How To Use A Tindeq Progressor 200
There’s lots of different ways to use the Progressor to train and track your finger strength progress, so here are a few ideas:
Pick-up training: Next time you’re training pick-ups with your lifting edge (a.k.a. portable hangboard, lifting block, etc.) attached to free weights, use a couple of carabiners to connect the Tindeq in between the two. This allows you to accurately measure the exact force your fingers are lifting.
Want to train your fingers but don’t have weights? Attach your lifting edge to the Tindeq Progressor, and connect the pair to a fixed point. As you pull on the edge, the Tindeq Progressor will show you in real-time just how much force you are pulling through your fingers, allowing you to achieve the desired intensity without any weights or faff. Train through the range of intensities, stimuli, and energy systems, simply by pulling more or less.
Level-up your hangboarding: Grab your portable hangboard (like the Mega Bar) or lifting edge and suspend them and the Tindeq from above. Train as you would usually on one hand or two, and check the Tindeq to find out exactly how much force your fingers are supporting. (Remember to halve the force if you’re training on two hands!)
Warming-up at the crag: Wrap a sling around your foot and use the Tindeq to ensure your warm-up is progressive – if you’re guilty of overdoing it in your warm-up, the Progressor will help!
The Tindeq Progressor 200 is rechargeable with a USB-C port.
If you’re a tech genius, you can get into Tindeq’s open-source API to collect your data in any way you see fit with your preferred coding language.
Tindeq is a small Norwegian company dedicated to making high-quality equipment. They are located in the beautiful city of Trondheim, where their skilled team works tirelessly to design and produce innovative products tailored to meet climbers’ needs.
Technical Specifications:
– Sampling Frequency: 80Hz
– Design Load: 2000 N (200 kg) (Full Scale)
– Safe Overload: 120% Full Scale
– Limit Overload: 150% Full Scale
– Precision: 0.25% Full Scale
– Non-linearity: 0.1% Full Scale
– Repeatability: 0.1% Full Scale
– Hysteresis: 0.1% Full Scale
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