STEP 5: Connect the end of the 1/2” ID x 38” hydraulic pressure hose (1) coming from the fitting on the pump to the fitting on the valve. See illustrations below.

STEP 6: Slide one hose clamp on the end of the 1/2” x 56” hydraulic return hose (2 ) that comes from the fitting on the filter. Then connect the hose to the fitting on the valve.Tighten hose clamps. See illustrations below.

Area of

Detail

ITEM NO.

DESCRPTION

QTY.

1

1/2” X 38” Pressure Hose

1

2

3/4” x 56” Return Hose

1

3

Worm Gear Clamp

3

STEP 7: Loosely attach the latch assembly (1) to the bottom side of the beam as shown in the diagram using the two 1/2” x 1-1/4” GR 5 hex cap bolts (4), the two 1/2” lock washers (3) and the two 1/2” hex nuts (2). Lower the beam onto the tongue. Center the latch assembly on the tongue and tighten hardware.

ITEM NO.

DESCRIPTION

QTY.

1

Beam Lock

1

2

1/2” Hex Nut

2

3

1/2” Lock Washer

2

4

1/2” x 1-1/4” GR5 Hex Cap Bolt

2

5

Beam Assembly

1

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Oregon S402022H0/S402022K0 owner manual Item no Descrption QTY

S402022H0/S402022K0 specifications

Oregon S402022H0 and S402022K0 are two advanced weather stations designed for both hobbyist meteorologists and professionals alike. These models are part of Oregon Scientific’s commitment to providing high-quality, reliable weather monitoring solutions that cater to a wide range of users.

One of the main features of the S402022H0 and S402022K0 is their ability to deliver accurate real-time weather data. Equipped with high-precision sensors, these devices can measure temperature, humidity, atmospheric pressure, wind speed, and rainfall. This comprehensive data collection allows users to gain insights into local weather patterns, essential for planning outdoor activities or managing agricultural practices.

Both models stand out due to their user-friendly interfaces, featuring clear LCD screens that display the weather data in an easily readable format. Additionally, these weather stations often come with wireless capabilities, allowing the sensors to communicate with the main unit without cumbersome wiring. This feature enhances the installation flexibility, as sensors can be placed in optimal locations without concern for running wires back to the display unit.

Another significant technological advancement in the Oregon S402022H0 and S402022K0 is support for connectivity with mobile devices. Users can often sync the data from these weather stations to smartphones or tablets via dedicated apps. This connectivity ensures that users can monitor weather conditions remotely, offering convenience and flexibility, especially for those on the go.

Moreover, these models typically offer robust data logging capabilities. Users can track historical weather data over time, enabling them to analyze trends and make informed decisions based on past weather patterns. This feature is particularly beneficial for researchers and professionals in agriculture, construction, and environmental sciences.

The S402022H0 and S402022K0 weather stations are also designed with durability in mind. Constructed to withstand various environmental conditions, these devices can function reliably in various climates, making them suitable for both indoor and outdoor use.

In summary, the Oregon S402022H0 and S402022K0 weather stations impress with their comprehensive feature set, technological advancements, and reliable performance. They are invaluable tools for anyone looking to enhance their understanding of their local weather conditions while enjoying the convenience of modern technology.