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IKA HBC 10 control Heating Bath Circulator, Bath 8 to 11 l, TFT Display, 0004137000

Product information "IKA HBC 10 control Heating Bath Circulator, Bath 8 to 11 l, TFT Display, 0004137000"

The HBC 10 control combines the control equipment with 8 to 11 l filling volume, as the HBC 10 basic also has. Heating bath circulator, stainless steel bath, up to 250 °C working temperature, 2,500 W heating power. The device measures 275 x 456 x 506 mm and weighs 18.3 kg, which makes it 50 mm higher and 6 mm deeper than the HBC 5 control.

Display and menu

The colour TFT graphic display is removable and wireless. It can be operated from a distance of up to 10 m, for example in front of a closed fume hood. Temperature setting, pump speed, filling level and safety temperature are displayed. The menu guidance is multilingual and picture-based, and operation is by push and rotary knobs. The device switches between internal and external control at the push of a button, and the timer ranges from 0 to 99 h 59 min.

Temperature data

The temperature stability is ±0.01 K according to DIN 12876, and the display resolves to 0.01 K. The set temperature can be set to an accuracy of 0.1 K. The working range starts at room temperature plus 10 K and ends at 250 °C, with external cooling down to -20 °C. A PT 100 measures the working temperature, a PT1000 monitors safety, and an external PT 100 probe can be connected.

Pump and bath

The pressure/suction pump delivers up to 31 l/min at 0 bar back pressure with at most 0.61 bar, on the suction side 0.45 bar. The pump output can be varied. The bath is insulated, and the drain valve is at the front. For emptying, a hose is connected. Pump connections M16x1, cooling coil NW 8.

Multi-interface and safety

The multi-interface has a potential-free alarm output (max. 30 V AC/DC, 1 A), a switching output for a solenoid valve (24 VDC, max. 0.8 A) and a standby input (5 VDC). The safety circuit is adjustable from 0 to 260 °C, low and high level protection and warning functions are present, and the classification is class III FL. For the PC there are RS 232 and Micro-USB, the labworldsoft software controls and monitors, and the device software can be updated online. Two batteries (LiPo 3.7 V / 7.4 Wh, CR2032 3 V / 0.69 Wh) are built into the device.

Typical applications

  • Temperature control in the bath with 8 to 11 l filling volume up to 250 °C
  • Operating the removable display from a distance of up to 10 m
  • Setting the timer up to 99 h 59 min
  • Controlling a solenoid valve via the multi-interface
  • Control either internal or on an external probe
  • Circulating temperature control medium to external consumers

Selection guide

The HBC 10 basic has the same filling volume with LED display and ±0.02 K. The control display with a smaller bath of 5 to 7 l is carried by the HBC 5 control. A package with bridge circulator and stainless steel bath is the IC control pro 20 c.

Technical details

Device typeHeating bath circulator with stainless steel bath
Filling volume8 to 11 l
Class and marking according to DIN 12876III, FL
Heating power / power consumption2500 W / 2650 W
Working temperatureRoom temp. +10 K @1000 rpm to 250 °C
Operating temperature min. (with external cooling)-20 °C
Temperature controlPID
Working temperature probe / safety temperature probePT 100 / PT1000
Connection for external temperature probePT 100
Temperature stability according to DIN 12876±0.01 K
Display of working and safety temperatureTFT
Display resolution0.01 K
Setting accuracy of set temperature0.1 K
Safety circuit, adjustable0 to 260 °C
Low and high level protectionyes
Pump typePressure/suction pump, pump output variable
Max. pump pressure / suction side max. (0 l flow rate)0.61 bar / 0.45 bar
Max. flow rate (0 bar back pressure)31 l/min
Pump connections / cooling coilM16x1 / NW 8
Multi-interfaceAlarm output potential-free max. 30 V AC/DC, 1 A; switching output solenoid valve 24 VDC, max. 0.8 A; standby input 5 VDC
Permissible duty cycle100 %
InterfacesRS 232, Micro-USB
Dimensions (W x H x D)275 x 456 x 506 mm
Weight18.3 kg
Ambient temperature / relative humidity5 to 40 °C / max. 80 %
Protection class according to DIN EN 60529IP 21
Batteries in the device2 pieces, built in (custom LiPo 3.7 V / 7.4 Wh, CR2032 3 V / 0.69 Wh)
Power supply230 V, 50/60 Hz

Scope of delivery

  • 1 x HBC 10 control heating bath circulator
  • 2 x Hose olive NW 12
  • 1 x CC1 cooling coil
  • 1 x Screwdriver (for the safety circuit)
  • 1 x OS 1.0 power supply unit (for WiCo)
  • 1 x USB cable, USB A to Micro-B, 2 m
  • 1 x USB 2.0 cable, Micro A to Micro B

Warranty and procurement service

The IKA manufacturer's warranty of 2 years applies to the HBC 10 control, extended to 3 years on registration at ika.com/register within 90 days of purchase. On request we procure hoses, accessories and further parts.

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IKA MV 1 solenoid valve for cooling water control, 0020003763
IKA MV 1 solenoid valve for cooling water control, 0020003763
Herstellernummer: 0020003763

Thermodynamic control loops and exothermic compensation In chemical reaction engineering and the synthesis of high-molecular-weight polymers, absolute control over the reaction temperature is of critical importance. Particularly in the case of exothermic reactions, in which massive amounts of thermal energy are released at the molecular level, the system must cool down immediately to prevent thermodynamic runaway of the reactor. The IKA MV 1 solenoid valve is the fluid-mechanical actuator for this cooling process. Integrated into the cooling water circuit of a laboratory reactor, it acts as an electronic switch for the fluid. If the reaction medium exceeds the programmed setpoint temperature at the temperature sensor, the valve receives an electrical control pulse, opens the flow path and floods the cooling jacket or the system’s internal reflux cooler with temperature-controlled cooling water, thereby immediately maximising convective heat exchange. Electromagnetic Actuation and Fluid Mechanics The physical operating principle of the MV 1 is based on electromagnetic kinematics. When de-energised, a mechanical spring holds the valve piston (armature) in a completely sealed position against the valve seat. This safety principle (normally closed) ensures that, in the event of a power failure, the cooling water circuit is blocked and the laboratory infrastructure is not flooded. When current is applied to the integrated copper coil, it induces a strong magnetic field. The resulting Lorentz force pulls the metallic armature into the coil against the static spring pressure, opening the flow cross-section in fractions of a millisecond. These extremely short switching times allow the higher-level PID controller of the IKA reactor system to regulate the cooling water flow rate at a high frequency in a clocked manner, thereby eliminating thermal oscillations. Pressure stability and prevention of hydrodynamic shocks The switching of incompressible fluids (such as water) in pressurised piping systems inevitably generates massive hydrodynamic pressure peaks (known as pressure surges or water hammer) when the valve closes abruptly. The internal flow architecture of the IKA MV 1 solenoid valve is physically designed to cushion the closing kinetics of the armature in such a way as to minimise these shock waves in the fluid. This reliably protects the sensitive borosilicate glass coolers and the elastomeric hose connections in the reactor assembly from mechanical destruction caused by burst pressure. Metrological system integration The valve does not operate independently, but acts as the precise final element in a complex metrological control loop. It is connected electrically directly to the corresponding relay or control outputs of IKA temperature controllers or reactor base stations (such as the LR 1000 control). This integration transforms the laboratory reactor from a purely heated vessel into a fully automated, bidirectionally temperature-controlled (heating and cooling) thermodynamic system. Technical details Product type: Electromagnetic valve (solenoid valve) Process function: Fluid-mechanical cooling water control Operating principle: Electromagnetic actuation via copper coil Safety design: Normally closed (NC) Thermodynamic benefit: Precise compensation of exothermic reactions Fluid mechanics: Optimised to prevent hydrodynamic pressure surges (water hammer) System integration: Direct control via IKA base stations or temperature controllers Power supply: Supplied via the connected IKA control unit Media compatibility: Designed for aqueous cooling media in piping systems Contents of delivery 1 x IKA MV 1 solenoid valve (Important note: IKA control units, cooling water hoses and reactor infrastructure are not included in the scope of delivery!) Individual requirements & accessories The IKA MV 1 solenoid valve is a purely fluid-mechanical actuator and will not function without a higher-level PID controller. To automate the cooling circuit, the valve must be connected to the appropriate measurement and control technology (e.g. a contact thermometer, a base station or a thermostat with a cooling water relay). Pressure-resistant silicone or EPDM hoses and hose clamps are also required for the mechanical connection to the domestic water supply and the reactor cooler. Please contact our procurement service at any time for the thermodynamically correct design of your cooling systems.

Sale price: €402.00 Manufacturer's RRP: €536.00 25% below manufacturer's RRP