EN-Labs 11-001-366 PCIe x4 USB 3.2 10Gbps 5-port card
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- 12CM Case fan,screw…
Intel
Quad-core desktop CPU with 3.8 GHz base and 4.2 GHz turbo on LGA 1151 socket, 6 MB L3 cache and Intel HD Graphics 630
The Intel Core i5-7600K is a desktop processor built on the 14nm Kaby Lake architecture. It delivers four cores and four threads with a base frequency of 3.8 GHz and a maximum turbo frequency of 4.2 GHz. The LGA 1151 socket and 91W thermal design target mainstream enthusiast builds.
The BX80677I57600K retail package includes a stock thermal solution for immediate use. The memory controller handles dual-channel DDR4 at 2133 and 2400 MT/s as well as DDR3L at 1333 and 1600 MT/s at 1.35V. Integrated Intel HD Graphics 630 provides display output up to 4096 x 2304 resolution.
Installation follows the standard LGA 1151 procedure: open the socket lever, align the processor notches, lower the chip and secure the lever. The included cooler uses push-pin mounting that fits the stock retention bracket. Common issues include bent socket pins if the lever is forced and cooler push-pins not fully seating on first attempt.
| Brand | Intel |
|---|---|
| Processors Type | Desktop |
| Series | Core i5 7th Gen |
| Name | Core i5-7600K |
| Model | BX80677I57600K |
| CPU Socket Type | LGA 1151 |
| Core Name | Kaby Lake |
| # of Cores | Quad-Core |
| # of Threads | 4-Threads |
| Operating Frequency | 3.8 GHz |
| Max Turbo Frequency | 4.2 GHz |
| L2 Cache | 4 x 256KB |
| L3 Cache | 6MB |
| Manufacturing Tech | 14nm |
| Memory Types | DDR4-2133 / 2400, DDR3L-1333 / 1600 @ 1.35V |
| Memory Channel | 2 |
| Virtualization Technology Support | Yes |
| Integrated Graphics | Intel HD Graphics 630 |
| Graphics Base Frequency | 350 MHz |
| Graphics Max Dynamic Frequency | 1.15 GHz |
| PCI Express Revision | 3.0 |
| Max Number of PCI Express Lanes | 16 |
| Thermal Design Power | 91W |
The 91 W thermal design means a capable aftermarket air or liquid cooler is recommended for sustained loads, especially if you raise the multiplier beyond the 4.2 GHz turbo.
The 91 W power envelope and the 14 nm process limit how long all cores can hold the max turbo before thermal throttling reduces frequency.
Under continuous multi-threaded work the chip draws up to 91 W, so case airflow and cooler capacity determine actual temperature and fan noise levels.
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