HOLONIC Eyes AI VISION SYSTEM concept integrating night-time monitoring and drones

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Reference translation prepared for this website. The source image is unchanged; this is not an original or certified translation.

HOLONIC Eyes / AI Vision System

See. Understand. Anticipate what comes next.

A next-generation camera integrated with AI supports informed decisions in fleeting moments and complex situations.

  • Vision × AI × Edge

The lens on the left and the night-port, thermal, street and industrial scenes with a drone on the right illustrate the vision / AI / edge concept.

CAMERA & EDGE AI / PHYSICAL AI ENTRY POINT

From AI vision
to Edge AI decisions in the field.

Starting with the high-sensitivity HOLONIC Eyes HE-1 color night-vision camera and APPRO camera modules, we support image-quality design, NVIDIA Jetson connectivity, AI inference, PoC, OEM / ODM and production introduction. Standard Link turns camera input into an entry point for Physical AI.

LOW-LIGHT IMAGING FEASIBILITY

Test whether AI can distinguish the target, not just whether an image is visible.

When false detections increase in low light, we first check the target, distance, illuminance, motion and interface conditions. We separate image visibility from AI decisions and evaluate whether the cause lies in imaging, the model or processing time.

Scroll horizontally to view the table.

Evaluation itemTest conditionsDecision metricsStop criteria
Input qualityIlluminance, distance, motion, lens and exposureColor, contours, noise and target reproductionRequired features cannot be captured
AI classificationEvaluation data under matching conditionsFalse detections, misses and processing timeInsufficient distinction for the operational decision
Embedded integrationConfirmed for each device and JetPack versionConnectivity, latency, heat and stabilityOperating conditions are not met

Example: night-time images that AI can distinguish

This is a proposed evaluation method, not evidence of SLL-measured recognition accuracy or successful connection to every device.

  • Challenge:Can the required colors, contours and motion be captured in low light?
  • Products and technology:HOLONIC Eyes HE-1 or candidate cameras, lenses, ISP and Edge AI.
  • Conditions and results:Fix illuminance, distance, motion and interfaces; record unmeasured results as unmeasured.
  • Expertise:Separate imaging from recognition and define comparison conditions, failure cases and evaluation methods.
  • Implementation roles:Agree SLL's evaluation scope and the manufacturer's connectivity-support scope for each project.
  • Customer decision:Records that support comparison of adoption, further evaluation, design changes or non-adoption.

APPRO's Jetson product category does not establish HE-1 compatibility with every Jetson device or JetPack version. We confirm product model, target device, OS / SDK, interface, verification date and verifying party together.

APPRO Photoelectron is listed as Elite in NVIDIA's official Jetson partner directory. This status belongs to APPRO and does not certify SLL, HE-1 or AIDC or guarantee their compatibility.

APPRO listing on NVIDIA's official site

HOLONIC Eyes HE-1 color night-vision camera
Approved HOLONIC Eyes HE-1 product image. Specifications and configuration conditions are confirmed for evaluation and adoption.

Read the full image translation beside the larger image below

COMMERCIAL PROOF / AI EYE AVAILABLE NOW

HOLONIC Eyes HE-1

Read the night-time environment through AI vision.

Standard Link's core visual module captures color in dark and low-light conditions and can serve fixed monitoring, industrial equipment, drones, robots and Edge AI configurations.

  • 0.0007 lxLow-light color imaging
  • USB Type-CUVC 1.5
  • 4K classFHD / HD / VGA
  • Approx. 80 gFor equipment integration

Minimum subject illuminance is a reference value under our evaluation conditions. Results vary with the lens, exposure time, gain, subject, installation environment and display conditions.

NIGHT VISION PROOF / LOW-LIGHT FIELD DEMO

The same night and site: darkness on an iPhone, color from the camera.

Compare the appearance through a continuous shot and through separately recorded iPhone footage and direct PC capture at the same location during the same night-time period.

FIELD DEMO 01 / CONTINUOUS RECORDING

Existing night-time field demonstration

A continuous shot moves from dark surroundings to live color video on a PC, then returns to the dark surroundings.

Night-time field footage / continuous shot / approx. 14.4 seconds

This field footage records a PC screen with a smartphone. It is not the camera's direct digital output or a measurement test for quantitative comparison of illuminance, sensitivity or color reproduction.

FIELD DEMO 02 / SAME SCENE, TWO RECORDINGS

iPhone field footage and direct PC recording of camera output.

First view the actual darkness recorded with an iPhone 14 Pro Max, then the camera output recorded directly on a PC. These were recorded separately at the same location during the same night-time period, not simultaneously.

01 / FIELD CONTEXT

The site as seen by an iPhone 14 Pro Max

In this night-time environment, the hull, shoreline and water are barely visible beyond distant lights.

iPhone field footage / approx. 8.8 seconds / no brightness or color correction
02 / DIRECT CAMERA RECORDING

Camera output recorded directly on a PC

The hull, mast, mountains, water and shoreline at the same site are visible in color. This is not smartphone footage of a monitor.

DIRECT RECORDING / Not a recording of a monitor
Direct PC recording / approx. 12 seconds / web version 1920×1080

The two videos were recorded separately at the same location during the same night-time period, not simultaneously. This is a field-appearance demonstration, not a measurement test comparing illuminance, sensitivity, color reproduction or image quality quantitatively.

Only duration trimming, resolution conversion and audio removal were performed for web publication. No brightness or color correction, denoising, AI generation or AI completion was applied.

01 / CONTINUOUS TAKE

One continuous recording

Darkness, PC screen and return to darkness are recorded without intermediate cuts.

02 / NIGHT FIELD

Actual night-time conditions

The darkness has not been artificially enhanced.

03 / LIVE COLOR VIEW

Live color video on the PC

Color night vision makes the same site visible.

What FIELD DEMO 01 shows

The video begins with dark harbor surroundings recorded on an iPhone 14 Pro Max. Beyond distant lights, the shapes of boats and the shore are barely visible. Without cutting, the camera moves to a PC screen showing live color night-vision footage of hulls, mountains, water and a pier, then returns to the dark surroundings.

This continuous field demonstration shows the difference in appearance at the same place and time.

What FIELD DEMO 02 shows

The first video shows the actual night-time site recorded on an iPhone 14 Pro Max. Beyond distant lights, the hull, shoreline and water are barely distinguishable.

The second is direct PC recording of color night-vision output from the same location. Hulls, masts, mountains, water and the shoreline are visible in color. It is not smartphone footage of a PC monitor.

The two videos were recorded separately at the same location during the same night-time period, not simultaneously. They demonstrate field appearance rather than quantitatively measuring illuminance or sensitivity.

Because an iPhone records the PC screen, color, brightness and perceived resolution may differ from the camera's actual output. This demonstrates field appearance, not quantitative illuminance or sensitivity measurements.

The original video's time sequence is preserved. Only start/end trimming, field-audio removal and web conversion were performed. No brightness enhancement, color enhancement, AI generation or PC-screen replacement was applied.

EYE + EDGE AI

Beyond simply seeing.
HOLONIC Eyes and HOLONIC Edge AI support decisions in the field.

HOLONIC Eyes turns the scene into visual data; HOLONIC Edge AI connects it to on-site recognition, selection, notifications, tracking and equipment control. Our support extends beyond camera delivery to application-specific connectivity validation and AI implementation.

HOLONIC Eyes HE-1 and HOLONIC Edge AI configuration
Product and configuration concept for HOLONIC Eyes HE-1 and HOLONIC Edge AI. Equipment, connectors, enclosure and configuration vary by application.

Image text translation

Reference translation prepared for this website. The source image is unchanged; this is not an original or certified translation.

  • HOLONIC EYE / color night-vision module
  • HOLONIC Edge AI / Edge AI computer

A cable connects the camera module on the left to the Edge AI computing board on the right. This illustrates their system relationship, not guaranteed compatibility with every device or interface.

AVAILABLE NOW

HOLONIC Eyes HE-1

Low-light color images become visual data AI can use.

PROJECT-SPECIFIC / Design and evaluation

HOLONIC Edge AI

We design project-specific configurations connecting recognition and decisions to notifications, tracking and equipment control.

TECHNOLOGY PARTNERSHIP / JETSON-READY IMAGING

Imaging technology for NVIDIA Jetson Edge AI.

APPRO camera and ISP technology with Standard Link's implementation, PoC and production support in Japan.

APPRO Photoelectron
APPRO Photoelectron

We consider APPRO's published Jetson camera and ISP technology as a configuration option. Connectivity is checked for each target device and SDK.

Evaluating camera and ISP technology for Jetson
APPRO camera-module and Edge AI board configuration
Example camera and Edge AI board configuration

Through its strategic sales and joint-development relationship with Taiwan-based imaging company APPRO Photoelectron, Standard Link proposes camera modules and Edge AI configurations for NVIDIA Jetson in Japan.

As an NVIDIA Elite Partner, APPRO offers multiple image sensors, interfaces including USB and MIPI, onboard and Jetson-side ISP tuning, and embedded-vision development.

APPRO Photoelectron

IMAGING & ISP

  • Camera-module and sensor selection
  • USB / MIPI and multiple sensors
  • Onboard and Jetson-side ISP tuning
  • OEM / ODM, manufacturing and supply support
APPRO Photoelectron — An NVIDIA Elite Partner
NVIDIA Jetson

EDGE AI COMPUTE

  • Jetson Orin Nano / Orin NX
  • Jetson AGX Orin
  • Jetson Thor family: high-performance configurations for evaluation
  • On-site inference, robotics and multisensor processing
Standard Link

JAPAN INTEGRATION & BUSINESS

  • Requirements and selection support in Japanese
  • Evaluation units, PoC and Jetson connectivity validation
  • Implementation of AI models, enclosures and communications
  • Contact point for OEM / ODM, NRE and production introduction

NVIDIA Elite Partner is APPRO Photoelectron's status, not Standard Link's own NVIDIA partner status. NVIDIA and Jetson are trademarks of NVIDIA Corporation.

REAL VISION PROOF / EVIDENCE PREPARATION

Check actual field images, not specifications alone.

We are preparing HE-1 comparisons with matched recording dates and times, illuminance, distance, lens, resolution, exposure and disclosure of image processing or AI correction. AI-generated images and configuration concepts are not performance evidence.

01

LOW-LIGHT COLOR

Check colors and contours after sunset and in low light.

02

SAME-CONDITION COMPARISON

Compare with an existing camera under matching conditions and disclose recording conditions.

03

AI INPUT VALIDATION

Validate the input image separately from inference results.

Request a controlled evaluation
FROM PHOTONS TO ACTION

Capture light, tune image quality, apply AI and act in the field.

01

OPTICS & SENSOR

Subject, distance, field of view, lighting, motion, lens and sensor type.

02

ISP / IMAGE QUALITY

Exposure, color reproduction, HDR / WDR, noise reduction and sharpness.

03

JETSON / EDGE AI

USB / MIPI input, GStreamer, decoding, preprocessing and AI inference.

04

AI INFERENCE

Object detection, anomaly detection, tracking, classification, OCR and sensor fusion.

05

ACTION

Notifications, PTZ, recording, APIs and robot, drone or equipment control.

06

AUTHORIZED DATA & PLATFORM

Multi-site management, model distribution, audits and future improvement using authorized data.

PLATFORM VISION / Includes future concepts. Proposals identify currently available functions and each project's implementation scope.

CHOOSE YOUR STARTING POINT

Camera configurations for PoC, embedded systems and production.

HOLONIC Eyes HE-1

Image text translation

Reference translation prepared for this website. The source image is unchanged; this is not an original or certified translation.

HOLONIC Eyes / HE-1

Read the night-time field through the eyes of AI.

Visual input for monitoring, infrastructure, equipment and robotics.

  • Low-light full-color AI vision module

A camera product is shown against a night-time industrial setting; the lower-right label identifies HE-1 and its low-light full-color AI vision role.

AVAILABLE NOW

HOLONIC Eyes HE-1

Low-light color, USB UVC, 4K-class imaging and approximately 80 g. Visual input for night-time monitoring, infrastructure, embedded equipment, drones and robots.

Discuss an evaluation unit
APPRO USB3 UVC camera modulesAPPRO SUPPORTED / Manufacturer support

APPRO USB3 UVC Camera Modules

A configuration for starting an early PoC on a PC or Jetson. Resolution, frame rate, shutter, HDR / WDR and lens are selected for the application.

Select a USB configuration
APPRO MIPI CSI-2 YUV camera modulesAPPRO SUPPORTED / Manufacturer support

APPRO MIPI CSI-2 / YUV Camera Module

For Jetson embedded systems, low latency and production equipment. Onboard ISP, MIPI 4-lane and 4K-class imaging are evaluated for each configuration.

Discuss MIPI integration
Global-shutter evaluation candidatesEVALUATION CANDIDATE

Global Shutter Vision Module

Additional candidates for fast-moving subjects, robots and visual inspection. They are evaluated after checking conditions, not described as immediately available or already validated.

Evaluate fast-moving subjects

Exact sensor details, ISP conditions and supply terms may be provided after an NDA, depending on the product and contract. GMSL and V-by-One are discussed individually.

JETSON COMPATIBILITY / EVIDENCE-BASED STATUS

Define Jetson support precisely.

We distinguish manufacturer-published support, Standard Link validation and individual evaluation, checking carrier boards, JetPack, drivers and ISP conditions.

Public status of camera configurations for NVIDIA Jetson
Camera / configurationInterface / outputJetson / softwarePublic statusLast verifiedNext action
HOLONIC Eyes HE-1USB Type-C / UVCConfirmed for each device and JetPack versionEVALUATION AVAILABLEPublished product specifications
Checked 2026-08-01
Individual evaluation
APPRO USB3 UVCUSB3 / UVCOrin family / configuration-dependentAPPRO SUPPORTEDAPPRO published information
Checked 2026-08-01
Connectivity PoC
APPRO MIPI YUV + ISPMIPI CSI-2 / YUVOrin family / carrier and driver tuningAPPRO SUPPORTEDAPPRO published information
Checked 2026-08-01
Embedded-system evaluation
Global ShutterUSB3 / configuration checkCustom design for fast-moving subjectsEVALUATION AVAILABLECandidate configuration
2026-08-01
Discuss evaluation
Jetson Thor familyConfiguration not finalizedHigh-performance Physical AINOT YET VERIFIEDNot validatedEarly-stage discussion

HOLONIC Eyes HE-1

Interface / output: USB Type-C / UVC

Jetson / software: Confirmed for each device and JetPack version

Public status: EVALUATION AVAILABLE

Last verified: Published product specifications
Checked 2026-08-01

Next action: Individual evaluation

APPRO USB3 UVC

Interface / output: USB3 / UVC

Jetson / software: Orin family / configuration-dependent

Public status: APPRO SUPPORTED

Last verified: APPRO published information
Checked 2026-08-01

Next action: Connectivity PoC

APPRO MIPI YUV + ISP

Interface / output: MIPI CSI-2 / YUV

Jetson / software: Orin family / carrier and driver tuning

Public status: APPRO SUPPORTED

Last verified: APPRO published information
Checked 2026-08-01

Next action: Embedded-system evaluation

Global Shutter

Interface / output: USB3 / configuration check

Jetson / software: Custom design for fast-moving subjects

Public status: EVALUATION AVAILABLE

Last verified: Candidate configuration
2026-08-01

Next action: Discuss evaluation

Jetson Thor family

Interface / output: Configuration not finalized

Jetson / software: High-performance Physical AI

Public status: NOT YET VERIFIED

Last verified: Not validated

Next action: Early-stage discussion

APPRO SUPPORTED refers to manufacturer-published support, not Standard Link hardware validation. SL VALIDATED is used only for configurations with completed validation logs.

EVALUATION / ADOPTION / INTEGRATION

Can it capture your target and connect to your equipment?

For evaluation, selection and adoption, we check the target, imaging conditions, destination device and required quantity. Camera OEM and production discussions separately address enclosure, power, interfaces and supply conditions. An additional PoC is not required by default when a product already fits.

Who it is for
Equipment manufacturers, inspection-system, robot and drone developers, systems integrators, facilities companies, site operators and research institutions.
What we can discuss
Camera selection and adoption, Jetson connectivity, imaging-condition comparisons and integration into existing equipment.
Deliverables after agreement
Evaluation plan, connection configuration, separate records of imaging and recognition results, and a scope-and-limitations table. Deliverables are defined in the contract.
Fit conditions
After reviewing the use case, imaging conditions and destination device, we define necessary evaluation items and support scope.
Next steps
Product adoption, focused re-evaluation or joint embedded development. Supply, maintenance and production conditions are checked separately.

Initial discussions start with a non-confidential overview. Initial-consultation costs, evaluation and design estimates, and product supply conditions are confirmed separately. Unconfirmed prices, delivery dates or performance are not promised.

Example evaluation method for low-light camera adoption

Customer question
Identify why the target cannot be captured in low light and decide whether to adopt the camera.
Conditions to check
Check target, distance, motion, lighting, lens, exposure, frame rate, and the destination device's model, OS / JetPack and interface.
Technology used
Evaluate low-light imaging and connectivity. Distinguish manufacturer-published support from SLL hardware checks, and verify fit for each model and environment.
Validation plan
Compare existing and candidate cameras under agreed conditions. Record imaging and recognition results separately and list condition differences, confirmed findings and remaining limitations.
Expert assessment
Consider whether imaging or recognition causes the issue and how to assess variation between conditions. Expert participation requires individual agreement.
Next options
Choose product adoption, focused re-evaluation or joint embedded development based on the findings.

This is an evaluation-method example, not a completed result. Conditions and deliverable scope are agreed before proceeding. Model suitability and expert participation are not guaranteed.

APPLICATIONS / START FROM THE FIELD PROBLEM

Configure for the field challenge, rather than selling the same camera for every job.

CRITICAL INFRASTRUCTURE

Night, distance and constrained communications. Details are provided after an NDA and security review.

Discuss your project

FACTORY & MACHINE VISION

Cameras, ISP and AI selected for lighting changes, reflections, moving subjects and inspection cycle time.

Discuss your project

PORTS & MARITIME

Night-time awareness and notifications around ports, coastlines and vessels.

Discuss your project

ROBOTICS & MOBILITY

Integrate low latency, tracking, situational recognition and control into one system.

Discuss your project

AGRICULTURE & ENVIRONMENT

Design monitoring and data capture for outdoor, seasonal and weather changes.

Discuss your project
FROM DEVICE TO PLATFORM

From camera sales to ongoing field-AI operations.

CURRENT

PRODUCT

Sales and evaluation of HE-1 and selected cameras.

INTEGRATION

EDGE AI & PoC

ISP, Jetson, AI models, notifications and control.

APPLICATION

MULTI-SITE OPERATION

Application systems, OEM, maintenance and multi-site operations.

PLATFORM VISION

AUTHORIZED DATA & LEARNING

Authorized data, model distribution, audits and improvement.

Under customer contracts and explicit consent, we securely manage only necessary data and connect it to model improvement and redistribution to the field.

Explore the Physical AI platform
OEM / ODM / FAE / PRODUCTION

From camera selection to a product ready for shipment.

01

FAE / Technical Enablement

Requirements, selection, connectivity, image-quality and Jetson evaluation, and technical issue diagnosis.

Discuss technology selection
02

Sub-Module / OEM

Camera, lens, ISP, board, enclosure, branding and supply arrangements.

Discuss OEM
03

Turnkey / ODM

Define roles for AI, communications, power, enclosure, testing, NRE, production and maintenance.

Discuss ODM and production
TECHNICAL RESOURCES

Public information and detailed resources available after an NDA.

PUBLIC

  • HE-1 overview and public specifications
  • Application and Jetson-support overview
  • PoC overview
  • Recorded demonstrations and FAQ

AFTER NDA

  • Exact sensor and detailed ISP conditions
  • Circuits, connectors and BOM
  • Detailed validation logs
  • Supply conditions and custom quotations
  • Restricted SDK and driver resources

Confidential PDFs and restricted resources are not placed at public URLs.

Request NDA resources and detailed specifications
FAQ

Frequently asked questions

Which NVIDIA Jetson devices are supported?

Support depends on the camera, interface, carrier board and JetPack version. See the table distinguishing manufacturer-published support, Standard Link validation and individual evaluation.

Should I choose USB or MIPI?

USB UVC is convenient for early PoC and PC connectivity. MIPI may suit production integration, low latency, wiring and enclosure optimization. Selection depends on the application and development team.

Can I check the sensor model?

Public specifications of standard APPRO products are provided by product. Detailed component information for HOLONIC products and custom configurations may be disclosed after an NDA for IP, supply and contractual reasons.

Can I buy or borrow an evaluation unit?

Depending on the product and stock, options include purchase, time-limited loans or inclusion in a PoC.

Can you develop an AI model as well?

We define the PoC scope for object detection, anomaly detection, tracking and related tasks. Quotes distinguish use of existing models, additional training and new development.

Can the system be used outdoors or made waterproof?

A camera module and a finished enclosure are different. We check temperature, water and dust protection, condensation, vibration, power and communications before proposing an application-specific enclosure and system.

Can a small batch progress to mass production?

Configuration and supply conditions are reviewed at evaluation, PoC, pilot-lot and production stages. Design depends on quantities, timelines, component supply and certification requirements.

Why are detailed specifications not public?

The optimal configuration varies by application, and IP, ISP settings and supply conditions need protection. Public information supports an initial fit assessment; necessary details are provided after an NDA.

START WITH THE EYE

Choose the vision and intelligence your site needs, together.

You can contact us even if the use case, imaging environment, target device, quantity or timing is not yet finalized.