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Heliospectra Bankruptcy What Growers Should Do Next

Heliospectra Bankruptcy: What Growers Should Do Next

Heliospectra AB (publ) was declared bankrupt on July 27, 2026. Learn what this may mean for existing grow lights, warranties, spare parts, software and controls, open orders, and future greenhouse projects—and how to evaluate technically suitable replacement options.

  • Existing System Assessment
  • Warranty & Support Review
  • Replacement Planning

Is This True?

Yes. On July 27, 2026, the Gothenburg District Court approved the bankruptcy application for Heliospectra AB (publ) and declared the company bankrupt. Heliospectra also announced that its shares would be delisted from Nasdaq First North Growth Market. However, the announcement did not confirm the final status of every warranty, spare-parts order, software service or customer-support arrangement.

For commercial greenhouse operators and indoor crop producers using Heliospectra LED fixtures, this news creates immediate operational questions. Managing a commercial lighting infrastructure requires long-term planning for spare parts, system maintenance, software controls, and potential facility expansions. This guide provides a factual breakdown of the official announcement, outlines key risk areas for existing installations, and presents actionable steps growers can take to safeguard their lighting operations and evaluate potential replacement options.

Heliospectra official announcement confirming bankruptcy approval on July 27, 2026

Has Heliospectra Gone Bankrupt? What the Official Announcement Confirms?

On July 27, 2026, the Board of Directors of Heliospectra AB (publ) announced that it had resolved to file for bankruptcy. On the same day, the Gothenburg District Court in Sweden approved the bankruptcy application and officially declared Heliospectra AB (publ) bankrupt. Following the court’s approval, the company announced that its shares would be delisted from the Nasdaq First North Growth Market.

When evaluating what happened to Heliospectra, it is essential for facility managers and procurement teams to separate confirmed legal facts from unverified industry speculation regarding Heliospectra bankrupt operations.

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Confirmed vs. Not Yet Confirmed Fact Box

Fact Category

Details Confirmed by Official Announcement

Status / Impact

Legal Status

Bankruptcy application submitted and approved by Gothenburg District Court

Confirmed on July 27, 2026

Corporate Entity

Heliospectra AB (publ) declared officially bankrupt

Confirmed

Stock Exchange

Shares announced for delisting from Nasdaq First North Growth Market

Confirmed

Legal Oversight

Official bankruptcy trustee appointed to oversee liquidation/proceeding

Confirmed

CONFIRMED VS NOT YET CONFIRMED FACT BOX Confirmed by Official Announcement: • Bankruptcy application submitted and approved • Heliospectra AB (publ) declared bankrupt on July 27, 2026 • Shares announced for delisting from Nasdaq First North Growth Market • Official bankruptcy trustee appointed by Gothenburg District Court Not Confirmed by Official Announcement: • The final legal status of every existing product warranty • Whether all technical customer support has permanently ended • Whether all product lines have been permanently discontinued • Whether remaining spare parts inventory is completely unavailable • Whether every software portal or control service will stop operating

Understanding this distinction is critical: while the legal bankruptcy of the Swedish parent company is confirmed, the practical impact on specific greenhouse installations depends on local purchasing agreements, distributor inventory, and control architecture.

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Features 2–4 channel adjustable spectrum, multiple mounting options, and power configurations up to 960W.

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Product Certification

Our LED grow lights are engineered for reliable crop production, high photon efficacy, and compliance with applicable safety and horticultural lighting standards. Depending on the model and target market, available certifications and compliance options include DLC Horticultural Lighting, UL , cUL, CE, and RoHS.

Each fixture is evaluated for electrical and fire safety, thermal management, PPF output, photon efficacy, spectral consistency, output maintenance, moisture resistance, and long-term operational stability. Through comprehensive testing, we ensure dependable performance in commercial greenhouses, vertical farms, indoor grow rooms, plant factories, research facilities, and multi-tier cultivation systems.

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Ensures the product meets strict safety and quality standards set by UL.

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Manufactured with eco-friendly materials, ensuring our grow lights are free from lead, mercury, and other hazardous substances.

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Complies with European safety, health, and environmental protection standards.

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What Does the Heliospectra Bankruptcy Mean for Growers?

What Does the Heliospectra Bankruptcy Mean for Growers

A corporate bankruptcy filing and the physical operational status of a commercial greenhouse lighting system are not identical. The declaration of bankruptcy by a lighting manufacturer introduces supply chain and service risks, but installed fixtures do not cease functioning simply because of a court ruling.

Commercial growers should systematically review seven core operational areas:

  1. Installed Fixtures: Assessment of current physical condition, thermal performance, power supply functionality, and diode output.

  2. Technical Support Availability: Determination of whether field service engineering remains accessible through local channels.

  3. Warranty and Service Claims: Evaluation of outstanding claims for driver failures, diode degradation, or module replacement.

  4. Spare Parts and Replacement Components: Audit of available drivers, optics, cables, and replacement fixture bars.

  5. Open Orders and Unfinished Projects: Status check on paid orders awaiting shipment, partial deliveries, or pending site commissioning.

  6. Software, Lighting Controls, and Account Access: Verification of local control capabilities versus cloud dependencies and administrative access.

  7. Future Greenhouse Expansions: Review of facility expansion plans designed around matching existing fixture layouts.

Key Variables Determining Real-World Grower Impact

The severity of operational risk varies significantly between cultivation facilities based on several project-specific variables:

  • Product Generation: Older fixture lines running on simple analog dimming (0-10V) present different software risks compared to newer multi-channel, dynamic LED systems (such as the MITRA X series).

  • Sales Contract & Contracting Party: Whether equipment was purchased directly from Heliospectra AB or through an independent regional distributor or greenhouse system integrator.

  • Support Channel Architecture: Facilities serviced by local integrators with regional spare-parts inventory face fewer immediate maintenance disruptions.

  • Control Infrastructure: Systems operating on local, offline industrial controllers carry lower operational exposure than installations reliant on active cloud management platforms.

  • Regional Legal Jurisdiction: Applicable commercial laws and insolvency claim procedures vary depending on the customer’s country.

Note: Growers should avoid assuming that all potential technical support or service channels have already terminated completely. Each issue must be verified through written documentation.


Will Existing Heliospectra Grow Lights Continue to Work?

Will Existing Heliospectra Grow Lights Continue to Work

A bankruptcy declaration does not automatically turn off installed lighting hardware. Photonis, LED diodes, driver power electronics, and aluminum heat sinks continue to operate according to basic electrical principles regardless of corporate legal status.

Whether an installed Heliospectra system will continue operating smoothly depends on whether the fixtures operate independently or rely heavily on external software, cloud licenses, or specialized wireless gateways.

Installed Heliospectra Grow Light Hardware

v Local / Hardware Dependent • Direct AC Power Connection • Local 0-10V / PWM Dimming • Hardwired Switch/Relay • Static Spectrum Fixtures v Continues Standard Operation

v External / Software Dependent • Cloud-Based Control Portals • Remote Software Licenses • Proprietary Wireless Gateways v Requires Immediate Control Audit

Essential System Control Checkpoints for Growers

Facilities operating Heliospectra fixtures should conduct a physical and digital control audit using the following steps:

  1. Manual / Local Override Verification: Confirm whether fixtures can be switched on, switched off, and dimmed manually without active network communication.

  2. Current Dimming and Schedule Protocols: Verify if pre-programmed photoperiod schedules and dimming curves are saved locally on internal memory or local hardware controllers.

  3. Gateway & Wireless Node Status: Inspect physical gateways, wireless connectors, and control signal transmitters connecting light fixtures to the central control desk.

  4. Sensor & Environmental Control Integration: Check hardwired or network links between light controllers and climate computers (e.g., Priva, Ridder, Argus, or Hoogendoorn).

  5. Administrative Accounts & User Permissions: Ensure local facility engineers possess full administrator logins, passwords, and security rights for all control software.

  6. Software Licensing & Remote Access: Determine whether control platforms require recurring cloud subscription renewals or external authentication servers.

  7. Lighting Recipe Preservation: Export and document all custom spectrum recipes, dynamic photoperiod curves, and crop-specific light programs.

  8. Configuration File Backups: Save local backup files of system network topology, fixture addressing, and control mapping.

 


Warranty, Spare Parts, Software and Support: What Must Be Verified

Existing customers searching for Heliospectra grow light supportHeliospectra warranty terms, or information on Heliospectra discontinued products should avoid making unverified assumptions. Instead, growers should systematically audit each service category through written records and official contacts.

Service Area

Primary Risks to Evaluate

What Growers Should Verify Immediately

Warranty Claims

Potential unfulfillment of manufacturer repair or replacement commitments for failed units.

Check written warranty contracts; identify if the contracting entity is Heliospectra AB or a local distributor; review claim filing procedures.

Spare Parts Supply

Unavailability of exact-match LED drivers, custom optics, LED bars, cables, or mounting hardware.

Audit current on-site spare inventory; contact regional distributors to check local stock levels for critical failure components.

Technical Support

Cessation of factory-direct field engineering assistance and hardware troubleshooting.

Determine if ongoing technical support is available through your greenhouse installer, electrical contractor, or system integrator.

Software & Controls

Loss of cloud portal connectivity, remote control access, or software updates.

Verify if local control access functions offline; secure administrator credentials; export configuration files and spectrum settings.

Product Availability

Inability to procure identical fixture models for replacement or phase-two greenhouse expansion.

Confirm current warehouse stock of specific SKUs rather than assuming all inventory is immediately unavailable worldwide.

Core Evaluation Principles

  • Do not assume all warranties are automatically void: Legal obligations depend on the purchasing entity, regional distribution agreements, and trustee rulings.

  • Do not assume all products are permanently discontinued: Existing stock may remain available through commercial distribution networks or secondary channels.

  • Do not assume spare parts remain guaranteed: Components requiring factory-direct manufacturing may experience long-term supply constraints.

  • Verify all operational claims in writing: Base facility planning on written confirmation from your primary vendor, distributor, or legal counsel.


What Information Existing Heliospectra Customers Should Preserve

One of the most valuable risk-mitigation steps a grower can take is assembling a comprehensive technical data archive. Preserving physical documentation, electrical specifications, and control configurations ensures that if component replacement or system migration becomes necessary, engineering teams have the precise baseline data required.

• Active photoperiod schedules, dynamic recipes, and channel dimming settings • Integration settings with climate computers (e.g., 0-10V / Modbus / BACnet)

GROWER TECHNICAL DATA PRESERVATION CHECKLIST

  1. Product & Purchase Records • Fixture model numbers, exact SKUs, and revision numbers • Equipment serial numbers and manufacture dates • Purchase agreements, commercial invoices, and proof of payment • Written warranty terms and service level agreements • Contact details for distributors, installers, and system integrators • Delivery receipts and formal site commissioning reports

  2. Lighting & Electrical Data • Official product datasheets and technical specification sheets • Target PPF (μmol/s), ePAR, photon efficacy (μmol/J), and spectrum curves • IES or LDT photometric light distribution files • Operating input voltage (e.g., 120-277V, 347-480V), wattage, and amperage • Electrical panel circuit loading and inrush current specifications • Mounting suspension height, fixture spacing, and unistrut grid dimensions • Baseline PPFD maps, light uniformity reports, and canopy target levels • High-resolution photographs of fixture tags, drivers, plugs, and mounts

  3. Control System & Software Data • Target spectrum configurations (e.g., red/blue/white/far-red percentages) • Controller model numbers, wireless gateway IDs, and node addresses • Network topology diagrams and control wiring schematics • Admin login credentials, passwords, and security access keys • Exported database backups and local configuration files

Preserving this technical record prevents operational delays if replacement fixtures must be engineered or integrated into existing greenhouse bays in the future.

Before Support Becomes Unavailable, Save These Records


What to Do About Open Orders and Incomplete Projects

Commercial growers with open equipment orders, partial shipments, or unfinished greenhouse projects face immediate project management decisions. How a facility responds should be tailored to the specific stage of the project:

Action Plan Categorized by Project Status

PROJECT STATUS ACTION FRAMEWORK Stage A: Fixtures Ordered but Not Yet Delivered • Immediately contact the contracting party to confirm order fulfillment status. • Secure all payment receipts, bank transfers, and purchase contracts. • Identify whether equipment is held in regional distributor stock or pending factory shipment. Stage B: Products Partially Delivered • Perform a physical inventory count of delivered fixtures, drivers, and mounts. • Reconcile delivered items against shipping manifests and invoices. • Determine whether delivered quantities allow full completion of isolated bays. Stage C: Installed Systems Awaiting Final Commissioning • Verify whether physical installation and electrical wiring are complete. • Test local manual dimming controls independently of factory software. • Secure local control documentation and commission system on basic protocols. Stage D: Designed Projects Not Yet Purchased / Expansion Phases • Re-evaluate lighting layout against alternative technical specifications. • Verify whether expansion zones require exact fixture matching or if a zone-by- zone alternative can be integrated.

Recommended Strategic Steps for Open Orders

  1. Preserve Complete Financial and Written Records: Compile contracts, invoices, wire confirmation notes, purchase orders, and email correspondence.

  2. Verify Fulfillment Status with Contracting Party: Contact the entity named on your sales contract (distributor, system integrator, or Heliospectra AB) to confirm shipping status.

  3. Audit On-Site vs. Missing Equipment: Clearly identify which specific components (e.g., power cables, hanging brackets, control gateways) are missing.

  4. Develop a Technical Replacement Specification: Use baseline photometric data to draft a functional replacement specification for missing units.

  5. Assess Impact on Production Schedules: Evaluate potential lighting installation delays against crop planting schedules and harvest targets.

  6. Seek Legal Counsel Regarding Claims: Where substantial payments have been made without delivery, consult legal counsel regarding formal insolvency claim procedures.

What Stage Is Your Heliospectra Project In


Heliospectra Grow Light Replacement Options

When existing fixtures fail, or when facility expansion requires additional lighting capacity, commercial growers must evaluate practical hardware replacement strategies. There is no universal drop-in replacement for every installation; each project must be evaluated against physical mounting geometry, electrical supply, optical beam distribution, and control protocols.

Heliospectra Lighting Replacement Paths

v v Option 1: | | Option 2: Continue Using | | Replace Failed Operating Units | | Fixtures Singly

v v Option 3: | | Option 4: Replace Zone | | Complete System by Zone (Phased) | | Full Migration

Option 1: Continue Using Operating Fixtures

Keep existing, fully functional fixtures in service while establishing a proactive risk-monitoring strategy.

  • Best Suited For: Facilities with fully operational fixtures, secure local control systems, and adequate on-site spare parts.

  • Action Required: Monitor driver thermals, inspect power connections periodically, and archive system software configurations.

Option 2: Replace Failed Fixtures Individually

Replace isolated failed fixtures with technically compatible alternative units while keeping the majority of the existing installation intact.

  • Best Suited For: Minor fixture failures in large greenhouse bays where maintaining crop lighting continuity is urgent.

  • Technical Requirement: Alternative Heliospectra replacement lights must match input voltage, mechanical dimensions, total PPF output, optical beam spread, and dimming control signal response to avoid creating localized light or electrical imbalances.

Option 3: Replace Fixtures Zone by Zone (Phased Approach)

Migrate complete greenhouse bays, zones, or cultivation rooms to new lighting hardware while consolidating functioning Heliospectra fixtures into remaining operational zones.

  • Best Suited For: Commercial growers executing phased facility upgrades or managing partial fixture failures across multiple bays.

  • Advantage: Consolidates original spare parts into dedicated zones, eliminates light spectrum mismatch within single crop rows, and allows testing of Heliospectra grow light alternatives in controlled trial areas.

Option 4: Complete Lighting System Migration

Replace the entire lighting fixture array and control interface with a modern, fully supported commercial LED lighting system.

  • Best Suited For: Facilities facing widespread component degradation, unsupported proprietary control platforms, or major expansion projects requiring long-term uniform support.

  • Advantage: Restores full manufacturer warranty coverage, unlocks higher efficacy (μmol/J) energy savings, and unifies facility controls under a single technical architecture. Commercial growers evaluating complete migration can review custom engineering paths through MITRA X replacement solutions.

Four Paths for Existing Heliospectra Installations


Fixture-Only Replacement or Complete System Migration?

To determine whether a facility can execute a fixture-only replacement or requires a complete lighting system migration, engineering teams should evaluate key technical parameters using the comparison matrix below:

Technical Audit Parameter

Fixture-Only / Zone-by-Zone Replacement Feasible

Complete System Migration Required

Mechanical Dimensions & Weight

Alternative fixture fits existing unistrut spacing, hanging brackets, and truss weight capacity without shading crop rows.

Alternative fixture dimensions or weight exceed structural truss limits or alter greenhouse shading profiles significantly.

Electrical Supply & Voltage

Matches existing panel voltage (e.g., 120-277V or 347-480V), circuit amperage, breaker capacity, and inrush current.

Electrical supply voltage mismatch or circuit breaker trip risks due to different driver inrush current characteristics.

PPF Output & Optical Spread

Matches target PPF/ePAR output (μmol/s) and optical beam distribution, maintaining uniform canopy PPFD (μmol/m²/s).

Mismatched light distribution creates severe hot spots, shadows, or uneven crop canopy growth within the same bay.

Spectrum & Channel Configuration

Equivalent static spectrum or compatible multi-channel spectral response matching crop development needs.

Inability to replicate specialized dynamic multi-channel light recipes critical to specific crop photomorphology.

Control & Dimming Protocol

Compatible with standard 0-10V, PWM, or open industrial control protocols already installed in the facility.

Control system depends on locked, inaccessible cloud software or unsupported proprietary wireless gateways.

Facility Expansion Strategy

Replacing isolated fixture failures or upgrading individual greenhouse bays incrementally.

Large-scale facility expansion where long-term light uniformity across all future zones is mandatory.

Critical Recommendation: Any replacement strategy seeking to retain original mounting grid and electrical infrastructure should be validated through professional photometric simulations, electrical load audits, and small-zone pilot testing prior to full deployment.

Technical Compliance Guardrails

FY LIGHTING approaches replacement projects strictly as an independent equipment manufacturer offering customized, technically compatible LED lighting hardware.

  • No Unverified Compatibility Claims: FY LIGHTING does not claim to offer “Official Heliospectra replacements” or “Authorized Heliospectra components.”
  • Engineering Verification: All replacement projects are evaluated on a custom engineering basis to verify mechanical, electrical, optical, and control parameters.
  • Quality Assurance: Fixtures are backed by rigorous manufacturing quality control, including burn-in aging tests, IP65/IP66 ingress protection, and recognized safety certifications (such as UL/cUL, CE, and DLC where applicable)

Discuss Your Existing Heliospectra Installation

Growers facing component failures, open project requirements, or facility expansion decisions can consult with our application engineering team for an objective technical evaluation.

Submit Your Project Context for Engineering Review: Send us your existing Heliospectra fixture model numbers, greenhouse layout drawings, mounting heights, target spectrum requirements, and control system details. Our engineering team will review your data and evaluate whether a fixture-only replacement, a zone-by-zone upgrade, or a complete system migration is most suitable for your operation.

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Looking for a Reliable Heliospectra Grow Light Replacement?

FY LIGHTING develops customized LED grow light solutions based on your existing fixture model, spectrum, PPF output, wattage, mounting layout, and control requirements. Share your current system details with us to evaluate a technically suitable replacement solution.

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How FY LIGHTING Can Support Heliospectra Replacement Projects

When commercial growers require technical evaluation, custom fixture adaptation, or long-term replacement hardware, FY LIGHTING provides dedicated engineering and manufacturing support for commercial greenhouse and vertical farming facilities.

FY LIGHTING’s Six-Step Replacement Engineering Process

Our structured engineering process evaluates photometric, spectral, electrical, mechanical, and control-system compatibility before full-scale replacement.

Step 1: Technical Audit & Baseline Review
  • Review existing Heliospectra fixture models, datasheets, and lighting layout drawings.
  • Verify operating voltage, mounting-grid dimensions, and available electrical capacity.
Step 2: Photometric & Spectral Performance Mapping
  • Define the required PPF output, ePAR spectrum, and optical distribution.
  • Conduct optical simulations to verify uniform PPFD coverage across the crop canopy.
Step 3: Mechanical & Control Compatibility
  • Evaluate custom bracket adaptations for existing greenhouse Unistrut or truss systems.
  • Confirm compatibility with 0–10V, PWM, or other industrial control interfaces.
Step 4: Solution Proposal & Photometric Validation
  • Provide detailed engineering drawings, IES files, and custom spectral data.
  • Develop photometric lighting plans based on the existing mounting layout and suspension height.
Step 5: Pilot Sampling & Phased Implementation
  • Produce test samples for physical installation and electrical verification.
  • Support zone-by-zone replacement or complete lighting-system migration.
Step 6: Long-Term Parts & Documentation Support
  • Provide complete technical documentation and warranty coverage.
  • Maintain spare-parts support for future system servicing and maintenance.
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LED Grow Light Series

Delivering Reliable Lighting for the Most Demanding Environments

At FY Lighting, every fixture is engineered for long-term performance and safety. From explosion-proof lighting for hazardous zones to industrial high-bays and advanced horticulture solutions, our products are built with premium components, rigorous testing, and industry-leading certifications.
No matter the environment—oil & gas, factories, warehouses, greenhouses, or vertical farms—you get stable output, durable construction, and a product designed to solve real-world challenges.

17 Years of Manufacturing Excellence You Can Trust

With a 10,000㎡ facility, in-house R&D, strict QC processes, and advanced testing equipment, we ensure consistent quality in every unit. Our lights meet global certification standards including UL, CE, RoHS, ATEX, and more.
We support OEM/ODM, provide fast engineering response, and offer customized lighting solutions that fit your exact application needs—helping you reduce downtime, improve safety, and enhance productivity.

Frequently Asked Questions About Heliospectra Bankruptcy and Replacement Lights

Is Heliospectra out of business?

Yes. On July 27, 2026, the Board of Directors of Heliospectra AB (publ) filed for bankruptcy, and the Gothenburg District Court approved the application on the same day, declaring the company bankrupt. Shares of the company were subsequently announced for delisting from the Nasdaq First North Growth Market. However, this legal status specifically applies to the Swedish parent corporation; independent regional distributors, installers, or third-party service providers may still hold local inventory or offer technical assistance.

When was Heliospectra declared bankrupt?

Heliospectra AB (publ) was officially declared bankrupt on July 27, 2026, by the Gothenburg District Court in Sweden.

Are existing Heliospectra warranties still valid?

A corporate bankruptcy declaration creates significant legal uncertainty regarding manufacturer warranty fulfillment. Whether a warranty claim remains enforceable depends on whether the equipment was purchased directly from Heliospectra AB or underwritten by an independent regional distributor or system integrator, as well as formal rulings by the appointed bankruptcy trustee. Growers should review their purchase contracts and contact their vendor directly.

Can growers still obtain Heliospectra spare parts or technical support?

Availability of spare parts and technical support depends on regional inventory levels held by local distributors, greenhouse integrators, and secondary supply channels. Factory-direct technical support from the parent company may be limited or unavailable. Facilities should audit local stock for critical components like LED drivers and control modules.

Will existing Heliospectra grow lights stop working?

A bankruptcy declaration does not turn off physically installed lighting hardware. Fixtures operating on direct power connections and standard local dimming (such as 0-10V or PWM) will continue to operate normally. However, systems reliant on cloud management software, active subscription licenses, or proprietary central gateways require immediate auditing to ensure offline control capability.

Have all Heliospectra products been discontinued?

The official bankruptcy announcement confirmed the legal bankruptcy status of Heliospectra AB (publ) and its delisting, but it did not explicitly confirm that every product line (such as the MITRA X series) has been permanently discontinued worldwide. Existing warehouse stock may remain available through commercial distribution networks.

Can another grow light replace a Heliospectra MITRA X fixture?

Yes, technically compatible replacement fixtures can be engineered, but there is no single universal drop-in replacement for every installation. Replacement lights must be evaluated against the original fixture’s PPF output, optical beam distribution, spectrum, physical dimensions, input voltage, and control interface to ensure electrical and photometric uniformity.

Do growers need to replace the complete control system?

Not necessarily. If existing Heliospectra fixtures or replacement lights can be controlled via open industrial protocols (such as standard 0-10V or PWM dimming), existing control hardware can often be retained. A complete control system migration is generally only required if the installation relies exclusively on proprietary, cloud-locked software platforms that are no longer accessible.

 

 

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