Installation

Your extractor can be used to filter and recycle the air within your kitchen, or to extract the air outside. When extracting air to the outside, the unit can be vented as shown in the diagram below. Note that we recommend the use of ducting with a diameter of 150mm. Ducting with diameters of 100mm or 120mm may be used, but performance will be reduced.

When installing this appliance over a CDA hob, the clearance between the extractor and the hob must be equal to or exceed 450mm. This instruction overrides the instructions supplied with the CDA hob. (The height should be measured from the top of the hotplates or burners)

Where the extractor is to be installed above a non-CDA hob, the instructions supplied with the hob may dictate that the height required above the hob is greater than 450mm.

IN THE ABSENCE OF ANY INSTRUCTIONS SUPPLIED WITH THE HOB, THE MINIMUM DISTANCE BETWEEN THE HOB AND EXTRACTOR MUST BE AT LEAST 760mm.

Fitting your extractor to the wall

Before commencing the installation open front panel. Hold the panel as shown in figure 8 and lift upwards and out.

Fig. 6

A

 

 

min 45cm

Fig. 7

B

1

2

Fig. 8

6

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Image 7
CDA EVM9 manual Installation, Fitting your extractor to the wall

EVM9 specifications

The CDA EVM9 is an advanced evaluation module designed to facilitate the development and testing of applications based on state-of-the-art embedded computing technologies. This module is particularly aimed at engineers and developers who need a versatile platform for evaluating the performance and capabilities of various hardware and software components in embedded systems.

One of the main features of the CDA EVM9 is its robust processing power, powered by a high-performance microcontroller along with a range of integrated peripherals. The module supports multiple interfaces, including USB, I2C, SPI, and UART, which provide flexibility in communication and connectivity with other devices. This extensive range of interfaces makes it ideal for a variety of applications, from industrial automation to IoT devices.

In terms of memory, the CDA EVM9 comes equipped with both volatile and non-volatile options. The integration of RAM and flash memory allows for efficient data storage and retrieval, essential for real-time applications. This can be particularly beneficial when managing complex data sets or executing memory-intensive tasks.

The CDA EVM9 also features a user-friendly graphical interface that simplifies the programming process. Developers can leverage a rich software development environment with built-in libraries and tools, offering a smooth transition from concept to prototype. This platform supports multiple programming languages, which cater to a wide range of developer preferences, enhancing flexibility in application design.

In addition to its hardware and software capabilities, the CDA EVM9 emphasizes power efficiency. Designed with low-power consumption technologies, this module is ideal for battery-operated applications where energy conservation is crucial. The energy-efficient design does not compromise performance, ensuring that developers can create high-performing applications without excessive energy usage.

The characteristic ruggedness of the CDA EVM9 makes it suitable for deployment in various environments. Its durable design adheres to industry standards, providing reliability in demanding conditions.

Overall, the CDA EVM9 stands out as a comprehensive evaluation module that combines advanced features, robust technologies, and versatile characteristics. Its ability to integrate with a wide array of devices and systems makes it an indispensable tool for developers keen on pushing the boundaries of embedded applications. Whether for industrial purposes or academic research, the CDA EVM9 provides a significant advantage in terms of functionality and performance.