HI1-565ATD-2 Allicdata Electronics
Allicdata Part #:

HI1-565ATD-2-ND

Manufacturer Part#:

HI1-565ATD-2

Price: $ 154.32
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intersil
Short Description: CONV D/A 12BIT 6.7MHZ 24-DIP
More Detail: 12 Bit Digital to Analog Converter 1 24-CDIP
DataSheet: HI1-565ATD-2 datasheetHI1-565ATD-2 Datasheet/PDF
Quantity: 1000
60 +: $ 140.29000
Stock 1000Can Ship Immediately
$ 154.32
Specifications
Reference Type: Internal
Base Part Number: HI-565A
Supplier Device Package: 24-CDIP
Package / Case: 24-CDIP (0.600", 15.24mm)
Operating Temperature: -55°C ~ 125°C
Architecture: R-2R
INL/DNL (LSB): ±0.25, ±0.25
Voltage - Supply, Digital: --
Voltage - Supply, Analog: ±11.4 V ~ 16.5 V
Series: --
Data Interface: Parallel
Differential Output: No
Output Type: Current - Unbuffered
Settling Time: 500ns
Number of D/A Converters: 1
Number of Bits: 12
Part Status: Active
Packaging: Tube 
Description

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Data Acquisition - Digital to Analog Converters (DAC) play an important role in the conversion of digital data into analog signals for various purposes. The HI1-565ATD-2 is a 12-bit Digital to Analog Converter (DAC) which is used for data conversion from the digital domain to the analog domain.

The HI1-565ATD-2 IC is designed to provide 12-bit resolution converting digital information into an analog output voltage level. This IC is a monolithic integrated circuit that operates from a single +5V power supply and features a fast settling time, low noise, and is CMOS compatible. The HI1-565ATD-2 integrates a multiplying DAC, precision reference, and tracking circuitry into one package.

The HI1-565ATD-2 has a wide range of applications in data conversion system designs. The device can be used for controlling data acquisition operations, defense system designs, industrial monitoring systems, robotics, and more. The device is ideal for applications that require fast, highly accurate, and stable analog outputs.

The working principle of the HI1-565ATD-2 is based on the concept of an analog multiplier. This type of multiplier operates by multiplying two or more analog signals together, resulting in an output voltage that is proportional to the product of the two signals. In the case of the HI1-565ATD-2 IC, the input signals are in the form of digital words and the product is output as an analog voltage. The HI1-565ATD-2 uses a simple divide-by-two resistor network and a reference voltage to convert digital data into an analog output.

The HI1-565ATD-2 is designed to provide 12-bit resolution of digital information into analog output voltages. The device contains an internal counter, which can be programmed with user-defined parameters to provide a unique combination of accuracy and resolution in the conversion process. The accuracy and resolution of the HI1-565ATD-2 is dependant on the timing of the clock signal and the reference voltage. The device is capable of converting digital signals accurately and precisely, making it ideal for applications requiring high accuracy of analog output.

The HI1-565ATD-2 is a versatile IC, which can be used for a variety of applications. Its fast settling time and low noise makes it ideal for use in data acquisition, robotics, defense system designs, and other industrial applications such as process control and monitoring. The device is also capable of converting digital data into analog levels with accuracy and precision, making it ideal for applications where exact analog output voltages are required.

In conclusion, the HI1-565ATD-2 IC is a versatile IC designed to provide 12-bit resolution converting digital information into an analog output voltage level. The device has a wide range of applications in data conversion and can be used for controlling data acquisition operations, defense system designs, industrial monitoring systems, and robotics. The HI1-565ATD-2 is capable of providing accurate and high resolution conversion from digital to analog signals, making it ideal for applications requiring exact and stable output voltages.

The specific data is subject to PDF, and the above content is for reference

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