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Constant Temperature Bath (TB-H240-V1)

The DLAB Constant Temperature Bath (TB-H240-V1) is a precision bench‑top instrument engineered for accurate, stable, and uniform heating in clinical diagnostics, pharmaceutical quality control, analytical chemistry, and academic research. Featuring a 1 L transparent glass bath (Ø150 × 100 mm), a heating range of 25–240 °C, ±0.5 °C temperature control accuracy, and a 0.1 °C temperature display resolution, this constant‑temperature bath provides an isothermal environment for water‑based or oil‑based heating applications.
Every Constant Temperature Bath (TB-H240-V1) is equipped with an intelligent PID temperature controller, a high‑efficiency heating element (350 W heating power, 360 W total power), a PT1000 external temperature sensor port (±0.2 °C accuracy), and a remote-control panel (detachable up to 1 m cable length) for safe operation in fume hoods and confined spaces. The borosilicate glass bath allows direct observation of samples without disturbing the experiment, while the protective guard prevents glassware from tipping and shields the user from the heating element.
Key user‑focused safety features include over‑temperature protection (280 °C cutoff), overcurrent protection, grounding protection, and a temperature self‑calibration function (user‑accessible). The IP21‑rated housing provides basic splash and dust protection. The unit is TÜV‑certified (CE, cTUVus, FCC), meets IEC/EN 61010‑1 safety standards for laboratory electrical equipment, and is manufactured under ISO 9001 and ISO 13485 quality management systems.
With a compact footprint (310 × 220 mm), a low weight (2.2 kg), and universal power supply (100–240 V, 50/60 Hz), the TB‑H240‑V1 is easy to integrate into any clinical or research bench‑top workflow. The instrument is backed by a 2‑year manufacturer’s warranty.
For the clinical laboratory scientist, pharmaceutical QC chemist, and research scientist, the Constant Temperature Bath (TB-H240-V1) delivers precise, stable, and observable heating required for ELISA incubation, coagulation testing, enzyme activity assays, sample digestion, dissolution testing, and general‑purpose medium heating. For the patient, the reliable performance of this constant‑temperature bath ensures that diagnostic tests and pharmaceutical products are accurate, reproducible and processed efficiently, directly supporting effective clinical decision‑making, appropriate treatment selection, and patient safety.

Low-Temperature Cooling Circulator Series (DCP-5)

The Low-Temperature Cooling Circulator Series (DCP-5) is a high-performance, compact recirculating chiller designed to provide stable low-temperature coolant (-20°C to room temperature, ±0.3°C stability) for laboratory, pharmaceutical, and industrial applications . Featuring intelligent PID control with PT100 sensor, a powerful circulation pump (22 L/min flow rate, 0.3 bar pressure), and a 4.5L reservoir capacity , this unit delivers efficient, precise cooling for rotary evaporators, condensers, spectrometers, and chemical reactors .
The Low-Temperature Cooling Circulator Series (DCP-5) incorporates proportionate cooling technology that adjusts compressor output based on demand—reducing energy consumption and extending equipment life—along with environmentally-friendly R404a refrigerant, thermal insulation for temperature stability, and overflow protection for safe operation . The LED display with user-friendly menu, one-touch start, and removable front panel for filter cleaning ensures easy operation and maintenance .
For the pharmaceutical researcher and analytical chemist, the Low-Temperature Cooling Circulator Series (DCP-5) supports solvent evaporation in drug development, temperature control for analytical instrumentation, chemical reaction cooling for quality control testing, and cold chain support for biotech applications—including freeze drying, enzyme reaction preservation, and temperature-sensitive material handling .
For the patient and community, reliable laboratory cooling ensures accurate analytical testing results, supports pharmaceutical quality control, and enables research that leads to new treatments—while efficient, low-noise operation and sustainable refrigerant use support responsible laboratory practices.