MAX509AEWP+

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Mfr.Part #
MAX509AEWP+
Manufacturer
Analog Devices, Inc.
Package / Case
20-SOIC (0.295, 7.50mm Width)
Datasheet
Download
Description
IC DAC 8BIT QUAD R-R 20-SOIC
Stock
37
In Stock :
37

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Manufacturer :
Analog Devices, Inc.
Product Category :
Digital to Analog Converters (DAC)
Pin Count :
20
Supply Current-Max :
10mA
Max Power Dissipation :
800mW
Supply Type :
Dual
Base Part Number :
MAX509
Pbfree Code :
yes
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Power Supplies :
5/+-5V
Input Bit Code :
BINARY
Reference Type :
External
Supply Voltage :
5V
Peak Reflow Temperature (Cel) :
260
Number of Pins :
20
Resolution :
1 B
Operating Temperature :
-40°C~85°C
Analog Output Voltage-Min :
-5V
INL/DNL (LSB) :
-, ±1 (Max)
Architecture :
R-2R
Lead Free :
Lead Free
Packaging :
Tube
Settling Time :
6µs (Typ)
Differential Output :
No
Number of Terminations :
20
Mount :
Surface Mount
Negative Supply Voltage-Nom :
-5V
Factory Lead Time :
11 Weeks
Package / Case :
20-SOIC (0.295, 7.50mm Width)
Mounting Type :
Surface Mount
Number of Bits :
8
Height Seated (Max) :
2.65mm
JESD-609 Code :
e3
Analog Output Voltage-Max :
5V
Data Interface :
SPI
Published :
2011
Output Type :
Voltage - Buffered
Interface :
SPI, Serial
Min Supply Voltage :
4.5V
Width :
7.5mm
Voltage - Supply, Digital :
5V
Converter Type :
D/A CONVERTER
Number of Functions :
4
RoHS Status :
ROHS3 Compliant
Terminal Form :
Gull wing
Number of DAC Channels :
4
Terminal Pitch :
1.27mm
ECCN Code :
EAR99
Max Supply Voltage :
5.5V
Terminal Finish :
Matte Tin (Sn)
Voltage - Supply, Analog :
±5V
Datasheets
MAX509AEWP+
Introducing Digital to Analog Converters (DAC) Analog Devices, Inc. MAX509AEWP+ from Chip IC,where excellence meets affordability. This product stands out with its Base Part Number:MAX509, Number of Pins:20, Operating Temperature:-40°C~85°C, Number of Terminations:20, Package / Case:20-SOIC (0.295, 7.50mm Width), Mounting Type:Surface Mount, MAX509AEWP+ pinout, MAX509AEWP+ datasheet PDF, MAX509AEWP+ amp .Beyond Digital to Analog Converters (DAC) Analog Devices, Inc. MAX509AEWP+ ,we also offer MCP4822T-E/SN, TLV5620ID, TLC5615IDR, Our vast inventory has you covered. Contact us now for immediate solutions.

Analog Devices, Inc. MAX509AEWP+


Digital to Analog Converters (DAC) Analog Devices, Inc. MAX509AEWP+ Overview

The Digital to Analog Converters (DAC) Analog Devices, Inc. MAX509AEWP+ is a high-performance 8-bit quadruple digital-to-analog converter designed for precision electronic applications. Housed in a 20SOIC package, this IC DAC offers superb versatility with its four voltage output channels, each capable of converting digital input into a smooth and stable analog output. This robust component is engineered to provide reliable, rail-to-rail performance in a compact form factor, making it an ideal choice for advanced electronics where space and precision are at a premium. With its integrated precision, the MAX509AEWP+ ensures low power consumption while maintaining high accuracy.

MAX509AEWP+ Features

This DAC features four 8-bit channels, capable of operating independently, providing flexibility in various application settings. It is equipped with a rail-to-rail output swing that enhances the range of potential analog outputs. Furthermore, its low power consumption makes it suitable for portable devices, while its advanced silicon technology contributes to its high reliability and performance longevity.

MAX509AEWP+ Applications

  • Precision Instrumentation: Integrates seamlessly into systems requiring high precision analog output, such as laboratory and testing equipment.
  • Data Acquisition Systems: Converts digital data into analog signals needed for sensors and other input devices in real-time monitoring applications.
  • Industrial Automation: Serves crucial roles in process control systems, providing the necessary analog output to control actuators and machinery effectively.
  • Communication Equipment: Used in devices requiring accurate analog signal management to ensure clear and precise communications.
  • Portable Devices: Suitable for battery-operated applications due to its low power draw, contributing to longer device usage without sacrificing performance.
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