10xEngineers designs and builds camera pipelines for Altera FPGAs, from sensor bring-up through signed-off image quality. Deliverables are a working pipeline, a bit-accurate model to tune it with, and documented RTL.
Engagements typically start in one of three ways:
- New camera platform: sensor selection, pipeline architecture, RTL, and tuning to an agreed image-quality target on Altera silicon.
- Existing pipeline that needs rework: objective assessment against image-quality metrics, then RTL-level changes to HDR merge, denoising, color processing, or latency. Parameter-only tuning of a working pipeline is covered by our Image Quality Tuning & Validation Services offering.
- New sensor or platform port: bring-up and pipeline adaptation for Bayer, Quad-Bayer, RGB-IR, and monochrome sensors, including HDR variants, and porting existing camera pipelines from other FPGA platforms to Altera devices.
Image quality is signed off on a bit-accurate mo...
10xEngineers designs and builds camera pipelines for Altera FPGAs, from sensor bring-up through signed-off image quality. Deliverables are a working pipeline, a bit-accurate model to tune it with, and documented RTL.
Engagements typically start in one of three ways:
- New camera platform: sensor selection, pipeline architecture, RTL, and tuning to an agreed image-quality target on Altera silicon.
- Existing pipeline that needs rework: objective assessment against image-quality metrics, then RTL-level changes to HDR merge, denoising, color processing, or latency. Parameter-only tuning of a working pipeline is covered by our Image Quality Tuning & Validation Services offering.
- New sensor or platform port: bring-up and pipeline adaptation for Bayer, Quad-Bayer, RGB-IR, and monochrome sensors, including HDR variants, and porting existing camera pipelines from other FPGA platforms to Altera devices.
Image quality is signed off on a bit-accurate model of the pipeline before RTL is committed. Our open-source Infinite-ISP reference pipeline demonstrates this model-to-RTL workflow.