Specifications:
Application | Protein Electrophoresis & Western Blotting | Warranty | 1 Year |
Storage Temperature | Ambient | ||
Product Type | Molecular Biology Equipment | ||
Product Brand | Thermo Fisher Scientific™ | ||
Product Grade | Molecular Biology | ||
The Invitrogen™ Power Blotter Station is a high-performance power supply unit with a touchscreen interface, designed for rapid and efficient semi-dry protein transfer from gel to membrane. When used with Power Blotter Cassettes (PB0002 or PB0003), this system enables consistent and high-efficiency protein transfer in Western blot applications.
With pre-programmed transfer protocols, an integrated power supply, and support for both nitrocellulose and PVDF membranes, the Power Blotter Station provides fast, reproducible, and user-friendly electrophoretic protein transfer.
Key Features & Benefits
1. Fast & Efficient Protein Transfer
- Transfer proteins in 5–12 minutes, significantly reducing blotting time.
- Supports simultaneous transfer of up to two mini-size or one midi-size gel using Power Blotter Cassette.
- With Power Blotter Cassette XL, transfer four mini-size or two midi-size gels at once.
2. Intuitive Touchscreen Interface
- LCD color touchscreen for easy navigation and programming.
- Pre-programmed transfer protocols for different gel types and molecular weight ranges.
- Customizable settings, allowing users to create and save personalized transfer methods.
3. Integrated Power Supply for Seamless Operation
- Ensures consistent, high-efficiency protein staining and transfer.
- Works directly with Power Blotter Cassettes for a streamlined workflow.
- Eliminates the need for separate electrophoresis power supplies.
4. Flexible Compatibility & High Reproducibility
- Compatible with both nitrocellulose and PVDF membranes.
- Suitable for Western blot applications, ensuring reliable and reproducible results.
- Designed for semi-dry transfer, reducing buffer volume and increasing efficiency.
Specifications
Property | Details |
---|---|
Model | Power Blotter Station |
Product Type | Blotter Station |
Mode of Transfer | Semi-Dry |
Compatible Equipment | Power Blotter Cassette (PB0002) or Power Blotter Cassette XL (PB0003) |
Membrane Compatibility | Nitrocellulose, PVDF |
For Use With | Western Blot |
Integrated Power Supply | Yes |
Transfer Time | 5–12 minutes |
Touchscreen Display | LCD color touchscreen |
Custom Programs | Yes |
Shipping Condition | Room Temperature |
Quantity | 1 Unit |
Unit Size | Each |
Compatible Accessories & Consumables
Product | Description | Quantity |
---|---|---|
Power Blotter Select Transfer Stacks (Nitrocellulose) | Pre-cut transfer stacks for semi-dry blotting | 40 stacks |
Power Blotter Select Transfer Stacks (PVDF) | Pre-cut PVDF transfer stacks | 40 stacks |
Applications
1. Western Blotting & Protein Analysis
- Rapid and high-efficiency transfer of proteins from gels to membranes.
- Compatible with nitrocellulose and PVDF membranes for diverse research needs.
2. High-Throughput Research & Laboratory Workflows
- Optimized for multi-gel transfers, increasing sample throughput.
- Pre-programmed transfer protocols ensure reproducibility and consistency.
3. Biotech & Pharmaceutical Research
- Used in protein expression studies, antibody validation, and proteomics research.
- Supports biochemical and molecular biology applications requiring Western blotting.
Storage & Handling
- Store at room temperature in a dry environment.
- Ensure proper connection with Power Blotter Cassettes for optimal performance.
- Regularly clean touchscreen and power supply unit to maintain functionality.
Ordering Information
Catalog Number | Description | Quantity |
---|---|---|
PB0010 | Invitrogen™ Power Blotter Station | 1 Unit |
The Invitrogen™ Power Blotter Station is a powerful, easy-to-use blotting system designed for fast and reproducible semi-dry protein transfer in Western blot applications. With pre-programmed transfer protocols, an integrated power supply, and compatibility with multiple gel sizes, it offers a high-efficiency solution for protein analysis.