SPI9000 Inverter Unit FI9 – FI14 User Manual

September 2006

Jumper Block X1:

Jumper Block X2:

AI1 Mode

AI2 Mode

A B C D

A B C D

AI1 Mode: 0...20mA; Current Input

AI2 Mode: 0...20mA; Current Input

A B C D

A B C D

AI1 Mode: Voltage Input; 0...10V

AI2 Mode: Voltage Input; 0...10V

A B C D

A B C D

AI1 Mode: Voltage Input; 0...10V (Differential)

AI2 Mode: Voltage Input; 0...10V (Differential)

A B C D

A B C D

AI1 Mode: Voltage Input; -10...10V

AI2 Mode: Voltage Input; -10...10V

Jumper Block X6:

Jumper Block X3:

AO1 Mode

CMA and CMB Grounding

A B C D

CMB Connected to GND

 

 

CMA Connected to GND

AI1 Mode: 0...20mA; Current Output

CMB Isolated from GND

CMA Isolated from GND

 

A B C D

CMB and CMA

Internally Connected Together,

 

 

Isolated from GND

AO1 Mode: Voltage Output; 0...10V

 

= Factory Default

 

Figure 4-11: Jumper Selection for Option Board A9

CAUTION

Ensure that the jumper positions are correct. Running the motor with signal settings that differ from the jumper positions will not harm the inverter, but may harm the motor.

Note: If you change the AI/AO signal content, remember to change the corresponding board parameter in Menu M7.

MN04004002E

For more information visit: www.EatonElectrical.com

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Eaton Electrical SPI9000 user manual Jumper Selection for Option Board A9

SPI9000 specifications

The Eaton Electrical SPI9000 is a cutting-edge power management system designed to enhance efficiency and reliability in electrical distribution. This state-of-the-art solution integrates advanced technologies to optimize performance, making it an ideal choice for various industrial and commercial applications.

One of the standout features of the SPI9000 is its scalability. Businesses can easily adapt the system to meet their unique power needs, whether for a single facility or multiple sites. This flexibility is crucial in today's fast-paced environment, where operational demands can shift rapidly. The system is engineered to grow alongside your business, providing robust power management as requirements evolve.

At the heart of the SPI9000 is its intelligent monitoring capability. The system utilizes real-time data analytics to monitor energy consumption, detect anomalies, and predict maintenance needs. This proactive approach not only helps in reducing downtime but also cultivates a culture of energy efficiency within organizations. By leveraging insights derived from data, companies can make informed decisions that lead to significant cost savings.

The SPI9000 incorporates advanced communications technology, allowing seamless integration with existing building management systems. This interoperability is vital for creating smart grids and enhancing overall control of electrical networks. Additionally, the system supports various communication protocols, including Modbus, BACnet, and Ethernet, ensuring compatibility with a wide range of devices and applications.

Safety is paramount in any electrical system, and the SPI9000 excels in this regard. It features enhanced protective measures, including overcurrent protection, short-circuit protection, and arc flash detection, ensuring the safety of both personnel and equipment. These safety features not only safeguard investments but also contribute to creating a safer working environment.

Energy efficiency is another cornerstone of the SPI9000 design. The system is equipped with advanced power quality monitoring features, which help identify and mitigate issues related to harmonics, voltage sags, and swells. By maintaining optimal power quality, the SPI9000 ensures that equipment operates efficiently, extending its lifespan while reducing energy costs.

In summary, the Eaton Electrical SPI9000 is a versatile and efficient power management solution that brings together scalability, intelligent monitoring, advanced communication capabilities, enhanced safety features, and energy efficiency. Thanks to its innovative technologies and characteristics, the SPI9000 serves as an indispensable tool for modern businesses seeking to streamline their electrical operations and enhance their energy management strategies.