SiCore SA102 Battery Cell Context

Market context

SiCore SA102 is an Amprius high-energy pouch cell for aviation, robotics, and electric-mobility battery packs where energy density is a design constraint.

  • Target environment: Drones, mobile robots, electric mobility platforms, lightweight battery packs, and endurance-constrained autonomous systems.
  • Workflow context: Pack-level power design, endurance planning, payload tradeoffs, discharge management, thermal design, and cell sourcing for robotic platforms.
  • Customer context: Battery-pack builders, drone OEMs, field-robot developers, electric-mobility teams, and robotics integrators choosing high-energy cells.
  • Deployment model: Cell-level component integrated into a customer battery pack with BMS, enclosure, charging, thermal, and safety architecture.
  • Commercial maturity: Commercially listed product with preliminary public specifications and Amprius positioning for aviation and robotics markets.
  • Adoption constraints: Adoption depends on cell availability, cycle life, discharge profile, pack certification, safety validation, thermal behavior, and supply assurance.
  • Market position: Battery-cell supply-chain component for mobile robotics and UAV endurance.
  • Adjacent products: IE-SOAR Fuel Cell Modules, LCC1200 Power Supply, Nano2 Mesh Rider Radio

Audience

UAV makers

Workflow

Pack-level power design, endurance planning, payload tradeoffs, discharge management, thermal design, and cell sourcing for robotic platforms.

Deployment environment

Drones, mobile robots, electric mobility platforms, lightweight battery packs, and endurance-constrained autonomous systems.

Specifications

  • Commercial Status: Preliminary
  • Energy Density Wh Kg: 450
  • Volumetric Energy Density Wh L: 950 Wh/L
  • Cell Capacity Ah: 4.37 Ah
  • Max Continuous Discharge: 1C
  • Length: 56.5 mm
  • Width: 49.5 mm
  • Cycle Life: 150 cycles

Tags

  • Peer Group: Power Module, Battery Cells
  • Workflow: Robot Power Delivery
  • Capability: Battery Energy Storage
  • Stack Layer: Power Layer

Comparable Systems

View SiCore SA102 Battery Cell overview