

Fz
Mz Fy
My
Mx Fx
![]()

German Engineering since 1988
![]()
Page: 2 cos01-en-bio



![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
hlplcosmosgaitway® 3d with UserTerminal MCU6 and inclination module in matt black

-.4,l. •
- ,1
![]()
![]()
lnstrumented hlplcosmostreadmill with ceiling-mounted fall prevention

On demand, unfiltered data and parallel data streams meet highest scientific standards and facilitate evaluation


h/p/cosmos treadmill with optofix® and 1.5 m Microgate OptoGait®
h/p/cosmos treadmill with integrated zebris FDM-T platform
The proven technology of Microgate is the first step into h/p/cosmos biomechanics. A "carpet of light barriers" is established between 2 bars, which measures the steps incl. associated parameters to the thousandth of a second while the athlete or patient is running on the treadmill. The foot breaks through the respective LEDs and the software takes the speed of the treadmill into account. The minimum length of the bars is 1.0 m and can be extended in 0.5 m steps.
The software allows a live display of values of symmetry or asymmetry in the left-right comparison, ground contact times and step lengths. These values are not only of great importance in biomechanics, but also in therapeutic use.

Trigger signals can be output via the integrated trigger output for each initial ground contact (as with a foot switch) and connected to external systems such as EMG or EEG. In this way, different systems can be standardised in terms of time.
Using optofix®, the bars of the system attach magnetically, securely and in an ideal position to the treadmill frame.
The zebris FDM-T system is based on a sensor matrix of several thousand calibrated capacitive pressure sensors mounted under the running bell of the treadmill. The movement of the running bell is compensated so !hat stable gait and rolling parameters are recorded in the software. No measurement preparations are necessary on the patient and the measurement process can be observed in real time on the screen. In addition to stance, gait and walking analyses, the force distribution under the feet is also displayed. The comparison of gait and running parameters, the force values of the forefoot and heel, as weil as a left-right comparison are quickly gathered and precisely summarised together with the treadmill parameters in a clear report.

Fz
Mz Fy
My
Mx Fx
h/p/cosmosgaitwa®y 3d with inclination module
A treadmill, developed by biomechanics for biomechanics. This innovative system got designed and built in a close cooperation between the specialists from Arsalis in Belgium and h/p/cosmos. The entire treadmill (available sizes 150 x 50 cm / 170 x 65 cm / 190 x 65 cm) is mounted on 3D force sensors (strain gauges), which measure forces in three planes. In addition to the vertical ground reaction force, forces are measured in the left-right and forward-backward directions. The treadmill thus functions like a large force plate. A scientifically evaluated algorithm subdivides ground reaction forces during the gait of left and right ground contacts, which means !hat for the first time no split bell (left and right track are separated, which significantly changes the natural gait pattern) is needed for this application!
A particularly rigid frame construction underlines the highest standard for precision just as much as the removable handrails and the optional safety arch which are decoupled to minimise vibration characteristics. The gaitway® 3d is bolted to the laboratory ftoor with its subframe and the optional inclination module. Optionally, the gaitway® 3d can also be seamlessly connected with other biomechanical systems such as zebris FDM-T and via digital interface with MoCap systems (e.g. Qualisys & Vicon).
![]()
1cos01-en-bio


![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()

![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()

![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
system | Microgate OptoGait® | zebris FDM-T | h/p/cosmos gaitway® 3d |
Fz Mz Fy My Mx Fx | |||
sensors | optometric photocells bars placed on foot boards of the treadmill or the ground | 5,000-12,000 capacitive pressure sensors underneath the running surface (various options available) | 3D load cells underneath the treadmill frame |
parameters (see the full parameter list and comparision on page 18) | timing-, gait-, speed-, distance-parameters e.g. step length, cadence, contact time, gait phases online biofeedback training possible | pressure distribution matrix vertical GRF (calculated via pressure and area) e.g. step length, step width, foot rotation, gait phases, contact time, forces divided by foot zones training in virtual reality possible | ground reaction force measurement Fx, Fy, Fz; COP e.g. ground reaction forces, center of mass trajectory, acceleration, shear forces, timing parameters, also in side comparison bio-feedback options |
sampling rate | 1,000 Hz | 100 - 300 Hz (various options available) | 10,000 Hz (adjustable) |
sync options | TTL trigger output for external devices (e.g. EMG, EEG) | sync in and sync out for automated recording | sync in and sync out for automated recording analog and digital data transfer digital interface to Noraxon, Qualisys, Vicon |
video |
|
|
|
|
|
|
Live biofeedback allows direct manipual tion on gait parameters

optofix®mounts the OptoGait®barsin the ideal position, so jumping off the running belt and onto the footboards is still possible

h/p/cosmos pulsar with magneticoptofix® holder and 1.5m OptoGait®

OptoGai®t systemcan be extended modularly at any time with ccnnecting elements
1cos01-en-bio
Microgate OptoGait®


OptoGait® developed by the ltalian company Microgate is a pioneering system for movement analysis and functional assessment of a patient under normal or pathological conditions. The system is equipped with optical sensors that operate at a frequency of 1,000 Hz as weil as a resolution of approx. 1 cm and records spatiotemporal parameters during walking, running and other types of movement. With the magnetic optofix® holder system (developed by h/p/cosmos) the OptoGait® bars are magnetically attached to the side of the treadmill frame and placed at an optimal height above the running bell. While the athlete is moving on the treadmill, his steps, with the corresponding parameters, are measured precisely to the thousandth of a second. Relying on the proven and widely available RS232 interface, the h/p/cosmos treadmill communicates with the OptoGati® software. lf the speed of the treadmill gets adjusted during the lest or training, the determined parameters are automatically calculated and displayed correctly. For additional safety, the optional safety arch is available, which prevents a fall and stops the treadmill in such an event.
The optimal number of bars depends on the size of the treadmill and the length of the running surface. The minimum length is 1.0 m and can be extended in steps of 0.5 m.
The software also comes with a biofeedback tool, which allows a live visualisation of the values of symmetry or asymmetry in a left-right comparison. Different step lengths or ground contact times are immediately apparent to the athlete or patient and are particularly important for therapy. Signals from video can be fed and synchronised in the software.
As a special feature, the system also offers a trigger output. With each initial ground contact, a TTL trigger signal is output (similar to a digital footswitch), which can be fed into external systems. Therefore, for example, an EMG or EEG signal can be standardised in terms of time and assessed more reliably.
speedcontro,l an h/p/cosmos solution for automated speed and inclination control, is also based on the OptoGait® system.
Beyond the application on the treadmil,lMicrogate OptoGait® can be used directly on the floor for jump analyses (e.g. squatjump, drop jump, counter-movementjump)orgaitanalyses (overground.)
Study overview Microgate OptoGait®:
Lienhard, K., Schneider, D., & Maffiuletti, N. A. (2013): Validity of the OptoGait photoelectric system for the assessment of spatiotemporal gait parameters. Medical engineering & physics, 35(4), 500-504.
Kirn, K. H., & Lee, S. M. (2014): Effects of forward & backward walking training with progressive body weight supported on strake patients' ambulatory ability. Physical Therapy Rehabilitation Science, 3(2), 77-85.
Lee, A., Park, J,, & Lee, S, (2015): Gail analysis of elderly warnen after total knee arthroplasty. Journal of physical therapy science, 27(3), 591.
Jaen-Carrillo, D., et al. (2020). Test-retest reliability of the OptoGait system for the analysis of spatiotemporal running gait parameters and lower body stiffness in healthy adults. Proceedings of the institution of mechanical engineers, part p: journal of sports engineering and technolog,y 234(2), 154-161.
Weart, A. N., et al. (2020). Agreement Between the OptoGait and lnstrumented Treadmill System for the Quantification of Spatiotemporal Treadmill Running Parameters. Frontiers in Sports and Active Living, 2, 571385.



Clear visualisation of the pressure distribution in the zebris FDM-Tsoftware
h/p/cosmos treadmill with built-in zebris FDM-T platform

Standardised and detailed reports visualise the resultsand create comparability
![]()
Thezebris FDM-T system is availableforh/p/cosmos treadmills with sizesof 150 x 50cm,170 x 65 cm and 190 x 65 cm. A sensor matrix of several thousand calibrated capacitive pressure sensors is located right under the running bell. The movement of the bell is compensated so !hat stable gait and rolling parameters can be analysed. No measurement preparations on the patient are necessary. The measurement process can be observed in real time on the screen.
lt is suitable for analysing the stance, as weil as the gait & walking pattern, uniquely showing the force distribution under the foot. The comparison of gait and running parameters, the force values of the forefoot and heel, as weil as a left-right comparison are determined quickly and precisely summarised together with the treadmill parameters in a clear report. The report can automatically be generated in a few seconds. For scientific analyses, raw data of all values can be exported.
In direct comparison to pressure sensors without a treadmil,l the system can convince through the high number of step repetilions with simultaneous patient / athlete safety through optional fall protection or unweighting. Other options such as balance training or visual stimulation can be valuable additions, especially in the therapeutic setting.
In gait training with adaptive visual stimulation, the parameters step length, step width and foot angle, which are automatically gathered from the conducted gait analysis, are individually adapted to the targets. The values can remain constant during the entire training or gradually approach the targets during the course of the training. With the intuitively operated software, the course of treatment can be automatically and easily documented by well-founded reports. Optional lighting and camera units are available to record kinematic parameters and for video documentation.
Dual-task training in the virtual reality / environment simultaneously challenges motor and cognitive skills. While walking, the lest person solves tasks of varying difficulty that stress perception, memory and calculation. This trains attention skills and deepens the degree of automation of walking. The training can be individually tailored to each patient by choosing from the different modules available.
Hollander, K., Riebe, D., Campe, S., Braumann, K. M., & Zech, A. (2014): Effects of footwear on treadmill running biomechanics in preadolescent children. Gail & posture, 40(3), 381-385.
Nüesch, C., et al. (2018.) Repeatability of spatiotemporal, plantar pressure and force parameters during treadmill walking and running. Gail & posture, 62, 117-123.
Van Alsenoy, K., Thomson, A., & Burnett, A. (2018). Reliability and validity of the Zebris FDM THQ instrumented treadmill during running trials. Sports biomechanics.
Steib, S., et al. (2019). Exploring gait adaptations to perturbed and conventional treadmill training in Parkinson's disease: Time-course, sustainability, and transfe.rHuman movement science, 64, 123-132.
Nüesch, C., et al. (2019). The effect of different running shoes on treadmill running mechanics and muscle activity assessed using statistical parametric mapping (SPM). Gail & Posture, 69, 1-7.
Page: 7
cos01-en-bio 11


Fz
Mz Fy
My
Mx Fx

3 axes force measurementFz, Fy, Fx during running (left) & gait (right)

Gait symmetry measurement incl. foot rotation and roll-off characteristics more insights due to optional addition of pressure distriution sensors

1cos01-en-bio
The gaitway® 3d has been developed in close cooperation between h/p/cosmos and Arsalis. lt measures ground reaction forces in three axes as weil as the the centre of pressure (COP). The gaitway® 3d is currently available in three deck sizes: 150 x 50 cm, 170 x 65 cm or 190 x 65 cm. Each size is optimized for a range of speeds. Using a scientificaily evaluated algorithm, the ground reaction forces during gait can be divided for left and right ground contact, which means !hat for the first time no split bell is needed for this application, so left and right track are not separated, which significantly changes the natural gait pattern.
Based on its extremely rigid construction, the gaitway® 3d is able to record biomechanical signals of maximum quality. To further minimise the vibration characteristics, various components (such as the detachable handrails and the optional safety arch) have been decoupled from the treadmill and the measuring platform. The gaitway® 3d is bolted to the laboratory floor with its sub-frame and the optional inclination module. Optionaily, the gaitway® 3d can also be seamlessly connected with other biomechanical systems such as zebris FDM-T and via a digital interface to video / MoCap systems (e.g. Qualisys & Vicon).
Further functions include a patient / athlete scale, the precise acquisition and recording of ground reaction forces at rates of up to 10 kHz, a left and right force measurement for vertical and horizontal force during walking and running and an extensive list of biomechanical parameters for normal and pathological gait patterns.
In addition, the system also allows the display of biofeedback for gait rehabilitation and performance training. Digital start / stop input triggers as weil as synchronisation outputs and analogue signal outputs enable the integration of the instrumented gaitway® 3d treadmiil into e.g. EMG and motion analysis systems. The gaitway® 3d software is designed for Windows 7, 8 and 10. Automatie updates allow easy expansion of functionalities and a high level of customer support.
The combination of 3D force measurement and pressure distribution in a single system makes the gaitway® 3d one of the world's most advanced treadmills for biomechanics.
The optional, additional installation of a zebris pressure distribution platform under the running bell can further enhance the field of possible gaitway® 3d application. The evaluation of the pressure distribution provides valuable information such as the COP under each foot during the single and double contact phase, the foot rotation angles and the rolling characteristics.
Dierick, F., Penta, M., Renaut, D., & Detrembleur, C. (2004): A force measuring treadmiil in clinical gait analysis. Gail & posture, 20(3), 299-303.
Van Caekenberghe, 1., et al. (2013). Mechanics of overground accelerated running vs. running on an accelerated treadmill. Gail & Posture, 38(1), 125-131.
Meurisse, G. M., et al. (2016). Determination of the vertical ground reaction forces acting upon individual limbs during healthy and clinical gait. Gail & posture, 43, 245-250.
Bastien, G. J., Gosseye, T. P., & Penta, M. (2019). A robust machine learning enabled decomposition of shear ground reaction forces during the double contact phase of walking. Gail & posture, 73, 221-227.
Keshvari, B., et al. (2022). Evaluating the Effect of Shoes with Varying Mass on Vertical Ground Reaction Force Parameters in Short-Term Running. International Journal of Exercise Science, 15(1), 191-205.

![]()
![]()
![]()

![]()



-=
1
h/p/cosmos treadmill with safety arch[cos10079-01va02] andehest bell [cos14903-04-M]
powerful, reliableand accurate drive systems enable precise measurements as weil as high performance applications

pushing athletes to and beyond their limits is only possible if they feel safe and rely on the safety systems and material

h/p/cosm!s' speedcontrol [cos100699_LED],based on an optometric system, allows automatic speed and inclination adaption based on the
subject's position on the runningbell
![]()
Page: 10 cos01-en-bio
Additional options for your individual treadmill solution

![]()
The numerous additional options allow you to adapt h/p/cosmos treadmills exactly to your needs and your field of application. Same of our most successful options:
In the event of a fall, the patient or athlete is caught with a safety harness and the treadmill is automatically stopped. The h/p/cosmos safety arch with ehest belt prevents falling in case of tripping and by lass of coordination in the exhaustion phase. The fall stop stops the treadmill immediately and automatically by use of a quick-stop system. With this feeling of safety it is possible to train right up to the limit which is important for precise diagnostics.
Performance, high-speeds & -accelerations with 3-phase power supply systems Although performance diagnostics of marathon runners or triathletes only place moderate demands on a treadmill system due to the very economical running style, the diagnosis of athletes from many other sports requires clearly increased performance. Also when sprint and speed tests are conducted with large and heavy athletes, the treadmill system must provide, in these short-term peak loads, accurate repeatable results. Single phase power supplies with only 230 volts are often overwhelmed. To deal with these requirement,swe offer 3 phase 400 volts power supplies for most of our treadmills.
![]()
As a standard on the pulsar series, the running direction of the bell can be reverted. With the incline set at the same time, downhill running can be simulated. The option is available for all h/p/cosmos treadmills with incline option.
Adapting the treadmill speed to your current speed can be a tough or even distracting task, when running at higher paces. h/p/cosmos speedcontrol has been built to handle speed and inclination according to your individualized presets.
The additional keyboard allows trainers or therapist to perfectly control the treadmill from the ideal external spot around the treadmill.


![]()




![]()
![]()
![]()
Page: 12 cos01-en-bio
E & OE. Subject to alterations without prior notice. The illustrations may show accessories and items of optional equipment which are not part of standard specification or the recommended configuration.
Subject to our general terms of trade: www.hpcosmos.com

![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
pos. | qty. | order number | product description | ||
1. | 1 | cos102065 | Microgate OptoGait® Kit 1 single metre Content: 1xTX, 1xRX bar with interface, 2 webcams, 2 tripods, USB cable, power supply, software, bag for 1 meter. | ||
2. | 1 | cos103386 | Optofix® mounting kit Holder system with magnets for OptoGait® bar to mount it on h/p/cosmos treadmill (not for extra wide footboards). This set consists of 4 fastening profiles. | ||
3. | 1 | cos10075 | transport / shipping charge | ||
total price net, excluding VAT, excluding custom duties | |||||
VAT (19 % in Germany, other VAT and/or custom duties may apply in other countries) | |||||
system price h/p/cosmos solution for gait training: please ask your dealer for a quotation | |||||
![]()
![]()
pos. | qty. | order number | product description | ||
1. | 1 | cos102065 | Microgate OptoGait® Kit 1 single metre Content: 1xTX, 1xRX bar with interface, 2 webcams, 2 tripods, USB cable, power supply, software, bag for 1 meter. | ||
2. | 1 | cos102066_50cm | Microgate OptoGait® Kit 0,5 m for extension Content: 1 x TX, 1 x RX bar 50 cm with 2 connection plugs for extensions (without bag) | ||
3. | 2 | cos103386 | Optofix® mounting kit Holder system with magnets for OptoGait® bar to mount it on h/p/cosmos treadmill (not for extra wide footboards). This set consists of 4 fastening profiles. | ||
4. | 1 | cos10075 | transport / shipping charge | ||
total price net, excluding VAT, excluding custom duties | |||||
VAT (19 % in Germany, other VAT and/or custom duties may apply in other countries) | |||||
system price h/p/cosmos solution for gait training: please ask your dealer for a quotation | |||||
![]()
pos. | qty. | order number | product description | ||
1. | 1 | cos102065 | Microgate OptoGait® Kit 1 single metre Content: 1xTX, 1xRX bar with interface, 2 webcams, 2 tripods, USB cable, power supply, software, bag for 1 meter. | ||
2. | 1 | cos102066 | Microgate OptoGait® Kit 1 m for extension Content: 1 x TX, 1 x RX bar 1.0 m with 2 connection plugs for extensions (without bag) | ||
3. | 2 | cos103386 | Optofix® mounting kit Holder system with magnets for OptoGait® bar to mount it on h/p/cosmos treadmill (not for extra wide footboards). This set consists of 4 fastening profiles. | ||
4. | 1 | cos10075 | transport / shipping charge | ||
total price net, excluding VAT, excluding custom duties | |||||
VAT (19 % in Germany, other VAT and/or custom duties may apply in other countries) | |||||
system price h/p/cosmos solution for gait training: please ask your dealer for a quotation | |||||
Page: 13 cos01-en-bio
E & OE. Subject to alterations without prior notice. The illustrations may show accessories and items of optional equipment which are not part of standard specification or the recommended configuration.
Subject to our general terms of trade: www.hpcosmos.com

![]()
![]()
![]()
![]()
![]()
![]()

![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
pos. | qty. | order number | product description | ||
1. | 1 | cos30003va20 | h/p/cosmos treadmill quasar® med MCU5 running surface 170 x 65 cm, speed range 0 ... 25 km/h, elevation 0 ... 28 %, control via UserTerminal MCU5 with keyboard and display, integrated interface or via optional remote control | ||
2. | 1 | cos10181-03 | Reverse belt rotation (downhill), incl. belt centering rolls, max. reverse speed: 5 km/h, with safety arch: 25 km/h | ||
3. | 1 | cos102292 | zebris FDM pressure measuring platform 2i upgrade for running deck 170 x 65 cm, without treadmill option pressure distribution platform 132.1 x 55.9 cm, 4.576 sensors, 120 Hz, price only valid for initial fitting-out, incl. software zebris FDM for gait analysis | ||
4. | 1 | cos100385i | zebris SyncCam HS (camera without tripod), video camera 60 Hz, video camera 60 fps Full HD (1920x1080), 90 fps HD (1920x720), 120fps VGA (640x480) | ||
5. | 1 | cos100385b | zebris stand for SyncCam or SyncLightCam (mobile) mobile stand for SyncCam and SyncLightCam with integrated cable fixation | ||
6. | 1 | cos100384 | zebris FDM-Stance module extra software module for stance & balance analysis for instrumented biomechanic treadmill or platform stand alone | ||
7. | 1 | cos10079-01va02 | Safety arch 65 with harness & chest belt / stop function, fall protection for all applications (mandatory for high risk applications); running surface 65 cm wide | ||
8. | 1 | cos14903-04-S | Chestbelt S for safety arch system, colour code: red, for chest measurement approx. 65-95 cm | ||
9. | 1 | cos14903-04-L | Chestbelt L for safety arch system, colour code: yellow, for chest measurement approx. 105-135 cm | ||
10. | 1 | cos14970-03 | h/p/cosmos satellite PC med DELL PC, 2x 24" LCD Monitor, COL Laser printer, potential isolation transformer, h/p/cosmos PC-rack with 4 casters | ||
11. | 1 | cos102397 | LCD monitor TV 50‘‘ (with a small monitor stand for table) for example for SpeedLab®, gaitway® display or for the zebris virtual training module | ||
12. | 1 | cos101624 | Monitor stand mobile for LCD TV 32-60‘‘ monitor stand (without monitor!) for additional TV / monitor (max. load: 30 kg), height: 180 cm. | ||
13. | 1 | cos12769-01 | USB to RS232 converter converter from USB to serial port RS232 (Sub-D 9-pin male) | ||
14. | 1 | cos102522va04 | Packing treadmill 150/50, fully assembled with cardboard hood (L: 230 cm / W: 109 cm / H: 169 cm) | ||
15. | 1 | cos60098010021 | transport / shipping charge (please specify if truck, sea or air freight; for overseas sea shipment is recommended) | ||
16. | 1 | cos10194 | installation, commissioning and instruction through authorised and trained personnel | ||
17. | 1 | cos101094 | 1-day application workshop, includes costs for specialist / referent. Not including flight, logistics, hotel, etc. | ||
total price net, excluding VAT, excluding custom duties | |||||
VAT (19 % in Germany, other VAT and/or custom duties may apply in other countries) | |||||
system price h/p/cosmos solution for gait training: please ask your dealer for a quotation | |||||

the combination of gaitway® 3d force measurement and pressure distribution
biomechanics for scientific and industrial research gaitway® 3d 170 x 65 cm
Fully removable handrails and terminal allow maximum visibilty for motion capturing or video analysis.
For any application without handrails, a fall prevention system is mandatory.
Varioussignals (gaitway® 3d, high speed video, pressure distribution, etc.) canlle ga\nered live and recordedin Noraxon MR3 software.
MCU6 Screenshot with parameters also including HRV (heart rate variability) in chatter diagram and step count, step length and step frequency.
![]()
1
Page: 14 cos01-en-bio
eight reinforced fixations during elevation mode enable utmost stability and excellent force data quality
retractable transportation wheels allow flexible relocation of
the gaitway" 3d if neccessary
![]()
![]()
![]()
![]()
![]()
![]()

E & OE. Subject to alterations without prior notice. The illustrations may show accessories and items of optional equipment which are not part of standard specification or the recommended configuration.
Subject to our general terms of trade: www.hpcosmos.com

![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
pos. | qty. | order number | product description | ||
1. | 1 | cos30003-01va05 | h/p/cosmos treadmill stellar® MCU6 running surface 170 x 65 cm, speed range 0 ... 25 km/h, elevation 0 % (optional 28%), 10.1“ TouchScreen with Windows 10, RS232 com1 interface, USB, LAN, para control® software | ||
2. | 1 | cos102999_ 170-65_MCU6 | gaitway® 3d biomechanics upgrade 3 component (Fx, Fy, Fz) force measurement | ||
3. | 1 | cos102999_XXX- 65elevva02 | Elevation 0% to +20% for gaitway® 3d 170 x 65 cm 0 ... 20.0 % (0 ... 11.3°) motorized adjustment (-20 % ... +20 % when using optional reverse belt rotation) for treadmill 170 x 65 cm | ||
4. | 1 | cos103971 | retractable transportation wheels (4x) for gaitway® 3d 170 x 65 cm | ||
5. | 1 | cos103975 | special speed 0 ... 30 km/h, 0 ... 8.33 m/sec (0 18.64 mph) | ||
6. | 1 | cos103815 | Reverse belt rotation (downhill) 170 x 65 cm with MCU 6 TouchScreen for models with running surface 170 x 65 cm, incl. belt centering rolls, max. reverse speed: 5 km/h, with safety arch: 25 km/h | ||
7. | 1 | cos103019 | Special matt design for motion analysis frame colour RAL 9005 deep black (powder coated, non-shiny) to reduce reflections on the treadmill frame | ||
8. | 1 | cos10079-01va02 | Safety arch 65 with harness & chest belt / stop function fall protection for all applications (mandatory for high risk applications); running surface 65 cm wide. Including chest belt size M | ||
9. | 1 | cos14903-04-S | chest belt for safety arch, size S (chest measurement: 65-95 cm), colour code red | ||
10 | 1 | cos14903-04-L | chest belt for safety arch, size L (chest measurement: 105-135 cm), colour code yellow | ||
11. | 1 | cos14903-04-XL | chest belt for safety arch, size XL (chest measurement: 125-155 cm), colour code green | ||
12. | 1 | cos102293va02 | zebris FDM pressure measuring platform 3i, upgrade for running deck 170 x 65 cm, without treadmill option pressure distribution platform 135.5 x 54.1 cm, 10.240 sensors, 120 Hz, price only valid for initial fitting-out, incl. software zebris FDM for gait analysis | ||
13. | 1 | cos101734 | zebris modular extension with 180 Hz for running deck 170 x 65 cm extension (must be ordered with the treadmill!) from standard 120 Hz by further 180 Hz to 300 Hz sampling rate in total | ||
14. | 1 | cos102999ip_set-01 | Soft-& hardware set „ Noraxon Package 3D Force und Pressure Treadmill“. Integration package for h/p/cosmos gaitway® 3d: Treadmill and zebris pressure distribution measuring plate have to be ordered separately at extra cost. The software combines several sensors and provides a visual representation of the force superposition. incl. 2x High-speed color video cameras and 1x MYO synchronisation module, 1x zebris-Noraxon sync cabel, 1x BNC-3.5mm audio adapter | ||
15. | 1 | cos102999ds | Digital data streaming interface module, control from a third-party application with data streaming option. Seamless integration with other biomechanical measuring systems, such as motion analysis system, motion sensors, EMG, pressure distribution sensors, video software, etc. | ||
16. | 1 | cos14970-03 | h/p/cosmos satellite PC med DELL PC, 2x 24“ LCD Monitor, COL Laser printer, potential isolation transformer, h/p/cosmos PC-rack with 4 casters | ||
17. | 1 | cos12769-01 | USB to RS232 converter, converter from USB to serial port RS232 (Sub-D 9-pin male) | ||
18. | 1 | cos102999pert_MCU6 | Perturbation option for gaitway® 3d | ||
19. | 1 | cos10177 | Packing treadmill 170&190 x 65 cm (SA), part assembled, packed part assembled on pallet with cardboard hood, incl. safety arch | ||
20. | 1 | cos16631 | transport treadmill 170&190 x 65 cm (within Germany, Export on request) | ||
21. | 1 | cos102999inst-eu | Installation gaitway® 3d EU within EU, Installation onsite at customer´s facility, gaitway® 3D will be bolted to the floor. Incl. trave- ling, hotel, labour costs and 4 hours training | ||
22. | 1 | cos101094 | 1 day workshop (in Export: virtual/remote training) | ||
total price net, excluding VAT, excluding shipping, EXW., excluding custom duties | |||||
VAT (19 % in Germany, other VAT and/or custom duties may apply in other countries) | |||||
system price h/p/cosmos solution for gait rehabilitation: please ask your dealer for a quotation | |||||
![]()





![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
manufacturer: | h/p/cosmos sports & medical gmbh / Germany |
order number: | cos30000-02va09 (treadmill stratos® sport) cos102999_150-50_G6 cos30003-01va05 (treadmill stellar® sport) cos102999_170-65_MCU6 cos30004va04 (treadmill pulsar® 3p 190 x 65 cm) cos102999_190-65 Medical versions on request. For medical versions please allow longer delivery times. |
running surface: | L: 150 cm W: 50 cm L: 170 cm W: 65 cm L: 190 cm W: 65 cm |
speed range: | stratos® sport: 0 22.0 km/h stellar® sport: 0 25.0 km/h pulsar® 3p sport: 0 40.0 km/h (optional up to 45.0 km/h) |
elevation: | optional electr. adjustable and fixed at up to 20% |
classification: | scientifically instrumented device; medical and therapeutic applications on request |
load range on sensors Fx, Fy, Fz: | 10 kN |
overload (sensors): | 24 kN |
non-linearity Fx, Fy: Fz: | < 0.8 % < 0.2 % |
hysteresis Fx, Fy: Fz: | < 0.8 % < 0.2 % |
cross-talk Fz → Fx, Fy: | < 1.0 % |
drift Fx, Fy, Fz: | < 0.05 N/min |
natural frequency 150 x 50 cm: 170 x 65 cm: 190 x 65 cm: | (depending on configuration - values below unloaded, fixed to floor) 45 / 60 / 60 Hz (Fz, Fy, Fx) 40 / 55 / 55 Hz (Fz, Fy, Fx) 35 / 45 / 45 Hz (Fz, Fy, Fx) |
interfaces: | Built-in amplifier with ethernet interface, analog force and speed output, digital start and stop trigger, treadmill interfaces depending on model serial port RS232 for treadmill control via coscom v3 interface |
accessories (extra charge): | safety arch fall stop [cos10079-01] for 150 x 50 cm safety arch fall stop [cos10170-01] for 170 & 190 x 65 cm science port for raw speed data [cos101277] special speeds pedending on treadmill models special speed 0 - 10 km/h 150 x 50 cm [cos10000] special speed 0 - 25 km/h 190 x 65 cm-3p [cos12995p3p] special speed 0 - 45 km/h 190 x 65 cm-3p [cos10159va06] non-reflecting powder coating [cos102465ralxxxx] NORAXON EMG software, video cameras & IMUs Perturbation [cos102999pert_MCU6] digital interfaces for Qualisys, Vicon, etc. Zebris FDM upgrade 3d motion capture systems |
temperature operation temperature storage: | 10 ... 40 °C -25 ... 40 °C |
operating humidity storage humidity: | 30 ... 70 % (non condensing) 0 ... 95 % (non condensing) |
air pressure: | 700 ... 1,060 hPa (max 3000m altitude) |
audible noise: | noise emission LpA < 70 dB(A) (63dB) acc. EN957-6 |
resolution: | adjustable (12-375 mN/bit) |
sampling rate: | adjustable (100-10,000 Hz) |
PC software (incl.): | h/p/cosmos para control® for display & remote control |
accessory (incl.): | instruction for use on USB stick, drinking bottle holder, service box, special oil, PE potential equalization cable POLAR® H10 heart rate chest belt (Bluetooth® + 5 kHz) |
colour of frame: | pure white RAL 9010 (powder coated) |
handrails: | steel tube handrails Ø 60 mm on both sides, over min. 1/3 of treadmill length with front-handrail crossbar other handrail designs at extra charge |
voltage supply: | 230 Volt AC 1~/N/PE 50/60 Hz 15 ... 16A fuse; dedicated circuit, line and protection; |
size of frame: | L: 230 cm (7ft 6.6“) W: 105 cm (3ft 5.3“) H: 149 cm (4ft 10.7“) |
net. weight: | device approx. 282 kg (621 Ibs) |
gross weight: | approx. 500 ... 550 kg (1102 ... 1212 Ibs) |
treadmill model: | stellar® sport |
manufacturer: | h/p/cosmos sports & medical gmbh / Germany |
order number: | cos30003-01va05 |
applications: | endurance training walking and running |
control: | via UserTerminal MCU6 with keyboard, touch display and Windows® 10 operating system, integrated interface coscom v4 |
keyboard: | 9 keys for manual control, easily controllable with medical gloves and under sweaty conditions |
running surface: | L: 170 cm (5ft 6.9“) B: 65 cm (2ft 1.6“) access height: 23 cm (9.06“), for gaitway height depends on installation.
|
speed range: | 0 ... 25.0 km/h (0 ... 6.9 m/s) (0 15.5 mph) special speed available at extra charge: 0 ... 10 km/h (0…6.2 mph) |
acceleration: | 7 acceleration / deceleration levels between 131 s and 3 s from 0 to max. or from max. to 0; equals 0.053 … 2.315 m/s² programmable via para control® PC software |
elevation: | 0 % (elevation optional on request) |
running direction: | option for reversing running belt direction at extra charge, max. permissible reverse speed 5 km/h (3.1 mph) if no safety-harness with fall-stop prevention system is used |
motor systems: | 3.3 kW (4.5 HP) 3-phase AC motor, maintenance free and brushless; 20 years warranty on main drive motor. For high-performance applications, we recommend models with a 3-phase 3x400 volt power supply and a running surface min. 190 x 65 cm. |
power transmission: | frequency inverter, poly-V-belt, very quiet operation |
safety systems: | c; machinery directive 2006/42/EC; EN 60335-1; EN 60601-1-2 (EMC tested); ISO 20957-1; EN 957-6; EN 14971; emergency-stop mushroom push button (drives power off) emergency-stop with pull-cord and clip |
degree of protection: | appliance class I M / IP 20 |
classification: | sports and fitness device; not for medical, not for therapeutic applications. |
usage class: | S, I according to ISO 20957-1 |
accuracy class: | A (high accuracy) according to EN 957-6 |
earth leakage current: | < 2.0 mA |
ambient condition: | temperature: +10…+40 °C (-30…+50 °C on request) humidity: 30…70 % (up to 100 % on request) air pressure: 700…1060 hPa; 3,000 m (~10,000 ft) max. altitude without pressurization |
display (resolutions) paramter: | 25.9 cm/10.1“ (1280x800), color touch display parameter: speed, time, elevation, distance, METS, energy consumption, altitude, power, pace, heart rate, heart rate variability (digital and scatter diagram), diagram view of heart rate and load parameter parameter export to .pdf and .csv tables to USB |
resolution: | 1 decimal place |
units: | metric / imperial |
heart rate monitoring: | pulse receiver incorporated (analogue 5kHz + digital Bluetooth®), incl. chest belt POLAR® H10, automatic control of speed and elevation according to programmed target heart rate („cardio mode“) |
digital interface: | RFID / NFC® Reader (optional at extra charge) 4x USB 2.0 (1x USB 3.0 internal) Bluetooth®, WiFi / WLAN (optional at extra charge) 1x LAN / RJ45, 1x HDMI connection 1x RS232, 1x connection for safety arch fall st op |
programs: | 18 programs / profiles (predefined)
import / export of profiles from / to USB stick also for further processing |
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()

![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()

![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()

![]()
![]()
![]()
![]()

![]()

![]()

![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
Optionally available at extra charge are special frame colours, other handrail designs, special voltage supply and other options and accessories. Weight and package specifications can deviate according to options, accessories packing and way of transport. E&OE. Subject to alterations without prior notice. Please consider the natural and physical performance limitations of the single phase 230 volt power supply. The single phase 230 volt power supply is sufficient up to normal fitness or therapy applications. For all special high performance
applications (speed running, controlled jump-ons, sidesteps, heavy subjects at higher speed, extreme elevati- ons, etc.), we recommended models with a 3-phase, 3x400 volt power supply (for example model h/p/cosmos quasar med 3p, pulsar 3p, venus or saturn).

Warning! Installation, commissioning, instruction, maintenance and repair work only to be conducted by h/p/ cosmos trained and authorized personnel. For treadmills with oversized deck (width >65cm), for children, spe- cial applications, without sufficient safety space behind the treadmill, for subjects and / or patients with health or other limitations (e.g. visual impairment, etc.), for running at high speed and / or for all individuals, where a fall triggers a dangerous risk of injury or death (e.g. newly operated hip patients, invasive probes, etc.), a fall prevention system is obligatory (e.g. safety arch with chest belt and harness or a weight support system). For more information see the instructions for use. Safety space behind the treadmill: min. L: 2 m (6ft 6.74“) x treadmill width. Children are only allowed to be on the treadmill, if under permanent supervision and secured by a fall prevention system.


![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()

![]()
Gait parameters | Optogait® | Zebris FDM-T | gaitway® 3d | gaitway® 3d & Zebris FDM-T | |
software | separate report for walking or running | ● | ● | ● | ● |
automatic walking or running detection | ● | ● | |||
biofeedback | ● | ● | ● | ● | |
treadmill control speed / incline | ● | ● | |||
geometry | step length | ● | ● | ● | ● |
stride length | ● | ● | ● | ● | |
step width | ● | ● | ● | ||
foot rotation angle | ● | ● | |||
phases in % | stance, swing, single support, total double support (walking), load response, pre-swing | ● | ● | ● | |
time | step time | ● | ● | ● | ● |
contact time | ● | ● | ● | ||
flight time (running) | ● | ● | ● | ||
cadence | ● | ● | ● | ● | |
gait cycle | ● | ● | ● | ● | |
double support time (walking) | ● | ● | |||
single support time | ● | ● | |||
speed | target speed | ● | ● | ● | ● |
raw treadmill speed | ● | ● | |||
pressure | pressure plots | ● | ● | ||
forefoot / backfoot loading symmetry | ● | ● | |||
left / right loading symmetry | ● | ● | ● | ||
3 foot zone analysis | ● | ● | |||
7 foot zone analysis | ● | ● | |||
COP | Butterfly diagram, geometrics, gait lines | ● | ● | ● | |
Force curves | vertical Fz | ● | ● | ● | |
medio-lateral Fx | ● | ● | |||
anterior-posterior Fy | ● | ● | |||
Moments | Tz free moment (in horizontal plane) | ● | ● | ||
Fz curve charcteristics | standard Fz parameters (walking): loading peak, time to loading peak, push-off peak, time to push-off peak | ● | ● | ● | |
advanced Fz parameters: vertical impulse, loading rate, mid-support force (walking), time to mid-support (walking), active peak force (running), time to active peak force (running), push-off rate, loading / push-off ratio | ● | ● | |||
Fy curve charcteristics | breaking impulse, breaking peak force, time to breaking peak, time to breaking propulsive transition, propulsive impulse, propulsive peak force, time to propulsive peak force | ● | ● | ||
Fx curve charcteristics | lateral strike impulsive, peak force, push impulse, push peak force | ● | ● | ||
others | specials: duty factor, leg stiffness, walking ratio | ● | ● | ||
COM displacement vertical / fore-aft, lateral; COM path | ● | ● | |||
mech. work recovery, total, vertical, fore-aft, lateral | ● | ● | |||
Mx, My, Mz torque around the origin | ● | ● | |||
synchronisation | sync in / out | ● | ● | ● | |
trigger out | ● | ● | ● | ||
Aux. In | ● | ● | |||
frequency | sampling rate | 1.000 Hz | 100-300 Hz depending on system | 10.000 Hz adjustable | force: 10.000 Hz adjustable pressure: 100-300 Hz depending on system |
![]()




German Engineering since 1988
![]()
![]()

![]()
![]()
![]()
wheelchair

saturn® 300/125r
![]()
![]()
![]()
bike ergometer
torqualizer®
speed training / speedlab®
quasar® MCU6

biomechanics gait parameters
optogait®
![]()


![]()
![]()
cardiac rehabilitation
![]()
![]()

![]()
mercury® med

body weight supported treadmill therapy
![]()
airwalk® ap / mercury® med

therapeutic bar training
![]()
![]()
![]()
![]()
![]()
![]()
![]()
![]()

![]()


Fz
Mz
Fy My
Mx Fx
speed training
sprint trainer comet®
![]()
![]()


parawalk®
![]()
![]()
![]()