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Peraso Releases White Paper on 60 GHz mmWave Technology for Advanced Drone Communications

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Peraso (NASDAQ:PRSO) announced the release of a white paper titled “The Strategic Advantages of 60 GHz Millimeter-Wave Technology in Drone Communications”, focusing on how 60 GHz mmWave can enhance secure, jam-resistant unmanned aerial system (UAS) communications.

According to Peraso, traditional sub‑6 GHz wireless links face spectrum congestion, interference, detection, and jamming challenges as drones become more autonomous and data‑intensive. The white paper outlines how 60 GHz mmWave supports adaptive beamforming, dynamic beam steering, low probability of intercept/detection, anti‑jamming resilience, high‑capacity low‑latency links, SWaP optimization, IFF integration, and GPS‑denied operations. Peraso also highlights directional beamforming and electronic beam steering as enablers of reliable connectivity between moving platforms for applications such as autonomous systems, drone swarms, and mission‑critical defense operations. The white paper is available for download.

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Market reaction after drone communications white paper: PRSO -5.66% in the Jul 16 session

-5.66%
5 alerts
-5.66% Session close to close
+4.9% Peak Tracked
-2.6% Trough Tracked
$12.06M Market Cap
0.5x Rel. Volume

In the Jul 16 session, PRSO declined 5.66%, reflecting a notable negative market reaction. Argus tracked a peak move of +4.9% during that session. Argus tracked a trough of -2.6% from its starting point during tracking. Our momentum scanner triggered 5 alerts that day, indicating moderate trading interest and price volatility.

Data tracked by StockTitan Argus on the day of publication.

Market Context

The stock moved -5.7% in the session following this news. A sharp selloff after this white paper wou...
Analysis

The stock moved -5.7% in the session following this news. A sharp selloff after this white paper would fit a pattern where even positive milestones, like the InTACT shipment, preceded declines in 3 of the last 5 news events. Equity facilities totaling up to $25,000,000 highlight continuing dilution and funding concerns.

Key Figures

Frequency band: 60 GHz
1 metrics
Frequency band 60 GHz mmWave wireless technology for drone communications

Historical Context

5 past events · Latest: Jul 02 (Negative)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jul 02 Equity facility deal Negative -1.9% Committed equity facility of up to $25M with Roth Principal Investments.
Jun 10 Technology demonstration Positive -5.0% 50Gbps 60 GHz network demo targeting drone swarms and autonomous systems.
May 11 1Q26 earnings report Negative -25.0% Revenue drop to $1.0M and widened net loss of $2.5M in Q1 2026.
Apr 28 Earnings date notice Neutral -4.6% Scheduled release and call for first quarter 2026 financial results.
Apr 14 Production shipment Positive -2.1% Initial production shipment of 60GHz modules for InTACT drone IFF systems.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Across the last five news-driven events, the stock more often traded down, including on positive technology and customer milestones.

Key Terms

mmwave, adaptive beamforming, low probability of intercept and detection (lpi/lpd), size, weight, and power (swap), +2 more
6 terms
mmwave technical
"60 GHz mmWave technology helps address these challenges by providing secure"
mmWave is the very high-frequency portion of the radio spectrum (roughly 24–100 GHz) used for ultra-fast wireless links. It matters to investors because it enables much higher data speeds and capacity for services like 5G and fixed wireless, but its short range and sensitivity to obstacles make network deployment and device support more expensive and complex—factors that influence revenue potential, capital spending, and competitive position.
adaptive beamforming technical
"60 GHz mmWave supports modern UAS applications, including:Adaptive beamforming and dynamic beam steering"
A signal-processing technique used in antenna systems that dynamically adjusts the direction and shape of transmitted or received radio beams to focus on desired signals and cancel interference. Like a smart spotlight that follows a performer while dimming background noise, adaptive beamforming improves range, data speed, and reliability for wireless links; investors watch it because it can affect product performance, spectrum efficiency, competitive position, and regulatory or deployment costs in communications and sensing markets.
low probability of intercept and detection (lpi/lpd) technical
"including:Adaptive beamforming and dynamic beam steeringLow probability of intercept and detection (LPI/LPD)"
Design features, techniques and technologies that make a signal, transmission, or platform harder to detect, intercept or track by sensors and eavesdroppers; commonly used in radar, satellite, radio and electronic-warfare contexts. Investors care because companies that develop or license these capabilities can affect defense and communications contracts, competitive positioning and regulatory scrutiny—similar to a company offering a ‘whisper’ mode in a crowded room to avoid being overheard.
size, weight, and power (swap) technical
"Anti-jamming and electromagnetic resilienceHigh-capacity, low-latency communicationsSize, weight, and power (SWaP) optimization"
A size, weight, and power (SWaP) swap means replacing one piece of equipment or component with another that has different physical dimensions, mass, or energy needs. Investors care because these swaps can change a product’s cost, ease of installation, operating expenses and market appeal—like trading a large, power-hungry appliance for a smaller, energy-efficient model—affecting margins, customer demand and future upgrade costs.
identification friend-or-foe (iff) technical
"power (SWaP) optimizationIdentification Friend-or-Foe (IFF) technology integrationGPS-denied operations"
An electronic system used by military and aviation platforms to automatically distinguish friendly forces from unknown or hostile contacts, typically via transponders and coded signals between radar and aircraft or ground units. Like a digital ID badge that systems check at a distance, it matters to investors because demand, contracts, certification and upgrade cycles for defense and aerospace suppliers can hinge on IFF requirements and compatibility.
gps-denied operations technical
"IFF) technology integrationGPS-denied operations and resilient networking"
Operations conducted when GPS signals are unavailable, unreliable, or deliberately blocked, requiring vehicles, drones, ships, or equipment to navigate and perform tasks using alternative sensors, inertial systems, maps, or communication links. Think of it like driving through a tunnel or a dense city where your phone’s map loses signal and you must rely on landmarks, odometer readings, or a compass instead. It matters to investors because companies that enable reliable GPS-denied capabilities can affect the safety, cost, marketability, and regulation of autonomous systems and defense platforms.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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Highlights Applications for Secure, Jam-resistant Drone Communications

SAN JOSE, CA / ACCESS Newswire / July 16, 2026 / Peraso Inc. (NASDAQ:PRSO) ("Peraso"), a leader in high-performance 60 GHz wireless technology, today announced the publication of a new white paper, The Strategic Advantages of 60 GHz Millimeter-Wave Technology in Drone Communications.

As unmanned aerial systems (UAS) become more autonomous and data-intensive, they also place greater demands on wireless communications. Traditional sub-6 GHz technologies face increasing challenges, such as spectrum congestion, network interference, communications detection, and jamming. In its new white paper, Peraso examines how 60 GHz mmWave technology helps address these challenges by providing secure, high-capacity wireless communications for modern drone operations.

Peraso's white paper covers the evolution of drone communications and explains how 60 GHz mmWave supports modern UAS applications, including:

  • Adaptive beamforming and dynamic beam steering

  • Low probability of intercept and detection (LPI/LPD)

  • Anti-jamming and electromagnetic resilience

  • High-capacity, low-latency communications

  • Size, weight, and power (SWaP) optimization

  • Identification Friend-or-Foe (IFF) technology integration

  • GPS-denied operations and resilient networking

"As adversaries continuously develop increasingly sophisticated jamming techniques, it's imperative to develop advanced protocols that ensure secure and stealthy communications with autonomous vehicles," said Ron Glibbery, CEO of Peraso. "We wrote this white paper to explain Peraso's position on where traditional wireless technologies fall short and why 60 GHz mmWave is well suited for secure, resilient drone communications."

The white paper also explores how directional beamforming and electronic beam steering can enable reliable connectivity between moving platforms, while reducing susceptibility to interception, detection, and electronic attack. These capabilities support emerging applications, such as autonomous systems, drone swarms, and mission-critical defense operations that depend on secure, real-time communication.

Peraso's white paper, The Strategic Advantages of 60 GHz Millimeter-Wave Technology in Drone Communications, is available for download.

About Peraso Inc.
Peraso Inc. (NASDAQ:PRSO) is a pioneer in high-performance 60 GHz wireless technology, offering chipsets, modules, software, and IP. Peraso supports a variety of applications, including fixed wireless access, drone, defense and tactical communications, immersive video, and factory automation. For additional information, please visit http://www.perasoinc.com/.

Forward-Looking Statements
This press release contains forward-looking statements within the meaning of Section 27A of the Securities Act of 1933, as amended, and Section 21E of the Securities Exchange Act of 1934, as amended, which are intended to be covered by the "safe harbor" created by those sections. All statements in this release that are not based on historical fact are "forward-looking statements." These statements may be identified by words such as "estimates," "anticipates," "projects," "plans," "strategy," "goal," or "planned," "seeks," "may," "might", "will," "expects," "intends," "believes," "would," "should," and similar expressions, or the negative versions thereof, and which also may be identified by their context. All statements that address availability, operating performance, and advantages of the products of Peraso, the anticipated use of mmWave technology in drone and other UAS applications, that are not otherwise historical facts, are forward-looking statements.

Forward-looking statements are based on certain assumptions and expectations of future events that are subject to risks and uncertainties. Actual results and trends may differ materially from historical results or those projected in any such forward-looking statements depending on a variety of factors. These factors include, but are not limited to, anticipated use of mmWave technology in drone and other UAS applications, the successful implementation and performance of the technology and hardware of Peraso with UAS technology, the anticipated tactical and operational advantages of beamforming antenna technology relative to traditional radio frequency solutions, the risk that the performance characteristics described in the white paper, including with respect to jam-resistance, low probability of intercept/detection, and resilience in GPS-denied environments, may not be replicated in actual field conditions, third-party testing, or customer deployments, the availability and performance of Peraso's products, reliance on manufacturing partners to assist successfully with the fabrication of Peraso's ICs and modules, changes in defense spending priorities, government budget constraints, military procurement policy, or geopolitical developments that could reduce or delay demand for the Company's technologies in military and government applications, the risk that Peraso's products or technology may be subject to U.S. export control laws and regulations, including EAR or ITAR, and that compliance or non-compliance may limit the addressable market or expose the Company to civil or criminal penalties, availability of quantities of ICs supplied by Peraso's manufacturing partners at a competitive cost, level of intellectual property protection provided by Peraso's patents, vigor and growth of markets served by Peraso's customers and its operations, and other risks, including the risks discussed in Peraso's Securities and Exchange Commission filings. Peraso undertakes no obligation to update publicly any forward-looking statement for any reason, except as required by law, even as new information becomes available or other events occur in the future.

###

Media Contact
Tyler Weiland
Shelton Group
+1-972-571-7834
tweiland@sheltongroup.com

Company Contact
Mike Hamilton
VP, Business Development
mhamilton@perasoinc.com

SOURCE: Peraso Inc.



View the original press release on ACCESS Newswire

FAQ

What did Peraso (NASDAQ:PRSO) announce on July 16, 2026 about 60 GHz drone communications?

Peraso announced a new white paper on July 16, 2026, detailing strategic advantages of 60 GHz mmWave in drone communications. According to Peraso, it addresses congestion, interference, detection, and jamming challenges for unmanned aerial systems that require secure, high-capacity, low-latency wireless links.

What is the focus of Peraso’s 60 GHz mmWave drone communications white paper (PRSO)?

The white paper focuses on how 60 GHz mmWave technology can improve secure, jam-resistant drone communications. According to Peraso, it explains advantages like adaptive beamforming, dynamic beam steering, low probability of intercept/detection, anti-jamming resilience, and support for data-intensive unmanned aerial systems operations.

How does Peraso say 60 GHz mmWave enhances anti-jamming capabilities for drones?

Peraso states that 60 GHz mmWave enhances anti-jamming through directional beamforming, electronic beam steering, and electromagnetic resilience. According to Peraso, these features reduce susceptibility to interception, detection, and electronic attack, supporting secure links for autonomous systems, drone swarms, and mission-critical defense applications.

Which drone applications are highlighted in Peraso’s 60 GHz communications white paper?

Peraso highlights applications including autonomous systems, drone swarms, and mission-critical defense operations. According to Peraso, 60 GHz mmWave supports these uses with high-capacity, low-latency communications, GPS-denied operations, Identification Friend-or-Foe integration, and resilient networking between moving platforms using adaptive and directional beamforming.

What technical features of 60 GHz mmWave does Peraso emphasize for UAS communications?

Peraso emphasizes adaptive beamforming, dynamic beam steering, low probability of intercept/detection, anti-jamming resilience, and SWaP optimization. According to Peraso, these features enable secure, high-capacity, low-latency connections and support GPS-denied operations and resilient networking in advanced unmanned aerial systems.

Where can investors and engineers access Peraso’s 60 GHz drone communications white paper?

Peraso states that the white paper, titled “The Strategic Advantages of 60 GHz Millimeter-Wave Technology in Drone Communications,” is available for download. According to Peraso, it targets stakeholders interested in secure, resilient wireless links for autonomous unmanned aerial systems and defense-related drone operations.