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Product Overview |
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The Acer DB.SRS11.001 system board is a crucial component for the Aspire AU5-610 All-in-One desktop, offering a balance of performance and efficiency. With support for up to 16GB of DDR4 memory and integrated Intel HD Graphics 530, it caters to the needs of everyday computing tasks. Its array of connectivity options and expansion slots ensure versatility, making it a reliable choice for users aiming to enhance or maintain their system's capabilities. |
General Information |
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| Brand | Acer |
| Part Number | DB.SRS11.001 |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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The Acer DB.SRS11.001 system board is engineered specifically for the Acer Aspire AU5-610 All-in-One desktop, offering a seamless integration for users seeking to upgrade or replace their motherboard. Equipped with the Intel H110 chipset, it ensures stable and efficient operation, making it suitable for both home and office environments. The motherboard supports up to 16GB of DDR4 SODIMM memory, providing ample capacity for multitasking and demanding applications. Integrated Intel HD Graphics 530 delivers smooth visuals, reducing the need for a dedicated graphics card in everyday computing tasks. Key Features
This motherboard is an ideal choice for users looking to maintain or upgrade their Acer Aspire AU5-610 All-in-One system, ensuring continued reliable performance and compatibility with modern applications. |
Use Cases |
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The Acer DB.SRS11.001 system board is primarily utilized within office and educational settings where the Aspire AU5-610 All-in-One systems are deployed. It serves IT professionals and administrators seeking reliable hardware components to maintain or upgrade desktop environments focused on general productivity and multimedia applications. How It's Used:
This system board supports operational stability and efficient resource management in these environments, ensuring that system responsiveness meets the demands of everyday computing tasks. Its scalability within the supported memory limits allows organizations to optimize configurations based on workload requirements without compromising system integrity. |