Optimized for autonomous defense systems, UAV detection, signal amplification, and rugged industrial applications across the San Francisco technology corridor.
Ergonomic high-density protective armor designed for field operators and security personnel working in demanding environments.
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Multi-frequency flexible power-efficient module featuring 2s signal analysis and passive spectral monitoring for autonomous defense.
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Wideband Solid-State Power Amplifier (SSPA) designed for anti-FPV mitigation, high linearity, and thermal robustness under extreme duty cycles.
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Portable passive RF detection module compatible with DJI O4 protocol bands, optimized for swarm defense payload integration.
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High-frequency microwave power amplifier optimized for radar jamming, directional telemetry suppression, and C-UAS arrays.
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Rechargeable high-lumens tactical optical illuminator featuring real-time power display and aviation-grade aluminum housing.
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Tailored 1160MHz–1260MHz L-band RF power amplifier module delivering stable signal disruption and sub-nanosecond pulse response.
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Sub-GHz 428-438MHz high-power transmitter module featuring Gallium Nitride efficiency for extended range communication blocking.
Get CatalogAs San Francisco and the broader Bay Area reinforce their position as the worldwide epicenter for Artificial Intelligence, Autonomous Robotics, Defense Innovation, and Next-Generation Microwave Electronics, power reliability is no longer an afterthought—it is a critical design constraint.
San Francisco’s pioneer autonomous vehicle fleets, delivery rovers, and airborne drone labs demand lightweight, energy-efficient DC-DC power converters and GaN RF communication modules. Our CE certified power modules provide compact footprint envelopes with minimal thermal losses, surviving high vibration environments under MIL-STD-810 guidelines.
With increasing threats to high-value infrastructure across the Port of San Francisco, Bay Area airports, and commercial campuses, our high-power Solid-State Power Amplifiers (SSPA) operating across 433MHz to 7.2GHz enable multi-frequency counter-drone detection and spectrum control with sub-2-second analysis speeds.
Deploying AI models at the edge in South San Francisco and Silicon Valley requires rugged rackmount AC-DC power supplies and uninterruptible power systems (UPS). Our modular backplane designs ensure zero-millisecond transfer times, active power factor correction (PFC > 0.99), and strict CE Directive compliance.
Information Gain Insight for Bay Area Hardware Integrators: Traditional Silicon-based (Si) power amplifiers hit thermal and efficiency walls above 100W output in compact housings. By utilizing advanced Gallium Nitride on Silicon Carbide (GaN-on-SiC) high-electron-mobility transistors (HEMT), our CE-marked power modules achieve power density increases up to 45% with junction operating temperatures rated for long-cycle reliability.
A comparative assessment designed for San Francisco defense primes, systems integrators, and procurement officers evaluating power modules against international standards.
| Performance Parameter | GaN RF Power Modules (Our Factory) | Conventional Silicon LDMOS | San Francisco Integration Benefit |
|---|---|---|---|
| Power Efficiency (PAE) | 55% - 70% | 30% - 40% | Lower heat dissipation, reduces cooling weight in autonomous payloads. |
| Frequency Spectrum | 400 MHz to 7.2 GHz (Continuous) | Restricted bandwidth (< 3 GHz) | Covers full FPV, Wi-Fi 6E, and C-band anti-drone defense vectors. |
| Operating Temperature | -40°C to +85°C Baseplate | -20°C to +65°C Baseplate | Ensures reliable outdoor operational continuous duty in coastal environments. |
| CE & EMC Compliance | EMC 2014/30/EU & RED 2014/53/EU | Basic Commercial Marking | Streamlines import paperwork and accelerates product launch in Northern California. |
| Form Factor Weight | Ultra-compact (Portable 60g up to 80W bricks) | Heavy, bulky heatsink required | Ideal for lightweight mobile tactical gear and unmanned aerial vehicles (UAVs). |
San Francisco technology startups and scale-ups export globally from day one. Purchasing power modules that hold CE Certification (alongside FCC Part 15 and UL design intent) prevents dual-redesign overhead, allowing Bay Area hardware companies to ship seamlessly to European and Allied markets without supply chain disruption.
Engineering teams in San Francisco work under aggressive release cycles. Our manufacturing facility provides modified COTS (Commercial Off-The-Shelf) power options. By tweaking output rails, connector types, and hold-up times on proven base topologies, we shorten sample lead times to under 3 weeks.
Established in 1987 as a Veteran Owned Small Business (CAGE code 0P327), our manufacturing organization brings more than 100 combined years of power design and RF engineering expertise. Operating under a registered ISO 9001 quality management system with PJR and ANAB accreditation, every power module undergo rigorous burn-in, automated optical inspection, and thermal cycling prior to dispatch.
Qualified against MIL-STD-810 (environmental shock/vibration), MIL-STD-461 (EMI/EMC), and MIL-STD-1275 (DC vehicle transient protection).
Conduction, convection, and liquid-cooled cold-plate options designed to maintain optimal junction temperatures in tight enclosures.
Form-fit-function replacement guarantees for long-lifecycle industrial and defense hardware deployed in Northern California.
Clear, definitive engineering answers addressing compliance, delivery logistics, and technical customization.
Connect with our senior power application engineers to review your electrical specifications, request 3D CAD files, or receive a customized CE certified power module quotation.
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