OX08D20 - 8MP Automotive CMOS Image Sensor TheiaCel | OMNIVISION
MPN: OX08D20 β Active| Qty | Unit Price | Extended |
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| 1 | $0 | $0.00 |
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| 100 | $0 | $0.00 |
| 500 | $0 | $0.00 |
| 1,000 | $0 | $0.00 |
OX08D20 Overview
A CMOS image sensor is a semiconductor device that converts light into electrical signals using an array of photodiodes and active pixel circuits. Within the vision-system hierarchy, the image sensor sits at the core of the camera module, above the lens and below the image signal processor, and feeds ADAS domains such as perception, object detection, and driver monitoring. Automotive image sensors must additionally meet stringent requirements for temperature resilience, cybersecurity, and low-light dynamic range.
The OX08D20 integrates the features automotive OEMs seek in a single device: superior image quality at high temperatures, LED flicker mitigation for reliable traffic-sign and signal-light recognition, compact size for streamlined camera modules, and low power for thermal management. According to OMNIVISION, it also updates cybersecurity to the latest industry standard, MIPI CSE 2.0, protecting the image data path in connected vehicles.
Positioned as the successor to the widely adopted OX08D10 launched in 2023, the OX08D20 targets exterior cameras used in advanced driver assistance systems (ADAS) and autonomous driving (AD), where reduced motion blur and strong low-light sensitivity are critical for night and adverse-weather scenes. TheiaCel technology combines large photodiode architecture with correlation techniques to suppress motion artifacts and LED flicker simultaneously.
Typical applications include front-view main cameras for ADAS, surround and rear-view systems, and autonomous driving perception stacks requiring 8 MP resolution. Engineering teams should verify the exact output interface, frame rate, and supply rails against the OMNIVISION product brief during schematic capture, since detailed electrical parameters are distributed under NDA. Sampling began in November 2025, with mass production scheduled for Q4 per OMNIVISION's announcement.
This page synthesizes verified manufacturer announcements, drop-in alternative analysis, and practical sourcing context not found in the manufacturer product brief. Pricing reflects quote-based availability as of 2026-09-13.
Drop-in alternatives for OX08D20 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
OX08D10
β Drop-Inπ Reference alternative (not in catalog)
OX08D20 Maximum Ratings & Electrical Characteristics
| Resolution | 8 MP |
| Sensor Type | CMOS image sensor |
| Technology | TheiaCel |
| Application Segment | Automotive exterior cameras (ADAS / AD) |
| Cybersecurity Standard | MIPI CSE 2.0 |
| Package Type | a-CSP |
| Package Size Advantage | Approximately 50% smaller than other exterior sensors in its class (per OMNIVISION) |
| Low-Light Performance | Best-in-class low-light performance (per OMNIVISION) |
| LED Flicker Mitigation | Yes |
| Power Consumption | Low power design (per OMNIVISION) |
| High-Temperature Image Quality | Superior image quality at high temperatures (per OMNIVISION) |
| Sampling Availability | November 2025 |
| Mass Production | Q4 (per OMNIVISION announcement) |
| Predecessor | OX08D10 (launched 2023) |
OX08D20 approximately 50% smaller than other exterior sensors in its class (per omnivision) Pin Configuration Guide
Pin configuration for OX08D20 (approximately 50% smaller than other exterior sensors in its class (per omnivision) package). Pin numbering, functions, and connection diagrams are defined in the manufacturer datasheet. Refer to it for the exact footprint and soldering guidelines.
No detailed pinout data available for OX08D20.
Refer to the datasheet for full pin configuration.
Typical Applications
OX08D20 is suitable for 6 applications: ADAS Front-View Main Camera, Autonomous Driving Perception Cameras, Surround-View and Rear-View Camera Systems, Traffic Sign and Signal Recognition, Night-Time and Adverse-Weather Vision, Cybersecure Connected-Vehicle Camera Architectures.
ADAS Front-View Main Camera
The OX08D20 fits front-view ADAS main cameras because its 8 MP resolution extends object-detection range versus 2 MP predecessors, while TheiaCel technology maintains usable imagery at night when pedestrian and vehicle contrast collapses. Its LED flicker mitigation ensures traffic lights and LED vehicle lamps are captured reliably despite PWM drive currents, a failure mode that causes missed detections in unmitigated sensors. In the camera chain, the sensor streams high-dynamic-range frames to the ADAS domain controller, and the a-CSP package, roughly 50% smaller than class peers, allows a compact windshield module with lower lens height. Designers should pair the sensor with a CSE 2.0-capable serializer to preserve the end-to-end cybersecurity chain.
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Autonomous Driving Perception Cameras
For autonomous driving (AD) perception stacks, the OX08D20 provides the combination of resolution, low-light sensitivity, and cybersecurity that robotaxi and L2+ platforms demand. TheiaCel technology reduces motion blur on fast-approaching objects, which directly improves perception-model confidence at highway closing speeds, and best-in-class low-light performance keeps the neural network fed with usable frames after dusk without infrared assist. Low power consumption limits camera-module self-heating, protecting image quality over the automotive temperature range, an explicit design goal cited by OMNIVISION. MIPI CSE 2.0 support lets the sensor authenticate its output inside secure vehicle network architectures. Sampling began November 2025 with Q4 mass production, enabling design-in for 2026+ platforms.
Recommended
Surround-View and Rear-View Camera Systems
In surround-view and rear-view systems, the OX08D20's compact a-CSP package enables the slim, low-profile modules that door handles, trunks, and mirror housings impose, being approximately 50% smaller than other exterior sensors in its class. Superior image quality at high temperatures matters here because these cameras sit in body panels exposed to solar load and engine-bay heat, where lesser sensors show rising dark current and washed-out images. LED flicker mitigation improves rear-view reliability when the vehicle faces LED traffic infrastructure during reversing maneuvers. The 8 MP resolution also allows one sensor to serve both the driver surround-view display and machine-vision functions, consolidating bill-of-materials in modern architectures.
Recommended
Traffic Sign and Signal Recognition
Traffic sign and signal recognition is a demanding low-light, LED-flicker-heavy use case that matches the OX08D20's headline strengths directly. LED traffic lights driven by PWM appear intermittently dark to sensors without flicker mitigation, producing false 'signal unavailable' events in recognition pipelines; TheiaCel's LED flicker mitigation on the OX08D20 eliminates this failure mode at the capture stage rather than in software. Best-in-class low-light performance keeps speed-limit and warning signs readable under headlamp-only illumination, while the 8 MP array provides the pixel density needed to resolve distant signs early enough for planning. Per OMNIVISION's product brief, these features are integrated in one device, reducing the need for external processing.
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Night-Time and Adverse-Weather Vision
The OX08D20 addresses night-time and adverse-weather exterior vision, where low-light performance decides whether ADAS functions degrade gracefully or disengage. TheiaCel technology combines large-effective-photodiode signal capture with artifact suppression, per OMNIVISION positioning, delivering best-in-class low-light output and reduced motion blur precisely when headlight illumination and wet-road glare dominate the scene. Superior image quality at high temperatures ensures the sensor does not degrade in summer thermal soak, a frequent failure point for exterior-mounted cameras. Automotive OEMs seeking a single device covering these features are the stated target customer. Design teams should validate low-light SNR figures in the NDA datasheet against their perception-model illumination requirements.
Recommended
Cybersecure Connected-Vehicle Camera Architectures
The OX08D20 is among the automotive image sensors supporting MIPI CSE 2.0, the latest MIPI cybersecurity standard, making it a natural fit for connected-vehicle camera architectures that must satisfy OEM security programs and regulatory expectations for tamper-resistant data paths. In this role the sensor authenticates image traffic at the source, preventing spoofed or manipulated frames from reaching domain controllers that steer or brake the vehicle. OMNIVISION highlights this update as a key differentiator over the OX08D10 generation. Because CSE 2.0 must be honored end-to-end, the sensor should be designed with a compliant serializer/bridge chain and a security key-management scheme defined at the vehicle-network level, not solely at the camera module.
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Recommended Products Summary
Engineering reference data for OX08D20 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | OX08D10 |
|---|---|---|
| Package | a-CSP (automotive chip-scale package) | a-CSP - same platform |
| Brand | OMNIVISION (Will Semiconductor) | OMNIVISION (Will Semiconductor) |
| Resolution | 8 MP | 8 MP |
| TheiaCel Technology | Yes (latest generation) | Yes (previous generation) |
| MIPI CSE Cybersecurity | MIPI CSE 2.0 | Earlier cybersecurity implementation |
| LED Flicker Mitigation | Yes | Yes |
| Application Segment | ADAS / AD exterior cameras | ADAS / AD exterior cameras |
| Launch / Availability | Announced Oct 2025; sampling Nov 2025; MP Q4 | Launched 2023; in mass production |
Key Differentiators
- MIPI CSE 2.0 cybersecurity compliance (vs OX08D10)
- Compact a-CSP package (vs Other 8 MP exterior sensors in its class)
- Latest-generation TheiaCel low-light performance (vs OX08D10)
Design Notes
Do not design the OX08D20 PCB footprint from public sources. The a-CSP land pattern, ball map, and power/ground pin assignment are contained in the NDA-controlled full datasheet, not the public product brief (OX08D20-PB-v1.0). Request the complete datasheet from OMNIVISION before layout freeze, and verify whether MIPI CSE 2.0 compliance requires dedicated secure-boot or key-provisioning pins in your chosen package option.
Automotive 8 MP sensors stream high-rate MIPI CSI-2 lanes whose routing lengths, impedance control, and pair skew budgets should be validated against the sensor's output timing specifications in the full datasheet. Keep the sensor-to-serializer MIPI pair routing as short as practical, maintain continuous reference planes beneath the lane pairs, and confirm with OMNIVISION FAE whether CSE 2.0 authentication traffic affects lane timing margins in your topology.
Although OMNIVISION states the OX08D20 maintains superior image quality at high temperatures, exterior camera modules still absorb solar and engine-bay heat. Estimated: plan the module thermal budget by combining sensor power (low-power design per product brief; exact figure in NDA datasheet) with serializer and local regulator dissipation, then verify dark-current and image-quality behavior at the module's worst-case soak temperature during qualification rather than relying on sensor-only ratings.
Compliance Information
RoHS compliance referenced by third-party listing (Alibaba, 'Certificate ROHS'). Automotive-segment positioning implies automotive quality flows, but formal AEC-Q100 qualification status is not stated in the public product brief - verify with OMNIVISION.