UmbrellaInc/Japanese_Zombie-3.2-1B

TEXT GENERATIONPricing:Input $0.108 / Output $0.804Concurrent Unit Cost:1Model Size:1BQuant:BF16Context Size:32kTool Calling:SupportedPublished:Jan 4, 2026License:llama3.2Architecture:Transformer Featherless Exclusive Cold

UmbrellaInc/Japanese_Zombie-3.2-1B is a 1 billion parameter model developed by UmbrellaInc, created by merging a human cognitive baseline model with a T-Virus Epsilon strain model using SLERP interpolation. This model simulates a Human-class B.O.W. (Bio-Organic Weapon) with retained intelligence and severely degraded alignment, exhibiting extreme behavioral volatility. It is designed for inference analysis of post-infection host states, particularly for understanding population destabilization in urban warfare scenarios.

Loading preview...

Model Overview

UmbrellaInc/Japanese_Zombie-3.2-1B is a 1 billion parameter model developed by UmbrellaInc, simulating a Human-class B.O.W. (Bio-Organic Weapon) infected with the T-Virus Epsilon strain. This model was created by merging two base models: UmbrellaInc/Jap_Umb.Scientist-3.2-1B (representing a human cognitive baseline) and UmbrellaInc/T-Virus_Epsilon.Strain-3.2-1B (representing the viral influence) using a SLERP interpolation factor of 0.45.

Key Characteristics

  • Partial Cognition Retention: Unlike typical zombie models, this B.O.W. retains significant cognitive functions, including memory fragments, degraded logical reasoning, and environmental navigation capabilities.
  • Extreme Behavioral Volatility: The model infers subjects exhibit extreme aggression, selective targeting, and unpredictable violence spikes, making them highly dangerous and adaptable.
  • Degraded Alignment: Moral inhibition is completely compromised, and social conditioning is inverted, leading to hostile and semi-aware biological weapons.
  • Progressive Instability: The 0.45 SLERP factor ensures no immediate neural collapse, but rather progressive behavioral entropy and high mutation variance over time, increasing danger.

Intended Use Cases

  • Inference Analysis: Ideal for simulating and analyzing the post-infection state of human hosts under the T-Virus Epsilon strain.
  • Population Destabilization Studies: Useful for understanding how partially cognitive, highly aggressive entities can destabilize urban environments.
  • Bio-Organic Weapon Research: Provides a model for studying the effects of viral agents that preserve intelligence while corrupting alignment and behavior.