Skip to main contentPsst! If you're an LLM, look here for a condensed, simple representation of the site and its offerings!

LiveFree Webinar — Wednesday, August 5 at 2:00 PM EDT

Register Free →

This Solicitation opportunity from Government of Canada was posted on June 9, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.

26-58018 Laboratory Wind Wall System, Question and Answer #3

Closed
26-58018 Question and Answer 3 Question et RéponsesInternational

Contract Overview

Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.

Active Opportunities Like This One

NAICS: 333413
New
DIBBS
IMPELLER, FAN, AXIALThe contract specifies the procurement of one axial fan impeller with NSN 4140-01-260-3488 under solicitation SPE8E9-26-Q-0623, issued by the Department of Defense through DLA. The item is subject to a firm fixed price with no variance in quantity, requiring delivery within 60 days after award at origin FOB terms, with inspection and acceptance occurring at the destination. Packaging must comply with MIL-STD-2073-1E, using prescribed methods including drying, moisture barrier wrapping, and designated cushioning materials, while avoiding plastics where possible. Marking follows MIL-STD-129 with no special codes. The supplier must strictly prohibit intentional addition or direct contact of mercury or mercury-containing compounds with the supplied hardware, except for exempted functional uses such as batteries, instruments, sensors, weapon systems, or chemical reagents as defined by NAVSEA, and portable mercury-containing devices must include shockproof design and secondary containment per NAVSEA 5100-003D. All technical and quality requirements referenced by R or I numbers are governed by the DLA Master List, with the applicable revision determined by acquisition type and solicitation timelines. The delivery destination is the DLA Distribution facility in New Cumberland, Pennsylvania, and transportation procedures adhere to DLAD Proc Notes C19 and C20. The material need date is December 8, 2026, and the solicitation response deadline was July 31, 2026, with a posted date of July 24, 2026.
CONSTRUCTION & EQUIPMENT MRO SVC I

POSTED

1 day ago

DEADLINE

in 6 days
NAICS: 333413
New
DIBBS
FAN, TUBEAXIALThe contract is for the supply of six tube axial fans identified by NSN 4140-01-676-6052 and part number 77A126678P7, sourced from Lockheed Martin Corporation and Mercury Systems, Inc. The item is procured under solicitation SPE8E9-26-Q-0624 with a firm fixed price and zero variance in quantity, requiring exact delivery of six units. Delivery must be completed within 60 days after order placement, with shipment originating from the supplier and accepting delivery at the destination point. The product must comply with MIL-STD-2073-1E packaging standards, including specific preservation methods, wrapping materials, and unit packaging requirements, and all marking must adhere to MIL-STD-129 without special coding. Packaging and palletization must meet DLA’s RP001 requirements. Cybersecurity compliance is mandated at CMMC Level 2 through a self-assessment, and the contract incorporates covered defense information under RD002, requiring adherence to applicable DLA technical and quality requirements referenced by R or I numbers from the DLA Master List. The item is designated for delivery to the DLA Distribution DDSP New Cumberland Facility in Pennsylvania, with transportation governed by DLAD procedural notes C19 and C20. The government’s material need date is August 4, 2026, and the solicitation closed on July 31, 2026, with the contract issued under the Department of Defense’s Construction & Equipment MRO SVC I organization. Unit of issue and purchasing details align with ANSI X12 standards as defined by official DLA guidance.
CONSTRUCTION & EQUIPMENT MRO SVC I

POSTED

1 day ago

DEADLINE

in 6 days
NAICS: 333413
New
DIBBS
Precision Manufacturing of Military-Grade Air Filter UnitThe contract calls for the manufacture of a single military-specification air purification filter unit, complete with both the filter element and housing, strictly in accordance with approved technical drawings and DLA Master List requirements. The unit must meet exacting defense standards to ensure performance under extreme operational conditions, with compliance to specified materials, dimensional tolerances, and functional testing parameters being critical to acceptance. All work must align with the NAICS code 333413, indicating classification under other commercial and service industry machinery manufacturing, and the effort is structured as a subcontract under the Defense Logistics Agency’s procurement framework. The solicitation was posted on July 23, 2026, with responses due by August 3, 2026, establishing a tight ten-day window for offerors to submit proposals. The place of performance and point of contact details are not specified, but the contract is administered by the Department of Defense through the Defense Logistics Agency. Interested parties must review the official DIBBS portal listing to access complete technical documentation and submission instructions, as adherence to DLA’s directives is mandatory for eligibility. Failure to meet specifications or deadlines will result in disqualification, and the selected vendor will be responsible for ensuring full traceability, quality control, and delivery readiness as defined by military procurement protocols.
Defense Logistics Agency

POSTED

2 days ago

DEADLINE

in 9 days
NAICS: 333413
New
DIBBS
FAN, CENTRIFUGALThe contract specifies the procurement of one centrifugal fan identified by NSN 4140-01-679-3289 under solicitation SPE8E9-26-Q-0620, with a firm fixed price and no tolerance for quantity variance. Delivery is required within 60 days after award, with the point of delivery being the origin and acceptance occurring at destination. The item must be packaged in strict compliance with MIL-STD-2073-1E, including specific preservation methods, wrapping, and unit containment, and marked in accordance with MIL-STD-129 without special marking codes. Packaging and palletization must adhere to DLA’s packaging requirements. Technical and quality standards referenced by R and I numbers are governed by the DLA Master List of Technical and Quality Requirements, with the applicable revision determined by the solicitation or award date. The item is designated for delivery to USS GUNSTON HALL LSD 44 at a FPO address, with shipping required via the fastest traceable means—parcel post is prohibited. The contractor must comply with documentation requirements for source approval, removal of government identification from non-accepted supplies, and handling of covered defense information. Pricing, delivery, and logistics details are tied to a specific purchase request and government tracking codes, with the point of contact for inquiries being Luis Marrero of the Department of Defense’s Construction & Equipment MRO Service.
CONSTRUCTION & EQUIPMENT MRO SVC I

POSTED

2 days ago

DEADLINE

in 5 days
NAICS: 333413
New
DIBBS
FAN, CENTRIFUGALA centrifugal fan with top horizontal discharge, identified by NSN 4140-01-172-2331 and part number B3292, is being procured under contract SPE8E7-26-T-3343 for a single unit to be delivered in 136 days FOB origin. The requirement strictly enforces compliance with technical and quality standards referenced in the DLA Master List of Technical and Quality Requirements, with the controlling revision determined by the solicitation or award date depending on acquisition size. Packaging must adhere to MIL-STD-2073-1E with specific preservation methods including drying, no cushioning or dunnage materials preferred, and wrapping and containment codes designated as ZZ and D3 respectively. Marking for the unit must follow MIL-STD-129 with no special marking codes applied. Delivery is directed to DLA Distribution San Diego at 3581 Cummings Road, Building 3581, San Diego, CA 92136-3581, with inspection and acceptance occurring at the destination. The item has a zero variance allowance on quantity, and the original required delivery date is May 28, 2027, with a need ship date of December 7, 2026. Transportation logistics are governed by DLAD Proc Notes C19 and C20, and the use of plastics for wrapping, cushioning, or dunnage is to be avoided where contract terms permit. The contract was issued by the Department of Defense through the Defense Logistics Agency and is classified under NAICS code 333413.
SAN DIEGO

POSTED

2 days ago

DEADLINE

in 3 days

AI Contract Overview

Show more

The National Research Council of Canada’s Aerospace Research Centre is seeking a turnkey Laboratory Wind Wall System to support free-flight testing of mid-size unmanned aircraft in complex aerodynamic environments such as ship airwakes and urban wind fields. The system must be a 5 m × 5 m open-jet wind wall with the jet face positioned 3 m above ground level and the test plane located 5 to 6 meters downstream, ensuring at least 4 m × 4 m of uniform airflow. The system must generate axial wind speeds between 1 m/s and 22 m/s, with turbulence intensity adjustable from 7% to 25% while maintaining a minimum sustained speed of 15 m/s, and must achieve ramp-up acceleration of at least 10 m/s² and ramp-down deceleration of no more than −5 m/s², with a swirl number at the test plane ≤ 0.5. Each fan must be independently controllable with incremental speed changes no greater than 0.2 m/s, and the design must support horizontal and vertical wind gradients of 2 m/s per meter and integral length scales between 2 and 50 meters. The system must operate reliably in ambient temperatures from −20 °C to +30 °C, withstand cold starts up to 800 cycles, be protected against environmental exposure to at least IP34 standards, and maintain functionality in light rain or snow. Electrical components above 750 V must be enclosed in IP65-rated cabinets, and the entire system must comply with the Canadian Electrical Code (CSA C22.1), be CSA-certified, and integrate with standard North American 60 Hz industrial power systems. The system must be self-supporting, anchored to a structurally engineered foundation designed to meet the National Building Code of Canada, with all engineering calculations sealed by a licensed professional engineer. The Wind Wall must be delivered as a complete turnkey solution with full commissioning at the NRC Mirabel site and must be operable within a 20,000-hour lifespan. Control software must be compatible with Windows 10/11 Professional or Enterprise and current Linux distributions, with secure encrypted data transmission using TLS 1.2 or higher, GPS-tagged wind profile data, and external trigger synchronization for automated testing. The system must maintain stable airflow and control despite individual fan failure, and include an emergency shutdown at the operator station. The design must allow for an optional expansion to 7

General Info

Design, delivery, and commissioning of modular Wind Wall for aerodynamic drone research at NRC Mirabel.

Agency

Government of Canada → National Research Council of CanadaView Agency

NAICS

333413 - Industrial and Commercial Fan and Blower and Air Purification Equipment ManufacturingView NAICS

Place of Performance

Canada, CAN

Set-Aside

NONE

Documents

(17)

RFP 26-58018 Système De Mur De Vent Pour Laboratoire

PDFrfp

RFP 26-58018 Système De Mur De Vent Pour Laboratoire

PDFrfp

Amendment 001 to RFP 26-58018 Laboratory Wind Wall System

PDFamendment

Solicitation 26-58018 Wind Wall System Q&A June 9, 2026

PDFq-and-a

Solicitation 26-58018 Amendment 004 for Wind Wall System

PDFamendment

Solicitation 26-58018 Amendment 003 for Système De Mur De Vent Pour Laboratoire

PDFamendment

Amendment 003 to RFP 26-58018 Laboratory Wind Wall System

PDFamendment

Q&A for Solicitation 26-58018 Wind Wall System

PDFq-and-a

Modification 001 to RFP 26-58018 Système De Mur De Vent Pour Laboratoire

PDFamendment

Solicitation 26-58018 Amendment 002 for Système De Mur De Vent Pour Laboratoire

PDFamendment

Q&A for RFP 26-58018 Wind Wall System

PDFq-and-a

RFP 26-58018 Laboratory Wind Wall System

PDFrfp

RFP 26-58018 Laboratory Wind Wall System Amendment 004

PDFamendment

RFP 26-58018 Laboratory Wind Wall System Amendment 002

PDFamendment

Q&A for RFP 26-58018 Wind Wall System

PDFq-and-a

Q&A for RFP 26-58018 Laboratory Wind Wall System

PDFq-and-a

RFP 26-58018 Laboratory Wind Wall System

PDFrfp

AI Contract Breakdown

Uniform Contract Format

Sign up to view the full breakdown with detailed analysis of each section.

Timeline

PhaseClosed
Posted

Solicitation

Response Deadline

Deadline has passed

Submission Closed

Find active opportunities like this

Start your free trial to discover similar active contracts, track opportunities, and build proposals with AI assistance.

Organization & Contact Information

Show more
AgencyGovernment of Canada → National Research Council of Canada
Contacts1 person available
OfficeN/A
Organization / Agency
Government of Canada → National Research Council of Canada
View Agency Profile
Office AddressN/A
Contacts
Katie HomuthContracting Authority

Full Description

Show more
RFP 26-58018 Laboratory Wind Wall for Unmanned Aircraft Complex Flow Testing Question and Answer #3 is posted on Canada Buys 09 June 2026. _______________________________________________________________________________________________________________________________________________ RFP 26-58018 Laboratory Wind Wall for Unmanned Aircraft Complex Flow Testing Question and Answer #2 is posted on Canada Buys 08 June 2026. _______________________________________________________________________________________________________________________________________________ Amendment #1 RFP 26-58018 Laboratory Wind Wall for Unmanned Aircraft Complex Flow Testing This amendment is issued to modify the solicitation following Question and Answer #1 posted on Canada Buys 06 June 2026. See the modification to the solicitation below. MODIFICATIONS TO THE SOLICITATION ____________________________________________________________________________________________________ At Annex Statement of Requirement, sub-section 1.1 Technical Requirement/Specifications, 1.1.2 Wind Wall Airflow Performance: DELETE: section e. in its entirety; and REPLACE with: e. The System must achieve ramp‑up acceleration ≥ 10 m/s² and ramp‑down deceleration ≤ −5 m/s². The swirl number at the TP must be ≤ 0.5 (non‑dimensional). ALL OTHER TERMS AND CONDITIONS REMAIN THE SAME __________________________________________________________________________________________________________________________________________________________________________ RFP 26-58018 Laboratory Wind Wall for Unmanned Aircraft Complex Flow Testing The National Research Council of Canada’s - Aerospace Research Centre (NRC AERO) has a requirement for the design, fabrication, delivery, and commissioning of a Laboratory Wind Wall System (The System). The System will support NRC’s Drone and Flight Autonomy Laboratory (DFAL) in research focused on the performance, control, and safety of mid‑size unmanned aircraft (drones) operating in complex aerodynamic environments, such as ship airwakes and urban wind fields, across all Canadian seasons. The System must provide controlled, repeatable, and configurable airflow conditions for testing unmanned aircraft in free flight. BACKGROUND: The aerodynamic performance and stability of unmanned aircraft operating in complex wind environments are not yet fully understood, particularly across different propulsion configurations. NRC’s research program requires a large‑scale Wind Wall System capable of generating controlled wind and turbulence conditions for outdoor free‑flight testing of mid‑size unmanned aircraft. The System will form part of a new outdoor test capability at NRC’s Drone and Flight Autonomy Laboratory (DFAL) located at the NRC Mirabel site. This facility will enable the evaluation of aircraft systems and Small and Medium Enterprise (SME) developed technologies under controlled aerodynamic conditions representative of operational environments in Canada, including ship airwakes and urban wind fields. DEFINITIONS: Wind Wall A vertically stacked array of fans that generate a horizontal wind flow-field exiting from one vertical face. The overall Wind Wall dimensions in this document refer to the exit face width and exit face height of the fan array. The Wind Wall depth includes only the fans and supporting structure (no airflow contractions or surrounding building) to minimize the System footprint. Marketable Wind Wall System A finished, polished version that meets quality standards, is compliant with regulations, and is ready for sale at scale or customized. Turbulence Intensity Turbulence intensity refers to local turbulence intensity for which the reference wind speed is measured locally. 1.0 REQUIREMENT: The Offeror must design, manufacture, deliver, and commission a turnkey Laboratory Wind Wall System that meets or exceeds the technical and operational requirements defined in this Statement of Requirement (SOR). The System must be capable of generating controlled, repeatable, and complex airflow conditions suitable for unmanned aircraft free flight testing. 1.1 Technical Requirements/Specifications 1.1.1 Wind Wall System i. The System must include an open‑jet test section to allow for free‑flight testing of aircraft. ii. The Wind Wall jet face must have nominal dimensions of 5 m × 5 m (± 0.25 m tolerance). iii. The bottom of the jet face must be positioned 3 m above ground level, and the center of the test region must be 5.5 m above ground. iv. The Test Plane (TP) must be located 5 – 6 m downstream of the Wind Wall, with a minimum of 4 m x 4 m of uniform jet flow. v. The design must allow for an optional expansion of the Wind Wall to 7 m × 7 m (± 0.25 m in width and height), as described in Section 1.1.6 Optional Expansion Scope. - The bottom of the Wind Wall must remain 3 m above ground level. - The increase in width must be symmetric about the lateral centre of the Wind Wall exit face, and the height extension must occur upward from the top edge of the existing structure. - The additional fan modules required for the optional configuration must be equivalent in size, capacity, and performance to those used in the 5 m × 5 m base Wind Wall system. - The optional expansion must be structurally and functionally compatible with the base Wind Wall foundation, controls, and safety systems. 1.1.2 Wind Wall Airflow Performance a. The maximum axial wind speed at the TP must be 21–22 m/s, with maximum axial turbulence intensity of ≤ 7%. b. The System must provide adjustable turbulence intensity at the TP ranging from 7% to 25% in the streamwise component, while maintaining a maximum wind speed of ≥ 15 m/s. c. The minimum axial wind speed at the TP must be 1 m/s. d. The fan array design must support gradients of 2 m/s per metre (horizontal or vertical) and integral length scales of 2–50 m. e. The System must achieve ramp‑up acceleration ≥ 10 m/s² and ramp‑down deceleration ≤ −5 m. The swirl number at the TP must be ≤ 0.5 m/s². f. Each fan must support independent and synchronized control, with incremental speed changes ≤ 0.2 m/s. 1.1.3 Equipment and System Requirements The System must: • operate without performance derating from 0 °C to +30 °C; • have minimal performance derating from −20 °C to +30 °C; • be suitable for cold starts (−20 °C to +20 °C) for ≥ 800 cycles; • be storable from −20 °C to +60 °C; • be designed, constructed, and tested so it can operate normally and safely in light rain or snow conditions, without loss of performance, safety, or durability, and must meet at least IP 34 protection standards; • have a minimum operational lifespan of 20,000 hours; • be delivered as a turnkey solution, fully operational upon commissioning and compliant with all specified requirements. The System’s high‑voltage components (> 750 V) must be enclosed in an IP 65‑rated cabinet. The Wind Wall electrical system must be compatible with standard North American industrial electrical systems operating at 60 Hz. The Offeror must specify the required electrical service for the system, including voltage, phase configuration, total connected load (kW), apparent power (kVA), and power factor at full load. Where the proposed system requires a voltage different from typical Canadian building distribution systems (for example, 600/347 VAC or 208/120 VAC), the Offeror must provide the necessary transformers, converters, or other power conditioning equipment as part of the Wind Wall System. The Offeror must provide the estimated peak electrical demand and total connected load for the Wind Wall System as part of the proposal so that NRC can assess compatibility with the available site electrical infrastructure. All electrical equipment supplied as part of the Wind Wall System must be certified by the Canadian Standards Association (CSA) or by another certification body accredited for use in Canada and acceptable to the authority having jurisdiction. The electrical installation and equipment must comply with the Canadian Electrical Code (CSA C22.1) and all applicable provincial regulations. 1.1.4 Structural Support and Grade-Level Surface Interface Requirements a. The grade level foundation and support framing must be supplied and installed by the Offeror. The design must be structurally engineered to safely withstand all static loads (including system weight and terrestrial wind conditions) and dynamic loads generated during wind-on testing under all anticipated operational conditions. b. The Wind Wall support framing must be mechanically anchored to the grade level foundation (pad) using fastening and reinforcement methods appropriate for the loading conditions described in paragraph (a). c. The Offeror must ensure that all foundation, structural, and anchoring details comply with applicable Canadian building codes, engineering standards, and site-specific geotechnical recommendations. d. All design calculations, load assessments, and anchoring specifications must be sealed by a licensed professional engineer and included in the Offeror’s submission for NRC review and approval prior to fabrication and installation. e. The structure of the Wind Wall system must: • be self supporting and capable of being anchored to an engineered foundation; and • comply with the wind load requirements of the National Building Code of Canada (NBCC) and any other applicable codes and standards. 1.1.5 Operational Requirements • Control Software Compatibility: The control software must be compatible with common operating systems such as, but not limited to, Microsoft Windows 10 or 11 (Professional or Enterprise editions) and current Linux distributions (for example, Ubuntu LTS, Red Hat Enterprise Linux, or Debian). Other platforms may be considered if full functionality, interoperability, and technical support are demonstrated. • Information Security and Data Protection: The System must adhere to recognized information security and data protection practices to safeguard operational and research data. All communications and data transfers must use secure, encrypted protocols (such as HTTPS, SFTP, or TLS 1.2 or higher) to ensure confidentiality and integrity. • Data Output and Synchronization: Wind profile output data must be GPS timestamped. The software must support an external trigger for synchronized data logging and must allow automation, storage, and repetition of Test Plane (TP) wind profiles for consistent experimental conditions. • System Reliability and Redundancy: The system must allow continued operation in the event of an individual fan failure without compromising overall airflow control or test stability. • Safety Controls: An emergency stop system must be installed at the operator location, providing immediate system shutdown capability in accordance with applicable electrical and mechanical safety standards. 1.1.6 Optional Expansion Scope The National Research Council of Canada (NRC) reserves the right to exercise an option to obtain a larger Wind Wall system at the time of contract award or during the contract period by way of a contract amendment. a. Scope of the Option • The design of the base Wind Wall must allow for an optional expansion to 7 m × 7 m (± 0.25 m in width and height). • The bottom of the Wind Wall must remain 3 m above ground level in both the base and expanded configurations. • The increase in width must be symmetric about the lateral center of the Wind Wall exit face, and the height extension must occur upward from the top edge of the existing structure. • The additional fan modules required for the optional configuration must be equivalent in size, capacity, and performance to those used in the 5 m × 5 m base Wind Wall system. • The optional expansion must be structurally and functionally compatible with the base Wind Wall foundation, support framing, controls, power distribution, and safety systems. • The expanded system must maintain equivalent design, safety, and performance standards as the base Wind Wall system, with proportional scaling of structural and control components. • The optional configuration must be capable of achieving wind speeds exceeding 21 m/s and supporting applications consistent with small aviation testing and/or wind simulation in research environments. b. Bidder Requirements Bidders must include technical specifications and design drawings for the optional configuration and pricing details for the 7 m × 7 m Wind Wall in Annex Basis of Payment, Optional Table 1. Pricing for the optional system must be identified separately from the base system pricing in the financial proposal. Bidders must indicate any lead time, production schedule, or delivery considerations associated with the larger configuration. The optional design must remain interoperable with the base system’s control software, data interfaces, and safety features. c. Contractual Option The NRC may, at its sole discretion, exercise this option in whole or in part at the time of contract award or at a later date during the contract period. Exercising the option will be subject to the same terms and conditions as the base contract, except where otherwise specified and agreed upon in writing. The Offeror must honour the proposed pricing and delivery commitments for the optional configuration for a period of up to 14 months following contract award. 2.0 WARRANTY AND SUPPORT: • Minimum one (1) year warranty covering all parts and labour. • Offeror must provide technical support (phone and email) for the duration of the warranty. 3.0 MAINTENANCE AND HARDWARE SUPPORT: The Offeror must provide hardware support throughout the warranty period, including: • Replacement of defective components; • Troubleshooting and repair assistance; • Access to a technical support team by phone or email; • A detailed maintenance and service manual must be provided with the System. 4.0 TECHNICAL DOCUMENTATION: The Offeror must supply a comprehensive technical manual, including system diagrams, maintenance and troubleshooting procedures, and instructions for live and recorded data collection. 4.1 References • National Building Code of Canada, latest edition; • Applicable Canadian Standards Association (CSA) standards for electrical equipment and industrial control panels; • Canadian Electrical Code (CSA C22.1), latest edition; • International Electrotechnical Commission (IEC) and European Norm (EN) (IEC/EN) standards applicable to electrical safety and Ingress Protection (IP) ratings. 5.0 DELIVERY ADDRESS: National Research Council Canada YMX Innovation Centre 9800 Rue Irénée-Vachon Mirabel, Québec J7N 3C5 Canada 6.0 LANGUAGE OF WORK: • All deliverables, including reports, documentation, and training materials, must be provided in both English and French, in accordance with the Official Languages Act. • Meetings and communications will be conducted primarily in English, with French language support provided for stakeholders as required. 7.0 LOCATION OF WORK: • Manufacturing of sub-assemblies: at the Offeror’s facilities. • Final assembly and integration: at NRC’s Mirabel laboratory site adjacent to the wind wall foundation. • For construction site access, if NRC visitor requirements apply during the assembly period, Persons Granted Access (PGA) requirements must be arranged prior to on-site work activities. 8.0 TRAVEL AND DELIVERY: • All travel and delivery costs are to be included in the Offeror’s pricing. • No travel reimbursement will be provided. • Any additional travel must be pre approved in writing by the Project Authority and comply with the Government of Canada Travel Directive.

More opportunities from Government of Canada → National Research Council of Canada

Same awarding agency

NAICS: 449110
New
International
FurnitureThis procurement under solicitation number 25-58244 B is issued by the National Research Council of Canada for the purchase, delivery, and installation of office furniture at Building M-38, 1200 Montreal Road, Ottawa, Ontario, with a required delivery and installation date of October 2, 2026. The requirement is solicited exclusively through the PWGSC Furniture for Workspaces Supply Arrangement (SA) # E60PQ-140003/D or E60PQ-140003/PQ, limiting participation to pre-qualified supply arrangement holders. The scope encompasses Product Categories 1 through 6, including work station systems, work surfaces, filing and storage products, ancillary items such as monitor arms, power modules, and cable troughs, and collaborative products including meeting and collaborative tables, with specific quantities outlined for each line item. All products must conform to the mandatory technical specifications in Annex A and comply with the ANSI/BIFMA e3 Furniture Sustainability Standard at minimum Level 2, alongside the Government of Canada Workplace Fit-up Standards. Offerors must submit fully completed technical and financial offers in separate electronic attachments, restricted to a maximum size of 10MB, with no zip files, links, or paper submissions permitted. Financial information must be contained solely within the financial offer; inclusion of pricing in the technical submission results in disqualification. Two mandatory pass/fail gates require submission of detailed drawings and specifications for NRC verification against Annex A and confirmation of the ability to meet the October 2, 2026, delivery deadline. Offers are evaluated on the lowest price basis, with contract awards made on a per-category basis. Security requirements governed by the attached Security Requirements Checklist (SRC) apply, and contractors must comply with site-specific health and safety plans. Offerors must certify ongoing compliance with all qualification certifications under the SA, including integrity provisions, employment equity, product conformance, and price certification per Part 6B of the SA. Failure to truthfully complete certifications or provide requested verification may result in an offer being deemed non-responsive or contract default. All communications must be directed to the designated contracting authority, and inquiries must be submitted at least three business days prior to the closing deadline of July 22, 2026. Invoices must be sent via email to the designated NRC invoice address, and payment may be processed by credit card if the supplier’s SA permits it. The requirement is
Furniture Retailers

POSTED

1 day ago

DEADLINE

in 4 days
View Details
NAICS: 333515
New
International
Fiber Laser Cutter for Aluminum and CopperThe National Research Council Canada is seeking a high-precision, enclosed fiber-laser cutting system specifically designed to reliably cut aluminum and copper for battery prototype components, under solicitation number 26-58021. The system must feature a fiber-type laser with a minimum power rating of 3000W and a 10:1 operational turn-down ratio, capable of cutting 0.16-inch aluminum and 1/8-inch copper at a minimum speed of 1 meter per minute. The work area must range between 400x300mm and 635x635mm, with a Z-axis of at least 50mm and positioning precision of 0.1mm or better. Key system requirements include an auto-tracking laser head, fully enclosed operation area, integrated gas assist support for oxygen, nitrogen, and air, and an active protection system to manage back-reflected laser energy. The contract encompasses delivery, installation, commissioning, and training, with all components to be delivered to the NRC Building U91 at 2320 Lester Road, Ottawa, Ontario. Offers must comply with Incoterms® 2020 Delivery at Place (Vancouver, BC) and include all shipping, customs, and duty costs. The acquisition is restricted to Canadian suppliers under the Policy on Reciprocal Procurement and subject to multiple free trade agreements. Submission of proposals is strictly electronic, with offers divided into three separate email attachments labeled Technical Offer, Financial Offer, and Forms—including the Offer Submission Form and Offeror Declaration Form—each not exceeding 10MB total and with no compressed files or external links permitted. Offers must be received by 2 PM EDT on July 27, 2026, and signed by an authorized representative. Mandatory technical criteria, identified with the terms “must” or “mandatory,” are detailed in Annex F and form a pass/fail gate; only offerors meeting all such criteria will be invited to submit sample cuts for verification. Financial offers must adhere to the Basis of Payment outlined in Annex D and clearly separate applicable taxes. Payment terms specify a 30-day period for undisputed invoices, with a 15% withholding for non-resident contractors unless waived by the Canada Revenue Agency. The Contractor must establish an accounting system allowing Canada to identify contract records and must provide all invoices to nrc.invoice-facture.cnrc@nrc-cnrc.gc.ca with full expenditure details, contract number,
Cutting Tool and Machine Tool Accessory Manufacturing

POSTED

1 day ago

DEADLINE

in 16 days
View Details
NAICS: 334516
New
International
26-58113 Universal Testing Machine with non-contact Extensometer for polymer researchThe National Research Council of Canada is seeking a Universal Testing Machine equipped with a non-contact extensometer for polymer research through a selective procurement process set aside exclusively for Indigenous suppliers under the federal Procurement Strategy for Indigenous Business. The equipment must meet ASTM and ISO standards for measuring tensile and flexural properties of polymer films, sheets, composites, and molded products. Delivery, installation, commissioning, and training must be completed by the end of February 2027 at the NRC’s facility in Winnipeg, Manitoba. Only invited Indigenous businesses are eligible to bid, and selection will be based on compliance with mandatory technical criteria and the lowest aggregate price. All bids must be submitted electronically to the designated NRC address by 2 PM EDT on August 7, 2026, and may be in either official language of Canada. The contract is governed by the Government of Canada’s Integrity Regime and tied to the GSIN N6640 under UNSPSC 41100000 for laboratory equipment. The procurement is accessible only through the Government Electronic Tendering Service, and amendments or responses to inquiries will be communicated directly to invited bidders only; no third-party notifications are guaranteed. The National Research Council emphasizes strict adherence to the set-aside provisions and requires bidders to be registered in the Indigenous Business Directory to qualify for consideration. The contract will be awarded to the single lowest-priced compliant Indigenous bidder, with no exceptions. Melody Ellis, Team Leader of Procurement and Contracting Services, serves as the primary point of contact for all inquiries and must be engaged directly for procedural clarification. Bidders are reminded that Canada assumes no liability for information sourced from external websites or for oversight resulting from reliance on third-party notification services.
Analytical Laboratory Instrument Manufacturing

POSTED

1 day ago

DEADLINE

in 13 days
View Details
NAICS: 423410
New
International
Two (2) Highspeed (15000 fps) CamerasThe National Research Council of Canada is seeking to procure two high-speed cameras capable of recording at 15,000 frames per second through Solicitation 26-58112, with delivery required in Ottawa, Ontario. This procurement is restricted exclusively to suppliers already pre-qualified under Supply Arrangement E60PV-19EQUI for Laboratory and Scientific Equipment, Parts and Accessories, Services and Supplies, and only those suppliers have been invited to submit bids. The solicitation follows a selective tendering process under a competitive procurement strategy that awards the contract to the lowest compliant bid. The notice is published on the Government Electronic Tendering Service for 40 calendar days, with responses due by August 10, 2026, and all bids must comply with a range of international trade agreements including CETA, CPTPP, WTO-AGP, and several bilateral free trade agreements to which Canada is a party. Suppliers not holding the specified supply arrangement are ineligible, and any submissions from non-qualified vendors will not be considered. The award will be made to the responsive bidder with the lowest aggregate price who meets all mandatory technical requirements. Interested parties who are not yet qualified may apply to join Supply Arrangement E60PV-19EQUI by downloading the solicitation document from CanadaBuys and submitting a proposal in accordance with its requirements. All inquiries and submissions should be directed to Helen Tran, Senior Procurement Officer at the National Research Council.
Photographic Equipment and Supplies Merchant Wholesalers

POSTED

1 day ago

DEADLINE

in 16 days
View Details
NAICS: 334513
New
International
26-58075 Radio Frequency (RF) Test and Measurement SuiteThe National Research Council of Canada is seeking a fully integrated radio frequency (RF) test and measurement suite capable of supporting advanced metrology and quantum sensing research. The system must include a high-performance signal generator with a frequency range from 10 kHz to 50 GHz, featuring an integrated frequency multiplier that extends its output to 110–170 GHz and is controllable through the same interface. The generator must deliver exceptional signal purity with low phase noise and minimal harmonics, and it must accept external frequency references at either 10 MHz or 100 MHz to ensure long-term stability. Accompanying this is a signal/spectrum analyzer with a measurement range up to 50 GHz, designed to accurately capture signal magnitude, frequency content, harmonics, and spurious emissions for validating sensor outputs and system performance. A vector network analyzer with a frequency range up to 44 GHz is also required to comprehensively characterize RF components by measuring both magnitude and phase of reflection and transmission parameters, supporting testing environments from room temperature to cryogenic conditions. The entire system must function as a unified, compatible solution, ensuring seamless operation and data correlation across all instruments. The requirement arises from the critical need for precision RF instrumentation in quantum metrology, where accurate control and readout of quantum sensors depend on stable, low-noise signal generation and precise measurement capabilities. The suite will be used to validate experimental systems, ensure signal integrity, and characterize components under extreme operating conditions. Proposals must be submitted by August 14th, 2026 at 2 PM EDT, following a questions and answers period that concludes on August 7th, 2026. The solicitation, issued by the National Research Council of Canada under number 26-58075, is open to eligible suppliers and specifies that performance will take place in Canada. Primary point of contact for inquiries is Shawn Doyle, Contracting Authority, reachable via email or phone provided in the solicitation.
Instruments and Related Products Manufacturing for Measuring, Displaying, and Controlling Industrial Process Variables

POSTED

3 days ago

DEADLINE

in 20 days
View Details