Gemini 3.8 Flash Cyber vs Sonar Deep Research
At a Glance
| Compare | Gemini 3.8 Flash CyberGoogle DeepMind | Sonar Deep ResearchPerplexity |
|---|---|---|
| Pricing and Limits | ||
| Input priceFrom · USD / 1M tokens | Not reported | $2.00Openrouter ↗ · Sep 22, 2026 |
| Output priceFrom · USD / 1M tokens | Not reported | $8.00Openrouter ↗ · Sep 22, 2026 |
| Context windowMaximum documented tokens | Not reported | 128K |
| Model facts checked | Sep 2, 2026View model evidence → | Aug 29, 2026View model evidence → |
Token prices are the lowest available sourced USD rates; input and output may use different providers. Cost ranking estimates output spend on LiveBench, not a full request bill. Ranking methodology →
Available Benchmarks
Side-by-Side Facts
| Field | Gemini 3.8 Flash Cyber | Sonar Deep Research |
|---|---|---|
| Developer | Google DeepMind | Perplexity |
| Family | Gemini 3 | Sonar |
| Model | Gemini 3.8 Flash Cyber | Sonar Deep Research |
| Version | Gemini 3.8 Flash Cyber | Sonar Deep Research |
| Lifecycle | active | active |
| Released | 2026-09-02 | Unknown |
| Knowledge cutoff | Unknown | Unknown |
| Input modalities | Text | Text |
| Output modalities | Text | Text |
| Context window | Unknown | 128K |
| Total parameters | Unknown | Unknown |
| Active parameters | Unknown | Unknown |
| License | Unknown | Unknown |
| Open weights | No | No |
| API available | No | Yes |
| Self-hostable | No | No |
| Provider access | Unknown | Openrouter (Standard), Perplexity (Standard) |
| Capabilities | automated-patching, cybersecurity, reasoning, vulnerability-detection | chat, citations, reasoning, research, search |
Gemini 3.8 Flash Cyber Capabilities
Sonar Deep Research Capabilities
Primary Evidence
Sources and Freshness
Questions
Gemini 3.8 Flash Cyber vs Sonar Deep Research FAQs
Is Gemini 3.8 Flash Cyber or Sonar Deep Research better for coding?+
This comparison does not currently contain a protocol-matched coding benchmark for both Gemini 3.8 Flash Cyber and Sonar Deep Research, so Model Markets cannot name a coding leader from pricing, context size, or capability labels alone.
Which is cheaper, Gemini 3.8 Flash Cyber or Sonar Deep Research?+
Only Sonar Deep Research has a directly sourced input price: $2.00 per million tokens. Only Sonar Deep Research has a directly sourced output price: $8.00 per million tokens.
Which has a larger context window, Gemini 3.8 Flash Cyber or Sonar Deep Research?+
Neither model has a larger sourced context window in this comparison. Gemini 3.8 Flash Cyber is — and Sonar Deep Research is 128K.
Which performs better in benchmarks, Gemini 3.8 Flash Cyber or Sonar Deep Research?+
There is no overall benchmark winner: At least two independently verified, protocol-matched benchmarks are required for an overall winner.
Can Gemini 3.8 Flash Cyber or Sonar Deep Research be self-hosted?+
Both models have the same recorded self-hosting status: unsupported. Gemini 3.8 Flash Cyber is not marked open weight; Sonar Deep Research is not marked open weight.
Can Gemini 3.8 Flash Cyber and Sonar Deep Research understand images?+
Gemini 3.8 Flash Cyber is not documented with image input; Sonar Deep Research is not documented with image input. This reflects supported input modalities, not vision quality.
Which can generate longer answers, Gemini 3.8 Flash Cyber or Sonar Deep Research?+
Neither has a larger sourced maximum output. Gemini 3.8 Flash Cyber is — and Sonar Deep Research is —.
Do Gemini 3.8 Flash Cyber and Sonar Deep Research support reasoning and tool use?+
Gemini 3.8 Flash Cyber: reasoning. Sonar Deep Research: reasoning. Feature support does not establish relative quality.
Which is available from more inference providers, Gemini 3.8 Flash Cyber or Sonar Deep Research?+
Gemini 3.8 Flash Cyber has 0 sourced provider routes; Sonar Deep Research has 2, so Sonar Deep Research has broader tracked availability.
Which offers better value, Gemini 3.8 Flash Cyber or Sonar Deep Research?+
There is no universal value winner. Compare the input and output prices above with the matched benchmark result for your workload: cheaper tokens can be offset by different quality, token usage, latency, or provider availability.