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Hical Technologies Launches Indigenous Coreless BLDC Motor for Space

The Indian-made motor aims to eliminate import reliance for critical space-grade motion control components.

TechNewsReel Newsroom · September 2, 2026

Hical Technologies has launched an indigenous coreless Brushless DC (BLDC) motor engineered specifically for space applications. The development marks a significant step in reducing India's dependency on foreign imports for critical space-grade hardware.

According to company and industry reports, the motor was developed, qualified, and delivered entirely within India. By producing these motion control components locally, Hical Technologies aims to provide high efficiency and reliability capable of withstanding the harsh environments encountered in space missions.

Strategic Self-Reliance

The push for indigenous space-grade components is part of a broader strategic priority for India to enhance self-reliance in satellite and spacecraft manufacturing. Historically, the aerospace sector has relied heavily on global supply chains for high-precision hardware, leaving projects vulnerable to international trade fluctuations and geopolitical constraints. By shifting production inward, India seeks to secure its technological sovereignty in the orbital economy.

Precision in Orbit

Coreless BLDC motors are essential for the precision movements required in space, particularly within gimbal systems and antenna positioning mechanisms. Unlike traditional motors, coreless designs reduce cogging torque, allowing for smoother motion and higher accuracy. Local production of these components not only lowers the overall cost of spacecraft assembly but also increases the security and resilience of the domestic space supply chain.

Future Outlook

As India continues to expand its lunar and planetary exploration goals, the demand for qualified, locally sourced motion control systems is expected to grow. Industry observers will be watching to see how this indigenous motor performs in active mission environments and whether its success prompts further domestic development of other critical space-grade actuators and sensors.

Sources

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