OPERATION

THREE-WIRE START GENERATORS

Three-wire start generators do not include automatic engine cranking control system. Separate control of the starter motor requires additional interaction between the inverter’s auto-control system and the generator. This also adds complexity to the installation since more wires must be connected and more programming of the inverter is required. Troubleshooting can also be more difficult.

The automatic control system controls the starter much like a person does when starting a car engine. The starter is turned on for short periods of time and then turned off. If the engine starts up while cranking, the starter is turned off after a 1/2-second delay. If the engine does not start, the starter is turned on again after a delay period. This is repeated until either the generator starts or the maximum number of start attempts is reached.

The common term “three-wire start” may be misleading - the actual number of wires used may be four or more. It simply means that control of the starter motor is done separately from the generator. Most three- wire start generators are not designed for automatic, unattended operation. The generator supplier should be consulted regarding additional safety components required for your installation. The automatic control system only provides the starting and stopping signals based on what the batteries need. It will not shut off the generator if a problem such as low oil pressure occurs.

Three-wire start type generators can be divided into two basic types - “Honda” types and “Onan” types. The Honda type uses an automotive type starting circuit as previously discussed. Operating a switch that is first turned to “RUN” and then momentarily held to a “START” position starts it. Once the engine has started, the switch is released and it returns to the “RUN” position. To shut down the generator, the switch is placed in the “OFF” position. For this type of generator, relay RY7 duplicates the “RUN” position and relay RY8 duplicates the “START” position, cranking the starter motor. For this type of generator, select RUN from the SET RY7 FUNCTION menu item under the GEN STARTING DETAILS (13) menu heading. This is the default setting of this menu item.

GEN CONTROL RELAYS

RY7

COM

N.O.

 

COM

 

RY8

N.O.

 

 

 

HONDA TYPE GENERATOR

5 AMP FUSE

STOP SWITCH

 

CONTACTS

5 AMP FUSE

START SWITCH

 

 

CONTACTS

Figure 24, Three Wire Start Wiring Diagram (HONDA Type)

Onan type generators use a different starting sequence. Most Onan type generators use a three-position momentary type switch that controls their operation. To start the generator, the switch is held to the “START” position. This energizes the ignition system and cranks the starter motor. Once the engine has started, the switch is released and it returns to a center off position. The starter motor then stops cranking but the ignition system remains energized. To shut down the generator, the switch is held to the “STOP” position until the engine dies. Once the handle is released, it returns to the center position. For this type of generator, relay RY8 duplicates the “START” position and relay RY7 is used to duplicate the “STOP” position (using the common and normally open contacts). Some generators use a similar system with two push button switches - one to start and one to stop.

GEN CONTROL RELAYS

RY7

COM

N.O.

 

COM

 

RY8

N.O.

 

 

HONDA TYPE GENERATOR

5 AMP FUSE

STOP SWITCH

 

CONTACTS

START SWITCH

CONTACTS

Figure 25, Three-Wire Start Wiring Diagram (ONAN Type)

2001 Xantrex Technology, Inc.

Telephone: 360/435-8826

SW Series Inverter/Charger

5916 - 195th Street N. E.

Fax: 360/435-2229

Part No. 2031-5

Arlington, WA 98223

www.traceengineering.com

Rev. C: February 2001

Page

77

Page 85
Image 85
Xantrex Technology SW Series owner manual THREE-WIRE Start Generators, Honda Type Generator

SW Series specifications

Xantrex Technology has established itself as a leader in innovative power solutions, and its SW Series inverters epitomizes this commitment to quality and efficiency. Designed for both standalone and grid-tied applications, the SW Series offers versatile power management for a range of residential and commercial needs.

At the heart of the SW Series is its advanced pure sine wave output, ensuring clean and reliable electricity suitable for sensitive electronics. This feature makes it an excellent choice for applications such as solar energy systems, where it provides high-quality power for a variety of devices, from household appliances to complex machinery.

One of the key characteristics of the SW Series is its modular design, which allows for easy installation and scalability. This modularity enables users to expand their power system as their energy needs grow, making it an ideal choice for both small and large installations. The inverters come equipped with a user-friendly interface, providing clear information on system performance, battery status, and more, ensuring that users can effectively monitor and manage their energy consumption.

The SW Series inverters also incorporate cutting-edge technology, such as the patented Power Factor Correction (PFC) feature, which optimizes energy efficiency by reducing harmonic distortion. This translates into less wasted electricity and lower energy costs, making it an environmentally friendly option for users looking to reduce their carbon footprint.

Another notable feature of the SW Series is its ability to operate in extreme conditions. Built with robust components and advanced thermal management systems, these inverters can withstand a wide range of temperatures and environmental challenges, ensuring reliable performance in various settings. This durability makes them suitable for off-grid applications, including remote cabins, RVs, and boats.

Furthermore, the SW Series supports a variety of battery types, including lithium-ion, AGM, and gel batteries, offering flexibility for users to choose the best energy storage solution for their needs. The sophisticated battery management system ensures optimal charging and discharging, prolonging the lifespan of the batteries and enhancing the overall efficiency of the power system.

In summary, Xantrex Technology's SW Series inverters stand out for their pure sine wave output, modular design, energy efficiency features, and robust performance in challenging conditions. With their versatility and advanced technology, they cater to the evolving needs of today’s power consumers, making them a compelling choice in the modern energy landscape.