M506 p/n 304964 OpManual WVOC-4 Series Ventless Hotplate Cooktop Convection Oven

CLEANING INSTRUCTIONS (continued)

HOTPLATE CLEANING INSTRUCTIONS

CAUTION:

PRECAUTIONS

Turn oven controls to OFF

 

Allow hotplates to cool

FREQUENCY

Daily

TOOLS

Mild Detergent, Soft Cloth or Sponge

 

Non-abrasive Cleaner, Plastic Scouring Pad

BURN HAZARD

Turn off both hotplates and allow to cool before cleaning

CAUTION:

ELECTRIC

SHOCK HAZARD

1.Turn both controls to OFF. Allow both hotplate elements to cool.

2.Wipe the entire hotplate top panel using a clean cloth or sponge, dampened with hot water and a mild detergent. For burned-on foods or sauce spillage, use a non-abrasive cleanser applied with a plastic scouring pad.

3.Rinse hotplates and top panel with a soft cloth dampened with clean water.

DO NOT splash or pour water onto warmer, control panel or wiring.

CAUTION:

HEAT AND

SMOKE HAZARD

Keep the ventilator fan running during any "hot surface" cleaning operation to avoid a build-up of heat and/ or smoke.

IMPORTANT: Avoid Fire Suppression System discharge!

Keep the ventilator fan running during any "hot surface" cleaning operation to avoid melting a fusible link and causing a discharge of the fire suppression media.

IMPORTANT:

This appliance is not jet stream approved. Do not direct water jet or steam jet at this appliance, or at any control panel or wiring. Do not splash or pour water on, in or over any controls, control panel or wiring.

IMPORTANT:

Always wipe or rub in the direction of the polish lines or grain of the metal.

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Wells WVOC-4HS operation manual Hotplate Cleaning Instructions, Electric, Heat

WVOC-4HS specifications

The Wells WVOC-4HS is a cutting-edge vaporizer designed to meet the needs of various industrial applications, particularly in the pharmaceutical and chemical sectors. Known for its exceptional performance and reliability, the WVOC-4HS stands out with its innovative features and advanced technologies.

One of the main features of the Wells WVOC-4HS is its high-efficiency heating system. Utilizing advanced thermal conduction methods, this vaporizer ensures rapid and uniform heating of the material, minimizing any potential degradation while maximizing output. Its robust design supports a variety of materials, providing versatility in application.

The WVOC-4HS is equipped with a user-friendly digital control interface that allows for precise temperature regulation and monitoring. This feature is crucial in industries where specific temperature thresholds must be maintained for optimal safety and efficacy. The control system can be integrated with existing automated systems, enabling seamless operation and consistent performance.

Another important characteristic of the Wells WVOC-4HS is its safety protocols. The design incorporates multiple safety features, including over-temperature protection and pressure relief valves. These systems are designed to prevent accidents and ensure a safe operating environment for all personnel.

The vaporizer’s construction is also noteworthy, as it is made from high-grade, corrosion-resistant materials. This not only increases the longevity of the device but also ensures that it can withstand various chemicals, making it a dependable choice for rigorous industrial use. This durable build quality is essential for maintaining performance in demanding environments.

Additionally, the Wells WVOC-4HS boasts a compact design that allows for easy installation and integration into existing setups. Its lightweight architecture aids in reducing space requirements without compromising on performance.

In summary, the Wells WVOC-4HS is a reliable and efficient vaporizer that combines high-efficiency heating, advanced digital controls, robust safety features, and durable construction. Its versatility makes it an ideal choice for industries that require precise vaporization processes, ensuring optimal performance in every application. Whether used in pharmaceutical production or chemical processing, the WVOC-4HS exemplifies technological advancement and reliability in vaporization.