The DP83826 series is a family of low latency 10/100-Mbps PHY Ethernet ICs that offer low power and support 10BASE-Te, 100BASE-TX Ethernet protocols. These features help meet stringent requirements in real-time industrial Ethernet systems. The device includes hardware bootstraps to achieve fast link-up time, fast link-drop detection modes, and more
Texas Instruments DP83826 series Controllers Interface ICs
Comprehensive Guide to DP83826 Integrated Circuits (ICs) Controllers Interface ICs
In this post, you will find the Key Component Features, Diverse Applications, Associated Series Parts, Technical Documents(PDF Datasheets, User Guides), Frequently asked questions, and Related Series of Texas Instruments DP83826 series Controllers Interface ICs products.
FEATURES
- Integrated terminations on MAC interface
- Voltage tolerance: ±10%
Applications
- Industrial transport (non-car & non-light truck)
- Medical
Associated Products
Part Number | Description | Stock | RFQ |
---|---|---|---|
DP83826ERHBT | LOW COST ENET PHY INDUSTRIAL | 7250 | RFQ |
DP83826ERHBR | LOW COST ENET PHY INDUSTRIAL | 1200 | RFQ |
Technical Documents

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Frequently Asked Questions
What are the similar products or Substitute Components of Texas Instruments DP83826 series Controllers Interface ICs
Microchip LAN8720: The LAN8720 from Microchip is an Ethernet PHY (Physical Layer) IC that provides a controller interface for Ethernet connectivity. It supports 10/100 Mbps data rates and is commonly used in industrial automation, building automation, and other Ethernet-based applications. Broadcom BCM54616S: The BCM54616S from Broadcom is a Gigabit Ethernet transceiver that integrates the PHY and MAC (Media Access Control) functions. It provides a controller interface for high-speed Ethernet connectivity and is suitable for various networking and industrial applications. Marvell Alaska series: Marvell offers a range of Ethernet PHY ICs under the Alaska series, such as the Alaska 88E1510 and 88E1540. These ICs provide controller interfaces for Ethernet connectivity with features tailored for different applications, including industrial automation, automotive, and enterprise networking.
Are there any specific features or compatibility considerations I should keep in mind when looking for substitute components?
Electrical Specifications: Review the electrical specifications of the original IC and compare them with the substitute components. Pay attention to parameters such as voltage range, current ratings, data rates, and operating temperature range. Ensure that the substitute component meets or exceeds the required specifications of your application. Pin Compatibility: Check the pin configuration and package type of the substitute component to ensure it is compatible with your existing circuit layout or PCB design. Verify that the pin functions and assignments align with your application's requirements. Functionality: Evaluate the functionality and features of the substitute component to ensure it can perform the required tasks in your application. Consider any specific features or capabilities of the original IC that are critical for your application and ensure the substitute component can provide similar functionality.