One continuous recording
The dark field, PC screen and return to darkness are shown without an intermediate cut.

Starting with HOLONIC Eyes HE-1 and APPRO camera modules, Standard Link connects image-quality engineering, NVIDIA Jetson integration, AI inference, PoCs, OEM/ODM and production deployment, turning cameras into the entry point for Physical AI.

Read the night through the eyes of AI.
Our flagship visual module captures dark and low-light environments in color and connects fixed monitoring, industrial equipment, drones, robots and Edge AI.
The minimum subject illumination is a reference under our evaluation conditions. Results vary with the lens, exposure time, gain, subject, installation environment and display conditions.
Discuss an evaluation unit or PoCCompare a continuous field recording with two separate recordings made at the same location during the same nighttime period: the iPhone view and the camera feed recorded directly on the PC.
One continuous take moves from the dark surroundings to the live color image on the PC, then returns to the dark surroundings.
This is a smartphone recording of a PC monitor showing the live camera view. It is not the camera's direct digital output and is not a quantitative measurement of illuminance, sensitivity, color accuracy, or image quality.
First, see the actual darkness of the field on an iPhone 14 Pro Max. Then view the camera feed recorded directly on the PC. The two clips were recorded separately at the same location during the same nighttime period; they are not simultaneous recordings.
Except for distant lights, the boat, shoreline and water surface are barely visible in the nighttime field recording.
The camera feed shows the boat, mast, hills, water surface and shoreline in color. This is not a smartphone re-recording of a monitor.
DIRECT RECORDING / Not a monitor re-recordingThe two clips were recorded separately at the same location during the same nighttime period; they are not simultaneous recordings. This presentation demonstrates field visibility and is not a quantitative measurement of illuminance, sensitivity, color accuracy or image quality.
Only duration adjustment, resolution conversion and audio removal were applied for web delivery. No brightness correction, color correction, noise reduction, AI generation or AI completion was used.
The dark field, PC screen and return to darkness are shown without an intermediate cut.
No processing was used to make the field appear artificially darker.
Color night vision visualizes the same field in color.
At the start, an iPhone 14 Pro Max records the dark harbor surroundings. Apart from distant lights, the shapes of the vessel and shore are difficult to identify. The recording then moves directly to the PC, where the live feed from the connected color night-vision camera shows the vessel, mountain, water surface and pier in color. It finally returns to the dark surroundings.
This field demonstration shows the difference in visibility at the same place and time in one continuous recording.
The first clip is the actual nighttime field recorded on an iPhone 14 Pro Max. Except for distant lights, the shapes of the boat, shoreline and water surface are barely visible.
The second clip is the color night-vision feed from the same location, recorded directly on the PC. The boat, mast, hills, water surface and shoreline are visible in color. It is not a smartphone re-recording of a PC monitor.
The two clips were recorded separately at the same location during the same nighttime period; they are not simultaneous recordings. This is a field-visibility demonstration, not a quantitative measurement of illuminance or sensitivity.
Because the PC screen was re-recorded with an iPhone, color, brightness and perceived resolution may differ from the direct camera output. This is a field-view demonstration, not a quantitative measurement of illumination or sensitivity.
The sequence of one source recording was preserved. Only head and tail trimming, removal of site audio and web conversion were applied. No brightness lift to reveal dark areas, color enhancement, AI generation or replacement of the PC image was used.
HOLONIC Eyes converts the field into visual data. HOLONIC Edge AI connects that data to recognition, selection, alerts, tracking and device control. We support connectivity validation and AI implementation as one delivery path.

Color visual input for AI in low-light environments.
Application-specific recognition, alerts, tracking and control.
APPRO camera and ISP technology, with Standard Link implementation, PoC and production support in Japan.



Cameras, sensors, USB/MIPI, ISP, OEM/ODM, manufacturing and supply.
APPRO Photoelectron — An NVIDIA Elite PartnerOrin Nano, Orin NX, AGX Orin and advanced evaluation of Thor-class configurations.
Requirements, selection, PoCs, connectivity, AI, OEM/ODM, NRE and production support in Japan.
NVIDIA Elite Partner is APPRO Photoelectron's partner status and does not indicate that Standard Link itself has NVIDIA partner status. NVIDIA and Jetson are trademarks of NVIDIA Corporation.
We are preparing evidence with disclosed date, illumination, distance, lens, resolution, exposure and processing conditions. AI-generated visuals are not treated as performance evidence.
Color and contour under disclosed conditions.
A controlled comparison with existing cameras.
Separate source footage from inference output.
Subject, distance, FOV, light, motion and lens.
Exposure, color, HDR/WDR and noise reduction.
USB/MIPI, decoding, preprocessing and inference.
Detection, anomaly, tracking, classification and OCR.
Alerts, PTZ, APIs and device control.
Governed deployment, audit and future improvement.
AVAILABLE NOW / AVAILABLELow-light color, USB UVC, 4K class and approximately 80 g.
APPRO SUPPORTEDFast PoC on a PC or Jetson with application-based selection.
APPRO SUPPORTEDEmbedded, low-latency and production-oriented Jetson integration.
EVALUATION CANDIDATEEvaluation candidate for fast motion, robotics and inspection.
| Camera | Interface | Jetson / software | Status | Verification |
|---|---|---|---|---|
| HE-1 | USB UVC | Confirmed per terminal and JetPack | EVALUATION AVAILABLE | Product specification / 2026-08-01 |
| APPRO USB3 UVC | USB3 UVC | Orin family / configuration-dependent | APPRO SUPPORTED | APPRO public information / 2026-08-01 |
| APPRO MIPI YUV + ISP | MIPI CSI-2 | Carrier, driver and ISP tuning | APPRO SUPPORTED | APPRO public information / 2026-08-01 |
| Jetson Thor class | To be configured | Advanced Physical AI | NOT YET VERIFIED | Not validated |
APPRO SUPPORTED denotes manufacturer-published support, not Standard Link validation.
Conditions, candidate camera, evaluation record and next gate.
Connectivity, preprocessing, inference, alerts and production risks.
Enclosure, power, communication, test, supply and maintenance.
*Indicative durations vary with equipment, environment, data, AI development and procurement. Programs are paid and quoted individually.
Night, distance and constrained communications. Details after NDA and security review.
Reflection, motion, illumination and inspection cycle.
Night monitoring around ports, coasts and vessels.
Weight, power, vibration, communications and edge inference.
Low latency, tracking, perception and controls.
Outdoor and seasonal variation, monitoring and data.
HE-1 and selected cameras.
ISP, Jetson, AI, alerts and control.
Application systems, OEM and operations.
Governed data, model distribution and audit.
Only necessary data is managed under customer contracts and explicit authorization, supporting model improvement and controlled redeployment.
Requirements, selection, connectivity and image/Jetson evaluation.
Camera, lens, ISP, board, enclosure, brand and supply.
AI, communication, power, tests, NRE and production roles.
HE-1 overview, public specifications, Jetson overview, PoC guide, demos and FAQ.
Exact sensor, ISP details, circuits, BOM, logs, supply terms and restricted SDK/driver materials.
Compatibility depends on the camera, interface, carrier board and JetPack version. Please refer to the matrix that separates manufacturer-published support, Standard Link validation and individual evaluation.
USB UVC is often convenient for early PoCs and PC connectivity. MIPI may suit embedded production, lower latency and optimized wiring or enclosures. We select it from the application and development structure.
Published specifications of APPRO standard products are provided per product. Detailed component information for HOLONIC products and custom configurations may be disclosed after an NDA for intellectual-property, supply and contractual reasons.
Depending on the product and inventory, we can propose a sale, fixed-term loan or inclusion in a PoC.
We scope PoCs for object detection, anomaly detection, tracking and related functions, distinguishing use of an existing model, additional training and new development in the estimate.
A camera module and a finished enclosure are separate. We review temperature, ingress protection, condensation, vibration, power and communications, then propose an application-specific enclosure and system.
We confirm configuration and supply conditions at evaluation, PoC, pilot-lot and production stages. Quantity, schedule, component supply and certification conditions are designed individually.
The optimum configuration differs by customer application, and intellectual property, ISP settings and supply terms need protection. Public information supports an initial fit check; necessary details are provided after an NDA.
Contact us even before the application, imaging conditions, target terminal, quantity and deployment timing are fixed.