Premium quality engineering with robust circuit control capabilities from our direct manufacturing lines.
Providing system-level integration for the next generation of smart manufacturing and automation.
Modern electrical infrastructures demand remote dispatching capabilities. The industry-wide transition toward IoT-enabled breakers enables centralized management rooms to dynamically trip, reset, and monitor current characteristics in real-time, eliminating physical hazards for maintenance engineers.
Utility-scale renewable energy storage and PV plants operating up to 1000VAC/1150VAC depend on high-voltage molded case circuit breakers. Acereare's ARM5HU and specialty solar circuit breakers offer secure isolating performance custom-built for high-elevation array systems.
Modern factories run continuous processes where sudden downtime is costly. Incorporating remote control mechanisms into your motor feeders avoids structural shutdown by using early thermal-magnetic alerts and predictive maintenance algorithms prior to overload tripping.
Acereare Electric, founded in 2015, possesses two wholly-owned manufacturing subsidiaries: "RuiRui Electric" and "KeRui Electric".
We are a professional original manufacturer integrating research and development, high-precision stamping, automated assembly, and stringent QA procedures. Specially specializing in molded case circuit breakers (MCCB), air circuit breakers (ACB), remote motorized mechanisms, and core stamping components. Boasting over 20 years of manufacturing craftsmanship inherited across generations, our system ranks among the top OEM/ODM hubs in China's low-voltage electrical capital.
A structured approach to precision electrical engineering and supply chain security.
One-stop service spanning 6 distinct structural processing technologies. Facilitated with high-precision production gear and testing instruments operating across 10 manual and automated assembly lines.
More than 50 R&D engineers with over 5 years of domain experience. Experts in solid 3D mechanical modelling for components, dynamic molding, and complex system layouts, delivering 50+ fresh designs yearly.
Owning two factories specializing in terminal component construction and complete system configurations. We synchronize our operations via integrated ERP and U8 logistics programs.
Our facilities leverage a testing lab loaded with 150+ measuring kits and 20+ specialized inspectors. Quality parameters are systematically tracked through integrated PLM, ERP, and MES programs.
Providing specialized solutions designed to meet critical challenges in the field.
Standard switchgears fail in extreme polar or high-latitude setups due to structural freezing. We apply low-temperature resistant metals, specialty low-temp dynamic lubricants, and thickened protective surface coatings. Each low-temp device is backed by physical verification reports demonstrating stable performance down to -40℃.
High relative humidity and atmospheric salt cause terminal corrosion in marine installations. We conduct comprehensive salt spray tests in our chambers—typically running 72 hours for complete systems and 48 hours for semi-finished components, ensuring reliable operations on coastal docks and offshore platforms.
At elevations exceeding 2000m, decreased air density reduces cooling efficiency and dielectric properties. Acereare delivers calibrated solutions using detailed high-altitude derating guides to preserve dielectric integrity and voltage clearance standards.
Residential structures depend on fast-tripping, highly selective MCCBs to shield consumer appliances from overcurrent conditions. Our compact, din-rail compatible, and remote-controlled breakers simplify building automation integration.
In smelting plants or desert installations, ambient temperatures often exceed 50℃. We deploy high-temperature-rated thermal materials, insulating layers over the controller casing, and anti-corrosive treatments validated inside our 55℃ environmental chambers.
Smart grids require edge data acquisition. Acereare smart breakers integrate communication, metering, protection, and edge calculation, supporting industrial protocols to feed real-time usage data directly to centralized cloud environments.
The electrical distribution sector is transitioning from electromechanical isolation to solid-state, software-defined power management. Acereare is currently investing in microsecond-level solid-state remote switch topologies that minimize arcing damage and extend mechanical life.
Our upcoming product lines feature native 5G, LoRa, and optical-ethernet interfaces embedded within the circuit breaker housing. This architecture enables cloud-based preventative diagnostics, monitoring contact erosion, coil temperatures, and mechanical spring aging to alert personnel before failures occur.
Next-Gen Focus: Predictive Analytics Integration
Implementing edge-AI microcontrollers to predict contact lifespan based on historical thermal cycle interruptions.
Every Acereare switchgear is manufactured under strict quality standards to ensure international compliance.
Accelerating time-to-market with customized, high-reliability switchgear solutions.
Stand out in your market with tailored laser-printed logos, custom enclosure branding, and professional packaging designs. Acereare partners with you to develop localized catalogs and datasheets that support your local distribution channels.
Leverage our modern factories as your overseas production center. We offer custom molding options with refundable tooling fees upon meeting volume thresholds, along with international testing reports to simplify regional approvals.
Partner directly with our 50+ member R&D team to engineer custom functional variants, including adjustable trip units, auxiliary contact profiles, and customized remote control modules.
A streamlined, five-step lifecycle process ensuring quality control and smooth international logistics.
Analyzing your environmental parameters, load profiles, and target certifications.
Formulating custom engineering drawings and internal material selection schedules.
Finalizing commercial agreements, production timelines, and target delivery dates.
Running parts through automated processing and systematic laboratory validation.
Arranging secure transport, handling customs documentation, and offering remote deployment support.
Answering major technical, regulatory, and mechanical questions about remote-controlled breakers.
Acereare Remote Controlled MCCBs (such as our ARM6Z and ARM5 series with electric operating mechanisms) interface via Modbus-RTU protocols using RS485 wiring, with options for Ethernet or wireless protocols. The embedded control module accepts digital commands to actuate a micro-motor. This motor compresses the main spring mechanism, enabling remote tripping, manual status checks, and resets. Status reporting is handled via auxiliary contacts, providing real-time feedback on trip status (Open, Closed, or Tripped) back to your central control panel.
Thermal-magnetic trip units use a bimetallic strip and electromagnetic coil to protect against overloads and short circuits. While reliable, they are subject to ambient temperature variations. Electronic LSIG trip units use current transformers (CTs) to digitally analyze the load wave. They offer precise adjustments for Long-time delay (L), Short-time delay (S), Instantaneous pickup (I), and Ground fault protection (G), ensuring optimal selectivity and protection coordination.
At altitudes above 2000m, low atmospheric density reduces heat dissipation and the dielectric strength of air. To prevent premature dielectric breakdown and overheating, we apply a high-altitude derating factor. This adjustments reduce the rated operational voltage (Ue) and rated continuous current (Iu). Acereare uses derating tables and specialized insulation materials to ensure safe performance at high elevations.
We test our units under IEC 60068-2-11 standards in controlled salt spray chambers. Complete circuit breakers are exposed to a 5% NaCl mist at 35°C for 72 hours, while critical metal internal components (busbars, stamping connection plates) undergo 48-hour testing. This ensures reliable rust prevention and avoids mechanical failures in coastal, marine, and high-humidity environments.
While remote electric operating mechanisms (like our ARM5 Series) are designed for modular installation, we recommend pre-assembling and testing the complete system at our factory. This ensures correct mechanical alignment, proper lubrication, and reliable remote actuation before installation in the field.
Complete your layout with high-capacity smart air breakers and components.