LW Scientific
LW Scientific DBP-04PL-5077 Heatblock Aluminum 4in Depth 2in Height
Aluminium heat block for dry-bath incubators operating from 25 to 65 °C
- Aluminium construction resists corrosion
- 25 °C to 65 °C range suits many protocols
- 65 °C maximum supports enzyme work
- 4 in depth fits standard dry-bath wells
- FDA compliance meets lab regulations
Aluminium heat block for dry bath incubators
This aluminium heat block fits dry bath incubators and provides a stable platform for sample tubes. The unit measures 4 inches deep, 3 inches wide and 2 inches high. It is designed for laboratory workflows that require consistent dry heating.
Operating range 25 to 65 degrees Celsius
The block reaches a maximum temperature of 65 degrees Celsius and holds a working range from 25 to 65 degrees. Aluminium construction spreads heat evenly across the surface, keeping temperature gradients low during extended runs.
Fits standard dry bath incubator bays
The 4 by 3 inch footprint slots into compatible dry bath units without adapters. Its 2 inch height leaves clearance for tube caps and accessories above the block. FDA compliance supports use in regulated laboratory environments.
Highlights
- Aluminium construction resists corrosion
- 25 °C to 65 °C range suits many protocols
- 65 °C maximum supports enzyme work
- 4 in depth fits standard dry-bath wells
- FDA compliance meets lab regulations
Specifications
| Brand | LW SCIENTIFIC |
|---|
Questions about this item
How do I install the LW Scientific DBP-04PL-5077 heat block in my dry bath incubator, and what step is often missed?
Place the aluminum block into the incubator cavity so its 4 in depth and 2 in height sit flush; the step often missed is verifying the unit reaches the 25 to 65 °C range before loading samples.
What maintenance or replacement will the DBP-04PL-5077 aluminum heat block need over time?
The aluminum base requires only periodic cleaning with a non-abrasive agent; inspect for corrosion or pitting after prolonged exposure to the 65 °C maximum temperature and replace if surface integrity is compromised.
What is the first operational limit reached when the heat block runs continuously at its highest setting?
The 65 °C maximum temperature is the primary limit; sustained operation at this ceiling may accelerate surface oxidation on the aluminum, so monitor block condition during extended high-temperature runs.
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