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Part Manufacturer Description Datasheet BUY
VFC32KU/2K5G4 Texas Instruments VOLTAGE-FREQUENCY CONVERTER, 0.5MHz, PDSO14, SOIC-14 visit Texas Instruments
LM2917MX Texas Instruments VOLTAGE-FREQUENCY CONVERTER, PDSO14, PLASTIC, SOIC-14 visit Texas Instruments
DAC7724NG4 Texas Instruments IC,D/A CONVERTER,QUAD,12-BIT,CMOS,LDCC,28PIN visit Texas Instruments
DAC7724N/750G4 Texas Instruments IC,D/A CONVERTER,QUAD,12-BIT,CMOS,LDCC,28PIN visit Texas Instruments
ADC14DS105CISQ/NOPB Texas Instruments IC,A/D CONVERTER,DUAL,14-BIT,CMOS,LLCC,60PIN visit Texas Instruments
ADC14DS080CISQ/NOPB Texas Instruments IC,A/D CONVERTER,DUAL,14-BIT,CMOS,LLCC,60PIN visit Texas Instruments

dc to ac convertion circuit diagram

Catalog Datasheet MFG & Type PDF Document Tags

3845

Abstract: uf 3845 the DC characteristic. An external low voltage electrolytic capacitor causes the circuit to exibit , activated to supply an external device (typically an optocoupler) without affecting the DC/AC characteristics of the circuit. An additional function is provided in order to reduce the DC fixed voltage rop and , this circuit it is possible to terminate an analog trunk so that the DC current component is flowing , provides DC loop termination for analog trunk lines. The V/I characteristic is equivalent to a fixed
STMicroelectronics
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24-240V

Abstract: M1MTN1 . Supplying circuit Supply voltage: 24 to 240V AC/DC Tolerance: 24 to 240V AC/DC Rated frequency: Rated , signals Multifunction Settable via internal DIP-Switches 3-way-isolation Zoomvoltage 24 to 240V AC/DC , with current input signal M1MTN1 24-240V with voltage input signal 20 to 253V AC/DC 0V 20 to 253V AC/DC 0V + - + - output 7 8 7 5 6 5 OUT U + input 6 , conditions terminals 7-8 -15% to +5% 48 to 62Hz 3.0VA (1.5W) 100% II 2.5kV AC, 50Hz 4. Input
Tele Automation Components
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3845 ic

Abstract: PABX capacitor causes the circuit to exibit high impedance to all AC signal in the voice band frequency range , ) without affecting the DC/AC characteristics of the circuit. An additional function is provided in order to reduce the DC fixed voltage drop and the AC impedance (PULSE MODE) This function can be used to , so that the DC current component is flowing in the TRUNK TERMINATION CIRCUIT. The AC signal through , . In figure 2 is indicated as example a simple hybrid circuit to made the 2 wire / 4 wire convertion
STMicroelectronics
Original

24-240V

Abstract: 240v input - 12v output transformer circuit Supply voltage: 24 to 240V AC/DC terminals 7-8 Tolerance: 24 to 240V AC/DC -15% to +5% , Block diagram 20 to 253V AC/DC 0V + 7 Zero 8 5 Output 6 U Input I + U+ - , adjustment via front potentiometers 3-way-isolation with scure isolation Zoomvoltage 24 to 240V AC/DC 1 , : II Surge voltage: 4kV AC, 50Hz 4. Input circuit Input signal (selectable via terminal , : II Surge voltage: 4kV AC, 50Hz 5. Output circuit Output signal: terminals 5-6 (Selectable via
Tele Automation Components
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Abstract: ) for hig speed convertion and can convert wide band analog signal such as video signal to digital signal at a samplin rate of DC through 20 Mega-samples/sec. Because of such high-speed poeration, the , voltage VlNA -0.5 to Vcc+0.5 V -0.5 to Vcc+0.5 V -5 5 t o +125 °c Analog , ±0.2% max. (MB40578) 20 MSPS min. 3.0V to 5.0V TTL compatible +5V 480mW typ. Standard 22-pin DIP , 2 a .g n d MB40578 â  BLOCK DIAGRAM V CCA V CCD 3 37Mc ?S b l GG25574 E â¡â -
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DDESS72 IN3064 374T75 DD2S57 DIP-22P-M04 00S5S

sot94

Abstract: analog to digital convertor temperature - +125 °C Notes to Limiting values tbf = Value to be fixed. 1. The circuit has two clock , V to -5.45 V; AGND and DGND shorted together; Tant> = 0 °C to +70°C; unless otherwise specified , to D7; IR) Vol output voltage LOW Tamb = 25 °C -1850 -1770 -1650 mV Voh output voltage HIGH , ^) and the analog input which produces data outputs equal to FF, at Tant = 25 °C. 2. The analog input , +0.75 LSB OLE DC differential linearity error - - ±0.75 LSB AILE AC integral linearity error note 4
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TDA8716 sot94 analog to digital convertor digital clock notes digital to analog converter TDA8716T VEE01

power booster circuit diagram

Abstract: SCI7661C voltage needed for operation of regulator circuit. The voltage regulator is used to regulate a boosted , obtained by applying the regulation circuit to only one of the n parallely connected circuit. Tripler + , PF 1 10-04 SCI7661C CMOS DC/DC CONVERTER â'¢ 95% Typical Power Efficiency â'¢ Doubled/Tripled Output Voltage â'¢ Internal Voltage Regulator â  DESCRIPTION The SCI7661C CMOS DC/DC Converter , booster circuitry and the regulator circuitry. The booster generates a doubled output voltage (-2.4V to
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power booster circuit diagram 17661M

SAA4940

Abstract: bit 3715 , input voltage referenced to AGND - +5.0 V VCLK(p-p) AC input switching voltage (peak-to-peak value) referenced to DGND â'" VCCD V >0 output current - +6 mA "Tstg storage temperature -55 +150 °C ^amb , -0.25 V to +0.25 V; V^ - V^ = -0.25 V to +0.25 V; V^ - Vc«, = -0.25 V to +0.25 V; T^ = 0 °C to +70 °C , diagram (HREF signal). TDA87SS test probe TEK P6201 15 pF Fig.7 Load circuit for the 3-state output , MHz ⺠1 to S. deflection ». J processor Fig. 12 Block diagram of an economic IPQ module. April
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TDA8755 SAA4940 SAA4950 bit 3715 tms4c1070 free diagram tek 475 OF565 TMS4C1070 SAA49S0 VC02A VC02B

yamaha ic

Abstract: singer signal XI, XO XI and XO terminals are used to form a crystal oscillation circuit which generates a , Pitch sampling n; c; Convertion to absolute value 56, 57 â'" LPF Singer's vocal \ volume display J , u Key control correction 56, 57 Convertion to absolute value LPF LPF .Convertion to absolute , Temperature Top 0 25 70 °C 3. DC Characteristics (Conditions: VDD=5.0±0.25V, Ta=25°C) Item Code Condition , singer's vocal, then compares the sampled data to determine the score of the singer. In addition, the
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YSS244 yamaha ic singer Yamaha top octave generator YSS244-M
Abstract: wide band analog signal such as video signal to digital signal at a sampling rate of DC through 20 M , ol any voltage higher than maximum rated voltages to this high impedance circuit. Copyright  , -7 ELECTRICAL CHARACTERISTICS (Vcc = 4.75 to 5.25V, ANALOG DC CHARACTERISTICS Ta = 0 to 70 , Current Irb V r t = 5V V r b = 3V -1 5 -9 mA (Vcc = 4.75 to 5.25V, DIGITAL DC , - TIMING DIAGRAM 5 MB40578 MB40578-7 Fig. 3 - ANALOG INPUT EQUIVALENT CIRCUIT C|NA -
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MB40578/40578-7 20MSPS

40576

Abstract: MB40576 convertion and can convert wide band analog signal such as video signal to digital signal at a sampling rate of DC through 20 Mega-samples/sec. Because of such high-speed operation, the MB 40576 is suitable for , B40576 ELECTRICAL CHARACTERISTICS ANALOG DC CHARACTERISTICS (Vcc = 4.75 to 5.25 V, TA = 0 to 70 , 4 7.2 mA m m D IG ITAL DC CHARACTERISTICS (Vcc = 4.75 to 5.25 V, TA = 0 to 70°C> Value , , TA = 25°C) TIMING DIAGRAM 7-81 MB40576 Fig. 2 - ANALOG INPUT EQUIVALENT CIRCUIT Cin a
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40576 DIP-16P-M04 FPT-16P-M03 16-LEAD

SC17661

Abstract: SC17661c reference voltage needed for operation of regulator circuit. The voltage regulator is used to regulate a , connection, a regulated output can be obtained by applying the regulation circuit to only one of the n , S-M 0 S SYSTEMS INC 31E D m 7cÃB2ciQcl OOQURR Q «SMO SCI7661G/M CMOS DC/DC CONVERTER 7-5-7-// â  DESCRIPTION The SCI7661C CMOS DC/DC Converter features high operational performance with low , . The booster generates a doubled output voltage (-2.4V to -12V) or tripled output voltage (-3.6V to -
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SCI7661M SC17661 SC17661c 24v to 12v converter CIRCUIT DIAGRAM SC176 T-57- 00012GM

HD42853

Abstract: driver for 7 segment Led indicator Control Circuit â'¢ Channel Data Parallel/Serial-convertion Circuit â'¢ 9-channel Selection Circuit â'¢ Scan-stop Circuit â'¢ HD42855 > â'¢ Channel Data Serial/Parallel-convertion Circuit â'¢ 7-segment Code Convertion Circuit â'¢ 7-segment Driver (Opened Drain Type, Common Anode LED Driver, 18V) â  FEATURES â , 6.0V. Operation voltage 4.5 to 5.5V. 256 HITACHI HD42854, HD42855 â  BLOCK DIAGRAM â'¢ HD42854 â , +75 °C Storage Temperature -55 to +125 -55 to +125 °C ♦ Value al Vol-1,0V â  ELECTRICAL
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HD42851 HD42853 driver for 7 segment Led indicator 7 Segment double 11 pin 7 segment LED COUNTER LED bcd DP-16-2

saa4940

Abstract: IEC134 (p-p) AC input voltage for switching (peak-to-peak value) referenced to DGND - Vccd V lo output , 0 to +70 °C; typical values measured at VCCA = VCCD = VCco = 5 V and Tamb = 25 °C; unless , v0o CLK DO to D7 Fig.3 Timing diagram (INY signal). 0.4 V June 1994 7110fl2b 0073721 TTT This , diagram and test conditions of 3-state output delay time. TDA8755 DO to D7 test probe TEK P6201 = 15 , bath is 10 s, if allowed to cool to less than 150 °C within 6 s. Typical dwell time is 4 s at 250 °C
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IEC134 TDA8755T
Abstract: 1.197 1.20 1.203 TC VREF dB 1.25 0.1 fN = 10Hz to 10kHz V ppm/°C ±20 Output , fCLKs CONVERTION CYCLES 1â'"12 SECOND CONVERSION Figure 3b. Temperature Conversion Timing Diagram , voltages, respectively. Accuracy is ±1°C from 0 to +70°C, with no calibration needed. The devices , 1-channel signals relative to an AIN5, or VDD/4 relative to ground. An external reference may be , and Voltage Inputs o ±1°C Accuracy from -40°C to +85°C o Fully Differential Inputs o Maxim Integrated Products
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MAX1298/MAX1299 MAX1299

DIODE 1N4002

Abstract: 1N4002 diode . Circuit Description The module is supplied from an on-board DC supply derived from the incoming three , is made up of two resistors which can be connected in parallel using JP7 to allow convertion of the , circuit designed by reference to the information contained herein, will function without errors and as , Uses current transformers for current sensing s Meets the accuracy requirements for Class 1 AC , Unused connection pads allows the module to be customised DESCRIPTION This innovative power/energy
Sames
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SA9604A SA9605A DIODE 1N4002 1N4002 diode R7B Connector diode zener 1n4002 opto coupler 4n35 multi turn potentiometer SA9604/5 PM9604/5AP

working and block diagram of ups

Abstract: basic principle of ups system attenuated by sampling circuit and knocked off by the DC offset, the AD convertion result of the output , System Block Diagram 6 V1.0, 2007-03 AP16098 UPS Main Control System Overview To eliminate , . Afterwards the power flows into the passive power factor correction circuit in order to ensure the input , voltage of the inverter also provides power to the battery charger circuit. In "line" mode the charger circuit will receive the command to run from the control board, but in "bat" mode it always remains off
Infineon Technologies
Original
working and block diagram of ups basic principle of ups system 4000w inverter circuit DSP BASED ONLINE UPS design circuit diagram of 5kva online ups inverter 5kva circuit diagram XC164 XC164CM

DIODE 1N4002

Abstract: 1N4002 DIODE allows the module to be customised Meets the accuracy requirements for Class 1 AC Watt hour meters , on-board DC supply derived from the incoming three phases. The Application Circuit (Figure 2) details the , circuit is ideally suited for energy calculations in applications using a µ-controller (SA9604A and SA9605A) or mechanical counter (SA9605A). On the left hand side of the board, next to the 25-way D-type connector, the array of unused solder pads allow the user to customise the module. This section of the board
Sames
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SK2 diode 47k potentiometer Multi sensor opto 4.7k trimpots TL 431C SK3 diode

TDA8716

Abstract: TDA8716T operating ambient temperature 0 +70 °C Ti junction temperature - +150 °C Note 1. The circuit has two , -4.95 to -5.45 V; AGND, DGND and OGND shorted together; Tamb = 0 to +70 °C; unless otherwise specified , the analog input which produces data outputs equal to FF, at Tamb = 25 °C. 2. The analog input is , rejection is achieved with respect to the LSB value. Fig.6 Application diagram; TDA8716. 1996 Aug 26 14 , it may remain in contact for up to 10 seconds. If the bit temperature is between 300 and 400 °C
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Q1Q7325

saa4940

Abstract: IEC134 low-power TDA8755 analog-to-digital interface _ BLOCK DIAGRAM CO ÃJ to EL to m o a< occ £5 u. Z3 , | Input voltage referenced to AGND - +5.0 V Vcik(p-p) AC input voltage for switching (peak-to-peak value) referenced to DGND - vccd V lo output current - +6 mA Tstg storage temperature -55 +150 °C Tamb , VCcd = -0.25 to +0.25 V; Vcca to Vcco = -0.25 to +0.25 V; Tamb = 0 to +70 °C; typical values measured , circuit always gives an Internal delay of 4 clock periods as illustrated In Fig.6. Fig.7 Timing diagram
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MLX732 7110A2 0Q77B31 TMS4C2970 SAA4951 PCBB3C652
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