SKU: H7620V Categories: ,

96-Well Collection Plate, Square Well, 0.5 mL, V-bottom

$999.00

SKU: H7620V
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Product details

Ucallm Microplate Filters are reliable core tools for life science research, drug discovery, and clinical testing. Covering three major product lines—Microplate Filters (Removable, Non-removable, Integrated), High-Throughput Filter Plates, and Collection Plates—our products are engineered with precision injection molding and multi-material membrane compatibility to deliver stable, efficient, and low-contamination filtration performance across diverse experimental scenarios. All products comply with ANSI/SBS standards, ensuring seamless integration with automated workstations and meeting the full spectrum of sample processing needs from micro-volume to large-volume.

Feature:

  • Dimensions comply with ANSI/SBS standards for easy compatibility with automated operations.
  • Withstands centrifugal force of 3000–4000×g
  • Autoclavableat 121℃ for 20 minutes.
  • Compatible with centrifugation-assisted sample collection workflows.
  • Can be used with 96-well nucleic acid extraction plates and filter plates.
  • Made of polypropylene, with high chemical resistance and mechanical strength, and strong durability.

Specifications

●Product characteristics
Product name96-Well Collection Plate
Number of wells96
Volume0.5ml
Well ShapeSquare
Bottom ShapeV-bottom
●Material & colours
MaterialPolypropylene
ColorClear
●Purity & certification
Product categoryNo medical device | IVD
SterileNo
RNase/DNase FreeYes
Pyrogenic-FreeYes
●Packaging
Qty/Cs10/Cs
Please login to post questions

Question:

Are Ucallm microplate filters compliant with international standards? Can they be adapted to automated workstations?

Wenjng
25-Mar-2026

Answer:

All our microplate filters and collection plates fully comply with ANSI/SBS international standards in terms of dimensions and structural design. They can be seamlessly integrated with mainstream automated liquid handling systems and high-throughput workstations on the market, meeting the needs of automated experimental operations.

Question:

What is the centrifugal resistance of Ucallm microplate filters and collection plates?

Wenjng
25-Mar-2026

Answer:

The whole series of products has high centrifugal stability, and can withstand the centrifugal force of 3000–4000×g without deformation or failure, which is suitable for centrifugation-assisted filtration and sample collection processes.

Question:

How to choose the appropriate filter membrane pore size for different experimental scenarios?

Wenjng
25-Mar-2026

Answer:

0.22μm is suitable for sterile filtration of samples and removal of microorganisms; 0.45μm is for conventional sample clarification and particulate matter removal; 5/20/50μm is for large particle impurity filtration such as lysate and bacterial liquid, which is applicable to plasmid extraction and protein purification.

Question:

Can the collection plates be autoclaved? What are the sterilization parameters?

Wenjng
25-Mar-2026

Answer:

All polypropylene (PP) collection plates support high-pressure steam sterilization, with the standard parameters of 121℃ for 20 minutes. The sterile collection plate models are individually sealed and packaged, which can be used directly without secondary sterilization.

Question:

What is the DVfree structural design of high-throughput filter plates, and what are its advantages?

Wenjng
25-Mar-2026

Answer:

DVfree design is an exclusive no-dead-volume structural optimization for micro-volume sample processing. It can minimize the residual sample in the plate body, realize the sample recovery rate close to 100%, and is especially suitable for the high-throughput processing of precious micro-volume samples (400 μL/600 μL).

Question:

What is the difference between long and short outlet tips of high-throughput filter plates, and how to choose?

Wenjng
25-Mar-2026

Answer:

Short outlet tips: the tip end is recessed under the plate skirt, suitable for filtrate collection and retentate retention; Long outlet tips: the tip end extends out of the plate skirt, which can be directly inserted into the well of the receiving plate, suitable for direct and rapid filtrate collection and avoiding sample splashing.

Question:

Can Ucallm microplate filters be reused?

Wenjng
25-Mar-2026

Answer:

Our microplate filters are designed as disposable laboratory consumables, which can avoid cross-contamination caused by repeated cleaning and ensure the accuracy of experimental results. Reuse is not recommended, especially for nucleic acid purification, clinical testing and other high-purity requirement experiments.

Question:

Which experimental reagents are Ucallm microplate filters compatible with?

Wenjng
25-Mar-2026

Answer:

The whole series of products have excellent chemical compatibility, and are compatible with most common biochemical reagents such as water, buffer solution, alcohol, DMSO, organic solvents (low concentration) and nucleic acid/protein extraction reagents; for strong corrosive reagents, please contact our technical support for confirmation.

Question:

How to choose the matching collection plate for different microplate filters?

Wenjng
25-Mar-2026

Answer:

We have customized collection plates for all filter plate models, which are matched according to the number of wells and volume (e.g., 24-well filter plate with 24-well 10mL collection plate, 96-well 300μL filter plate with 96-well 0.4/1.0mL collection plate). The product manual and detail page mark the recommended matching collection plate model for quick selection.

Question:

Does the non-removable microplate filter have better sealing performance than the removable one?

Wenjng
25-Mar-2026

Answer:

Both types adopt individual well independent sealing design to effectively avoid cross-contamination. The non-removable filter plate has a more integrated structure (the guide plate and the filter plate are welded tightly), and the sealing stability is higher in high-throughput and automated operations; the removable one is more flexible for experimental scenarios that need to observe the membrane structure.

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