Emerson VE, VH, DE, DH Circuit Board Adjustments, Steam generating humidifier capacity, Capacity

Models: VE DH VH DE

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Component Operation and Maintenance, Checks and Adjustments

Circuit Board Adjustments

! WARNING

Circuit board adjustment should be performed by qualified personnel only. Hazardous voltages are present in the equipment throughout the procedure. Use extreme caution. If desired, power may be disconnected prior to the procedure.

NOTE

Numbers and percentages within parentheses ( ) in the following paragraphs refer to circuit board settings for downflow models FH599C, 600C, 739C and 740C.

Humidifier operation is governed by the humidifier control board. This board is located in the lower right area of the panel in the control section of the unit, or in the humidifier compartment on models FH599C, 600C, 739C and 740C. There are two potentiometers mounted on the board. These pots can be used to adjust for extreme water conductivity conditions and capacity.

The “%” pot controls the amperage at which the drain will energize. The pot is clearly marked in per- centages. This adjustment is factory set, which indicates that the unit will drain when the amperage falls off of the capacity setpoint. Raising the value increases the frequency of drain cycles. Lowering the value decreases the frequency of drain cycles. The frequency should be increased for highly con- ductive water and decreased for less conductive water. If adjustment is necessary, and a change of three to four percent in either direction does not permit normal operation of the unit, consult your Liebert supplier.

The pot marked “SEC” controls the duration of the drain cycle. The pot is clearly marked in seconds. This adjustment is factory set at 60 (84) seconds and should not be readjusted without consulting your Liebert supplier.

Table 19 Steam generating humidifier capacity

 

 

Capacity

60 Hz Models

50 Hz Models

lbs/hr (kg/hr)

 

 

 

75A, 72G, 86W, 114A, 110G, 127W, 125A,

75A, 72G, 86W, 147C, 200C, 248C

11 (5)

116G, 138W, 147C, 200C, 248C

 

 

199A, 192G, 219W, 245A, 240G, 267W,

115A, 111G, 128W, 130A, 121G, 143W,

22 (10)

290A, 265G, 315W, 380A, 363G, 412W,

199A, 192G, 219W, 245A, 240G, 267W,

 

302C, 376C, 422C, 529C, 600C, 740C

290A, 265G, 315W, 380A, 363G, 412W,

 

 

302C, 376C, 422C, 529C, 599C, 739C

 

! CAUTION

The DIP switches must be set exactly as indicated in Table 20. Failure to correctly set the DIP switches may result in an electrical or water hazard.

The DIP switches are used to set the capacity of the humidifier. These are preset at the factory and should not be changed. Refer to Table 19 for the capacity of your unit. Find your unit voltage and capacity in Table 20 to determine the correct DIP switch settings for your humidifier. A potentiome- ter (R40) is used to regulate the capacity of the humidifier. This adjustment is factory set fully clock- wise to 100%. It can be used to reduce humidifier capacity, but should never be used to raise the capacity above the capacity for your model. Turn the adjustment counterclockwise to reduce your capacity. The minimum setting is approximately 50% of the DIP switch setting.

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Emerson VE, VH, DE, DH Circuit Board Adjustments, Steam generating humidifier capacity, Capacity, Hz Models Lbs/hr kg/hr

VE, DH, VH, DE specifications

Emerson is a well-known brand in the field of automation solutions, offering a range of products that cater to various industries. Among its diverse portfolio, Emerson’s products like DE (Digital Electronics), VH (Variable Frequency Drives), DH (Distributed Control Systems), and VE (Valve Positioners) stand out for their advanced features, cutting-edge technologies, and unique characteristics.

Digital Electronics (DE) from Emerson represents the backbone of modern automation systems. These devices are characterized by their highly reliable digital communication capabilities, providing robust solutions for process monitoring and control. DE products integrate seamlessly with various automation platforms, allowing for easy data exchange and system interoperability. The advanced analytics embedded in these systems enable predictive maintenance strategies, enhancing overall operational efficiency.

Variable Frequency Drives (VH) are integral to motor control technologies, maximizing energy efficiency in various applications. Emerson's VH drives are designed for flexibility, supporting multiple motor types and configurations. These drives utilize pulse width modulation (PWM) technology, allowing for precise speed control and improved application performance. Their built-in protection features help extend motor life, prevent downtime, and reduce maintenance costs. Furthermore, the user-friendly interfaces of VH drives facilitate quick setup and troubleshooting.

Distributed Control Systems (DH) from Emerson provide a holistic approach to managing complex industrial processes. They enable centralized control while ensuring that local operations continue seamlessly. DH systems are characterized by their modular architecture, making them highly scalable and adaptable to changing operational needs. Advanced control algorithms within these systems help optimize processes, ensuring maximum productivity. Additionally, their enhanced cybersecurity features protect critical industrial operations from potential threats.

Emerson's Valve Positioners (VE) play a crucial role in regulating flow and pressure in various processes. These devices provide precise positioning capabilities, enhancing the performance of control valves. The VE systems incorporate smart technologies such as adaptive control and diagnostics, allowing them to self-tune and deliver accurate performance over time. Their compact design and robust build ensure they operate effectively in challenging environments.

In summary, Emerson's DE, VH, DH, and VE offerings embody the latest innovations in automation technology. Their main features, including digital communication, energy efficiency, scalability, and precision control, cater to the diverse demands of modern industries. With these products, Emerson not only enhances operational efficiency but also paves the way for intelligent automation solutions that are crucial for the future of industrial processes.