GT-KA04A athletic footwear shock attenuating tester designed by GESTER. comply with the ASTM F1614 standard, it evaluates the cushioning and impact resistance of athletic shoes and shoe materials. Equipped with a high-precision 10KN load cell and a 1000Hz high-speed data acquisition system, the tester delivers real-time force-displacement curves and automated energy loss analysis.
The GESTER Nonwovens Absorption Tester GT-CN02 is a high-precision laboratory instrument engineered to evaluate the liquid absorptive capacity, liquid absorption time, and liquid wicking rate of nonwoven fabrics, hygiene absorbent cores, and technical textiles. compliance with international Standards including ISO 9073, EDANA 152.0, NWSP 010.1, and GB/T 24218.6, the GT-CN02 delivers consistent and repeatable performance testing for medical nonwovens, sanitary towels, adult diapers, and wipe manufacturers. Equipped with an intuitive touch-screen control interface, high-precision weighing sensor (0.01g resolution), and built-in micro-printer, the GT-CN02 streamlines quality control and product development workflows for nonwoven material manufacturers worldwide.
GT-KA04B athletic footwear shock attenuating testing instrument designed strictly to comply with the SATRA TM142 standard, this specialized footwear testing machine utilizes an 8.5kg free-fall drop hammer and a fixed 50mm fall height to precisely analyze the cushioning limits, impact absorption, and transient force-displacement relationships of athletic outsoles, midsoles, and shoe material systems. GESTER provides factory-direct wholesale pricing, and robust localized technical support to international footwear brands, supply chain manufacturers, and global third-party testing laboratories.
The Protection Materials Shock Absorption Capacity Tester GT-KB16 fully compliant ISO 20344, EN 388, EN 1621, ect standards. this equipment provides automated impact testing to evaluate energy attenuation. It ensures that protective footwear and personal protective equipment (PPE) meet stringent safety requirements for impact resistance.