
Allicdata Part #: | MAX543AEWE-ND |
Manufacturer Part#: |
MAX543AEWE |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC DAC CMOS MULTSRL 12BIT 16SOIC |
More Detail: | 12 Bit Digital to Analog Converter 1 16-SOIC |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Reference Type: | External |
Base Part Number: | MAX543 |
Supplier Device Package: | 16-SOIC |
Package / Case: | 16-SOIC (0.295", 7.50mm Width) |
Operating Temperature: | -40°C ~ 85°C |
Architecture: | R-2R |
INL/DNL (LSB): | ±0.5 (Max), ±0.5 (Max) |
Voltage - Supply, Digital: | 5V, 11.4 V ~ 15.75 V |
Voltage - Supply, Analog: | 5V, 11.4 V ~ 15.75 V |
Series: | -- |
Data Interface: | SPI |
Differential Output: | No |
Output Type: | Current - Unbuffered |
Settling Time: | 1µs |
Number of D/A Converters: | 1 |
Number of Bits: | 12 |
Part Status: | Active |
Packaging: | Tube |
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Digital to Analog Converters (DAC) are used in a wide variety of applications from sound production to image analysis. The MAX543AEWE is a 16-bit Digital to Analog Converter (DAC) designed for precision data conversion. It is a highly integrated linear-based DAC that provides excellent accuracy and linearity, which is ideal for applications like high-resolution interactive displays, scientific instrumentation, etc. In this article, we will discuss the application fields and working principle of the MAX543AEWE.
The MAX543AEWE is designed for precision data conversion applications operating with precision ADC\'s and transimpedance amplifiers. The device can convert digital input data into analog output signals with a resolution of 16 bits, with excellent accuracy and linearity. The DAC features a gain error accuracy of 0.0015% and differential linearity error of 0.0003%, making it suitable for precision data conversion applications.
The MAX543AEWE is integrated with several peripheral features, such as a single reference, on-chip op-amp, control logic, and fast settling time. It is available in a very small 8-pin MSOP package and delivers an output full-scale current range per pin of 10mA to 50mA. The fast settling time of the DAC is 35ns and the current output is voltage adjustable.
The MAX543AEWE is capable of operating from either 3.3V or 5V and is suitable for use in various applications. It is ideal for use in high-resolution interactive displays and scientific instrumentation, wherever precision, resolution and linearity are essential. It is also suitable for use in medical imaging equipment, industrial control systems, automotive safety systems and any other application where data conversion is required.
The working principle of the MAX543AEWE is similar to other DACs. It has a digital input that receives a control signal, usually from the microcontroller, and converts it into an analog output. The resolution of the conversion is determined by the number of bits of the digital input signal, usually 8, 12 or 16. The output voltage is proportional to the analog output signal, with accuracy and linearity determined by the design of the DAC.
The basic architecture of the MAX543AEWE consists of an analog multiplexer, DAC core, current-to-voltage (I/V) amplifier, op-amp and output driver. The multiplexer is used to select the voltage output value by selecting the appropriate bits from the digital input. The DAC core then converts the digital signal into an analog signal with the help of a resistor array and the associated circuitry. The current-to-voltage amplifier then converts the current output of the DAC core into a voltage output, which is then amplified by an op-amp and output driver before being passed to the output pins.
In conclusion, the MAX543AEWE is a high-precision Digital to Analog Converter (DAC) designed for applications requiring precision data conversion. Its accuracy and linearity make it suitable for a range of applications including interactive displays, scientific instrumentation, medical imaging equipment and industrial control systems. The device is extremely compact and is integrated with several peripheral features for easy interfacing and connecting. The working principle of the device is based on the basic DAC architecture, where the digital input is converted into an analog output by controlling the analog multiplexer and the DAC core.
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