- Description
- Contents
- Videos
Description
**This Product Cannot Be Shipped Internationally
**Buy a SAM IO Driver and get the SAM IO Training Case for 50% off!**
The SAM IO Driver is a manually operated device that works by continuously compressing a trigger to create a rotational spin of the needle assembly. By exerting gentle pressure, the manually actuated driver provides a controlled and accurate IO placement. Since this driver does not depend on electronic power sources such as batteries, it is a dependable tool in the field or hospital setting. The manual-driver aspect also allows for finite, controlled speed and placement.
Once the needle is in a proper position, the stylet can be removed and the extension set can be connected via the standard Luer-lock. Once connected, aspiration verification, flushing and treatment(s) can be started. A stabilizer can be placed around the catheter to prevent it from being accidentally dislodged or removed (the SAM IO Stabilizer is available here).
The revolutionary SAM IO driver is intuitive for current IO users with familiar features including color coding and depth indicators that match industry standards.
SAM IO Needles are available in a variety of sizes here. This driver can be used with previously purchased needles (non-SAM brand) by using the SAM IO Adapter.
Downloadable Documents
Download SAM IO Training Information
Download SAM IO Production Information
Download SAM IO Driver IFU
Download SAM IO Adapter IFU
Download SAM IO Needle IFU
Download SAM IO Stabilizer IFU
Dimensions: 4.25" H x 5.5" W x 1" D
Weight: 2.5 oz
Read a SAM IO case study by clicking here >>
Specifications
Downloads
Contents
Videos
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SAM IO Intraosseous Access System - Training Video (IO-IA-VIDEO-01)
SAM IO is a manually operated intraosseous access system. Cath...
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SAM IO -Intraosseous Access System | Cardiac Arrest (IO-MKb-VIDEO-01)
SAM IO is a manually operated intraosseous access system. Cath...
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SAM IO - Intraosseous Access System | Operating Room (IO-MKa-VIDEO-01)
SAM IO is a manually operated intraosseous access system. Cath...