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Mpac Lambert has announced the launch of its latest Dry Powder Inhaler (DPI) Blister Filling System, a high-precision automation solution developed to meet the growing demands of pharmaceutical inhaler production.
Mpac Lambert has announced the launch of its latest Dry Powder Inhaler (DPI) Blister Filling System, a high-precision automation solution developed to meet the growing demands of pharmaceutical inhaler production. The new system is designed for accurate micro-dosing of Active Pharmaceutical Ingredients used in the treatment of asthma and Chronic Obstructive Pulmonary Disease (COPD)
The DPI Blister Filling System combines forming, filling, and sealing into a single, controlled process. By directly dosing powder into pre-formed blister pockets, the system prevents powder contamination on the blister surface, which is a common challenge in inhaler manufacturing. This ensures clean sealing, improved product integrity, and consistent dose delivery to the end user.
Engineered for precision and reliability, the system features advanced web tension control, accurate strip positioning, and sensor-based registration to align each dose precisely within the blister cavity. Integrated inspection and verification checks confirm correct filling and sealing, supporting stringent quality control and batch traceability requirements.
Designed to comply with global pharmaceutical standards, the machine meets CE, UKCA, and UL requirements and follows GAMP guidelines. It supports multiple strip configurations and dose formats, making it suitable for a wide range of production needs, from R&D and clinical trials to full-scale commercial manufacturing.
The new DPI solution is also built with scalability in mind. Mpac Lambert offers complementary systems for lab-scale validation, checkweighing, and downstream automation, enabling manufacturers to scale production efficiently while maintaining accuracy and consistency.
At PacTech Solutions, we closely monitor advancements like these to help manufacturers adopt high-performance automation technologies that enhance precision, regulatory compliance, and long-term production efficiency across pharmaceutical manufacturing lines.