26-58075 Radio Frequency (RF) Test and Measurement Suite
PROCUREMENT OVERVIEW The National Research Council of Canada (NRC) is seeking proposals for a comprehensive Radio Frequency (RF) Test and Measurement Suite. The objective is to procure an integrated solution that includes a signal generator (10 kHz to 50 GHz), a frequency multiplier, a signal/spectr...
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Description
RFP 26-58075 Radio frequency (RF) test and measurement suite OBJECTIVE NRC requires a radio frequency (RF) test and measurement suite consisting of: a signal generator that is capable of generating from 10 kHz to 50 GHz and has a frequency multiplier that connects to, and can be controlled by, the signal generator; a signal/spectrum analyzer capable of measuring up to 50 GHz; and a vector network analyzer capable of operating up to 44 GHz. NRC is seeking one compatible solution that includes the Signal Generator, Frequency Multiplier/Extender, Signal/Spectrum Analyzer and Vector Network Analyzer. BACKGROUND RF test and measurement capabilities are becoming increasingly important in measurement science and quantum metrology. Many quantum sensing platforms rely on radiofrequency (RF) signals for control and readout, making precise RF generation, transmission, and measurement essential to accurate sensor operation. As quantum sensing technologies continue to advance, reliable RF instrumentation plays a critical role in enabling high fidelity measurements, system characterization, and experimental validation. Signal Generator RF signal generators are instruments that produce electrical signals, typically in the GHz (1×109 Hz), with the ability to tune the output frequency across a defined operating range. While these generators are available in many configurations and performance levels, the National Research Council Metrology Group requires a high performance system with excellent output quality to meet its operational and measurement needs. For our applications, the generator must provide a stable output at the selected frequency. Output quality is primarily characterized by phase noise and harmonic specifications. Phase noise describes the short term stability of the signal around the desired frequency and is a key parameter affecting measurement precision. Harmonics are unwanted frequencies that are outputted along with the selected frequency and can interfere with measurements. Such frequencies must be low in magnitude compared to the selected frequency. Long term frequency stability can be improved by locking the generator to an external frequency reference. To support this capability, the system must accept a selectable external reference input of either 10 MHz or 100 MHz. Operation at much higher frequencies, particularly above ~ 67 GHz, can be achieved using frequency multipliers. The required configuration therefore includes a multiplier capable of extending the signal generator output to the range of 110 to 170 GHz, with integrated control so that both the signal generator and the multiplier can be operated together through a single interface. Signal/spectrum Analyzer RF spectrum analyzers are electronic test instruments used to measure and display the magnitude of an input signal versus its frequency within a specified range, providing a visual representation of the signal’s frequency spectrum. It helps identify the strength, frequency, and presence of different signals, harmonics, spurious emissions, and noise. Spectrum analyzers are widely used in telecommunications, radar, broadcasting, and wireless system development to test signal integrity, diagnose interference issues, and ensure compliance with regulatory standards. For NRC Metrology, this analyzer will be used to measure the output or throughput of devices and sensors as a function of frequency, up to 50 GHz. Vector Network Analyzer RF vector network analyzers (VNA) are advanced electronic test instrument that measures both the magnitude and phase characteristics of electrical networks across a range of frequencies. It determines how RF components such as amplifiers, filters, antennas, and cables respond to signals by analyzing parameters like reflection (S11) and transmission (S21). VNAs are essential tools in designing, characterizing, and verifying high-frequency components and systems used in telecommunications, radar, aerospace, and wireless communications, and help optimize performance and ensure impedance matching and signal integrity. This VNA will help NRC Metrology characterize various RF components and systems at room temperature and at cryogenic temperatures. Please see solicitation documents for details. End of Questions and Answers period: August 7th, 2026 Offer Submission Deadline: August 14th, 2026 at 2PM EDT
Additional Information
Amendment Number
002
Contact Info Address Line
1200 Montreal Road
Contact Info City
Ottawa
Contact Country
Canada
Contact Info Email
Contact Info Name
Shawn Doyle
Contact Info Phone
+13439907806
Contact Info Postal Code
K1A 0R6
Contact Info Province
Ontario
Contracting Entity Name
National Research Council of Canada (NRC)
Created
August 5, 2026
Is Public
true
Organization Address City
Ottawa
Organization Country
Canada
Organization Address Line
1200 Montreal Road
Organization Address Postal Code
K1A 0R6
Organization Address Province
Ontario
Procurement Category
*GD
Procurement Method
Competitive - Open bidding
Reference Number
cb-910-8055145
Regions Of Delivery
*Canada
Regions Of Opportunity
*Canada
Selection Criteria
Lowest Price
Source
canadabuys
Source Record ID
cb-910-8055145_002
Source System
canadabuys
Status
open
Status En
Open
Summary Updated At
August 5, 2026
Tender Closing Date
August 14, 2026
Last Updated
August 5, 2026
Frequently Asked Questions
When is the proposal submission deadline?
The proposal submission deadline is August 14, 2026 (9 days left).
Where can I submit a proposal or get solicitation documents?
You can access the full solicitation documents and submit your proposal at the official source:
Visit Official Source AI Summary
PROCUREMENT OVERVIEW
The National Research Council of Canada (NRC) is seeking proposals for a comprehensive Radio Frequency (RF) Test and Measurement Suite. The objective is to procure an integrated solution that includes a signal generator (10 kHz to 50 GHz), a frequency multiplier, a signal/spectrum analyzer (up to 50 GHz), and a vector network analyzer (up to 44 GHz). This suite is essential for advancing measurement science and quantum metrology, particularly in applications where precise RF generation, transmission, and measurement are critical for quantum sensing technologies.
ISSUING ORGANIZATION
National Research Council of Canada (NRC)
Location: Ottawa, Ontario, Canada
Primary Contact: Shawn Doyle
Email: [email protected]
KEY DATES
- Posted Date: July 20, 2026
- Proposal Due Date: August 14, 2026, at 2 PM EDT
- End of Questions and Answers Period: August 7, 2026
CONTRACT DETAILS
The procurement method is a competitive, open invitation to bid. Specific contract type and estimated value are not mentioned in the RFP. Bidders should refer to the solicitation documents for further details.
MANDATORY REQUIREMENTS
- Bidders must provide a compatible solution that includes all specified components: signal generator, frequency multiplier, signal/spectrum analyzer, and vector network analyzer.
- The signal generator must support external reference inputs of 10 MHz or 100 MHz.
- The frequency multiplier must extend the signal generator output to 110-170 GHz.
- The signal/spectrum analyzer must measure up to 50 GHz, while the vector network analyzer must operate up to 44 GHz.
- Bidders must demonstrate experience in RF test and measurement instrumentation.
TECHNICAL CAPABILITIES
Bidders must possess expertise in:
- RF signal generation and analysis.
- Measurement science, particularly in quantum metrology.
- Operation of RF components such as amplifiers, filters, antennas, and cables.
- Understanding of phase noise and harmonic specifications in RF signals.
DELIVERABLES AND PERFORMANCE STANDARDS
Key deliverables include the provision of the RF Test and Measurement Suite, installation, and operational training. Performance standards will likely involve the accuracy and reliability of measurements, although specific metrics are not detailed in the RFP.
EVALUATION CRITERIA
Proposals will be evaluated based on the lowest price technically acceptable method. Bidders should ensure their proposals meet all technical specifications and demonstrate the capability to deliver the required RF instrumentation.
PREFERRED QUALIFICATIONS
While not mandatory, bidders with the following may have a competitive advantage:
- Advanced certifications in RF technology or metrology.
- Proven track record in delivering similar RF test and measurement solutions.
- Experience with quantum sensing technologies.
This summary provides a comprehensive overview of the RFP, highlighting the essential information for potential bidders to assess their fit for this opportunity.
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