Allicdata Part #: | MAX5582ETP+-ND |
Manufacturer Part#: |
MAX5582ETP+ |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC DAC 10BIT QUAD BUFF 20-TQFN |
More Detail: | 10 Bit Digital to Analog Converter 4 20-TQFN-EP (5... |
DataSheet: | MAX5582ETP+ Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Reference Type: | External |
Base Part Number: | MAX5582 |
Supplier Device Package: | 20-TQFN-EP (5x5) |
Package / Case: | 20-WQFN Exposed Pad |
Operating Temperature: | -40°C ~ 85°C |
Architecture: | R-2R |
INL/DNL (LSB): | ±0.5, ±1 (Max) |
Voltage - Supply, Digital: | 1.8 V ~ 5.25 V |
Voltage - Supply, Analog: | 2.7 V ~ 5.25 V |
Series: | -- |
Data Interface: | SPI, DSP |
Differential Output: | No |
Output Type: | Voltage - Buffered |
Settling Time: | 6µs |
Number of D/A Converters: | 4 |
Number of Bits: | 10 |
Part Status: | Active |
Packaging: | Tube |
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MAX5582ETP+ is an integrated digital-to-analog converter (DAC) designed for data acquisition applications. The 4-channel, 8-bit DAC operates from a 5 V single supply and is available in a tiny 10-pin TQFN package, acting as an ideal solution for designing into both high and low power portables. This chip is capable of outputting from 0.6V to 4.4V, and is equipped with low drift and wide dynamic range as a result of its special architecture and low 1/f noise corner.
The device can be configured via the Serial Peripheral Interface (SPI) in single or dual-DAC mode operation. In dual-DAC mode, the chip contains two voltage output DACs operating in phase with each other. Each of these DACs has an 8-bit input and an 8-bit output register. The MAX5582ETP+ also features a precision reference voltage with a temperature coefficient of only 0.08%.
The MAX5582ETP+ also features low-noise, low-distortion amplifiers and wide voltage range. The device includes a shutdown mode in order to reduce power consumption. It is capable of working with most standard applications utilizing amplified signals with low differential gain and phase error. The device also includes extended temperature range for extreme conditions. With the higher supply voltage, the device can achieve lower distortion and better linearity.
The MAX5582ETP+ is designed for applications in measurement systems, medical equipment, industrial control, automotive, and telecommunication system, as well as cable and satellite broadcasting. This device works well for data acquisition applications that require high resolution, low noise and low distortion.
In operation, the MAX5582ETP+ receives input data from the SPI interface, including control signals and analog data. The control signals are processed and the analog data is converted to a voltage output. This voltage is then amplified by the low-noise amplifier and subsequently used as the output signal. With its low noise and low distortion characteristics, the device can accurately convert digital information into the corresponding voltage. The device has been tested and validated to meet the highest accuracy standards and is suitable for a variety of data acquisition tasks.
The MAX5582ETP+ is ideal for multi-channel applications because it provides a wide dynamic range and low offset and gain drifts. Its small 10-pin package also makes it easy to integrate into tight spaces. Its low 1/f noise corner ensures low-noise performance and a wide range of resolution levels. Its low-power operation and extended temperature range make it the perfect choice for data acquisition applications.
In conclusion, the MAX5582ETP+ is a versatile and reliable digital-to-analog converter with excellent performance characteristics. Its low-noise, low-distortion amplifiers, wide voltage range, and integrated SPI interface make it ideal for a variety of data acquisition tasks, such as medical equipment, industrial controls, automotive, and telecommunication systems. Its small size ensures that it can fit easily into a space-constrained environment and its extended temperature range enables it to work reliably in extreme environments.
The specific data is subject to PDF, and the above content is for reference
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