Novram Novram

CE Certified Wireless Charger Factory & Supplier

Industrial-Grade Wireless Power Transfer Modules, PCBA Customization, and High-Performance Electronic Solutions for Global OEM/ODM Partners

Global Wireless Charger Industry: Commercial & Industrial Landscapes

An authoritative analysis of electromagnetic induction, resonant coupling, and the rapid transition toward high-efficiency global standards.

Global Market Projections
The global wireless charging market is projected to grow from USD 25.4 billion to over USD 134 billion by 2030, registering a CAGR of over 24%. This trajectory is fueled by consumer electronics adoption, the electrification of automotive cabins, and the urgent demand for contactless power transfer in hostile industrial environments.
Regulatory Compliance & CE Standards
European markets mandate strict adherence to safety and electromagnetic radiation limits. As a premier manufacturer, our production lines follow European Union Directives, specifically RED (Radio Equipment Directive 2014/53/EU) and EN 62368-1 safety standards, ensuring that high-voltage power output remains completely safe for everyday and industrial deployment.
The Qi2 & Magnetic Resonance Shift
The transition from standard Qi inductive charging to the new Qi2 standard featuring Magnetic Power Profile (MPP) technology has redefined device coupling. Our factory integrates advanced alignment magnets and high-efficiency induction coils to minimize transmission losses, reduce heating, and guarantee optimal energy transfers.

Engineered to Order: Uncompromising Technical Statistics

How our manufacturing infrastructure translates raw capability into stable, world-class electromagnetic power modules.

9+
Years Industry Experience
3,860㎡
Modern Production Facility
76
Expert R&D Engineers
100%
Functional & Burn-In Testing

Technological Framework of CE Certified Wireless Chargers

Deciphering electromagnetic field management, efficiency loops, and PCBA layout optimizations.

1. Multi-Coil Arrays and Resonance Control

In high-power wireless charging applications, keeping alignment high and power loss low is critical. Our engineering team achieves up to 85% transmission efficiency by matching the transmitter coil's resonance frequency to the receiver's resonant tank circuit (operating precisely between 110 kHz and 205 kHz). Leveraging multi-layer PCB design principles adapted from high-speed DDR5 memory routing, we suppress parasitic inductance and maintain a clean waveform even during maximum load states.

2. Foreign Object Detection (FOD)

Safety is the primary metric evaluated by European standards agencies. Our CE-compliant wireless chargers incorporate a real-time FOD algorithm inside the MCU firmware. By measuring changes in resonant frequency and quality factor (Q-factor), the charger can detect coins, keys, or foil wrappers within milliseconds, immediately terminating power transmission to prevent thermal runaway and potential fire hazards.

3. Advanced Thermal Mitigation

High-wattage inductive charging produces heat both in the transmitter coil and the receiving device. Utilizing custom copper heat sinks, phase-change thermal interface materials (TIM), and aluminum casing designs, our wireless chargers dissipate heat at rate coefficients exceeding standard industry benchmarks. This keeps operating temperatures below 40°C, extending the lifespan of both the charger and the battery inside the device.

Localized Application Scenarios & Global Solutions

Deploying specialized power transfer modules where wires and traditional connectors fail.

Automotive & Cabin Integration
Smart Cabin Power Modules
Custom-designed, in-vehicle wireless chargers require strict automotive compliance (such as CISPR 25 Class 5) to prevent EMI interference with car radios and keyless entry systems. Our factory designs customized PCBA modules featuring dual-coil layouts that mount seamlessly into center consoles, ensuring reliable power delivery regardless of road vibration.
Industrial Automation & Robotics
Sealed Industrial AGV Charging
For autonomous guided vehicles (AGVs) operating in dusty, damp, or chemical-intensive warehouses, physical contacts wear down rapidly. We design high-efficiency, hermetically sealed 50W to 200W wireless power transfer systems. The lack of open contacts eliminates spark risks and prevents connector corrosion altogether.
Smart Healthcare & Medical
Sterilized Medical Charging Hubs
Medical instruments must undergo aggressive sterilization cycles. Standard USB or DC ports present ingress paths for fluids. By applying our high-precision FPC (Flexible Printed Circuit) coil assemblies and sealed potting compounds, we deliver complete wireless charging solutions that allow medical gear to remain fully sealed and waterproof.

Novram Electronics: Our State-of-the-Art Production Base

How our foundational expertise in complex memory module SMT translates to high-yield wireless charger manufacturing.

Novram Electronics Co., Ltd. is a professional DDR5 memory manufacturer based in Shenzhen, China, dedicated to delivering high-performance DRAM solutions for global OEM, ODM, and industrial customers. Established in 2016, the company has grown into a reliable supplier of DDR5 memory modules, serving partners across consumer electronics, industrial automation, embedded systems, gaming, and enterprise computing.

Operating from a modern 3,860㎡ manufacturing facility, Novram integrates advanced production equipment, strict quality management, and continuous R&D innovation to ensure every memory module and wireless charging module meets international performance and reliability standards. Our experienced engineering team focuses on developing high-speed, stable, and energy-efficient products for diverse computing and power applications.

With 9 years of industry experience and 7 years of export experience, Novram exports products to customers in more than 40 countries. The company achieves an annual export revenue of approximately US$18.6 million, supported by an efficient global supply chain and responsive customer service.

Quality is at the core of everything we do. Every DDR5 memory module and wireless charger module undergoes 100% functional testing, compatibility testing, burn-in testing, temperature testing, and aging verification before shipment. Our quality control department consists of 42 professional inspectors, ensuring consistent product performance and long-term reliability.

Novram maintains strong partnerships with over 860 qualified supply chain partners, enabling stable production capacity and reliable component sourcing. Our primary customers include memory module brands, computer manufacturers, industrial PC companies, system integrators, distributors, wholesalers, and OEM/ODM partners worldwide.

Innovation drives our competitiveness. Our dedicated R&D center is staffed by 76 experienced engineers, allowing us to introduce approximately 138 new products each year. We provide comprehensive OEM, ODM, private label, logo printing, packaging customization, capacity customization, firmware optimization, and product specification customization to meet different market requirements.

Technology Roadmap: Wireless Power 2.0 & Beyond

The progression from close-proximity induction to long-range wireless power networks.

Phase 1: GaN Transistors Integration
By replacing traditional silicon MOSFETs with Gallium Nitride (GaN) switches in our transmitter boards, we can increase switching frequencies up to 500 kHz. This decreases SMT footprint requirements by 40% while pushing total system efficiency past the 90% mark.
Phase 2: Multi-Device Spatial Fields
Developing dynamic beam-forming arrays that utilize phase-shifted transmitter structures. This allows a single charging pad to energize multiple devices situated several centimeters away without requiring critical alignment.
Phase 3: Deep Resonant Coupling
Advancing our research into high-Q magnetic resonance coupling to allow efficient power transfer over distances of 10 to 50 centimeters, ideal for embedded smart home furniture and automated machinery.

Technical & Regulatory FAQ

Get direct answers to technical queries, compliance benchmarks, and custom manufacturing solutions.

What specific standards must a wireless charger meet for CE certification?
To carry the CE mark, a wireless charger must comply with the Radio Equipment Directive (RED) 2014/53/EU. This covers health and safety (EN 62368-1, EN 62311/EN 50364 for EMF human exposure), Electromagnetic Compatibility (EN 301 489 series), and radio spectrum efficiency (EN 303 417 for wireless power transmission). Our manufacturing facility handles the documentation, testing, and declaration of conformity for all custom OEM runs.
How does your factory manage heat dissipation in high-power (15W+) transmitters?
We utilize a multi-pronged thermal strategy: 1) low-resistance Litz wires for induction coils to reduce copper loss; 2) high-permeability magnetic shields that direct flux away from heat-sensitive ICs; 3) thermal vias and thick copper layers in the PCBA design to conduct heat to the aluminum enclosure; 4) thermal sensor algorithms that throttle power transmission if the ambient temperature crosses pre-defined thresholds.
Can you customize wireless charger PCBA boards to custom product shapes?
Yes. Leveraging our 9 years of high-speed SMT assembly and custom FPC (Flexible Printed Circuit) capabilities, we design custom shape PCBAs (round, ultra-thin, split-type, or curved) to fit seamlessly into client enclosures. Our team of 76 R&D engineers supports comprehensive OEM/ODM customization from schematic design to mass production.
What testing procedures are used to verify wireless charger safety before export?
Our quality control department utilizes automated test equipment (ATE) to run 100% of our products through a rigorous testing cycle: 1) load test over the full wattage spectrum; 2) Foreign Object Detection response time verification; 3) high-voltage breakdown protection; 4) thermal camera profiling; 5) aging verification chamber tests under varying environmental humidity and temperatures.