MAX507BCNG Allicdata Electronics
Allicdata Part #:

MAX507BCNG-ND

Manufacturer Part#:

MAX507BCNG

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC DAC V-OUT W/REF 12BIT 24-DIP
More Detail: 12 Bit Digital to Analog Converter 1 24-PDIP
DataSheet: MAX507BCNG datasheetMAX507BCNG Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Reference Type: Internal
Base Part Number: MAX507
Supplier Device Package: 24-PDIP
Package / Case: 24-DIP (0.300", 7.62mm)
Operating Temperature: 0°C ~ 70°C
Architecture: R-2R
INL/DNL (LSB): ±1 (Max), ±1 (Max)
Voltage - Supply, Digital: 11.4 V ~ 15.75 V
Voltage - Supply, Analog: ±11.4 V ~ 15.75 V
Series: --
Data Interface: Parallel
Differential Output: No
Output Type: Voltage - Buffered
Settling Time: 5µs
Number of D/A Converters: 1
Number of Bits: 12
Part Status: Active
Packaging: Tube 
Description

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MAX507BCNG Application Field and Working Principle

The MAX507BCNG is a high performance, single-channel serial digital-to-analog converter (DAC) designed to convert 8- or 16-bit digital code into a single-ended analog output. The device is specifically designed to provide low cost, low power, high accuracy and low distortion performance in a variety of data acquisition and control applications. The MAX507BCNG is offered in a small, 16-pin SOIC package, providing an ideal solution for high performance, low cost applications.

The MAX507BCNG features zero drift and low offset drift, allowing for very accurate and precise analog output performance. The device also features a 0.5LSB DNL and 0.1LSB INL with 1.0nV/√Hz of noise at 1kHz. The MAX507BCNG offers a wide operating voltage range of 2.7V to 5.5V and is designed to provide low power operation, consuming only 9mW (typical). The device is available in SOIC-16 and SSOP-16 packages, with a maximum ON resistance of 10Ohms.

The MAX507BCNG features a high-speed, serial interface with two different operating modes (SPI and I2C). The SPI interface operates in a master-slave mode, allowing for a single master to control up to four MAX507BCNG slaves. The I2C interface operates in an open-drain bus, allowing for up to 127 devices to communicate on the same bus. Both interfaces are compatible with I2C/SPI specifications.

The MAX507BCNG allows for precise control of the output signal, with adjustable voltage output and current limiting. The device also features a temperature range of -55°C to +85°C and a wide operating temperature range of -40°C to +125°C.

Applications

The MAX507BCNG is suitable for a wide range of digital-analog conversion applications, including data acquisition systems, instrumentation and control systems, audio and video systems, motor and motion control systems, medical systems and industrial automation systems. The device is also well-suited for applications such as audio and video signal conditioning, voltage regulation, temperature control and humidity sensing.

Working Principle

The core of the MAX507BCNG is its high-speed, low-noise DAC that converts 8- or 16-bit digital code into single-ended analog voltage output. The DAC includes a low-noise, load-capacitance insensitive architecture that provides high accuracy, low noise and a wide range of operating conditions. The device features a two-wire serial interface that supports both I2C and SPI operating modes. The device also uses a temperature stable, low-power, low-noise output amplifier to drive the analog output.

The device has a wide range of minor features that enhance the performance of the DAC. The device includes an EOC output pin that indicates when the output is ready. The datasheet also provides detailed information about the device\'s output accuracy, gain error and supply currents.

The MAX507BCNG is a highly versatile DAC that provides excellent performance and high accuracy in a wide range of data acquisition and control applications. The device\'s wide operating voltage range, wide temperature range and low-noise output amplifier enable it to deliver the performance demanded by many demanding applications.

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

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