# Socket FP2

> CPU socket

**Wikidata**: [Q18155322](https://www.wikidata.org/wiki/Q18155322)  
**Wikipedia**: [English](https://en.wikipedia.org/wiki/Socket_FP2)  
**Source**: https://4ort.xyz/entity/socket-fp2

## Summary
Socket FP2 is a CPU socket and product model manufactured by AMD, introduced in May 2012. Also known by the alias µBGA-827, it utilizes a ball grid array (BGA) design and serves as the successor to Socket FS1. It was later succeeded by Socket FP3 in June 2014.

## Key Facts
- **Inception:** Socket FP2 was introduced on May 1, 2012 (2012-05-00).
- **Manufacturer:** The socket is produced by AMD (Advanced Micro Devices), an American multinational semiconductor company.
- **Aliases:** It is alternatively designated as µBGA-827.
- **Succession:** It follows Socket FS1 and precedes Socket FP3 (released June 2014).
- **Classification:** It is subclassed as a ball grid array and a CPU socket.
- **Instance Type:** Classified as a product model.
- **Wikidata Description:** CPU socket.

## FAQs
### Q: What is Socket FP2?
A: Socket FP2 is a central processing unit (CPU) socket manufactured by AMD, launched in May 2012. It is designed using a ball grid array format and is also identified by the technical alias µBGA-827.

### Q: What socket came before and after Socket FP2?
A: Socket FP2 follows Socket FS1 and is succeeded by Socket FP3, which was introduced in June 2014.

### Q: Who manufactures Socket FP2?
A: Socket FP2 is manufactured by AMD, a US-based semiconductor company headquartered in Santa Clara (formerly Sunnyvale).

## Why It Matters
Socket FP2 represents a specific iteration in AMD's mobile and embedded processor platform strategy. Released in 2012, it bridges the hardware gap between the earlier Socket FS1 and the subsequent Socket FP3. As a Ball Grid Array (BGA) socket, it is typically soldered directly to the motherboard rather than using a pin grid array (PGA) or land grid array (LGA) mechanism, which is common in space-constrained devices like laptops. This socket facilitated the deployment of AMD CPUs during a competitive period in the semiconductor industry, ensuring compatibility for specific product models before the transition to newer architectures supported by FP3. Its existence highlights AMD's continuous refinement of CPU interfaces to support advancements in processing power and efficiency during the early 2010s.

## Notable For
- **BGA Design:** Unlike consumer desktop sockets which often allow CPU swapping, Socket FP2 is a ball grid array, meaning the CPU is soldered to the board.
- **Alias Identification:** It is distinctly identified by the code µBGA-827.
- **Short Lifecycle:** It had a relatively brief period as the primary standard before being superseded by Socket FP3 approximately two years later.
- **AMD Manufacturing:** It is a proprietary design created specifically for AMD processors.

## Body
### Overview and Classification
Socket FP2 is a CPU socket and product model subclassed under **ball grid array** technology. It serves as a physical and electrical interface for connecting a CPU to a printed circuit board. The socket is distinctively identified by the alias **µBGA-827**.

### Release and Timeline
The socket officially launched with an inception date of **May 2012**. It occupies a specific chronological slot in AMD's hardware ecosystem:
- **Predecessor:** Socket FS1
- **Successor:** Socket FP3 (Inception: June 2014)

### Manufacturer
The socket is produced by **AMD** (Advanced Micro Devices), a major entity in the electrical and semiconductor industry.
- **AMD Inception:** May 1, 1969.
- **AMD Industry:** Semiconductor and computer industries.
- **AMD Headquarters:** Santa Clara, California (moved from Sunnyvale in 2016).

### Context in Hardware
As a BGA socket, FP2 is designed for permanent mounting, typically utilized in mobile computing environments or embedded systems where space conservation and thermal management are prioritized over upgradability. It is categorized strictly as a "product model" within knowledge base structures, defining its role as a specific hardware revision within the broader category of CPU sockets.