Seed 2.0 Code vs Muse Glimmer 30B

At a Glance

Compare
Seed 2.0 CodeByteDance Seed
Pricing and Limits
Input priceFrom · USD / 1M tokens$0.50Openrouter · Sep 22, 2026$0.30Deepinfra · Sep 21, 2026
Output priceFrom · USD / 1M tokens$3.00Openrouter · Sep 22, 2026$1.20Deepinfra · Sep 21, 2026
Context windowMaximum documented tokensNot reported131K
Model facts checkedSep 3, 2026View model evidence →Sep 3, 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

All benchmark results →
No Protocol-Matched Benchmark Yet.Results appear here only when both models share the same benchmark version, metric, evaluation protocol, and evidence class.

Side-by-Side Facts

FieldSeed 2.0 CodeMuse Glimmer 30B
DeveloperByteDance SeedMeta
FamilySeed 2 0Muse Glimmer
ModelSeed 2.0 CodeMuse Glimmer 30B
VersionSeed 2.0 CodeMuse Glimmer 30B
Lifecycleactiveactive
Released2026-02-142026-08-09
Knowledge cutoffUnknown2026-01-04
Input modalitiesTextText, Image
Output modalitiesTextText
Context windowUnknown131K
Total parametersUnknown29.8B
Active parametersUnknownUnknown
LicenseUnknownapache-2.0
Open weightsNoYes
API availableYesYes
Self-hostableNoYes
Provider accessOpenrouter (Standard)Deepinfra (Standard), Fireworks Ai (Standard), Together Ai (Standard)
Capabilitiesagents, chat, generation, reasoning, structured_outputs, toolschat, generation, reasoning, structured_outputs, tools

Seed 2.0 Code Capabilities

agentschatgenerationreasoningstructured outputstools
Serving providers1
Canonical IDbytedance-seed/seed-2.0-code

Muse Glimmer 30B Capabilities

chatgenerationreasoningstructured outputstools
Serving providers3
Canonical IDmeta-models/Muse-Glimmer-30B

Primary Evidence

Sources and Freshness

Questions

Seed 2.0 Code vs Muse Glimmer 30B FAQs

Is Seed 2.0 Code or Muse Glimmer 30B better for coding?+

This comparison does not currently contain a protocol-matched coding benchmark for both Seed 2.0 Code and Muse Glimmer 30B, so Model Markets cannot name a coding leader from pricing, context size, or capability labels alone.

Which is cheaper, Seed 2.0 Code or Muse Glimmer 30B?+

Seed 2.0 Code is $0.50 and Muse Glimmer 30B is $0.30 per million tokens, so Muse Glimmer 30B is cheaper on this metric. Seed 2.0 Code is $3.00 and Muse Glimmer 30B is $1.20 per million tokens, so Muse Glimmer 30B is cheaper on this metric.

Which has a larger context window, Seed 2.0 Code or Muse Glimmer 30B?+

Neither model has a larger sourced context window in this comparison. Seed 2.0 Code is — and Muse Glimmer 30B is 131K.

Which performs better in benchmarks, Seed 2.0 Code or Muse Glimmer 30B?+

There is no overall benchmark winner: At least two independently verified, protocol-matched benchmarks are required for an overall winner.

Can Seed 2.0 Code or Muse Glimmer 30B be self-hosted?+

Muse Glimmer 30B is the only model in this pair currently marked as self-hostable. Seed 2.0 Code is not marked open weight; Muse Glimmer 30B is open weight.

Can Seed 2.0 Code and Muse Glimmer 30B understand images?+

Seed 2.0 Code is not documented with image input; Muse Glimmer 30B is documented with image input. This reflects supported input modalities, not vision quality.

Which can generate longer answers, Seed 2.0 Code or Muse Glimmer 30B?+

Neither has a larger sourced maximum output. Seed 2.0 Code is — and Muse Glimmer 30B is —.

Do Seed 2.0 Code and Muse Glimmer 30B support reasoning and tool use?+

Seed 2.0 Code: reasoning and tool calling. Muse Glimmer 30B: reasoning, tool calling, and image input. Feature support does not establish relative quality.

Which is available from more inference providers, Seed 2.0 Code or Muse Glimmer 30B?+

Seed 2.0 Code has 1 sourced provider route; Muse Glimmer 30B has 3, so Muse Glimmer 30B has broader tracked availability.

Which offers better value, Seed 2.0 Code or Muse Glimmer 30B?+

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.

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