Laboratory thermostat Integral IN
processdigitalelectronic

Laboratory thermostat - Integral IN  - LAUDA - process / digital / electronic
Laboratory thermostat - Integral IN  - LAUDA - process / digital / electronic
Laboratory thermostat - Integral IN  - LAUDA - process / digital / electronic - image - 2
Laboratory thermostat - Integral IN  - LAUDA - process / digital / electronic - image - 3
Laboratory thermostat - Integral IN  - LAUDA - process / digital / electronic - image - 4
Laboratory thermostat - Integral IN  - LAUDA - process / digital / electronic - image - 5
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Characteristics

Domain
laboratory, process
Display
digital, electronic
Other characteristics
heating, cooling, connected, circulating, modular, remote maintenance
Temperature range

Min.: -30 °C
(-22 °F)

Max.: 150 °C
(302 °F)

Description

Overview
LAUDA Integral T process thermostats are designed for efficient external temperature control in the range −32 to 150 °C. They enable fast temperature changes through matched heating and cooling outputs combined with a small internal volume. The open hydraulic system permits rapid aeration and outgassing without loss of function. A powerful submersible pump and an internal bypass for pressure limitation are standard. The modular interface concept supports extensive networking and flexible integration into user processes.

Benefits and added value
  • Fast aeration and degassing with high flow rates and working pressures
  • Preventive protection for pressure-sensitive consumers via internal bypass
  • Heating and cooling functions operate independently of application flow; flow can be interrupted (e.g. when changing consumers)
  • Remote monitoring and maintenance via LAUDA.LIVE

Working range
  • Minimum working temperature: −32 °C
  • Maximum working temperature: up to 150 °C (model dependent)
  • Temperature stability: 0.05 ± K

Product table (selected technical parameters)
Product | Min. working temp | Max. working temp | Heater power max. | Cooling output at 20 °C 50 Hz
Integral IN 130 T | -32 °C | 120 °C | 2.7 kW | 1.4 kW
Integral IN 230 T | -32 °C | 120 °C | 2.7 kW | 2.2 kW
Integral IN 230 TW | -32 °C | 120 °C | 2.7 kW | 2.3 kW
Integral IN 530 T | -32 °C | 120 °C | 8 kW | 5 kW
Integral IN 530 TW | -32 °C | 120 °C | 8 kW | 6 kW
Integral IN 1030 T | -32 °C | 150 °C | 8 kW | 11 kW
Integral IN 1330 TW | -32 °C | 150 °C | 16 kW | 13 kW
Integral IN 1830 TW | -32 °C | 150 °C | 16 kW | 19 kW

Device dimensions (examples)
Integral IN 130 T / 230 T / 230 TW / 150 XT / 250 XTW: 430 x 550 x 760 mm
Integral IN 530 T / 530 TW / 550 XT / 550 XTW / 750 XT / 950 XTW: 560 x 550 x 1325 mm
Integral IN 1030 T / IN 1330 TW / IN 1830 TW: 760 x 650 x 1605 mm

Characteristics / technical specifications
  • Temperature range (model dependent): −32 °C to 150 °C
  • Temperature stability: 0.05 ± K
  • Heating and cooling outputs across model range (examples: 2.7 kW up to 16 kW)
  • Cooling output examples at 20 °C 50 Hz: 1.4 kW up to 19 kW (model dependent)
  • Integrated submersible pump with internal bypass for pressure limitation
  • Open hydraulic system enabling fast aeration and outgassing
  • High working pressures and flow rates suitable for various consumers (preventive protection measures included)
  • Modular interface concept: standard Ethernet, USB, Pt100; additional interfaces/protocols via modules
  • Remote monitoring and maintenance via LAUDA.LIVE services
  • Downloadable product brochures, operating instructions and software available (see product downloads)

Other LAUDA products

Circulation and process thermostats

*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.