GLM-OCR Quantized GGUF

🔗 SHA sum: 8e521ad407ca135b311f385134f0f7fa | Updated: 2026-07-19



  • CPU: modern architecture (Zen 3 / Alder Lake minimum)
  • RAM: 32 GB highly recommended for 26B+ GGUF models
  • Disk Space: free: 80 GB on system drive for scratch space
  • Graphics: 12 GB VRAM minimum required for basic quantization

Awareness of Complexity

Our approach to document understanding is rooted in the intricate relationships between structure, semantics, and layout. It’s a landscape where traditional character recognition engines falter, yet GLM-OCR rises above with its novel Multi-Token Prediction (MTP) loss mechanism. This innovative framework not only boosts decoding throughput but also reduces system memory demands, making it an ideal solution for resource-constrained environments.

Technical Architecture

The core of GLM-OCR lies in its architecture, which integrates a 400M parameter CogViT visual encoder alongside a compact 500M parameter GLM language decoder. This synergy maximizes layout analysis precision and enables the framework to reconstruct complex documents with ease.

Key Specifications

Specification Detail
Total Parameters 0.9 Billion
Visual Encoder CogViT (400M)
Language Decoder GLM-0.5B (500M)
Output Formats Markdown, JSON, LaTeX

Limitations and Considerations

While GLM-OCR excels in various aspects, it’s essential to acknowledge its limitations. The framework may not be suitable for all types of documents or use cases, particularly those requiring extensive manual curation or high-resolution image processing.

Future Developments

As the field of document understanding continues to evolve, we’re committed to incorporating user feedback and advancing our technology. Future updates will focus on improving the framework’s ability to handle diverse document types, enhance its accuracy, and further reduce system memory demands.

Conclusion

GLM-OCR represents a significant breakthrough in the realm of document understanding, offering unparalleled precision and versatility. By embracing this innovative framework, we can unlock new possibilities for information extraction, structure preservation, and semantic analysis.

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