Adjusting The Wake Up Times

Your SmartSet® clock radio has two separate alarms that can be set and used independently. You may use the alarms to wake two people at different times, or you may use one alarm for weekdays and the other for weekend wake up times.

The procedure for adjusting the wake up time is the same for both Alarm 1 and Alarm 2.

1.) Depress and hold either the ALARM 1 or ALARM 2 setting button.

The display will change from the correct time to the Alarm 1 or Alarm 2 wake up time.

2.) While holding the ALARM 1 or ALARM 2 setting button, depress either the SET + or button to move the display ahead or back to your desired wake up time.

3.) When the desired wake up time appears on the display, release the SET + or

buttons.

NOTE: Be sure that you have set the wake up time correctly by observing the AM indicator. If the AM indicator is ‘On’the wake up time is “AM”. If the AM indicator is ‘Off’, the wake up time is “PM”.

4.) When the desired wake up time (AM or PM) appears on the display, release the ALARM 1 or ALARM 2 setting buttons.

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Emerson CKS3525, CKS3526 owner manual Adjusting The Wake Up Times

CKS3525, CKS3526 specifications

The Emerson CKS3526 and CKS3525 are high-performance digital controllers renowned for their innovative features and advanced technologies. Designed for industrial applications, these controllers provide unparalleled precision in temperature regulation and control, making them a top choice for manufacturers and operators.

One of the standout features of the CKS3526 and CKS3525 models is their user-friendly interface. Both models are equipped with a large, easy-to-read LCD screen that displays relevant parameters clearly, enabling operators to monitor conditions at a glance. The intuitive navigation makes it simple to adjust settings, reducing downtime and increasing operational efficiency.

In terms of connectivity, both controllers support a variety of communication protocols. This flexibility allows operators to integrate the devices seamlessly into existing industrial systems, enhancing overall productivity. They are compatible with popular protocols such as Modbus, enabling straightforward data transmission and real-time monitoring.

The technology behind these controllers includes advanced PID (Proportional-Integral-Derivative) control algorithms, ensuring precise temperature regulation. This technology not only stabilizes process parameters but also improves the energy efficiency of industrial systems by minimizing temperature fluctuations. Additionally, the controllers utilize self-tuning capabilities which automatically optimize control settings, adapting to changes in process dynamics without manual intervention.

Another significant characteristic is their robust design, aimed at withstanding harsh industrial environments. Built with durable materials, the CKS3526 and CKS3525 are resistant to dust, moisture, and temperature variations, ensuring long-term reliability and reducing maintenance costs.

Moreover, these models feature comprehensive alarm and event logging functions. Operators can easily set programmable alarms for predefined conditions and track historical data, which assists in predictive maintenance and quality control processes.

Safety is a priority in the design of both controllers. They incorporate features such as over-temperature protection, ensuring that the system remains safe under all operating conditions. This focus on safety is critical in preventing costly downtime and equipment damage.

In summary, the Emerson CKS3526 and CKS3525 controllers provide cutting-edge solutions for temperature regulation in various industrial applications. With their user-friendly interface, robust communication capabilities, advanced PID control technology, and durable design, they represent some of the best options available for enhancing operational efficiencies and ensuring safety in industrial environments.