DAC 8-bit P Compatible, Double-buffered D to A Converters. The is an advanced CMOS/Si-Cr 8-bit multiplying DAC designed to interface directly with the. DAC datasheet, DAC circuit, DAC data sheet: NSC – 8-Bit P Compatible, Double-Buffered D to A Converters,alldatasheet, datasheet, Datasheet. DAC Datasheet, DAC PDF, DAC Data sheet, DAC manual, DAC pdf, DAC, datenblatt, Electronics DAC, alldatasheet, free.
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So to convert the current parameter in to voltage parameter we will use op-amp circuit as shown in circuit diagram. The device is available in the market for low cost and datasgeet be easily worked with. Double buffering of the device allows outputting a voltage corresponding to one digital word while holding the next digital word.
DAC takes in parallel 8 bit data from a microcontroller or microprocessor and converts that data in to analog signal at the output. So the device is used for converting 8 bit parallel digital data input to analog signal output. The design also includes special circuitry that provides TTL logic input voltage level eac0831.
Submitted by admin on 21 November TL — Programmable Reference Voltage. The analog voltage output from the op-amp circuit is in direct relation with inputted digital value and hence DAC conversion with DAC is achieved.
DAC Technical Data
datassheet We can use the circuit to develop applications without worry as the circuit is tested working. This op-amp circuit is datadheet current-to-voltage converter. DAC IC basically used in applications where an 8 bit digital data needed to be converted to analog value. This also permits the simultaneous updating of any number of DACs.
The device is specifically designed for it to be interfaced directly with the,Z80, and other popular microprocessors.
Now for understanding the working let us consider the example application circuit given in the datasheet. For working of device DAC we have connected a voltage source of 15V as shown in diagram. This analog signal is the current quantity that is directly proportional to the input digital value and this current parameter needed to be converted in to voltage parameter for further use.
Pin Configuration DAC is a twenty pin device and description for each pin is given below. The chip is designed with CMOS technology to achieve low power consumption and low output leakage current errors.
All these control pins need to be setup appropriately datasheett mentioned above for successful DAC conversion of the device. DAC also designed with silicon-chromium R-2R resistor ladder network which divides the reference current and provides the circuit with excellent temperature tracking characteristics 0.