Control System

Components

FRCL (Free Cooling Option)

1A11 Optional Quad

FRCL

Relay #1

Free Cooling Relay 1,

J2- 4 NO to J2-6 common

Relay Output Status

 

 

 

 

1A20 Optional Dual LV

FRCL

Signal #1

External Free Cooling Switch,

J2-1 Binary Input Signal #1,

Binary input module

 

 

 

J2-2 Ground

1A20 Optional Dual LV

FRCL

Signal #2

Free Cooling Valves closed

Not for field use

Binary input module

 

 

 

 

HGBP (Hot Gas Bypass Option)

 

 

 

1A7 Dual High Voltage

HGBP

#1

Hot Gas Bypass input

Not for field use

Binary input

 

 

 

 

1A12 Optional Quad

HGBP

Relay #1

Auxiliary relays

Not for field use

Relay Output Status

 

 

 

 

TRMM TRM4 (Tracer Comm 4 interface)

 

 

1A14 Optional

TRM4

 

Tracer Communications

J2-1 COMM+, J2-2 COMM -J2-3,

Communication

or

 

 

COMM +J2-4, COMM -,

Interface Module

LCI-C

 

 

 

CDRP (Condenser Refrigerant Pressure Output)*

1A15 Optional Dual Analog

CDRP

Signal #2

Condenser Refrigerant

J2-4 Output #2, J2-6 Ground

Input/output Module

or GBAS

 

Pressure output

 

EPRO (Enhanced Protection)

 

 

 

 

4R22

EPRO

Condenser Refrigerant Pressure Transducer

 

4R16

EPRO

Compressor Discharge Refrigerant Temperature Sensor. (This is also included with H6BP).

4R1

EPRO

Inboard Bearing Temperature Sensor

 

 

4R2

EPRO

Outboard Bearing Temperature Sensor

 

 

*See CTV-PRB006-EN for “Condenser Water Temperature Control”.

CVHE-SVU01E-EN

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Trane CVHE-SVU01E-ENX39640712050 Frcl Free Cooling Option, Hgbp Hot Gas Bypass Option, Trmm TRM4 Tracer Comm 4 interface

CVHE-SVU01E-ENX39640712050 specifications

The Trane CVHE-SVU01E-ENX39640712050 is a high-efficiency centrifugal chiller designed for commercial and industrial applications. This state-of-the-art unit is engineered to provide reliable cooling performance, energy efficiency, and optimized operational flexibility. It is particularly suitable for large-scale facilities that require significant cooling capacity and robust performance under varying load conditions.

One of the most notable features of the CVHE-SVU01E series is its advanced variable speed drive technology. This technology enables the chiller to adjust its speed according to the cooling demands of the facility, resulting in substantial energy savings. By operating at optimal speeds, this unit reduces power consumption and enhances overall efficiency. This is noteworthy in the context of rising energy costs and increasing sustainability demands across various industries.

Moreover, the CVHE-SVU01E is equipped with Trane’s proprietary Compliant Scroll compressor technology. This innovative compressor design minimizes mechanical losses and increases the efficiency of the chiller system. Additionally, the compressor is specifically designed to handle varying refrigerant flow rates, allowing the chiller to maintain performance even when faced with fluctuating conditions.

Another significant characteristic of this chiller model is its use of environmentally friendly refrigerants, aligning with global regulations aimed at reducing greenhouse gas emissions. This commitment to sustainability ensures that the CVHE-SVU01E not only provides excellent cooling performance but also adheres to contemporary environmental standards.

The unit utilizes an advanced control system that simplifies operation and enhances troubleshooting capabilities. The intuitive interface allows facility managers to monitor performance metrics, optimize operation schedules, and conduct remote diagnostics, significantly reducing costly downtime and maintenance efforts.

Furthermore, the compact and modular design of the CVHE-SVU01E makes it easy to install in various settings. Its durability is ensured through the use of high-quality materials and components, designed to withstand the rigors of demanding environments. With reduced maintenance requirements, facility operators can focus on core business functions without frequent interruptions.

In summary, the Trane CVHE-SVU01E-ENX39640712050 combines cutting-edge technologies and features to deliver exceptional performance, efficiency, and reliability in commercial cooling applications. Its advanced design contributes to reduced energy costs, minimal environmental impact, and greater operational flexibility, making it an excellent choice for organizations seeking sustainable and efficient cooling solutions.