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Hurst® selector valve power units provide alternate line operation between two connected rescue tools. The operator can direct the flow of fluid to the desired tool by turning a lever to either the "A" or "B" position. This configuration allows the rescuer to alternate use between two tools.
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Hurst® selector valve power units provide alternate line operation between two connected rescue tools. The operator can direct the flow of fluid to the desired tool by turning a lever to either the "A" or "B" position. This configuration allows the rescuer to alternate use between two tools.
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Hurst® selector valve power units provide alternate line operation between two connected rescue tools. The operator can direct the flow of fluid to the desired tool by turning a lever to either the "A" or "B" position. This configuration allows the rescuer to alternate use between two tools.
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Hurst® selector valve power units provide alternate line operation between two connected rescue tools. The operator can direct the flow of fluid to the desired tool by turning a lever to either the "A" or "B" position. This configuration allows the rescuer to alternate use between two tools.
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Hurst® Simo power units offer simultaneous line operation for two rescue tools. This design configurations offers two rescue workers the advantage of operating from the same power unit without alternating use, changing out tools, or flipping any levers. Tools can be exchanged on one line without interrupting the operation of the second line.
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Hurst® Simo power units offer simultaneous line operation for two rescue tools. This design configurations offers two rescue workers the advantage of operating from the same power unit without alternating use, changing out tools, or flipping any levers. Tools can be exchanged on one line without interrupting the operation of the second line.
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Hurst® Simo power units provide simultaneous line operation for two rescue tools. This design configuration offers two rescue workers the advantage of operating from the same power unit without alternating use, changing out tools, or flipping any levers. Tools can be exchanged on one line without interrupting the operation of the second line.
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Hurst® Trimo power units provide simultaneous line operation for three rescue tools. This design configuration offers three rescue workers the advantage of operating from the same power unit without alternating use, changing out tools, or flipping any levers. Tools can be exchanged on one line without interrupting the operation of the second or third line.
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Hurst® Trimo power units provide simultaneous line operation for three rescue tools. This design configuration offers three rescue workers the advantage of operating from the same power unit without alternating use, changing out tools, or flipping any levers. Tools can be exchanged on one line without interrupting the operation of the second or third line.
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When you need performance and versatility with a lightweight power unit, look no further than Mini Mate Simo by Hurst®. Featuring simultaneous line operation for two tools, rescue workers can operate independently from the same power unit without alternating use, changing out tools, or flipping levers. At only 60.4 lbs., these units are the ideal fit for rescue situations requiring speed and adaptability.
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Now there's no reason to sacrfice power for lightweight design when choosing a power unit. Hurst's® new Mini Mate power units make it possible to have both without compromising either. They're engineered to be lighter, more portable and as powerful as traditional power units. Weighing under 37 lbs., these pumps prove to be the ultimate partner for one-person operations, no matter how remote. In almost every aspect, Hurst Mini Mates offer full-size performance in a lightweight design.
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4-Port Part # 335R093 / 6-Port Part # 335R094 / 8-Port Part # 335R095
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The Hurst Jaws of Life® Octoflow is a PTO driven system capable of driving up to eight rescue tools at the same time. From installation to extrication, the system ensures simplicity, speed, and reliability.
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