · Mikrocontroller und Digitale Elektronik ·
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kicad_8450_dcm_liste_neu_v3.pdf
Configurable Multi-Function Single Gate, Low-Voltage CMOS 74AUP1GU04 74AUP1G04, Single NOT Gate, Low-Voltage CMOS 74CB3T1G125 Single FET Bus Switch 74CBT1G125 Single FET Bus Switch 74CBT1G384 Single FET Bus Switch 74CBTD1G125 Single FET Bus Switch 74CBTD1G384
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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catalog.pdf
[Desc]: 4-ch, 2-input, 2-V to 6-V AND gates 14-PDIP -55 to 125 MPN: 74AHC1G125W5-7 [ID]: 000536 [Price]: 0.07 USD [QTY]: 12 [Category]: Logic Gates [Desc]: 74AHC Series 5.5 V Surface Mount Single Buffer Gate w/ 3-ST Output - SOT-25 MOSFETs MPN: BSS84 [ID]: 000062
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PDF
catalog.pdf
[Category]: Logic Gates [Desc]: Automotive single 2-input, 1.65-V to 5.5-V OR gate 5-SOT-23 -40 to 125 MPN: 74LVC1G04GV-Q100H [ID]: 000106 Page 56/105 Bauteileliste vom 12.08.2022 [Price]: 0.09 USD [QTY]: 9 [Category]: Logic Gates [Desc]: 74LVC1G04 - Single inverter MPN: CD74HC08EE4 [ID]: 000134 [Price
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catalog-3.pdf
[Category]: Logic Gates [Desc]: Automotive single 2-input, 1.65-V to 5.5-V OR gate 5-SOT-23 -40 to 125 MPN: 74LVC1G04GV-Q100H [ID]: 000106 Page 56/105 Bauteileliste vom 12.08.2022 [Price]: 0.124 USD [QTY]: 9 [Category]: Logic Gates [Desc]: 74LVC1G04 - Single inverter MPN: CD74HC08EE4 [ID]: 000134 [Price
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BTT_SKR_V1.4-SCH.pdf
AD0.3/AOUT/RXD3 P P P P P P P 1 5 P P L L _ X D C S D P2.3/PWM1.4/DCD1/TRACEDATA2 70 FAN_PWM 0.1UF 3 74LVC1G125 +5V THB 7 P0.25/AD0.2/I2SRX_SDA/TXD3 P 1 M M R S _ _ _ _ P2.4/PWM1.5/DSR1/TRACEDATA1 69 HE1_PWM 【 E1 】 Neopixel 120R TH0 8 P0.24/AD0.1/I2SRX_WS/CAP3.1 P _ X 2 / X T XT X P2.5/PWM1.6/DTR1/TRACEDATA0
in „Induktiven Sensor (6-36V) an Microcontroller/Mainboard anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTT_SKR_V1.4SCH.pdf
AD0.3/AOUT/RXD3 P P P P P P P 1 5 P P L L _ X D C S D P2.3/PWM1.4/DCD1/TRACEDATA2 70 FAN_PWM 0.1UF 3 74LVC1G125 +5V THB 7 P0.25/AD0.2/I2SRX_SDA/TXD3 P 1 M M R S _ _ _ _ P2.4/PWM1.5/DSR1/TRACEDATA1 69 HE1_PWM 【 E1 】 Neopixel 120R TH0 8 P0.24/AD0.1/I2SRX_WS/CAP3.1 P _ X 2 / X T XT X P2.5/PWM1.6/DTR1/TRACEDATA0
in „3D-Drucker, Mainboard-Lüfteranschluss erweitern“ · Mikrocontroller und Digitale Elektronik ·
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stm32_magic_eye2.pdf
DIG0 H00 H01 H02 H03 H04 H05 H06 H07 2 C10 V DIG1 11 L01 R R 1 E 100n R1 6 L02 LED3 D L U? 25.9k DIG2 74HCT244 DIG3 7 L03 D1 D2 D3 D4 D5 D6 D7 D8 R 7 3 L04 R DIG4 LED LED LED LED LED LED LED LED 2 GNDD DIG5 10 L05 GNDD 18 I_SET DIG6 5 L06 L00 2 C 18 1 8 L07 1A0 C 1Y0 DIN DIG7 H00 H01 H02 H03 H04 H05 H06
in „STM32F103 und I2S Probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
All.txt
1 IC6 74HCT125N 74HCT125N DIL14 Quad bus BUFFER, 3-state 1 IC6 74HC573 74HC573 DIL-20 1 IC6 74HC1G04 74HC1G04 SOT353 1 IC6 74AHC573PW 74AHC573PW TSSOP20 8-bit D latch BUS DRIVER 1 IC6 74AC125N 74AC125N DIL14
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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nacrt_main_board_rev10a_coulomb.pdf
NTC2 10R INV-N OUT GRID-L GRID-L CN9, pin 10 CN9, pin 9 P4 C120 W14 HCT1-Current 10nF R193 controller MOV3 285V AC 665K R155 R131 LEM 561KN20 HY-50P/SP21 665k 665k 6 R184 665K R148 R136 5 1 RY3 665k 665k 4 3 R195 R149 R129 155 832HA-1A-F-C 665k 665k 2 665K Ohm 12 V relay
in „SUCHE Transistor KGF75N65KDF“ · Analoge Elektronik und Schaltungstechnik ·
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ttester.pdf
ist ein externer seriell-parallel Wandler erforderlich. Die einfachste Lösung scheint mir mit einem 74HCT164 oder einem 74HCT595 Chip möglich zu sein. Einen entsprechenden Schaltungsvorschlag zeigt das Bild 2.12 . 18 GND VCC 1 GND VCC 1 2 VSS 2 VSS VCC 3 VDD VCC 3 VDD VEE 4 VO ) VEE 4 VO ) t 5 RS 0 t
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HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
R4232.2 11 SVB-COR 3N3/T4438,2 4K9/R4472. t 3 3 wmmÄ 25222 BH515 TBS 454/T3225.2 Q 4K3/T4422 c <»--- 125 1NTB_ON 12 14 12 SVH-COR 4N3/T4421 QN e 7 C5222 R5222oı5K112 450/]C5221.42 HOS 354/T322G.2 : I HNH-Z IC5212 SV-1 74HCT4255á 599/J4221.15 C58.1μ MB553515PF C5833 5 -u 4 11 12 5 5C9/]C5224.5 1 VDD VCC
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HS_Systems_Part_2_for_Print_A.pdf
Converter Interfaces Wideband Design Example: AD8352 Variable Gain Amplifier Driving AD9445 14-Bit, 125MSPS Buffered Input ADC In this example, we are digitizing a wideband signal with the AD9445 14-bit, 125MSPS ADC and desire to preserve as much of the ADC input bandwidth as possible. The AD9445 has
in „ADCs: Digitale Masse und Oszillator an Analogmasse?“ · Analoge Elektronik und Schaltungstechnik ·
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rf__0_4_schem.pdf
0 B P I U 1 Vss 2A P I U 1 0 9 B2 40m BPF C212 P I U 2 Vss 2A P I U 2 0 9 B4 CO5 C131 L7L7 100nF SN74CBT3253C PIC502 PIC501 PIC1301 PIC1302 PIPIL702 PIC2102 PIC2101 SN74CBT3253C 100nF 32 180 1uH 02 GND 92 L1L1 2 GND L3L CO9 0.47uH C171 I0 C23 40C2424 12CO1 I0 C2C 0.47uH 91390 0 390 100nF 100nF 100nF
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apc_smart-ups_1000_1400_sch.pdf
2 / 4 14 0 R , . , 5 , 12 IC8 IC9 IC9 9 8 , 2 3 6 4 0 5 R 6 1 + V+ 14 2 D24 1 13 14 12 11 14 10 7 74C14 V 2 0 K V-STBY R , 2 4 13 5 2 6 1 2 0 1 - V- TL064 1N4148 2 4 7 74C14 7 74C14 F C 1 0 , 1 5 11 1 1 1 4 5 D18 IC7 1 7 1 V C43 4 % 14IC9 . 2 1 5 + 8 R K 1 5 R 5 5 6 0 430-0029 1N4148 V+ 7 1 . C , 2
in „Wechselrichter bauen“ · Analoge Elektronik und Schaltungstechnik ·
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drv103.pdf
Circuit. RPWM +5V 74XX76A VS OK Q J 20kΩ OK Q FIGURE 8. Simplified Duty Cycle Adjust Input. OK Reset CLR CLK (1) GND K STATUS FLAG The OK Flag (pin 7) provides a fault indication for over- OK 7 current and thermal shutdown
in „PWM Signal wie stell ich das ein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv103.pdf
Circuit. RPWM +5V 74XX76A VS OK Q J 20kΩ OK Q FIGURE 8. Simplified Duty Cycle Adjust Input. OK Reset CLR CLK (1) GND K STATUS FLAG The OK Flag (pin 7) provides a fault indication for over- OK 7 current and thermal shutdown
in „Widerstände dimensionieren.“ · Analoge Elektronik und Schaltungstechnik ·
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bs1Appnotes.pdf
figure 3. The inverter/line driver shown in figure 3 can either be a CMOS type like one-sixth of a 74HCT04 or an actual RS-232 line driver, such as a MAX-232.IftheStampswillbetalkingtoeachotherinsteadofreporting to a host computer, you can eliminate the line driver entirely. The Stamp also supports an
in „Smartcard-Kode-Schloss mit PIC16F84“ · Mikrocontroller und Digitale Elektronik ·
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AVR-Tutorial.pdf
TPIC6B595, der hat 20 Pins und eine abweichende Pinbelegung http://www.ti.com/product/tpic6b595 HC oder HCT? Mal gibt es 74HC595, mal 74HCT595. Diese beiden Typen unterscheiden sich nur dadurch, wie sie Eingangs-Signale erkennen: • HC: High-Signal muss mindestens ca. 75% der Betriebsspannung haben (siehe
in „AVR-Tutorial als PDF“ · Offtopic ·
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Datum_LPRO-101.pdf
kHz 100 kHz Test -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz Notes 3-2 99 130 149 158 159 161 2 (74AC04) 3-3 102 130 149 155 157 159 2 (74AC04) 3-4 101 129 134 135 135 135 2, 3 (MC10ELT21D) 3-5 98 118 118 119 119 120 2, 4 (LT1016) TYP LPRO 86 96 138 152 156 158 1 FRK LN 103 130 149 158 160 161 1 1.
in „Ausgangsschaltung 10MHz Referenz“ · Analoge Elektronik und Schaltungstechnik ·
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lg_flatron_l1800p_lb886f_ch_cl-29.pdf
C826 0CK103CK51A 0.01UF160850V10%R/TPB(Y C827 0CC102CK41A 1000PF160850V5%R/TPNP0 U105 0IMO741420B MC74HCT14ADR214P,SOICTPLE C828 0CE107WF6DC 100UFMVK16V20%R/TP(SMD) U106 0IRH765700B BA7657F24P,SOPTPINPUTSIG C829 0CC102CK41A 1000PF160850V5%R/TPNP0 U107 0ITI748600N SN74F86DR14SOICTP2-INPUT C830 0CK103CK51A
in „Überspannung in Mehrparteien-Wohunung. Baustrom, oder Kabel angebohrt?“ · Haus & Smart Home ·
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Sager_D87P_Service_Manual_Part4.pdf
RESET# C A 9 NQG 13 E-MAIL PWR/SUS_LED [17] [28] 164_RESET# D9 SCS751 CLR GQH E-MAIL [17] SML_010MT_G 74HCT164 C48 7 4.7U VCC3S CN10 T228 1 2 VDD3 TIP RING T206 s CN2 C821 C820 C851 C327 C852 T226 3 KEY KEY 4 T227 5 8PMJ-3 8PMJ-1 6 T218 1 2 BOOT_FLASH 0.1U 0.1U 0.1U 0.1U 4.7U(0805) T222 7 8PMJ-6 8PMJ-2
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DE200610__1_.pdf
elektor 9 INFO & MARKT MAILBOX Updates, Bezugsquellen und Nachlese Batterieschoner, ELEKTOR zeichnung 74HCT151 auch verwendeten Spulen (L1 und Abspeichern von Steuer- Juli/August 2006, S. 55 im Text, im Schaltplan steht L2) geändert: von Kommandos genutzt, Leider fehlte die Autorenanga- aber 74HC151. Um
in „ekg schaltung aus heft 10/2006“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD_Display_1602.pdf
leakage current Iil Vin = 0 to Vdd E -1 - 1 uA Pull-UP Mos current -Ip Vdd = 5V RS R/W DB0-DB7 50 125 250 uA RF oscillation, from Supply current Iop external Vdd - - 0.6 mA (Depends on module clock size) Vdd = 5v fosc = 1.3 2.5 270kHz Internal clock operation (Rf oscillation) OSC1 Oscillation frequency
in „AT89S8252 in C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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MC14489.pdf
Enable 3.0 300 ns (Figure 4) 4.5 150 5.5 150 tw Minimum Pulse Width, Clock 3.0 167 ns (Figure 1) 4.5 125 5.5 125 t , t Maximum Input Rise and Fall Times — Data In, Clock, Enable 3.0 1 ms r f (Figure 1) 4.5 1 5.5 1 *See Thermal Considerations section. **For a high–speed 8–Clock access, t for Enable is determined
in „4094 kaskafieren“ · Mikrocontroller und Digitale Elektronik ·
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Sinuswechselrichter.pdf
4B +5V +5V 6 5 BATT-FUSED +5V 5.6V GND 4 3 +24V +24V 20K 15 G GND 2 1 +12V+12V SLOT/DB9 1 A/B D402 74HCT257N 5 GND D401 +BATT-FUSED 1 0 R406 R 2 13VGND 2K Abbildung 25: Schaltung der Kommunikationsschnittstellenansteuerung 3.6.5 Buzzer +12V 4 1 D VC9A 3KHZ_SQUAREWAVE 1 2 IC9P R F E 74C14 1 +12V Z 7 V
in „Wechselrichter Spannung und Frequenz steuerbar für Teichpumpe“ · Haus & Smart Home ·
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PDF
8020_8021_Users_Manual.pdf
ICCD4094B 0540-01100 U30 ICCD4094B 0540-01100 U2 ICP8279 0500-20700 U31 ICCD4094B 0540-01100 U3 IC74HC4049 0520-07300 U33 ICLM741C 0500-56310 U4 IC74LS138 0510-02700 U34 IC12BITD/AAD7541AJN 0560-00800 U5 ICP8031 0500-21410 U35 IC10BITD/AAD7533JN 0560-00700 U6 ICSN74HC4040 0520-07000 U7 IC74LS373 0510
in „Handbuch für Funktionsgenerator Kontron 8021 gesucht“ · Offtopic ·
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Petra-M10_Einblick_offen.html
0,1353746,5663,731,223,5104,207,2955,249,10,1051,175,364,1435,4,60,690,52,75,383,139,736,403,62,265,22,60,219,1127465,1527267,1294,2136,4969,180,3382,1716,1604,2044,314,893,633,1770,1137,4795,5298,2488,328,5033,10931,279,1191,14056,867,7049,2445,2646,793,845,3666,1027,10213,363,8825,3961,1800,512,2111,1325,3533,1362,283,4040,4968,3020,4747,2898,221,7914,1808,1976,2044,8909,5297,2054,920,873,1217,2559,416,2784,2607,315,724,3934,448,12,866,12,5,7,6022,2884,20,317,1982,2536,1396,1381,520,399,2277,10,568,2226,62,1531,1279,2212,202,1,327,149,1103,327,513,474,43,1466,8,48,157,1147,2954,109,151,52,1137,2,2669,1839,184,544,1189,43,522,374,1572,747,429,44,1009,93,328,1169,115,17,83,42,375,2426,1639,607,474,459,90,790,748,1039,2757,470,773,2072,7,1320,951,2534,1,793,468,1566,6513,1831,831,170,472,427,171,1852,2458,1226,1456,6,128,153,3654,1274,108,1246,2,2,120,1484,72,481,908,2,433,508,532,313,249,1520,839,9,564,985,1387,256,3,305,2407,706,355,225,408,192,91,305,830,840,188,2,85,1631,355,303,420,30,156,814,58,125,277,111,40,254,6,567,622,1,240,13,107,113,219,242,126,401,1260,1,707,148,542,1477,1,291,1191,191,854,200,39,106,71,152,1,427,8,307,73,87,99,54,48,50,36,593,107,17,127,698,395,208,387,600,350,856,56,141,490,529,116,256,1904,376,33,687,90,5842961,1805894,3795662,490,324,567,293,565,309,636,3337,576,1006,142,3,88,773,665,356,812,151,629,492,100,1120,1908,634,182,668,1159,392,644,137,251,174,1698,131,955,418,218,54,127,206,212,49,235,72,26,471,66,476,301,183,346,95,186,559,17,943,243,231,169,715,62,113,206,13,50,41,248,463,879,16,245,9,98,96,178,54,84,456,125,178,48,103,123,81,47,265,239,16,281,313,67,176,172,7,485,12,482,182,48,6,157,93,43,177,70,236,68,149,349,54,224,6,71,691,163,16,49,94,42,138,17,4,769,81,11,34,325,72,63,337,159,236,72,133,41,113,361,82,25,19,299,134,88,72,46,20,128,16,79,40,58,47,27,73,29,132,47,18,29,39,9,36,148,31,3,164,154,42,121,80,96,27,55,107,111,56,441,469,267,22,110,57,31,33,60,74,3,107,3,63,26,47,14,2,142,44,128,52,47,47,28,90,8,81,3,45,303,36,62,2,4,258,2,21,139,40,38,88,336,86,137,3,3,38,23,212,35,83,350556,3879686,13,83,85,237,28,16,6,154,128,88,1218601,39,132,6,31,6,105,139,42,38,107,149,7,25,6,7,3,6,17109185,6,40,11,61,9,2,8,1349760,500019,580040,229965,14,6,50064,6,1859907,24,709964,27,21,12,19,56,6,16,85
in „Lampentaster gesucht“ · Markt ·
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Heiz702.pdf
----+ TA - Außentemperatur |TA -10 00 10 20°| -10 00 10 20° - Temperaturstützstellen (fest) |TK 80 74 70 70°| TK - Kesselsolltemperatur +----------------+ 80 74 70 70° - Vorsteuerung Kesseltemperatur (frei programmierbar) Zwischen den Temperaturstützstellen wird linear interpoliert. z. B. bei -5 °C Außentemperatur
in „Heizungssteuerung elektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
700185_wiesmeier_christoph_2016.pdf
Anschluss zur Verfugung stehen, wird das Display uber eine Port-Erweiterung angesteuert. Dafur werden zwei 74HCT595 Serial- In/Parallel-Out Schieberegister mit TTL- kompatiblen Pegeln verwendet. Diese konnen problemlos durch die 3.3V Ausgange des Mikrocontrollers angesteuert werden. Die freien Pins des Portexpanders
in „2A 1s Li-ion Lader + Protection“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HAMEG_HM1507-3_Oscilloscope_Service.pdf
4 F CLF CL D3003R D3005R 1 LD CM tMLD 1C 5005R 4 B R 528 BR528 12VO- 2 <> n co 03n 4 1 o tr F F o: 74HCT40662 R3657 R3656 441 o 1 EXT-5W 3 r m — - TRRCE-DR 392K 1M50 12VC> D3004B 2 3 3 2 Q in tr 8 1 1 trS3ÿ01 1 3 5E8 /IC 4 8 0 .5 H r m - 9 — rm— o i2 v CO T3 0 0 1 EXT-SM Q F LD LDrR 3 1 6 3 3C 3602R
in „HM 1507-3 bootet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9833.pdf
1.225 ) 2.3V 850 ( 1.200 E 800 T V P 750 (T.175 - 5.5V U E 700 F LOWER RANGE A R W 650 V1.150 600 1.125 550 500 1.100 –40 25 105 –40 25 105 TEMPERATURE (ⴗC) TEMPERATURE (ⴗC) TPC 7. Wake-Up Time vs. TPC 8. V REFOUT vs. Temperature Temperature –6– REV. A AD9833 0 0 0 –10 –10 –10 –20 –20 –20 –30 –30 –30
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PDF
6291174.pdf
IC1851 409 404 6302 IC M62320FP IC801 410 420 1608 IC HD64F2238ATE13-B932 IC1861 410 337 0503 IC TC74LCX14FT IC8051 410 321 8300 IC TC74VCX16244FT 410 337 0602 IC HD74LVC14T IC1871 410 325 4605 IC TC74LCX244FT IC8061 410 321 8300 IC TC74VCX16244FT IC8071 410 321 8300 IC TC74VCX16244FT IC1881 410 311 5708 IC MC74HCT244ADT IC8081 410 407 4004 IC TC74VCX541FT 410 315 5506 IC HD74HCT244TV IC8101 409 211 7301 IC MC14053BFL 410 356 7507 IC SN74HCT244PWR IC201 410 353 1805 IC AD9884AKS-140 409 051 2900 IC TC4053BF-TP1
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD9834.pdf
MHz, OUT= fMCLK75 Narrow Band (±200 kHz) B Grade −78 −67 dBc fMCLK= 50 MHz, OUT= fMCLK50 C Grade −74 −65 dBc fMCLK= 75 MHz, OUT= fMCLK75 Clock Feedthrough −50 dBc Wake-UpTime 1 ms COMPARATOR InputVoltage Range 1 V p-p AC-coupled internally Input Capacitance 10 pF Input High-Pass Cutoff Frequency 4 MHz
in „AD8934 - DDS SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EMS_Adapter.xml
1asvf7AmlKZfssHKWjp78QRZsFF//VNmGDbpYwa9FUYYwEjR+dPcVC+Qv8aRqvY7BnBbgAwcQ6o4p+K7RDRFBJmtJ/MlnvPV5SIUmu74RMvkEhjuTZNOdFBNN1vqfG7Ws+3dT+vX/fytf0feIbmMAN7IIba+B2X6WiQpbybtv2S9Id74L/OoSVCFMOTOoLHsUJ96wOXIO/y0/WDrtp63jWEgLTlWP26dz4DuuzxQWdsw3WMXaygTZav9Xih/LvOuLx8hpjP3N/X4oz6ezrTarz1V01vd8/4gp5OeRZuoMy37SI1fZIld8Jizmjj4yd6
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Datei
EMS_Adapter.xml
1asvf7AmlKZfssHKWjp78QRZsFF//VNmGDbpYwa9FUYYwEjR+dPcVC+Qv8aRqvY7BnBbgAwcQ6o4p+K7RDRFBJmtJ/MlnvPV5SIUmu74RMvkEhjuTZNOdFBNN1vqfG7Ws+3dT+vX/fytf0feIbmMAN7IIba+B2X6WiQpbybtv2S9Id74L/OoSVCFMOTOoLHsUJ96wOXIO/y0/WDrtp63jWEgLTlWP26dz4DuuzxQWdsw3WMXaygTZav9Xih/LvOuLx8hpjP3N/X4oz6ezrTarz1V01vd8/4gp5OeRZuoMy37SI1fZIld8Jizmjj4yd6
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PDF
enc28j60.pdf
polarity is changed necessary. while the ENC28J60 is operating, the new polarity will An economical 74HCT08 (quad AND gate), 74ACT125 not be detected until the next system Reset occurs. (quad 3-state buffer) or many other 5V CMOS chips LEDB is unique in that the connection of the LED is with TTL level
in „ENC28J60 Resetpin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
m_mops386a_p389m115.pdf
shown in the following diagram. 13 VCC Clr QH 12 QG 1 Clk QF 10 QE 6 1 QD 5 VCC 2 A QC 4 B QB QA 3 74HCT 164 RB6 GND Y8 1 2 Y9 3 4 5 6 Y10 7 8 Y1 9 10 Y12 1 12 Y13 13 14 Y14 GND Y0 15 16 Y15 1 2 RA0 1 2 Y1 KEY 17 18 KEY 3 4 RA1 3 4 Y2 GND 19 20 Y0 5 6 RA2 5 6 Y3 RA0 21 22 Y1 7 8 RA3 7 8 Y4 RA1 23 24
in „Kontron PC-104 MOPS386A board from Bender Unimet 1000 ST“ · Mikrocontroller und Digitale Elektronik ·
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311_Schaltungen.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 125 Netzstromindikator. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 342 Netzteile dynamisch testen . . . . . . . . . . . . . . . .
in „[S] Sammlung von elektr. Schaltungen“ · Mikrocontroller und Digitale Elektronik ·
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39662c.pdf
factory test. Do not use. Glitch prevention not assured. 101 = CLKOUT outputs main clock divided by 8 (3.125 MHz) 100 = CLKOUT outputs main clock divided by 4 (6.25 MHz) 011 = CLKOUT outputs main clock divided by 3 (8.333333 MHz) 010 = CLKOUT outputs main clock divided by 2 (12.5 MHz) 001 = CLKOUT outputs
in „Webserver mit XC167“ · Mikrocontroller und Digitale Elektronik ·
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Exp_Meth_In_RF_Des--Wes_Hayward.pdf
noise the number loaded at JA to D (0 to 15) plus increase by 20Log(N) dB. 79 dB for this 2. Several 74HC193s can be cascaded to phase-frequency detector, crystal oscilla- case. Clearly, PLL synthesizers with large realize large divisors. The 74HC74 forces tor, and digital control and memory 16 V ihould
in „Literatur zum Selbstbau von Sendern und Empfängern“ · HF, Funk und Felder ·
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xc164_um_v2.1_2004_03_per.pdf
µs 209.7 ms 32 1.25 MHz 800 ns 52.43 ms 156.25 kHz 6.4 µs 419.4 ms 64 625.0 kHz 1.6 µs 104.9 ms 78.125 kHz 12.8 µs 838.9 ms 128 312.5 kHz 3.2 µs 209.7 ms 39.06 kHz 25.6 µs 1.678 s 256 156.25 kHz 6.4 µs 419.4 ms 19.53 kHz 51.2 µs 3.355 s 512 78.125 kHz 12.8 µs 838.9 ms 9.77 kHz 102.4 µs 6.711 s 1024 39.06
in „Unterschied Compare match und Period Match“ · Mikrocontroller und Digitale Elektronik ·