B60P3/14

CONTROL PANELS FOR POWER SYSTEMS
20170246700 · 2017-08-31 ·

Control panels for welding systems are disclosed. An example power system for a vehicle includes a generator to generate electrical power and to be installed on the vehicle; a first case component configured to be attached to a surface of the vehicle; and a second case component configured to be attached to the first case component to form an enclosure, the second case component comprising: a user control device configured to receive a user input for controlling an output of the generator; and an electrical output configured to output at least a portion of the electrical power generated by the generator.

Chassis assembly for installation in a bed of a pickup truck
11396256 · 2022-07-26 ·

An easily attachable and removable self-contained slide in storage, safety and warning light chassis assembly for use by the traffic control industry and others is described. The chassis assembly includes a bed portion that is built to slide into a pickup truck bed. Associated removable jacks can be used to raise and support the chassis while a truck is backed up under it, or where the jacks include castors, the assembly is rolled into the truck. Additionally, a safety platform portion is included on the rear portion of the chassis assembly, so that when installed it is disposed behind the bed of the truck for use in the placement and pickup of traffic control devises. The chassis assembly can be mounted securely to the factory hitch of truck as well as additional locations in the bed.

Railcar-mover vehicle

Disclosed herein is a railcar-moving vehicle having a highway mode for operation on roadways, and a rail mode for operation on rails. The railcar-moving vehicle including a support system, at least one drive axle with rubber tried drive wheels, and at least one pair of steering tires and two spaced apart rail bogies suspended by the support system. The railcar-moving vehicle including a weighted sled frame slidably mounted to the support system, the sled frame translatable between the front end and the rear end of the support system for optimizing weight distribution for increasing traction by the bogies when in rail mode. The bogies retained in an elevated and stowed position during highway mode and in a lowered position when in rail mode.

VEHICLE FOR TRANSPORTING AND CHARGING OUTDOOR POWER EQUIPMENT

A transportation vehicle including a plurality of battery packs, a plurality of power equipment, and a controller. The controller is configured to identify at least one of the plurality of power equipment or at least one of the plurality of battery packs that requires charging and direct power through a bus to distribute power to at least one of the plurality of power equipment or at least one of the plurality of battery packs. The plurality of battery packs are configured to recharge the plurality of power equipment.

DETACHABLE WORKPIECE SUPPORT APPARATUS FOR A TAILGATE STEP

A workpiece support is provided for a pickup truck tailgate. The tailgate includes a retractable step including a pair of step support members. The attachment brackets include a workpiece support bar and a riser that are attached to the step support members and to each other at a right angle. The workpiece support bar and riser may be fixedly attached to each other or attached by a pivot connector. Detachable connectors are provided to connect a workpiece support bar and riser detachably to the step support members.

DETACHABLE WORKPIECE SUPPORT APPARATUS FOR A TAILGATE STEP

A workpiece support is provided for a pickup truck tailgate. The tailgate includes a retractable step including a pair of step support members. The attachment brackets include a workpiece support bar and a riser that are attached to the step support members and to each other at a right angle. The workpiece support bar and riser may be fixedly attached to each other or attached by a pivot connector. Detachable connectors are provided to connect a workpiece support bar and riser detachably to the step support members.

MOBILE GAS TECHNICIAN TRAINING LAB

Mobile training labs for training gas technicians are disclosed. The mobile training labs can include a towable trailer comprising a body having a plurality of walls at least partially defining a hollow interior, an axle having at least two wheels disposed thereon to support the body, and a tow hitch. The mobile training labs can also include at least one training bay connected to the towable trailer such that the at least one training bay is configured to be accessed from an exterior of the towable trailer. The at least one training bay can include a work bench and a mock service entrance that is representative of a commercial or residential gas service entrance.

Maintenance cart with air filtration

A maintenance/construction cart that facilitates wall and ceiling access while isolating the interior of the cart from the surrounding environment. The cart is configured such that its height can be easily adjusted by an operator to provide access to ceilings of different heights while maintaining the seal between the interior of the cart and the surrounding environment while structurally supporting a ladder leaning against a surface of the cart. In some embodiments, the cart includes an air filtration unit.

Maintenance cart with air filtration

A maintenance/construction cart that facilitates wall and ceiling access while isolating the interior of the cart from the surrounding environment. The cart is configured such that its height can be easily adjusted by an operator to provide access to ceilings of different heights while maintaining the seal between the interior of the cart and the surrounding environment while structurally supporting a ladder leaning against a surface of the cart. In some embodiments, the cart includes an air filtration unit.

Photovoltaic mobile lab

The disclosed embodiments relate to a photovoltaic mobile lab configured for performing on-site test in a photovoltaic module. The photovoltaic mobile lab includes a transport vehicle, a first container, a second container, and a light source. The first container is fixed on the transport vehicle. The second container is slidably sleeved on the first container. The second container and the first container together form a testing chamber. The light source is configured for providing illumination to the photovoltaic module. The light source and the photovoltaic module are respectively accommodated in the first container and the second container and are respectively located at two opposite ends of the testing chamber so that a distance between the light source and the photovoltaic module is changeable while the second container is sliding with respect to the first container.