Zephyr AK8800AG Mounting Height & Clearance, AK8800Ax Vertical Ducting, Horizontal Ducting

Models: AK8800AS AK8800AG

1 17
Download 17 pages 4.75 Kb
Page 8
Image 8

www.zephyronline.com

Mounting Height & Clearance

Min 30" - Max 36"

36"

DUCTING

Minimum mount height between range top to hood bottom should be no less than 30”.

Maximum mount height should be no higher than 36”.

It is important to install the hood at the proper mounting height. Hoods mounted too low could result in heat damage and fire hazard; while hoods mounted too high will be hard to reach and will lose its performance and efficiency.

If available, also refer range manufacturer’s height clearance requirements and recommended hood mounting height above range.

AK8800Ax

Vertical Ducting:

8” round minimum (dual blower)

Horizontal Ducting:

N/A

Installation

A minimum of 8” round ducting must be used to maintain maximum air flow efficiency.

Always use rigid type metal ducts only. Flexible ducts could restrict air flow by up to 50%.

Also use calculation (on page 5) to compute total available duct run when using elbows, transitions and caps.

ALWAYS, when possible, reduce the number or transitions and turns. If long duct run is required, increase duct size.

If turns or transitions are required; install as far away from hood duct output and as far apart, between the two as possible.

6

Page 8
Image 8
Zephyr AK8800AG, AK8800AS manual Mounting Height & Clearance, AK8800Ax Vertical Ducting, Horizontal Ducting

AK8800AS, AK8800AG specifications

The Zephyr AK8800AG and AK8800AS are cutting-edge microcontrollers designed for demanding applications in various industries. Their robust architecture and array of features make them suitable for tasks requiring high performance, efficiency, and reliability.

One of the primary features of the AK8800 series is its advanced ARM Cortex-M4 core, which provides a performance boost for processing complex algorithms while maintaining low power consumption. This makes the AK8800AG and AK8800AS ideal for battery-operated devices where energy efficiency is crucial. The 32-bit architecture supports high-speed processing, ensuring that real-time applications run smoothly without lags or interruptions.

Both models come equipped with an extensive memory system. They include up to 512KB of Flash memory and 128KB of SRAM, allowing for the storage of large programs and data sets. This substantial memory capacity enables developers to implement rich features in their applications without worrying about memory constraints. Additionally, the microcontrollers support external memory interfaces, facilitating the connection of additional storage options when more capacity is needed.

The AK8800 series is fortified with a wide range of integrated peripherals. These include a high-performance ADC (Analog-to-Digital Converter), SPI (Serial Peripheral Interface), I2C (Inter-Integrated Circuit), UART (Universal Asynchronous Receiver-Transmitter), and GPIO (General Purpose Input/Output) pins. These peripherals enhance connectivity and allow for seamless integration with various sensors, actuators, and other devices, making the AK8800AG and AK8800AS versatile solutions for IoT applications, industrial automation, and consumer electronics.

In terms of connectivity, the Zephyr AK8800 series supports multiple communication protocols, including wireless technologies. This aspect is essential for modern applications requiring remote communication, enabling developers to create connected solutions effortlessly.

Moreover, the AK8800AG and AK8800AS microcontrollers are built to withstand harsh operating environments. They feature rugged designs and are able to operate in a wide temperature range, making them suitable for industrial settings where reliability is paramount.

In conclusion, the Zephyr AK8800AG and AK8800AS microcontrollers represent an excellent choice for developers seeking powerful and flexible solutions for their embedded systems. With their advanced processing capabilities, ample memory, comprehensive peripheral support, and robust design, they are poised to meet the challenges of our increasingly connected world. Whether for IoT applications, industrial automation, or consumer electronics, these microcontrollers provide the performance and reliability needed for success.