EV · Telematics

Telematics Control Unit (TCU)

Connected telematics module with GPS/GNSS, GSM/4G, and CAN integration for fleet management, remote diagnostics and OTA updates.

ConnectivityGPS + GSM/4G + CAN
Application2W / 3W / 4W EV
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EV · Control

Vehicle Control Unit (VCU)

Central powertrain and energy management controller — interfaces with BMS, MCU, TCU and cluster via CAN for complete vehicle-level coordination.

InterfaceCAN Bus + I/O
Application2W / 3W / L-Cat EV
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EV · Power

DC-DC Converter

High-efficiency DC-DC step-down converter for EV auxiliaries — converts traction pack voltage to 12V for accessories, cluster, lights and control electronics.

Input Voltage48 – 96 V
Output12 V / High Efficiency
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EV · Security

Smart Locking System

Integrated electronic locking solution for EV 2-wheelers — supports keyless entry, anti-theft, remote lock/unlock and CAN-based integration with TCU.

InterfaceCAN + BLE / RF
ApplicationEV 2-Wheeler
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EV electric vehicle CAN-unified ecosystem MPI automotive

All Products Work Together

Cluster, TCU, VCU and DC-DC share a common CAN architecture — enabling fast integration, simplified wiring and unified diagnostics across your EV platform.

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Hydrogen Energy Systems

Zero-emission energy solutions for transport and industrial applications — on-site generation and integrated fuel cell power.

From electrolysis-based H₂ generation to PEM fuel cell conversion, MPI's hydrogen vertical removes dependency on external gas supply chains — giving OEMs a self-contained, logistics-free path to clean power.

Electrolysis H₂ H₂ Storage PEM Fuel Cell H₂O only

H₂O Gas Generator

The H₂O Gas Generator produces high-purity Hydrogen (H₂) and Oxygen (O₂) gases through the electrolysis of water, eliminating the need for conventional gas cylinders and ensuring an on-demand gas supply for industrial and laboratory applications.

TechnologyWater Electrolysis
OutputHigh-Purity H₂ + O₂
Key BenefitOn-Demand, Space-Saving
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PEM Fuel Cell System hydrogen automotive zero emission H₂ · Fuel Cell

PEM Fuel Cell System – Automotive

The Proton Exchange Membrane (PEM) Fuel Cell System converts Hydrogen and Oxygen into electrical energy through an electrochemical reaction, producing electricity with water and heat as the only by-products — a clean, efficient, and sustainable power source for next-generation mobility solutions.

TechnologyPEM Fuel Cell
EmissionZero Emission (H₂O only)
RangeExtended vs Battery-Only
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Green hydrogen clean energy zero emission

End-to-End Hydrogen Platform

From on-site H₂ generation to integrated PEM fuel cells — MPI's hydrogen vertical delivers a complete, logistics-independent clean energy solution for mobility and industry.

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Why Choose MPI for Green Mobility Solutions

From Embedded Intelligence to Hydrogen Propulsion — MPI enables OEMs to accelerate the transition towards clean, connected, and sustainable mobility solutions.

System Integration

  • PEM Fuel Cell Integration
  • Battery Energy Storage Systems
  • Vehicle Control Units (VCU)
  • Power Distribution Units (PDU)
  • Thermal Management Systems
  • Telematics & Connectivity

OEM Benefits

  • Faster Time-to-Market
  • Reduced Development Risk
  • Automotive Grade Quality
  • Scalable Engineering Support
  • System Validation & Integration
  • Competitive Cost Solutions

Strategic Partnership

  • Localization & Cost Optimization
  • Long-Term Technology Partnership
  • Flexible Solution Architecture
  • Multi-Platform Support
  • Future-Ready Technology Roadmap
  • Dedicated Technical Support

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H₂O Gas Generator

Industrial Applications

Overview

The H₂O Gas Generator produces high-purity Hydrogen (H₂) and Oxygen (O₂) gases through the electrolysis of water, eliminating the need for conventional gas cylinders and ensuring an on-demand gas supply for industrial and laboratory applications.

Key Features

  • On-Demand Gas Generation – Produces Hydrogen and Oxygen only when required, improving operational safety and reducing storage requirements.
  • Electrolysis-Based Technology – Utilizes the proven electrolysis process to split water molecules into Hydrogen and Oxygen gases.
  • High Purity Output – Delivers high-purity gases suitable for precision industrial, laboratory, and research applications.
  • Environment Friendly – Uses water as the primary raw material, resulting in a clean and sustainable gas generation process.
  • Compact and Space Saving Design – Eliminates bulky gas cylinders and minimizes installation space.
  • Low Operating Cost – Reduces recurring expenses associated with gas transportation, handling, and cylinder replacement.
  • Enhanced Safety – Generates gases at controlled rates with integrated safety mechanisms for pressure and flow monitoring.
  • Automatic Operation – Equipped with intelligent control systems for automatic start, stop, and production regulation based on demand.
  • Low Maintenance Requirement – Designed for long service life with minimal routine maintenance.
  • Scalable Capacity Options – Available in various production capacities to meet different application requirements.

Technology Specifications

  • Technology: Water Electrolysis (PEM)
  • Output Gas: High-Purity H₂ + O₂
  • Purity Level: 99.9%+
  • Production Mode: On-Demand
  • Safety Rating: Industrial Grade
  • Power Supply: 3-Phase AC

Typical Applications

  • Fuel Cell Research and Development
  • Metal Processing and Heat Treatment
  • Glass Industry
  • Laboratory and Analytical Equipment
  • Hydrogen Burner Systems
  • Renewable Energy Projects
  • Educational and Research Institutions

Why Choose H₂O Gas Generator?

Eliminate gas cylinder logistics with on-demand hydrogen and oxygen generation. Perfect for fuel cell research, industrial processing, and any application requiring clean, high-purity gases. Sustainable, cost-effective, and engineered for safety.

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PEM Fuel Cell System

PEM Fuel Cell System

Automotive Applications

Overview

The Proton Exchange Membrane (PEM) Fuel Cell System converts Hydrogen and Oxygen into electrical energy through an electrochemical reaction, producing electricity with water and heat as the only by-products. The technology offers a clean, efficient, and sustainable power source for next-generation mobility solutions.

Key Features

  • Zero Emission Power Generation – Produces only water vapor as exhaust, enabling environmentally friendly vehicle operation.
  • High Energy Efficiency – Delivers higher energy conversion efficiency compared to conventional internal combustion engines.
  • Fast Refueling Capability – Hydrogen refueling can typically be completed within minutes, similar to conventional fuel vehicles.
  • High Power Density – Compact fuel cell stack design provides high power output with reduced packaging space.
  • Long Driving Range – Supports extended vehicle range compared to battery-only electric vehicles in heavy-duty applications.
  • Rapid Dynamic Response – Provides quick response to varying load demands during acceleration and regenerative operation.
  • Scalable Architecture – Suitable for passenger vehicles, commercial vehicles, buses, trucks, off-highway equipment, and specialty mobility platforms.
  • Low Noise and Vibration – Quiet operation significantly improves passenger comfort and reduces NVH levels.
  • Modular Stack Design – Enables flexible system sizing based on vehicle power requirements.
  • Integrated Thermal and Water Management – Optimized cooling and humidification systems ensure reliable performance across varying operating conditions.
  • High Reliability and Durability – Designed for demanding automotive operating environments with extended service life.
  • Hybrid Energy Storage Compatibility – Seamlessly integrates with lithium-ion battery systems and supercapacitors for peak load support and regenerative braking.

Typical System Components

  • PEM Fuel Cell Stack
  • Hydrogen Storage System
  • Air Supply Compressor & Filtration
  • Thermal Management System
  • Humidification System
  • DC/DC Power Converter
  • Battery Energy Storage System
  • Fuel Cell Control Unit (FCCU)
  • Hydrogen Safety & Monitoring

Typical Automotive Applications

  • Passenger Fuel Cell Electric Vehicles (FCEV)
  • City and Intercity Buses
  • Heavy Commercial Vehicles & Trucks
  • Material Handling Equipment
  • Construction & Mining Vehicles
  • Agricultural Machinery
  • Marine Propulsion Systems
  • Range Extender Solutions for EVs

Key Benefits

  • Reduced carbon footprint and zero tailpipe emissions
  • Faster refueling compared to battery charging
  • Longer operational range for heavy-duty applications
  • Lower operating noise and vibration
  • Suitable for heavy-duty and continuous-duty applications
  • Supports future hydrogen economy infrastructure

Why Choose PEM Fuel Cell System?

Enable zero-emission mobility with proven PEM fuel cell technology. Perfect for commercial fleets, buses, and heavy-duty vehicles requiring extended range and fast refueling. Engineered for automotive reliability with seamless battery integration and modular scalability.

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