AJ Midnight Black 3D Mesh Air Seat Cushion

AJ Air Cushion · Midnight Black Series

AJ Midnight Black 3D Mesh Air Seat Cushion with breathable 3D mesh cover and adjustable air-cell support
AJ Midnight Black 3D Mesh Air Seat Cushion with breathable 3D mesh cover and adjustable air-cell support.

The AJ Midnight Black 3D Mesh Air Seat Cushion combines a professional black finish with adjustable air-cell support for office chairs, driving, travel, and long periods of sitting.

Built with 27 connected air cells, built-in press controls, a breathable 3D mesh cover, and an anti-slip silicone base, it helps distribute sitting pressure and lets users fine-tune firmness while seated.

Comfort Features

  • 27 connected air cells for pressure distribution
  • Built-in press-to-inflate and quick-release controls
  • Adjustable firmness while seated
  • Breathable removable 3D mesh cover

Standard Specifications

  • Size: 45 x 45 x 5 cm
  • Weight: approximately 0.4 kg
  • Material: breathable 3D mesh cover, TPU air support layer, anti-slip silicone base
  • Use: office chairs, driving, travel, mobility seating, and everyday sitting
AJ Midnight Black air cushion multi-layer structure showing breathable cover, air support layer, TPU layer, and anti-slip base
Multi-layer structure of the AJ Midnight Black air seat cushion with breathable cover, air support layer, TPU layer, and anti-slip base.
Hands operating built-in inflate and deflate controls on AJ Midnight Black air seat cushion
Built-in press controls on the AJ Midnight Black air seat cushion for quick firmness adjustment.
Person seated on AJ Midnight Black air cushion with arrows showing pressure distribution
Connected air cells respond to sitting pressure for balanced, adjustable support.
Bottom of AJ Midnight Black air cushion showing silicone non-slip dot backing
Silicone anti-slip dot backing helps keep the cushion stable on the seat.
AJ Midnight Black air seat cushion with arrows showing airflow through connected channels
Connected airflow channels support circulation, pressure distribution, and heat dissipation.