The Ohaus Analog Dry Block Heater is engineered for reliable and efficient heating in laboratory applications. Designed to accommodate two interchangeable modular blocks, this unit offers exceptional temperature uniformity and stability, making it ideal for a variety of procedures including incubation, enzyme reactions, and nucleic acid denaturation.
Note: Without blocks. Please order separately.
This analog dry block heater is an essential tool for laboratories requiring reliable and efficient temperature control for various sample processing needs.
It is engineered for reliable and efficient heating in laboratory applications. Designed to accommodate two interchangeable modular blocks, this unit offers exceptional temperature uniformity and stability, making it ideal for a variety of procedures including incubation, enzyme reactions, and nucleic acid denaturation.
Yes. It is designed for a variety of procedures including incubation, enzyme reactions, and nucleic acid denaturation, and offers a temperature stability of ±1.5°C and an uniformity within the block of ±0.4°C at 37°C to support this kind of work.
It has a temperature stability of ±1.5°C, an uniformity within the block of ±0.4°C at 37°C and dimensions of 391 mm (L) x 203 mm (W) x 89 mm (H), and is supplied under manufacturer part number 30392054.
It offers high: 75°C – 150°C; Low: Ambient + 5°C – 100°C, approximately 16 minutes, holds two interchangeable modular blocks (sold separately) and EU Plug.
For a variety of procedures including incubation, enzyme reactions, and nucleic acid denaturation, the Ohaus model is the better choice, offering a temperature stability of ±1.5°C, an uniformity within the block of ±0.4°C at 37°C and dimensions of 391 mm (L) x 203 mm (W) x 89 mm (H). The Cole-Parmer model offers a temperature range of up to 130°C and a power of 230 VAC as an alternative, while the Ohaus model's high: 75°C – 150°C; Low: Ambient + 5°C – 100°C and approximately 16 minutes help make it a strong fit for a variety of procedures including incubation, enzyme reactions, and nucleic acid denaturation.
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