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PDF
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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PDF
AS51_Assembler_V4.pdf
Tabellen und erzeugt die C-Dur Tonleiter. Ein Piezo oder ein Kleinlautsprecher mit even- tuellem Treiber (74HC14 oder 40106) wird am Timer 2 Ausgang T2 = P1.0 angeschlossen. #cpu = 89S53 ; @24 MHz #Byte 100 Hz Teiler, 4 Hz Teiler, Tonhöhe, Tonlänge ajmp Initialisierung Timer 0: ; Timer 0 Interrupt ajmp Timer
in „Uhr über 8051-Prozessor sehr ungenau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
b8_handbuch_1205.pdf
12 Hardware Assistent 1.......................................................................... 42 Abbildung 13 Hardware Assistent 2.......................................................................... 42 Abbildung 14 Hardware Assistent 3.......................................................
in „PIC16f628 programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siferrit_materials.pdf
transformers T 46 transformers (ISDN, xDSL (e.g. antenna using paired core shapes transformers, T 42 with air gap) EP, RM, TT/PR, toroids ISDN transformers, T 38 digital data up to 5 MHz N 26 Radio-frequency Double aper- transformers transformers ture, toroids (xDSL, LAN) up to 10 MHz M 33 up to 100
in „Schaltregler und EMV?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Powermeter.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
volt230.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
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PDF
energymeter.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc2566.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Cadsoft Eagle“ · Platinen ·
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PDF
assembler_beginner.pdf
allelport des PC's, den 10-poligen ISP-Stecker an die AVR-Experi- mentierschaltung. Wer gerade kei- nen 74LS245 zur Hand hat, kann auch einen 74HC245 verwenden. Allerdings sollten dann die unbenutzten Eingänge an Pin 11, 12 und 13 einem definierten Pegel zugeführt werden, damit sie nicht herumklappern, unnütz
in „Assembler Tutorial als PDF ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Z80int-jmp.asm
unaffected/affected/reset/set/unknown | ;| S |S |Sign flag (Bit 7) | ;| Z | Z |Zero flag (Bit 6) | ;| HC | H |Half Carry flag (Bit 4) | ;| P/V | P |Parity/Overflow flag (Bit 2, V=overflow) | ;| N | N |Add/Subtract flag (Bit 1) | ;| CY | C|Carry flag (Bit 0) | ;|-----------------+------------------------
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX_Reset_Circuit.pdf
3.05 A TA= +25°C 2.59 2.63 2.66 MAX8_ _R TA= -40°C to +85°C 2.55 2.70 X T = -40°C to +125°C 2.52 2.74 8 A 0 TA= +25°C 2.28 2.32 2.35 MAX8_ _Z TA= -40°C to +85°C 2.25 2.38 9 (SC70 only) TA= -40°C to +125°C 2.22 2.42 J L Reset Threshold Tempco 30 ppm/°C VCC to Reset Delay (Note 2) VCC = TH to (TH - 100
in „AVR, Batteriebetrieb und Brownout“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd1.pdf
or flip-flop) which flips over and latches, so that the contact bounce is eliminated. Either a TTL 74LS00 or a CMOS 74HC00 can be used in this circuit. The switch must be an s.p.d.t. (single-pole, double- throw) type, a microswitch is ideal. After modifying the circuit, the screen full of A’s can be
in „LCD ohne Datenblatt oder Hinweise zur Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4x20_Display.pdf
VERSION This icon on the cover indicates the product This icon on the cover indicates the product HC is with high contrast; Otherwise not. is long life version (over 9K hours guaranteed); Otherwise not. WIDE VIEWING SCOPE Anti UV VERSION UV This icon on the cover indicates the product This icon on the
in „Leerzeichen beim Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LUW_W5AM_Pb_free.pdf
c SE ND UC d<ected ( e ign s C ,or o de). Houou urs s A s baR I OE ˚C as e s n condi ± 5 ˚ at c e 74 8 4H H our C T ISTSE M t 0 lbp<).i ctry 3 ˚C withd ortrti i e e 6 MPT O t s havth le at fna d at2 re. tical FlFl l ootrti O m oni eqe i lb e lw g ,n:r a oce du iden el4l5 a FF l d:w,o rc,gdeee be untwh
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PDF
ds1879a.pdf
fer count-1, least byte first. 6Fh 2 writes Same as command 6Eh, except with Reference Byte flag. 74h 2 writes Start ADPCM 4-bit format DMA transfer to DAC. Data is transfer count-1, least byte first. 75h 2 writes Same as command 74h, except with Reference Byte flag. 76h 2 writes Start ADPCM 2.6-bit
in „Informationen über ISA-Karten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
index.php
L4lcNvI6MrXS1VfkuBTLn2OuCq2r2XeUkSPE8acXw6uqTCks9wnDaJbfSpZGpPOaqoz33dNaO2rq/NZUOHsi7rsmnWMChNd1XM17pV2Qzy8qafYRKbhu10SVBQx0oacIphuttEpbZbJyHTczW+HKllIi74cbv76I60kseW7ss1RkN91p1p+co1sulHUg0IZMnXjSTkZqUF0qOKXFcz4gpfD7rLG7XLJeM81ZpkMNTaKfHP3T/RHcfNXN6Yb7bTXh20/QS3lGvqjPNp+twne6xpv0/x74cwO1wrAMN11VO0+FY9Eq48qQqbMW0Rqfny1JSlyVKeUZuyZKyQnuPvKW64Zc1qUf0jiuE73WNN
in „Dynacord WV10 restaurieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
17mb70-5-sema_schematics.pdf
F 2 B 0 1 3 4 4 1 5 GND Y VGA_VSNC P D 1 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 2 N F N 1 1 1 1 1 1 0 R42 F C V 1 3 1 10k 2 PC_DETECT 2 B D 1 6 2 V 9 k VGA INPUT 1 R386 2 3 1 1 5 7 2 U112 100R C R 74V1G08 1 5 VESTEL PROJECT NAME : 17mb70-1 A3 2 A VCC 5V_VCC B SCH NAME : <DRAWING NAME HERE> SHEET: 1 OF:16
in „LED TV Medion MD 30630 defekt, nicht einmal standby Lampe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM151X3-A2.pdf
for LCD Module 33 RE1 Red Data 1 (Even) 73 VDD Power Supply for LCD Module 34 RE2 Red Data 2 (Even) 74 VDD Power Supply for LCD Module 35 RE3 Red Data 3 (Even) 75 VDD Power Supply for LCD Module 36 GND System Ground 76 N.C 37 RE4 Red Data 4 (Even) 77 N.C 38 RE5 Red Data 5 (Even) 78 N.C 39 RE6 Red Data
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2679-adj.pdf
Bias V = 1.3V 85 nA BIAS FEEDBACK Current ADJ Version Only V SFST Softstart Threshold 0.63 0.53 0.74 V Voltage ISFST Softstart Pin Softstart Pin = 0V 3.7 6.9 µA Current θ Thermal T Package, Junction to Ambient 65 JA Resistance (Note 6) θJA T Package, Junction to Ambient 45 (Note 7) θJC T Package, Junction
in „Schaltregler Schaltplan und Layout Kontrolle“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
standard.dio.txt
Eg=2.3 Cjo=50p Bv=6 Ibv=10u mfg=Vishay type=LED) .model NSSW008CT-P1 D(Is=.23f Rs=17.6 N=3.43 Cjo=42p Xti=120 Iave=35m Vpk=5 mfg=Nichia type=LED) .model NSSWS108T D(Is=1.13e-18 Rs=14.9 N=3.02 Cjo=42p Xti=150 Iave=35m Vpk=5 mfg=Nichia type=LED) .MODEL LedRed D (IS=93.2P RS=42M N=3.73 BV=4 IBV=10U CJO
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rudi_____RX-V4A_TSR-400.pdf
Voltage regulator 7.1ch Sound Processor for High-Quality Audio with Built-in Micro-step Volume Page 74 F9 Page 81 K9 Page 81 A5 Page 81 A6 to DIGITAL_CB21 to AMP (1)_W111 to AMP (1)_W115 to AMP (1)_W116 IN 59 58 57 56 55 54 53 52 51 50 49 48 47 46 45 44 43 42 41 Main IC504, IC505: NJM8065 IC506: RP170H331B-T1
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1014CN_DN.pdf
AUGUST 2009 APPLICATION INFORMATION 5 V Q3 2N2905 820 Ω Q1 2N2905 T1‡ 1N4002 (4) 10 µF + 10 µF 68 Ω + SN74HC04 (6) 0.002 µF 10 kΩ 820 Ω Q2 2N2905 10 kΩ 10 kΩ 0.33 µF 100 kΩ Q4 2N2222 5 V † 10 Ω 2 kΩ ± 1/4 10 kΩ † † LT1014 4 kΩ † 20-mA 100 Ω + Trim 100 pF 1 kΩ 10 kΩ† 4-mA 80 Ω † 4-mA to 20-mA OUT Trim ± To
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avrdude.pdf
simplest would be to just put some resistors in series or better yet use a 3-state buffer driver like the 74HC244. Have a look at http://kolev.info/avrdude-linuxgpio for a more detailed tutorial about using this programmer type. The STK500, JTAG ICE, avr910, and avr109/butterfly use the serial port to commu-
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
fU..E) �dCX) . CO !026 0 2 6 ±6.5 0 -8- M-1200 X X X Senes ■ MODEL M-1200 x x x Series C L H MAX ±0.HC ±2.s TYP TY P. ±0.2L ±5 RTTI T Do D t 10° 8.99 228.3 4.81 122.1 3.95 100.4 2.30 58.4 10.84 275.4 ° 7.5 9.03 229.3 4.74 120.5 4.15 10.55 2.50 63.5 11.04 280.4 50 9.06 230.0 4.67 118.7 4.34 110.4 2.69
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
fU..E) �dCX) . CO !026 0 2 6 ±6.5 0 -8- M-1200 X X X Senes ■ MODEL M-1200 x x x Series C L H MAX ±0.HC ±2.s TYP TY P. ±0.2L ±5 RTTI T Do D t 10° 8.99 228.3 4.81 122.1 3.95 100.4 2.30 58.4 10.84 275.4 ° 7.5 9.03 229.3 4.74 120.5 4.15 10.55 2.50 63.5 11.04 280.4 50 9.06 230.0 4.67 118.7 4.34 110.4 2.69
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
stm32f405rg.pdf
VDD S - - - - FSMC_D7/TIM1_CH2N/ - F6 41 63 R9 73 PE10 I/O FT - EVENTOUT - FSMC_D8/TIM1_CH2/ - J5 42 64 P10 74 PE11 I/O FT - EVENTOUT - FSMC_D9/TIM1_CH3N/ - H5 43 65 R10 75 PE12 I/O FT - EVENTOUT - FSMC_D10/TIM1_CH3/ - G5 44 66 N11 76 PE13 I/O FT - - EVENTOUT FSMC_D11/TIM1_CH4/ - F5 45 67 P11 77 PE14
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PDF
at90s2313-datasheet-atmel.pdf
left unconnected while XTAL1 is driven, as shown in Figure 3. Figure 2. Oscillator Connections MAX 1 HC BUFFER HC C2 XTAL2 C1 XTAL1 GND Note: When using the MCU Oscillator as a clock for an external device, an HC buffer should be connected as indicated in the figure. Figure 3. External Clock Drive Configuration
in „AVR Studio 4.19“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90S2313_Datasheet.pdf
left unconnected while XTAL1 is driven, as shown in Figure 3. Figure 2. Oscillator Connections MAX 1 HC BUFFER HC C2 XTAL2 C1 XTAL1 GND Note: When using the MCU Oscillator as a clock for an external device, an HC buffer should be connected as indicated in the figure. Figure 3. External Clock Drive Configuration
in „Fragen zum Sleep Mode“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Teileliste-04-18-2233.html
width:2.586cm; " class="ce7"><p>Mhz</p></td><td style="text-align:left;width:3.948cm; " class="ce7"><p>HC49/U-S</p></td><td style="text-align:left;width:3.731cm; " class="ce7"><p>8,0000-HC49U-S</p></td><td style="text-align:left;width:2.776cm; " class="ce7"> </td><td style="text-align:left;width:3.157cm;
in „Bauelemente abzugeben“ · Markt ·
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Datei
8080int-jmp.asm
unaffected/affected/reset/set/unknown | ;| S |S |Sign flag (Bit 7) | ;| Z | Z |Zero flag (Bit 6) | ;| HC | H |Half Carry flag (Bit 4) | ;| P/V | P |Parity/Overflow flag (Bit 2, V=overflow) | ;| N | N |Add/Subtract flag (Bit 1) | ;| CY | C|Carry flag (Bit 0) | ;|-----------------+------------------------
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
technical.pdf
31 = −Y 26= −Y 62 = √2 23 13 (10.73) L 1L 3A Y = Y = Y = Y = −Y = −Y = −Y = −Y = k√3 ·k23− k12 (10.74) 15 51 46 64 14 41 56 65 L 1L 2A Y = Y = Y = Y = −Y = −Y = −Y = −Y = k√2 ·k13− k23 (10.75) 25 52 43 34 24 42 53 35 L 2L 3A A more general approach for coupled inductors can be obtained by using the induction
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PDF
harman_kardon_avr507_sm.pdf
SAA6579T/V1 IC72 BVIMB90F482APFG IC , FLASH U-COM FUJITSU IC73 HRVRPM6938H4 SENSOR , REMOTE RPM6938-H4 IC74 HVIS3F84BB I.C , FLASH U-COM S3F84BB IC75 HVI74ACT04MTR I.C , HEX IC76 HVITC74HCU04AFN IC , INVERTER TC74HCU04AFN IC80 HVIHCF4053M013T I.C IC81 HVINJM2068MDTE1 I.C , OP AMP NJM2068MD-TE1 IC82 HVINJM2068MDTE1
in „Harman Kardon geht nicht an (hängt im Standby fest)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STC89C51RC-english.pdf
P3.0 9 QH SIN 10 9 Q H SIN 10 P3.1 74HC165 74HC165 7 Q H S/L CP 7 QH S/L d CP. P1.0 1 15 2 8 16 Vcc 1 i 15 e 2 8 16 104 i m 104 Vcc L 74HC165 is a 8-bit parallel input shift register, when S/L (Shift/Load) pin is falling to low level, the
in „Einstieg in 8051 - Atmels AT89S52 oder?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STC15-English.pdf
Circuit using I/O ports...................................317 4.17 Pin Function and Logic Turth Table of 74HC595..........................318 4.18 Circuit Expanding I/O ports using 74HC595.................................319 4.19 Circuit Driving 8-segment Digitron using 74HC595.....................320 4.20
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
156346062-STi7105.pdf
_ X S X S 5 M D Application E P E P 6 S 3 _ H _ D _ D D D D M I Main 1080i/30Hz GDP3 on main 148.5 74.25 27 13.5 148.5 74.25 74.25 or 720p/60Hz (HD) Main (HD) & Aux (HD) Aux: 1080i/30 Hz or 720p/60Hz(HD) GDP3 on aux 148.5 148.5 148.5 74.25 148.5 NA 74.25 ) (no DACs outputs) n t Main 1080i/30Hz GDP3 on main 148.5 74.25 27 13.5 148.5 74.25 74.25 g Main & Aux or 720p/60Hz (HD) b Aux: 480i / 576i (SD)P3 on aux 148.5 74.25 27 13.5 148.5 NA 13.5 o f Main 480p/576p (ED)GDP3 on main 108 27 27 13.5 54 27 27 e Main & Aux
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSPIC33EP512GM710_datasheet.pdf
2 19.1 I C Control Registers REGISTER 19-1: I2CxCON: I2Cx CONTROL REGISTER R/W-0 U-0 R/W-0 R/W-1, HC R/W-0 R/W-0 R/W-0 R/W-0 I2CEN — I2CSIDL SCLREL IPMIEN (1) A10M DISSLW SMEN bit 15 bit 8 R/W-0 R/W-0 R/W-0 R/W-0, HC R/W-0, HC R/W-0, HC R/W-0, HC R/W-0, HC GCEN STREN ACKDT ACKEN RCEN PEN RSEN SEN bit
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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PDF
311_Schaltungen.pdf
Misst man gleich- sen, die einen Hex-Schmitt-Trigger-In- zeitig Strom und Spannung, hat man verter 74HC14N verwendet. Einer der In- gleich zwei Extra-Netzteile vorzusehen. verterarbeitetalsRechteck-Generatormit EineAlternativeinFormvon Batterienist 75 kHz. Die davon gesteuerten restlichen 112 Personal
in „[S] Sammlung von elektr. Schaltungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pana_HA.pdf
22 5.0 5.4 (C) 35 0.16 EEEHA1V220WR (1) 1000 6.3 5.4 D 60 0.12 EEEHA1V220P (1) 1000 33 6.3 5.4 (D) 42 0.16 EEEHA1V330WP (1) 1000 8.0 6.2 E 84 0.14 EEEHA1V330P (2) 1000 35 8.0 6.2 (E) 84 0.14 EEEHA1V470UP (2) 1000 47 8.0 10.2 F 98 0.14 EEEHA1V470P (2) 500 6.3 7.7 D8 84 0.12 EEEHA1V101XP (1) 900 100 8.0
in „Display vom Kühlschrank reparieren“ · Haus & Smart Home ·
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PDF
JVC_rv-nb20b_Schema.pdf
0 .4 7 /5 0 2 5 1 / 6 / C 7 C 4 4 C 6 3 0 9 R 6 3 0 7 4 W 1 5 K 2 W 6 8 9 1 / 4 3 2 / 0 K4 0 K4 0 74 0 .4 7 /5 0 W W 4 W W W 1 2 1 1 /4 W R 1 1 6 .1 6 11 6 41 Q 6 3 0 4 / / 1 / / / 2 K K 6 0 4 . 5 5 R 1 R R K T C 3 2 0 3 /O Y /-T 1 1 0 9 1 1 1 8 1 0 0 2 1 C 0 0 / / Q 6 3 0 3 4 6 2 2 2 1 2 2 2 1 2 6
in „JVC Boomblaster - 12V/230V unterschiedliche Bassstärke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DM8203.pdf
AVDD_18V - + - + - + - + DVDD_18DVVDD_33V RJ45_LINK R12 512 3 3 2 2 2 2 2 1 1 1 1 1 8 6 4 2 VREF U3A 74HC04 C29 C18 W X M X D 0.1uF SPD0_LED 1 2 R E _ D I S 2 C 2 O U3B 0.1uF # K U5 4 4 4 4 4 4 4 4 4 3 3 3 3 3 3 3 C20 G S 3 0 0 D 0 0 1 3 1 1 D 1 1 1 LNK0_LED 3 4 E R D X X N X X D D X X N X X D JP5 R G D R R A T T D D R R A T T D VCNTL 49 G B A A A A 32 74HC04 0.1uF FX_SD 1 VREF 50 VCNTL B TEST1 31 DVDD_33V 51 VREF DGND 30 PWRST# FX_SD_TEST X1 52 DVDD33 PWRST# 29 EECS C24 R15 R16 X2 53 X1 EECS 28 EECK 0.1uF 54 X2 EECK 27 EEDIO 49.9/1% 49.9/1% LNK1_LED
in „2 Port Switch IC wie in IP telefonen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM8203.pdf
AVDD_18V - + - + - + - + DVDD_18DVVDD_33V RJ45_LINK R12 512 3 3 2 2 2 2 2 1 1 1 1 1 8 6 4 2 VREF U3A 74HC04 C29 C18 W X M X D 0.1uF SPD0_LED 1 2 R E _ D I S 2 C 2 O U3B 0.1uF # K U5 4 4 4 4 4 4 4 4 4 3 3 3 3 3 3 3 C20 G S 3 0 0 D 0 0 1 3 1 1 D 1 1 1 LNK0_LED 3 4 E R D X X N X X D D X X N X X D JP5 R G D R R A T T D D R R A T T D VCNTL 49 G B A A A A 32 74HC04 0.1uF FX_SD 1 VREF 50 VCNTL B TEST1 31 DVDD_33V 51 VREF DGND 30 PWRST# FX_SD_TEST X1 52 DVDD33 PWRST# 29 EECS C24 R15 R16 X2 53 X1 EECS 28 EECK 0.1uF 54 X2 EECK 27 EEDIO 49.9/1% 49.9/1% LNK1_LED
in „[V] DM8203 & DM8603“ · Markt ·
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Datei
NTC.html
PHN2ZyB4bWxucz0iaHR0cDovL3d3dy53My5vcmcvMjAwMC9zdmciIHdpZHRoPSIxNiIgdmlld0JveD0iMCAwIDIyIDIyIj4KICA8cGF0aCBjbGFzcz0ianAtaWNvbjMganAtaWNvbi1zZWxlY3RhYmxlIiBmaWxsPSIjNjE2MTYxIiBkPSJNMTkuMyA4LjJsLTUuNS01LjVjLS4zLS4zLS43LS41LTEuMi0uNUgzLjljLS44LjEtMS42LjktMS42IDEuOHYxNC4xYzAgLjkuNyAxLjYgMS42IDEuNmgxNC4yYy45IDAgMS42LS43IDEuNi0xLjZWOS40Yy4xLS41LS4xLS45LS40LTEuMnptLTUuOC0zLjNsMy40IDMuNmgtMy40VjQuOXptMy45IDEyLjdINC43Yy0uMSAwLS4yIDAtLjItLjJWNC43YzAtLjIuMS0uMy4yLS4zaDcuMnY0LjRzMCAuOC4zIDEuMWMuMy4zIDEuMS4zIDEuMS4zaDQuM3Y3LjJzLS4xLjItLjIuMnoiLz4KPC9zdmc
in „NTC auto kalibrierung - Matheformel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VHF-COMM.1983.3.pdf
2 C 39 Tube horizontal mounling. VHF COMMUNICATIONS 11 (1979), Edition 1,pages 27·33 Metall case' 74 x 74 x 30 mrn Base and collector voltage supply: As in the case 3) J.Dahms, DC0DA 01driver DF5QZ 004. InterdigilaConvene rs forthe GHz Amateur Bands VHF COMMUNICATIONS 10. 5.2. Alignment of Ihe Amplifier
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PDF
H8-325.pdf
VCC — — 35 NC NC NC NC 33 25 36 P72 P72 P72/BUSY NC 34 26 37 P73/IOS P73/IOS P73 NC 35 27 38 AS AS P74 NC 36 28 39 WR WR P75 NC 37 29 40 RD RD P76 NC 38 30 41 WAIT WAIT P77 NC 39 31 42 VCC VCC VCC VCC 40 32 43 A15 P27/A15 P27 CE 41 33 44 A14 P26/A14 P26 EA 14 42 34 45 A13 P25/A13 P25 EA 13 43 35 46 A12
in „Programmer für HD6473258P10 selber bauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
onkyo_tx_nr_616_service_manual.pdf.pdf
for listening mode transition four-digit string "10.2" "5.1" "1 +1" ??? : C_FMT_UNKNOWN 4H2 : C_FMT_42H 10 : C_FMT_10 5H2 : C_FMT_52H 17.Number of channels after decoding 20 : C_FMT_20 4W2 : C_FMT_42W ??? : C_FMT_UNKNOWN 4H2 : C_FMT_42H 30 : C_FMT_30 5W2 : C_FMT_52W 10 : C_FMT_10 5H2 : C_FMT_52H 21 :
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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6291174.pdf
Cb) at pins 67, 68 and eral circuits. 69 of IC4101. Check component signals (Y, Pr, Pb) at pins 73, 74 and 75 of IC4101. SIGNAL K10T/K3T SIGNAL K10U/K3U Check Sync signals (AV_HSYNC, AV_VSYNC) at pins 4 and 9 of IC1101. V-Sync 19-20 Video 45-46 H-Sync 15-16 S-C 41-42 Check Sync signals (AV_HSYNC, AV_VSYNC
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ag172d.pdf
PHSE)R D404 093G 64 33 DIO SIG SM BAV99 (PHSE)R D403 093G 64 33 DIO SIG SM BAV99 (PHSE)R D413 093G 64 42 P BAV70 SOT-23 53 Downloaded from www.Manualslib.com manuals search engine 17" LCD Color Monitor Hanns.G AG172D D407 093G 64 42 P BAV70 SOT-23 D702 093G 6432P LL4148 D701 093G 6432P LL4148 D419 093G
in „Geplatzte 25V-Elkos im 12V-Netzteil gegen 16V Low ESR austauschen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pm2521ocr.pdf
4822 520 40044 1 12 44 5.4, S W I T C H A S S E M B L Y N2 printed circuit board 5322 466 10315 1 6 42 Function switch complete 5322 278 80175 2 7 42 V R P P connector X101 5322 267 74125 1 8 42 90 5.5. PRINTED CIRCUIT B O A R D : 5.5.1. Miscellaneous Orderingnumber Qty. Item Fig. Power switch 5322 276
in „Pjilips PM2519“ · Markt ·
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PDF
Part_1_Physical_Layer_Specification_Ver3.01_Final_100218.pdf
unless it was done during a password definition or change operation. be set in the 4the behavior of CMD42. The reserved bits in the parameter (bit7-4) of CMD42 shall be don't care. In the LOCK_UNLOCK_FAILED (Bit24 of Card Status) shall be set to 1 regardless of Table 4-7. Then of CMD42, theh is CMD13 after the CMD42. The LOCK_UNLOCK_FAILED (Bit24 of Card Status) as the result of CMD42 ofand 1 to 0 can be seen in the response oS either CMD42 or the following CMD13. l e a s c e e r 41 Confidential F Downloaded by
in „MicroSD STM32 und Mosfet“ · Mikrocontroller und Digitale Elektronik ·
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Datei
idt70V3319.vhd
-- tpw values: pulse widths -- tLC1 tpw_CLKR_PIPER_EQ_0_negedge : VitalDelayType := UnitDelay; -- tHC1 tpw_CLKR_PIPER_EQ_0_posedge : VitalDelayType := UnitDelay; -- tLC2 tpw_CLKR_PIPER_EQ_1_negedge : VitalDelayType := UnitDelay; -- tHC2 tpw_CLKR_PIPER_EQ_1_posedge : VitalDelayType := UnitDelay; -- tJCL