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Model Detail

Wan-AI logo

Wan2.2-I2V-A14B

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Provider: Wan-AICategory: imagePipeline: image-to-videoParameters: 14B
DB Score
0.8
Downloads
11K
Likes
661
Day
+0.0%
Week
+0.0%
Month
+0.0%
Overview

Wan2.2-I2V-A14B is an image generation model with 14B parameters released by Wan-AI. The model is registered under the image-to-video pipeline tag on Hugging Face.

Technical

Wan2.2-I2V-A14B ships with 14B parameters.

Use Cases

Wan2.2-I2V-A14B is best fit for text-to-image generation and creative iteration. It is a less obvious choice for production photography pipelines that need exact reproducibility. Treat this as a starting matrix rather than a benchmark verdict — the right deployment usually depends on the specific evaluation suite that mirrors your workload.

Download History
Research Paper
arXiv: 2503.20314→
Model Info
Citations1,607 (531 influential)
Recent newsView all news →
Related News
arxiv3d ago

Collaborative Few-Step Distillation and Low-Bit Quantization for Wan2.2 Dual-Expert Video Diffusion Models

arXiv:2606.00658v1 Announce Type: cross Abstract: Large video diffusion models achieve strong visual quality but remain expensive to deploy because each sample requires many denoising steps and a large resident parameter footprint. This paper studies a deployment-oriented compression pipeline for Wa

arxivneutral9d ago

Timestep-Aware SVDQuant-GPTQ for W4A4 Quantization of Wan2.2-I2V

arXiv:2605.27003v1 Announce Type: cross Abstract: W4A4 quantization of large video diffusion Transformers offers substantial memory savings but is hindered by two main challenges: sparse large-magnitude activation outliers, and strongly timestep-dependent activation distributions across the multi-st

arxiv9d ago

Tail-Aware HiFloat4: W4A4 Post-Training Quantization for Wan2.2

arXiv:2605.26628v1 Announce Type: new Abstract: This report describes Tail-Aware HiFloat4, our submission to the low-bit text-to-video generation quantization challenge. Our method adapts the public ViDiT-Q post-training quantization pipeline to Wan2.2 under the HiFloat4 numerical format. We quantiz

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