Domestic Substitution of EncodersThe trend refers to the gradual shift in application scenarios within the fields of industrial automation, construction machinery, and intelligent equipment—where imported encoders were previously widely adopted—toward the use of domestic encoder solutions.
This trend is not a short-term phenomenon, but rather the result of a convergence of factors including the industrial environment, engineering practices, and technological maturity.
In engineering projects, encoders are critical measurement and control components.
In recent years, companies have significantly increased their emphasis on delivery schedule predictability and consistent supply capabilities, which has become one of the key factors driving domestic substitution.
From an engineering application perspective, domestically produced encoders have established a practical foundation for implementation in the following areas:
Mainstream industrial resolution and accuracy coverage
Multi-protocol compatibility capability
Vibration resistance, impact resistance, and other engineering adaptability
Customization capabilities tailored to specific operating conditions
In numerous industrial projects, domestically produced encoders have undergone long-term operational validation.
Modern industrial equipment places greater emphasis on:
Costs are controllable
Fast delivery
System-level adaptation
Domestic encoders offer distinct advantages in project collaboration and technical responsiveness, better aligning with on-site requirements.
In practical applications, the trend toward domestic substitution is particularly evident in the following product categories:
Draw-Wire Displacement Encoder
Incremental Encoder (Industrial General-Purpose Type)
Absolute encoders for construction machinery
Multi-Protocol Industrial Bus Encoder
In extreme high-end or specialized process applications, imported encoders still hold a certain market share, but mainstream applications are gradually shifting toward domestic solutions.
Currently, domestic encoder replacements have achieved large-scale application in the following fields:
Construction Machinery and Port Equipment
Metallurgical, Mining, and Heavy-Duty Equipment
Automated Production Lines and Logistics Systems
New Energy and Power Equipment
These scenarios demand high reliability while simultaneously emphasizing project controllability and responsiveness.
It must be objectively acknowledged that domestic encoder substitution does not equate to “complete replacement”:
Ultra-high precision laboratory-grade applications
Extreme environments or specialized process equipment
In these fields, imported encoders still hold an advantage.
The core of domestic substitution lies in “engineering feasibility in suitable scenarios,” not blind replacement.
From an industry development perspective, the future trend of domestic encoder substitution will manifest as follows:
Domestic products cover higher precision grades.
Enhanced Industrial Bus and System-Level Adaptability
Multi-turn absolute position and battery-free technology continue to mature
Domestic solutions have become one of the default options for engineering projects.“
Overall, the trend toward domestic encoder substitution represents a rational choice validated repeatedly through engineering practice.
In numerous industrial applications, domestically produced encoders have evolved from being merely an “alternative option” to becoming a “long-term engineering solution.”
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