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Repair Snapshot Pixel 6a

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Repairability Snapshot

OVERVIEW & CORE PRINCIPLES

The following is a Repairability Snapshot of the Pixel 6a, a smartphone released on July 21, 2022. In this snapshot, provided on November 3rd, 2023, we provide a high-level overview evaluating the product on the following core principles of repairability:

IDENTIFICATION

Clear and unique external product identification makes it easier to find matching repair documentation and compatible replacement parts-especially on a non-operational device.

INFORMATION

Repair information-including repair guides, schematics/board diagrams, troubleshooting information, and support-must be freely accessible to enable repairs.

ENTRY

Making the primary entry point(s) easily accessible, well-labeled, and intuitive greatly facilitates repairs. Exterior screws and labeled access points are a welcome sight, indicative that the device isn't glued together. They're also a clear visual cue of where to begin, in case of missing instructions.

MODULARITY

Streamlining repairs by making key components independently accessible-rather than requiring removal of one component to access the next, or replacing whole assemblies-makes repairs quicker and parts more affordable, and reduces opportunity for accidental damage.

TOOLS

Tools required for common repairs should be inexpensive, widely available, safe, and non-proprietary. Requiring fewer tools saves time and cost.

PARTS

Replacement parts should be easy to identify and obtain. Ideally, no replacement part should cost more than 25% of the product's MSRP to make repair a viable and attractive option.

SOFTWARE

Parts pairing and specialty calibration software should be freely available to anyone who needs it. Repairs are only viable if the device can be restored to full functionality.

DISASSEMBLY PROCESS

The following is a disassembly tree illustrating the process of accessing the major components of the Pixel 6a.

Why a disassembly tree?

Disassembly trees can be a helpful visual indicator of complexity and modularity.

How does it work?

Our disassembly trees illustrate all of the prerequisite actions, tools, and components required in order to access any given part. Each path leading to a component is a required procedure. Parallel paths can be completed in any order.

For example, here,

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