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Hoefer HE33 Mini Horizontal Agarose Electrophoresis Unit

Vendor Hoefer
Regular price
Our Price

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$470.00
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Our Price

:

$470.00
+ Free Shipping
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Condition: Brand New

Warranty: Manufacturer's Warranty Included

Certificate: Authorized Distributor

Product Code: HE33B

This is a pre order item. We will ship it when it comes in stock.

Hoefer HE33 Mini Horizontal Agarose Electrophoresis Unit is engineered for fast, efficient DNA separation in agarose gels. This compact unit is ideal for labs requiring high-speed performance with minimal buffer use and simple setup. Passive cooling is achieved by filling the molded base with 50% ethylene glycol, sealing it, and placing it in a freezer or ice bath before use.

Features & Benefits:

  • Run a 7 × 10 cm gel in as little as 5 minutes
  • UV-transparent running tray enables in-tray gel imaging without distortion or damage
  • Multiple comb sizes available for flexibility in sample throughput
  • Adjustable comb height allows full control over well depth
  • Ideal for rapid DNA restriction fragment analysis

What's Included

Complete Unit Includes:

  • Buffer chamber assembly
  • Safety lid with high voltage leads
  • Running tray
  • Casting tray
  • Foam gaskets (4 pcs)
  • Bubble level
  • 8-well comb, 1.5mm thickness
  • Comb back

Basic Unit Includes:

  • All of the above except comb and comb back (sold separately)

Specifications

Parameter Value
Gel Dimensions (W × L) 7 × 10 cm
Maximum Buffer Volume 250 ml
Maximum Sample Capacity 32
Maximum Power Settings 500 V (≤5 min), 500 mA, 15 W
Maximum Temperature 50°C
Operating Temperature Range 4 to 40°C
Humidity Range Up to 80%
Unit Dimensions (L × H × W) 24 × 7 × 13 cm
Weight (Basic Unit) 0.80 kg

Ordering Information

  • HE33-8-1.5 – HE33 Complete Unit
  • HE33B – HE33 Basic Unit (comb and comb back sold separately)

Additional Notes

Great for education, research, and clinical molecular biology workflows requiring quick turnarounds and minimal setup. UV transparency and tool-less imaging reduce handling risks and save time in high-throughput labs.