g-assismoraes/DeltaP2S-Qwen2.5-14B-P2S-Code-S13

TEXT GENERATIONPricing:Input $0.431 / Cached $0.0862 / Output $1.12Concurrent Unit Cost:1Model Size:14.8BQuant:FP8Context Size:32kTool Calling:SupportedPublished:Sep 4, 2026Architecture:Transformer Featherless Exclusive Cold

DeltaP2S-Qwen2.5-14B-P2S-Code-S13 is a 14.8 billion parameter language model developed by g-assismoraes, based on the Qwen2.5 architecture. This model is a merged checkpoint from a Qwen-aware Delta-P2S experiment, indicating specialized training. It is likely optimized for code-related tasks, given its naming convention and experimental origin, and supports a context length of 32768 tokens.

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Model Overview

The g-assismoraes/DeltaP2S-Qwen2.5-14B-P2S-Code-S13 is a 14.8 billion parameter language model built upon the Qwen2.5 architecture. This model represents a merged checkpoint derived from a specific Qwen-aware Delta-P2S experimental package. The naming convention, particularly "P2S-Code-S13," strongly suggests that this iteration has undergone specialized training or fine-tuning focused on code-related tasks.

Key Characteristics

  • Base Architecture: Utilizes the robust Qwen2.5 foundation.
  • Parameter Count: Features 14.8 billion parameters, offering a balance between capability and computational efficiency.
  • Context Length: Supports a substantial context window of 32768 tokens, beneficial for processing longer code snippets or complex programming problems.
  • Origin: It is the result of a "Delta-P2S" experiment, indicating a targeted approach to model development and optimization.

Potential Use Cases

Given its experimental origin and naming, this model is likely well-suited for:

  • Code Generation: Assisting developers in writing new code.
  • Code Completion: Providing intelligent suggestions during coding.
  • Code Understanding: Analyzing and explaining existing codebases.
  • Debugging Assistance: Identifying potential issues or suggesting fixes in code.

Further evaluation would be needed to confirm specific performance metrics and optimal applications within the coding domain.