Claricap M02 Depth Filter Capsule Pilot 1/pk

In stock
Part No. MDH2HPPC27B1TP
Filtration Area
Pore Size
Package
Loading locations...
*Not for medical use

The Cobetter Claricap M02 depth filter capsule is composed of high-purity cellulose fibers and inorganic filter aids through a special process. Its internal interwoven three-dimensional structure makes it a depth filtration medium, providing excellent filtration efficiency and high contaminant-holding capacity.

The production of the depth filter capsule utilizes advanced and highly automated manufacturing processes. All raw materials undergo rigorous quality control inspections to ensure consistent product quality and filtration performance.

Specifications

Brand Filter Brand Claricap M02
Material Filter Membrane Material Diatomaceous earth, cellulose, synthetic resin

Housing Material Glass fiber-reinforced polypropylene

Accessory Material Polypropylene
Connector Type 6mm Hose Barb Connector
Bio-compatibility Biological Safety All components comply with USP<87> and USP<88> Class VI requirements.

Indirect Food Additives All components comply with FDA 21 CFR requirements.
Bacterial Endotoxins Bacterial endotoxin level < 0.25 EU/mL (LAL)
Package Delivery Condition Non-sterile
Pack Size 1/pk


Features

  • Excellent Retention Efficiency

The cellulose fibers within the Claricap M02 series filter media are interwoven to form a dense three-dimensional structure. As the depth increases, the pore size gradually decreases, creating a gradient structure. This design reduces the flow rate of solid particles during filtration, ultimately capturing them.

Diatomaceous earth, used as an inorganic filter aid, has a naturally porous structure that enhances the particle adsorption capability of the filter Capsule and increases its permeability.

Additionally, the filter Capsule contains a small amount of special synthetic resin, which not only improves the wet strength of the filter but also imparts a charge, enabling effective adsorption.

  • Excellent Characteristics

The filter components use high-purity bleached cellulose, signifi-cantly reducing the levels of ionic extractables and endotoxins, making the Claricap M02 series more suitable for use in high-purity fields such as biopharmaceuticals.

Its internal three-dimensional cellulose structure and the porous nature of diatomaceous earth provide it with an exceptionally high contaminant-holding capacity.

*Product Characteristics:

  • Linear scale-up design (area, flow path, dead volume)
  • Single-use design eliminates CIP and cleaning validation costs
  • Modular design allows flexible use of the area, capable of handling scales from 0.5 to more than 10,000 liters
  • Resistant to autoclave sterilization: Lab and pilot-scale specifications withstand 2 cycles of 123°C for 60 minutes Production scale withstands 1 cycle of 123°C for 60 minutes
  • Capable of fully recovering target products, improving yield
  • Flexible selection of filter media for different applications or feed solutions
  • Reliable performance and robust structure ensure process safety
  • Resistant to reverse filtration (backwash, reverse waste discharge, and abnormal backwash pressure up to 2.1 bar)
  • Compatible with Cobetter and common market holders

Applications

  • Clarification filtration of fermentation broth and cell culture fluids
  • Filtration of serum and blood products
  • Filtration of enzyme preparations
  • Impurity removal and decolorization filtration in traditional pharmaceuticals
  • Filtration of colloidal or viscous liquid


  • Cobetter_Claricap_M02_Depth_Filter_Catalog_20250116 Download
What materials are primarily used for Cobetter depth filtration products?

Depth filtration products are primarily composed of a mixture of three materials: cellulose, filter aids, and resins. Cellulose is mainly divided into two categories: synthetic fibers and natural cellulose. Filter aids are further classified into diatomaceous earth, perlite, activated carbon, and others. Based on these foundational materials, Cobetter have further developed a variety of new materials for our depth filtration products , such as synthetic cellulose, synthetic silica, and polymer materials, among others.

What is a reasonable method for operating depth filtration?

Depth filtration products are primarily operated using a constant flow filtration mode, and it is necessary to control the appropriate process flow rate during operation.

Why should depth filters be flushed with water before use?

1. To reduce the shedding of inherent materials and leachable.
2. To remove air bubbles, thereby facilitating the effective utilization of the filter's surface area.
3. To ensure thorough wetting, which helps enhance the mechanical strength of the filter.

What is the shelf life of depth filters, and can they still be used after expiration?

The shelf life is 3 years. It is not recommended to use after expiration because the performance and filtration efficiency of expired products cannot be guaranteed.

Can depth filtration products be reused?

No, depth filtration products are designed for single-use only.

What's the maximum pressure tolerance of Cobetter depth filters?

Depth filters can tolerate pressures of 2.4 bar at 80°C or 3 bar at 40°C. However, actual usage should be tailored to the application scenario. For example, for CHO cell harvests, the pressure is generally recommended not to exceed 1.5 bar.

What is the maximum operating temperature for depth filters? Can depth filters be sterilized?

The maximum operating temperature of depth filters is 80°C. Capsule-format depth filters are suitable for offline sterilization, while stacked-format depth filters are suitable for in-line sterilization.

What are the advantages and benefits of Cobetter depth filters?

1. A wide range of media is available for both single-layer and multi-layer products.
2. Flexible modular design allows process volumes to be scaled from 0.5 L up to 2000 L or higher.
3. All products are ready-to-use, requiring no housing assembly, CIP, or cleaning validation.
4. Robust construction and easy installation, with reduced footprint for convenient use in limited spaces.
5. High product yield is achieved due to minimal hold-up volume.