Kall Morris Inc

"Making the Most of Your Satellite"

Marquette, Michigan orbital-servicing firm offering Relocation-as-a-Service; its REACCH robotic capture system has been tested in an ISS demonstration.

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Company Overview

Kall Morris Inc. (KMI) is a U.S. in-space logistics company headquartered in Marquette, Michigan, at 130 W Washington Street, in the city's historic Masonic Center building. KMI was co-founded by Adam Kall, Austin Morris, and Troy Morris, who met as suitemates at Northern Michigan University in 2014 and later reunited to build a company around providing commercial services for objects already in orbit; the company brought on its first employees in September 2021 following an early round of investment financing. KMI describes its core offering as Relocation-as-a-Service (RaaS), a category of in-space servicing focused on moving, capturing, and repositioning satellites and debris that were not originally designed to be serviced or grappled once in orbit.

The company's lead technology is REACCH, a robotic capture system designed to grasp and stabilize unprepared objects in space, such as defunct satellites or debris lacking designated docking or grappling fixtures; KMI has tested elements of the REACCH system in a demonstration involving the International Space Station. Beyond REACCH, KMI is developing Laelaps, a servicing spacecraft intended to carry and operate the capture technology on customer missions, and has outlined plans for a future orbital collection platform called Shepard intended to gather debris in near-Earth orbit over time.

KMI's service lines include end-of-life satellite disposal support, orbit-change and relocation maneuvers for active satellites, and active debris removal, targeting government space agencies, satellite operators, and commercial space companies concerned about collision risk and orbital congestion as low Earth orbit traffic increases. The company's public tagline is "Making the Most of Your Satellite," reflecting its positioning as a service provider that extends the useful life and flexibility of satellite assets already on orbit rather than focusing solely on removing debris. KMI has not publicly disclosed its exact incorporation year, total employee headcount, or detailed financial information as of this profile; specific figures on funding rounds and current mission manifests are referenced only qualitatively on its website, without further numeric breakdown available from the pages reviewed.

Capabilities & Activities

Primary type & automation activities this supplier delivers:

Applications & Industries

Product Categories

Products & Solutions

REACCH

Mechanically articulated end effector using gecko adhesion to softly and securely capture uncooperative objects in orbit.

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Contact Kall Morris Inc

WEBSITE

https://www.kmi.space

HEADQUARTERS

130 W Washington St
Marquette , Michigan  49855

United States

Company Facts

Founded

2019

Primary Role

RaaS

Company Size

-

Primary Region

North America

Annual Sales

-

Funding Stage

-

Funding Total

-

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Related Coverage

Kall Morris Inc Tests REACCH System for Space Debris Removal on ISS

Kall Morris Inc Tests REACCH System for Space Debris Removal on ISS

Kall Morris Inc (KMI) has successfully tested its robotic system, the Responsive Engaging Arms for Captive Care and Handling (REACCH), aboard the International Space Station (ISS). This innovative technology aims to capture and remove space debris, addressing a critical challenge in the space industry as the amount of non-functional objects in orbit continues to rise. The significance of this development lies in its potential to enhance satellite servicing and debris removal efforts. Space debris, which travels at speeds up to 10 times faster than a bullet, poses a serious threat to operational satellites and future missions. KMI's REACCH system, described as an orbital 'tow truck,' utilizes tentacle-like robotic arms with gecko-inspired adhesive pads to maneuver larger objects without needing to fully grasp them. Looking ahead, KMI is preparing for further testing beyond the ISS, with aspirations to deploy REACCH for operational missions focused on satellite life-extension and debris removal. As the number of satellites in low Earth orbit increases, the demand for effective debris management technologies is expected to grow significantly.

News Space aerospace autonomous robotics commercial space debris removal