The HEB-W is a thermoelectric circulating bath comprised of a controller and liquid tank. Cooling is performed by a refrigerant-free peltier element, with extracted heat removed via facility water connection. Overall dimensions and power requirements are suitable for laboratory benchtop service. This model permits ordering the controller and tank in one part number.
Liquid tank 10 5.1 in (130 mm) x H7.1 in (180 mm) Liquid tank size W Water-cooled Radiating method Controller A HEBC002 C Controller Communication A B RS-485 RS-232C 163
Signal contents HEBC002-WA10 RS-485 T/R (A) RS-485 T/R (B) Unused Unused Unused Unused HEBC002-WB10 Unused RS-232C RX RS-232C TX Unused RS-232C SG Unused AWG14 Male connector 1 2 3 4 5 6-9 Signal contents 100 to 240 VAC (L) 100 to 240 VAC (N) PE Male connector Hirose Electric Co., Ltd.: CDA-15P Holding screw M2.6 Black 1 Black 2 Nanaboshi Electric Mfg. Co., Ltd.
Content 5 2 1 HEBC002-WA10 HEBC002-WB10 1 RS-485 T/R(A) Unused 2 RS-485 T/R(B) RS-232C RX 3 Unused RS-232C TX 9 6 4 Unused Unused 8 7 5 Unused RS-232C SG 6-9 Unused Unused Communication connector D-sub 9 pin (female) 7.3 Specifications of Connectors 7-7 A_HEC-OM-J004-4 Chapter 7 Appendix 7.4 Communication 7.4.1 Specifications Table 7-2 Communication Communication type HEBC002-WA10 HEBC002
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Series HEB thermoelectric bath accurately controls the temperature of liquid in the bath. Shift quickly from heating to cooling by changing the direction of the current supplied to the Peltier element (thermo-module/thermoelectric device), allowing temperature to be controlled very precisely. Possible applications include: evaporation of chemical for MOCVD, temperature control of diffusion
Communication: B (RS-232C), Option: N (NPT 1/4)
Series HEB thermoelectric bath accurately controls the temperature of liquid in the bath.? Shift quickly from heating to cooling by changing the direction of the current supplied to the Peltier element (thermo-module/thermoelectric device), allowing temperature to be controlled very precisely.? Possible applications include: evaporation of chemical for MOCVD, temperature control of diffusion