As a global leaderin soft embodied AI, Wisson Robotics officially unveiled its second-generation soft embodied brain, NOVA 2.0 (Neuromorphic Omniversal Versatile Architecture)—the industry's first open-world, all-condition, commercially deliverable embodied AI architecture. Forged through and proven across more than 40 real-world industry scenarios and over 10 million multi-dimensional operations under extreme corner cases, this architecture’s cross-industry adaptability, deployment capability, and commercial value have earned widespread recognition from global clients. Through these deployments, Wisson has built a highly scarce, real-world data flywheel, leading the industry in validating a definitive embodied AI roadmap grounded in "real scenarios, real demands, real data, and real deployments"—signaling that embodied AI has crossed the watershed into open-world practical application.

Today, the evolution of embodied AI is transitioning from pristine laboratory demos and early-stage POCs toward highly challenging real-world deployment in the open world. However, when confronting physical reality fraught with massive ultra-high-frequency stochastic disturbances, unstructured noisy data, and harsh environmental hurdles, robotic systems face three universal bottlenecks: the friction between long-chain reasoning latency and high-frequency real-time response, an acute scarcity of multimodal real-world operational data, and insufficient operational reliability of both brains and physical embodiments under commercial delivery conditions.
To overcome this impasse, the industry has turned its attention toward hierarchical control, real-world data acquisition, and enhancing robotic resilience and environmental durability. Along this trajectory, Wisson Robotics had already seized the strategic high ground through disruptive underlying innovations in general-purpose soft robotics. Drawing from first-principles insights forged over 4 billion years of biological evolution—that "the natural coupling of a compliant physical body and intelligence is nature's inherent algorithm for navigating physical uncertainty"—Wisson pioneered a soft embodied AI architecture based on the "Somatic AI" philosophy. By leveraging the innate physical proprioception and passive compliance of soft robotic bodies, this architecture biomimetically replicates a biological entity's "subconscious brain," which operates effectively without over-reliance on massive models or excessive prior data.
Concurrently, Wisson Robotics firmly believes that true general-purpose embodied intelligence lies in comprehensively covering the open world's multi-dimensional extreme and long-tail corner cases. From day one, the company has focused squarely on real commercial delivery, directly confronting complex, extreme, long-tail, anomalous, and emergency operational conditions fueled by real scenarios, real demands, and real data streams. This relentless crucible ensures that both brain and body sustain robust, continuous operation across commercial-scale deployments, forging a soft embodied AI architecture equipped with authentic open-world generalizability alongside an exceptionally scarce real-world "data flywheel."
Rooted in the "Somatic AI" philosophy, Wisson's proprietary tactile-native multimodal hierarchical soft embodied brain architecture executes real-time trajectory generation and scene adaptation via subconscious multimodal action primitives, unlocking three distinctive edges: low data dependence, ultra-fast latency, and robust generalization. Structured around the biomimetic mechanism of "conscious task-chain planning + subconscious action-primitive generation," native tactile sensing and DAMserve as the connective tissue. They organically couple the intelligence features of NOVA 2.0 (action primitives, subconscious loops, hierarchical hybrid modeling, morphological computation, and multimodality) with the physical embodiment capabilities of Pliabot® (native compliant morphology, durable materials, ultra-high payload-to-weight ratio, pneumatic control, native tactile perception, and passive deformation). This achieves a critical breakthrough in cross-scenario migration and real-world deployment, fully satisfying open-world, all-conditioncommercial delivery standards.
Three Breakthroughs in Scenario Migration & Field Deployment:
1. Native One-Brain-Multiple-Morphologies: A single brain inherently adapts to diverse mechanical embodiments—including muscle joints, single softarms, dual softarms, and softdexterous hands/humanoids;
2. 1B+ Dynamic Parameter Combinations: Powered by a 20+ dimensional "subconscious action primitivesspace," achieving large-scale dynamic parameter synthesis;
3. 20ms Ultra-Fast Trajectory Generation: Delivers millisecond-level trajectory generation and dynamic error correction far outperforming conventional foundation models.

Advantage | Description |
Real-Time Adaptation | High-dynamic responsiveness ensuring success amidst perturbations |
Real-World Evolution | Operational commercial data flywheel powering model evolution |
Autonomous Decision | Independent judgment mastering volatile real-world dynamics |
First-Time-Right | Millisecond generation for zero-tolerance critical workflows |
Full-Spectrum Robustness | Unfazed by environmental extremes, maintaining high precision |
Extreme Survivability | All-weatherhardware survival in harsh boundary conditions |
Inherent Safety | Native collision compliance for safe human-robot interaction |
Industrial Durability | Long-term stable operation satisfying endurance thresholds |
Ultra-Lightweight | Extreme lightweight footprint with high payload-to-weight ratio |
Native Compliance | Built with compliant materials, naturally agile and flexible |

From the covert development of its first-generation architecture, NOVA 2.0 focused not only on building underlying architectural superiority but also placed supreme emphasis on real-world verification, stress-testing, and iterative refinement across extreme corner cases. Today, it has scaled across 40+ industry domains executing over 10 million multi-dimensional operations under extreme corner cases. By rigorously validating and logging extreme corner cases across "Three Extremes" (Tasks, Environments, and Data), Wisson has accumulated an invaluable, hard-to-replicate asset of high-value real-world data:
●Extreme Tasks: Meeting stringent requirements such as ensuring 100% interactive operational safety, enduring the challenges of differentiated usage patterns from over 1,000 distinct real-world users per unit, withstanding 200 Hz high-frequency operational perturbations, delivering 24/7 continuous year-round availability, executing over 3 million cumulative operational cycles, and achieving a 99.9%+ ultra-high delivery success rate—resulting in over 5x verifiable efficiency gains and near-100% customer satisfaction, while co-creating multiple industry-benchmark deployment cases alongside leading enterprise clients;
●Extreme Environments: Enabling both the physical embodiment and the intelligent brain to operate seamlessly under lighting conditions from 0 Lux (pitch darkness) to 100,000 Lux (peak direct sunlight), run continuously across temperatures from -40°C blizzard conditions to +60°C scorching heat, sustain stable low-pressure operation on snow-capped plateaus at an altitude of 5,190 meters, withstand intense electromagnetic interference from 110 kV high-voltage power grids, resist 61 km/h gale-force winds and heavy downpours, and satisfy Class 100 cleanroom standards;
●Extreme Data: Overcoming the pervasive industry bottleneck of "data starvation" where authentic operational data is scarce, by leveraging an extensive library of reusable action primitives. Requiring as little as 1% of conventional bootstrap training data, the system performs limited data-driven parameter fine-tuning on incremental scenario variables to rapidly generalize to new scenes and tasks for immediate routine deployment, subsequently achieving continuous learning and self-evolution powered by 100% real-world data in ongoing operations.
NOVA 2.0’s industrial-grade deployability in the open world and its highly coveted real-world data asset directly empower Wisson Robotics to generalize across broader scenarios and deliver tangible operational value, driving rapid commercial traction:

Today, across high altitudes, urban canyons, high-voltage grids, and smart manufacturing, soft embodied AI has crossed the open-world deployment threshold-evolving into real, scalable productivity. Wisson Robotics is joining forces with global industry titans to accelerate the adoption of soft embodied intelligence across wider frontiers, driving real-world iterative breakthroughs.
"Somatic AI. Symbiotic World." From everyday life to the stars, uniting physical compliance with digital intelligence through Somatic AI. By embedding intelligence deeply into everyday chores and extreme operational frontiers alike, we empower humans and robots to stand side by side in mutual prosperity—building a truly safe, powerful, and boundless Symbiotic World.