Novram
The intersection of solid-state lighting, high-speed microprocessor controllers, and reliable semiconductor components defines the landscape of the modern smart illumination sector.
Global commercial and industrial lighting infrastructures are undergoing a massive technological shift. The traditional light bulb has evolved into a sophisticated smart node, embedded within a larger IoT (Internet of Things) ecosystem. Modern architectural, commercial, and roadway lighting fixtures are now expected to host communication interfaces (Wi-Fi, BLE, Zigbee, Thread, DALI, or KNX), presence detectors, ambient light sensors, and power monitoring circuits.
To support this high-performance computing at the edge, smart lighting controllers, gateways, and driver circuits demand robust semiconductor designs. Stable printed circuit boards (PCBs), efficient thermal management systems, and high-quality DRAM or flash memory components are vital to processing data for thousands of individual addressable luminaires in commercial towers and warehouse environments.
An established industry pioneer supplying high-reliability memory modules, advanced PCBs, and semiconductor solutions driving global industrial ecosystems.
Operating a state-of-the-art 3,860㎡ manufacturing facility in Shenzhen, China. Our facilities feature high-speed SMT assembly lines, automated optical inspection (AOI), and environmental test chambers to ensure peak hardware performance.
Every product undergoes 100% functional testing, compatibility testing, burn-in testing, temperature testing, and aging verification. Backed by 42 professional inspectors to guarantee consistent operational longevity.
With 9 years of industry experience and 7 years of export experience, we supply partners in 40+ countries. Our annual export revenue stands at approximately US$18.6 million.
Innovation dictates our market leadership. Our dedicated R&D hub is staffed by 76 experienced engineers who develop and launch approximately 138 new products every year. We maintain strategic alliances with over 860 qualified supply chain partners, enabling secure component supply chains, stable raw material pricing, and reliable lead times.
Novram Electronics provides end-to-end OEM, ODM, private labeling, logo printing, custom packaging, physical layout adjustments, custom firmware design, and component validation to meet our clients' rigorous technical specifications. We serve memory module brands, computer manufacturers, industrial PC builders, system integrators, wholesalers, and smart technology solution providers worldwide.
Year Established
Modern Production Space
Annual Export Revenue
R&D Engineers / Annual New Products
Understanding the challenges and integration vectors of industrial-grade IoT systems, controls, and high-durability power management units.
Industrial settings require robust smart lighting networks capable of operating 24/7 in harsh conditions. High-bay warehouse lights, hazardous area luminaires, and streetlights are switching from legacy fixtures to intelligent IoT systems. These systems use mesh networks where each luminaire acts as a repeater, sending operational data, power consumption statistics, and occupancy events to a centralized edge server.
These complex operations demand specialized processing hardware. Intelligent light nodes require embedded controllers built on multi-layer PCBs with integrated heat dissipation systems. The controller boards must feature localized memory blocks to log device history, diagnostic metrics, and scheduling algorithms locally. This helps maintain smart functions even during network outages.
Modern commercial buildings are adopting Human-Centric Lighting (HCL) systems to optimize indoor light spectra to align with natural circadian rhythms. These systems dynamically adjust both brightness and color temperatures throughout the day, which has been shown to improve workplace focus, productivity, and overall comfort.
Realizing HCL requires microcontrollers to compute precise PWM (Pulse Width Modulation) dimming curves across multiple LED channels (Warm White, Cool White, and colored channels). This places higher operational demands on local drivers and control circuits. The system requires high-quality PCBs and heat management components to maintain colour consistency and prevent thermal drift in high-output fixtures.
"The reliability of a smart lighting network is only as strong as its weakest component. By implementing server-grade design principles—such as high-tolerance copper traces, thermal vias, and certified DRAM memory modules—we build controllers that prevent systemic failures in critical smart infrastructure installations."
As the smart lighting industry evolves, we are tracking several key technical transitions that are reshaping how lighting hardware is specified and manufactured:
Our rigorous quality control methodology ensures that every electronic module, memory stick, and driver assembly meets stringent regulatory standards worldwide.
We believe in preventive engineering. Our quality control processes do not start at the end of the line; they begin during the component sourcing phase. We source chips, regulators, capacitors, and substrates from certified suppliers. This ensures that every element of the assembly can withstand continuous industrial operation.
Our quality control department utilizes state-of-the-art testing systems. This includes high-resolution X-ray inspection for hidden solder joints on BGA packages, automated in-circuit testers (ICT) for checking resistor and diode values, and dedicated temperature cycling ovens to test module survival from -40°C to +85°C.
Our compliance programs are tailored to support international regulatory frameworks. We ensure all electronics and power control systems conform to global standards, including CE, RoHS, FCC, and UL requirements. Our lead-free HASL process guarantees compliance with strict environmental policies, making our modules and boards safe for export to markets in Western Europe, North America, and East Asia.
Get answers to the most common questions regarding our OEM/ODM design, engineering, and manufacturing capabilities.
We provide full customization, including customized PCB layouts, copper thickness adjustments, custom component sourcing, specialized firmware, private label printing, and bespoke product packaging. Our 76 R&D engineers will work directly with your design files to customize solutions for your specific application requirements.
We apply a 100% testing strategy, which includes automated optical inspection (AOI), functional circuit tests, thermal burn-in, and mechanical drop tests. Our 42 quality control inspectors verify every production run to ensure our assemblies comply with CE, FCC, RoHS, and industrial standards before shipment.
For custom PCB designs and circuit layout prototypes, testing samples are usually completed within 7 to 10 working days. Bulk production orders range from 15 to 25 days, depending on component availability and ordering volumes. We maintain a reliable supply chain network of 860 partners to keep production schedules on time.
Yes. Our mechanical and thermal engineering teams specialize in developing customized active and passive thermal cooling configurations. We design custom copper heat sinks, optimized heatsink fins, heat-pipe assemblies, and thermal baseplates to ensure critical control chips run safely under high ambient temperatures.