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Put up to 4 models beside each other — token prices, context windows, capabilities and provider, from the same catalogue the model pages read.

  1. Veo 3.1 4K (Fast)GoogleRemove
  2. Gemini 3.7 FlashGoogleRemove
  3. DeepSeek V4.1 FlashDeepSeekRemove
veo3.1-fast-4k vs gemini-3.7-flash vs deepseek-v4.1-flash
AttributeVeo 3.1 4K (Fast)veo3.1-fast-4kGemini 3.7 Flashgemini-3.7-flashDeepSeek V4.1 Flashdeepseek-v4.1-flash
Pricing
Request$0.3225 / request
BillingPay Per Request
Cache Write (5m)Not applicable$0.375 / 1M$0.30 / 1M
Cache Write (1h)Not applicable$0.375 / 1M$0.30 / 1M
Cache ReadNot applicable$0.375 / 1M$0.30 / 1M
Input$0.375 / 1M$0.30 / 1M
Output$1.88 / 1M$1.20 / 1M
Web Search$0 / 1M$0 / 1M
Context
Max contextN/A1M1M
Max outputN/AN/AN/A
Capabilities
VisionNoYesYes
Function CallingNoYesYes
JSON ModeNoYesYes
StreamingYesYesYes
Catalogue
ProviderGoogleGoogleDeepSeek
Categoryvideochatchat
Charge typePay Per RequestPay As You GoPay As You Go
Released
Description
SummaryVeo 3.1 is a state-of-the-art generative AI video model developed by Google DeepMind (part of the broader Gemini/Flow ecosystem). It builds on the earlier Veo models to make AI-generated video creation more realistic, expressive, and controllable.Gemini 3.7 Flash is Google's fast multimodal model designed for agentic workflows, coding, and complex multi-step reasoning. It combines responsive inference with reliable problem-solving capabilities, making it well suited for interactive and production-scale applications. Optimized for speed and dependable multi-step execution, Gemini 3.7 Flash is a strong choice for coding assistants, autonomous agents, and high-throughput workflows that require both low latency and capable reasoning.DeepSeek V4.1 Flash is a cost-efficient sparse Mixture-of-Experts (MoE) model in DeepSeek's V4.1 family, optimized for coding, reasoning, and agentic workflows. Despite its efficiency-focused positioning, DeepSeek reports that it surpasses the previous V4 Pro in performance, inference speed, and overall task completion time. The model is particularly strong at long-horizon, multi-step execution, making it well suited for coding agents, complex problem solving, and autonomous workflows that must reliably carry tasks through to completion.