Developer docs
API playgroundTry for free, no card

Search company profiles

Cornell Mars Rover

Full company profile

uuid004unv4

Namestring
Cornell Mars Rover
Legal namestring
Cornell Mars Rover
Company typeenum
Private
Founded yearint
2010
Descriptiontext

Cornell Mars Rover is a student-run engineering organization at Cornell University, founded in 2010, that designs and builds semi-autonomous Mars rovers for the annual University Rover Challenge (URC) held in Utah. The team fields ~50 members distributed across six specialized subteams — Arm, AstroTech, Drives, Electrical, Software, and Business & Design — and has produced 14 successive rovers (Eos through Cayuga) plus the in-development Cerberus (2026). Each subteam owns a well-defined technical scope: a 6-axis robotic manipulator with custom cycloidal gearboxes, an onboard life-detection laboratory with spectroscopy, rocker-bogie or independent suspension drivetrains, custom brushless motor controllers and battery management, and a LIDAR-plus-computer-vision autonomy stack with in-house pattern recognition for rock analysis. The organization's product roadmap is competition-driven, with each annual rover targeting specific URC tasks (site survey, soil sample return, astronaut assistance package delivery, equipment servicing).

The business model is non-commercial: Cornell Mars Rover is funded by an initial budget from Cornell University plus corporate sponsorships (ASML, Boeing, Maxon, Teradyne, Monster Tool Company, Varda). It has no product pricing, no paying customers, and no GTM motion beyond member recruitment and sponsor outreach via website, Instagram, YouTube, and email. Members enroll for academic credit (CMR 2 credits + ENGRG 1400 1 credit, ~7-9 hours/week). The underlying strategic logic is talent development and competition performance rather than revenue generation; the organization's "moat" lies in 14 years of accumulated rover IP, access to Cornell engineering talent, and sustained sponsor relationships.

Short descriptiontext

Cornell Mars Rover is a student-run engineering team at Cornell University, founded in 2010, that designs and builds semi-autonomous Mars rovers for the annual University Rover Challenge, fielding ~50 members across six technical subteams.

Operating statusenum
Operating
Ownership categoryenum
Headcount rangeband
51–100
akta.pro rankint
HeadquartersIthaca, United States
HQ citystring
Ithaca
HQ countrystring
United States
HQ regionstring
North America
Markets served

Serves global market

Offices1 record

Each record includes

City, Country, Type, Description, Source

Keyword5 values
Mars rover engineering, Robotics competition, Autonomous navigation, Space exploration robotics, Mechanical design
Industry2 codes
1Humanoid & General-Purpose Robots
CodeHDAAAIAJPrimaryYes
2Robot Hardware, Actuators & Components (sensors, grippers, motors)
CodeHDAAAIALPrimaryNo
NAICS code3 codes
  • Guided Missile and Space Vehicle Manufacturing336414
  • Other Guided Missile and Space Vehicle Parts and Auxiliary Equipment Manufacturing336419
  • Search, Detection, Navigation, Guidance, Aeronautical, and Nautical System and Instrument Manufacturing334511
SIC code2 codes
  • Guided Missiles & Space Vehicles & Parts3760
  • Search, Detection, Navagation, Guidance, Aeronautical Sys3812
Product category
Mars Rover Engineering
Social media profiles2 records
GTM motion1 record

Each record includes

Type, Description, Source

Revenue model1 record
1Sponsorships and Donations
TypeProfessional Services
Description

Relies on corporate sponsorship and donations to cover training, machining, hardware, and University Rover Challenge competition costs. Cornell University provides initial budget, with corporate sponsors providing additional funding for full operational capacity.

marsrover.engineering.cornell.edu
Marketing channels4 records

Each record includes

Title, Type, Stage, Description, Source

Cost components5 values
Supply Chain, Technology or R&D, Operations, Marketing or Sales, Infrastructure
GTM typeB2C
B2C
Offering typeHardware or Manufacturing
Hardware or Manufacturing
Brand1 of 15 records shown
1Cerberus 2026
Description

CMR's newest rover for University Rover Challenge 2026

marsrover.engineering.cornell.edu
+14 more records
Core offering1 text field

Cornell Mars Rover designs, engineers, and manufactures semi-autonomous Mars rovers that compete in the annual University Rover Challenge. The rovers incorporate a 6-axis robotic manipulator arm with custom cycloidal gearboxes, a six-wheel rocker-bogie suspension system, an onboard life detection laboratory using spectroscopy, and LIDAR-guided autonomous navigation. The team produces one competition rover per year, building on iterative improvements across mechanical, electrical, software, and science subsystems.

Differentiator
Functional benefit
Problem solved
Quantifiable outcome1 of 6 values shown
  • Placed 3rd overall at URC 2012 (first competition)
+5 more records
Product overview1 text field

Cornell Mars Rover is a student-run team established in 2010 that designs and builds semi-autonomous Mars rovers for the annual University Rover Challenge. The organization's product portfolio consists of a series of competition rovers (Eos, Helios, Ares, Garcia, Chronos, Athena, Valkyrie, Artemis, Argos, Odyssey, Orion, Atlas, Hyperion, Cayuga, and Cerberus) developed across six subteams: Arm, AstroTech, Drives, Electrical, Software, and Business & Design. The Arm Subteam builds the 6-axis robotic manipulator; AstroTech develops life detection systems; Drives handles wheels, suspension, and frame; Electrical manages hardware and power systems; Software controls autonomy and vision; and Business & Design manages operations and outreach.

Product and service5 records
1Cerberus
CategoryCompetition Mars Rover
Description

Next-generation Mars rover currently in development for the URC SAR 2026 competition. Cerberus is the newest rover in Cornell Mars Rover's lineup and is showcased on the team's homepage with promotional video.

2Cayuga
CategoryCompetition Mars Rover
Description

2025 competition rover featuring an independent suspension system, TPU-printed wheels, and a swerve drive for enhanced maneuverability in desert terrain. Built for the annual University Rover Challenge.

3Hyperion
CategoryCompetition Mars Rover
Description

2024 competition rover with an improved damped rocker suspension system for dynamic stability and reduced vibration, paired with a new sheet metal frame for increased durability.

4Atlas
CategoryCompetition Mars Rover
Description

2023 competition rover with a redesigned arm featuring absolute rotary encoders for precise positional control, and 3D-printed wheels on the drivetrain for reduced weight and improved reliability.

5Orion
CategoryCompetition Mars Rover
Description

2022 competition rover with arm improvements three times stronger and lighter than predecessors, and a redesigned onboard soil and rock analysis system incorporating spectroscopy.

Scale indicator2 records

Each record includes

Type, Value, Description, Source

Recent move7 records

Each record includes

Date, Type, Title, Description, Source

Expansion highlight8 records

Each record includes

Type, Description

Peers10 records
TypeDirect peer
Description

Brigham Young University's long-running student team competing in URC. Closely comparable in product (Mars rover platform), customer/competition (URC), and business model (sponsored student club). Has historically been a top-tier URC finisher.

TypeDirect peer
Description

Virginia Tech's student robotics programs including URC competitors. Comparable in building semi-autonomous ground rovers, multi-disciplinary subteam structure, and corporate-sponsor-funded model.

TypeDirect peer
Description

Stanford's student-led robotics organization with multi-project rover and manipulation programs. Comparable in multi-disciplinary engineering depth, sponsor recruitment model, and competition focus (including URC-style tasks).

TypeDirect peer
Description

Oregon State University's student robotics organization with URC participation. Direct peer in autonomous ground robotics engineering, university club structure, and sponsor-funded operating model.

TypeBroad incumbent
Description

Commercial leader in autonomous mobile robots with ground-based platforms (Spot, Stretch). Comparable in semi-autonomous navigation, computer vision, and manipulation, but operates at commercial scale with different business model — relevant as an indicator of commercial pathways for the same underlying robotics technologies.

TypeDirect peer
Description

MIT's student team that designs Mars rovers for the University Rover Challenge. Most direct peer — same competition, similar semi-autonomous ground rover engineering, comparable multi-disciplinary subteam structure, and similar recruitment-driven growth model.

TypeDirect peer
Description

Worcester Polytechnic Institute's student team building rovers for the University Rover Challenge. Direct competitor with comparable product (autonomous Mars rover), customer base (URC), and student-club operating model.

TypeBroad incumbent
Description

NASA Jet Propulsion Laboratory develops operational Mars rovers (Curiosity, Perseverance) at the apex of the same technology category. Comparable in semi-autonomous navigation, robotic manipulation, and life-detection objectives, but at production scale rather than competition scale — represents the aspirational technology ceiling for CMR's work.

TypeDirect peer
Description

Carnegie Mellon's student robotics organization competing in URC. Direct peer in autonomous ground robotics, multi-disciplinary engineering, and university-sponsored team structure. Strong overlap in autonomy and manipulation sub-domains.

TypeDirect peer
Description

Purdue's student robotics teams competing in URC and similar competitions. Comparable in multi-disciplinary engineering approach, student-club operations, and corporate sponsorship reliance.

Market position
Strengths4 records

Each record includes

Headline, Details, Source

Weaknesses4 records

Each record includes

Headline, Details, Source

Competitive moat4 records

Each record includes

Type, Details

Key risks6 records

Each record includes

Headline, Details, Source

Key highlights6 records

Each record includes

Headline, Details, Source

Customer concentration

Classification, Details

Segment1 record

Each record includes

Title, Type, Primary, Description, Pain point addressed, Use case, Source

Ideal customer profile2 records

Each record includes

Profile, Firmographic size, Sales motion, Sales cycle length, Buying structure, Purchase trigger, Buyer persona, Geography, Industry vertical, Primary use case, Description, Pain points, Evidence proof points, Target buyer

Technology focused
Yes
API detail
Has APIbool
No

Docs URL, Description

AI capability5 records

Each record includes

Type, Description, Source

AI maturity
App detail

Has app

Feature6 records

Each record includes

Title, Differentiator, Description, Source

Core technology
Revenue estimate
Valuation estimate
Number of profiles
Profiles10 records

Each record includes

Name, Designation, Designation category, Overview, Profile commentary, Source

No data
No data
Funding overview

Funding stage, Last funding date, Total funding USD

Funding rounds

Each record includes

Round, Amount USD, Date, Pre money valuation, Total investors, Investors, News

Investors

Each record includes

Name, Type, Date of entry, Rounds participated, Website

Funding detail is available on the Subscription and Enterprise plan.Contact sales →

M&A

Each record includes

Name, Acquisition type, Announced date, Completed date, Status, Website, News

Investment

Each record includes

Name, Round, Announced date, Lead investor, Website, News

M&A and investment is available on the Subscription and Enterprise plan.Contact sales →

Cornell Mars Rover

Mars Rover Engineeringmarsrover.engineering.cornell.edu

Cornell Mars Rover is a student-run engineering team at Cornell University, founded in 2010, that designs and builds semi-autonomous Mars rovers for the annual University Rover Challenge, fielding ~50 members across six technical subteams.

What Cornell Mars Rover does

Cornell Mars Rover is a student-run engineering organization at Cornell University, founded in 2010, that designs and builds semi-autonomous Mars rovers for the annual University Rover Challenge (URC) held in Utah. The team fields ~50 members distributed across six specialized subteams — Arm, AstroTech, Drives, Electrical, Software, and Business & Design — and has produced 14 successive rovers (Eos through Cayuga) plus the in-development Cerberus (2026). Each subteam owns a well-defined technical scope: a 6-axis robotic manipulator with custom cycloidal gearboxes, an onboard life-detection laboratory with spectroscopy, rocker-bogie or independent suspension drivetrains, custom brushless motor controllers and battery management, and a LIDAR-plus-computer-vision autonomy stack with in-house pattern recognition for rock analysis. The organization's product roadmap is competition-driven, with each annual rover targeting specific URC tasks (site survey, soil sample return, astronaut assistance package delivery, equipment servicing).

The business model is non-commercial: Cornell Mars Rover is funded by an initial budget from Cornell University plus corporate sponsorships (ASML, Boeing, Maxon, Teradyne, Monster Tool Company, Varda). It has no product pricing, no paying customers, and no GTM motion beyond member recruitment and sponsor outreach via website, Instagram, YouTube, and email. Members enroll for academic credit (CMR 2 credits + ENGRG 1400 1 credit, ~7-9 hours/week). The underlying strategic logic is talent development and competition performance rather than revenue generation; the organization's "moat" lies in 14 years of accumulated rover IP, access to Cornell engineering talent, and sustained sponsor relationships.

Cornell Mars Rover firmographics

Firmographics
Name
Cornell Mars Rover
Legal name
Cornell Mars Rover
Website
https://marsrover.engineering.cornell.edu
Company type
Private
Founded year
2010
Operating status
Operating
Headcount range
51–100 employees
Short description
Cornell Mars Rover is a student-run engineering team at Cornell University, founded in 2010, that designs and builds semi-autonomous Mars rovers for the annual University Rover Challenge, fielding ~50 members across six technical subteams.
Ownership category
akta.pro rank

Cornell Mars Rover industry classification

Industry
Product category
Mars Rover Engineering
NAICS
Guided Missile and Space Vehicle Manufacturing (336414), Other Guided Missile and Space Vehicle Parts and Auxiliary Equipment Manufacturing (336419), Search, Detection, Navigation, Guidance, Aeronautical, and Nautical System and Instrument Manufacturing (334511)
SIC
Guided Missiles & Space Vehicles & Parts (3760), Search, Detection, Navagation, Guidance, Aeronautical Sys (3812)
akta.pro primary industry
Humanoid & General-Purpose Robots (HDAAAIAJ)
akta.pro secondary industry
Robot Hardware, Actuators & Components (sensors, grippers, motors) (HDAAAIAL)

Keywords

  • Mars rover engineering
  • Robotics competition
  • Autonomous navigation
  • Space exploration robotics
  • Mechanical design

Where Cornell Mars Rover is headquartered

Location

Headquarters

HQ city
Ithaca
HQ country
United States
HQ region
North America

Offices1 record

Markets served

Cornell Mars Rover business model

Business model
GTM type
B2C
Offering type
Hardware or Manufacturing
Cost components
Supply Chain, Technology or R&D, Operations, Marketing or Sales, Infrastructure

Revenue model

  1. Sponsorships and Donations: Relies on corporate sponsorship and donations to cover training, machining, hardware, and University Rover Challenge competition costs. Cornell University provides initial budget, with corporate sponsors providing additional funding for full operational capacity.

Go-to-market motion1 record

Marketing channels4 records

Cornell Mars Rover product offering

Product offering

Core offering

Cornell Mars Rover designs, engineers, and manufactures semi-autonomous Mars rovers that compete in the annual University Rover Challenge. The rovers incorporate a 6-axis robotic manipulator arm with custom cycloidal gearboxes, a six-wheel rocker-bogie suspension system, an onboard life detection laboratory using spectroscopy, and LIDAR-guided autonomous navigation. The team produces one competition rover per year, building on iterative improvements across mechanical, electrical, software, and science subsystems.

Product overview

Cornell Mars Rover is a student-run team established in 2010 that designs and builds semi-autonomous Mars rovers for the annual University Rover Challenge. The organization's product portfolio consists of a series of competition rovers (Eos, Helios, Ares, Garcia, Chronos, Athena, Valkyrie, Artemis, Argos, Odyssey, Orion, Atlas, Hyperion, Cayuga, and Cerberus) developed across six subteams: Arm, AstroTech, Drives, Electrical, Software, and Business & Design. The Arm Subteam builds the 6-axis robotic manipulator; AstroTech develops life detection systems; Drives handles wheels, suspension, and frame; Electrical manages hardware and power systems; Software controls autonomy and vision; and Business & Design manages operations and outreach.

Differentiator

Problem solved

Functional benefit

Brands

  • Cerberus 2026: CMR's newest rover for University Rover Challenge 2026
  • Cayuga
  • Hyperion
  • Atlas
  • Orion
  • Odyssey
  • Argos
  • Artemis
  • Valkyrie
  • Athena
  • Chronos
  • Garcia
  • Ares
  • Helios
  • Eos

Products and services

  • Cerberus Next-generation Mars rover currently in development for the URC SAR 2026 competition. Cerberus is the newest rover in Cornell Mars Rover's lineup and is showcased on the team's homepage with promotional video.
  • Cayuga 2025 competition rover featuring an independent suspension system, TPU-printed wheels, and a swerve drive for enhanced maneuverability in desert terrain. Built for the annual University Rover Challenge.
  • Hyperion 2024 competition rover with an improved damped rocker suspension system for dynamic stability and reduced vibration, paired with a new sheet metal frame for increased durability.
  • Atlas 2023 competition rover with a redesigned arm featuring absolute rotary encoders for precise positional control, and 3D-printed wheels on the drivetrain for reduced weight and improved reliability.
  • Orion 2022 competition rover with arm improvements three times stronger and lighter than predecessors, and a redesigned onboard soil and rock analysis system incorporating spectroscopy.

Quantifiable outcome

  • Placed 3rd overall at URC 2012 (first competition)
  • +5 more outcomes

Companies that use Cornell Mars Rover

Customer profile

Segments1 record

Ideal customer profiles2 records

Cornell Mars Rover technology and API

Technology

Technology focussed Yes

API detail

Has API
No
API docs
API detail

Core technology

AI maturity

App detail

AI capability5 records

Feature6 records

Cornell Mars Rover partnerships and signals

Strategic signal

Scale indicators2 records

Recent moves7 records

Expansion highlights8 records

Cornell Mars Rover competitors and assessment

Company assessment

Direct peers

  • BYU Mars Rover: Brigham Young University's long-running student team competing in URC. Closely comparable in product (Mars rover platform), customer/competition (URC), and business model (sponsored student club). Has historically been a top-tier URC finisher.
  • Virginia Tech Robotics: Virginia Tech's student robotics programs including URC competitors. Comparable in building semi-autonomous ground rovers, multi-disciplinary subteam structure, and corporate-sponsor-funded model.
  • Stanford Robotics Club: Stanford's student-led robotics organization with multi-project rover and manipulation programs. Comparable in multi-disciplinary engineering depth, sponsor recruitment model, and competition focus (including URC-style tasks).
  • Oregon State Robotics Club: Oregon State University's student robotics organization with URC participation. Direct peer in autonomous ground robotics engineering, university club structure, and sponsor-funded operating model.
  • MIT Mars Rover Team: MIT's student team that designs Mars rovers for the University Rover Challenge. Most direct peer — same competition, similar semi-autonomous ground rover engineering, comparable multi-disciplinary subteam structure, and similar recruitment-driven growth model.
  • WPI Mars Rover (HURC): Worcester Polytechnic Institute's student team building rovers for the University Rover Challenge. Direct competitor with comparable product (autonomous Mars rover), customer base (URC), and student-club operating model.
  • CMU Robotics Club: Carnegie Mellon's student robotics organization competing in URC. Direct peer in autonomous ground robotics, multi-disciplinary engineering, and university-sponsored team structure. Strong overlap in autonomy and manipulation sub-domains.
  • Purdue Robotics Organization: Purdue's student robotics teams competing in URC and similar competitions. Comparable in multi-disciplinary engineering approach, student-club operations, and corporate sponsorship reliance.

Broad incumbents

  • Boston Dynamics: Commercial leader in autonomous mobile robots with ground-based platforms (Spot, Stretch). Comparable in semi-autonomous navigation, computer vision, and manipulation, but operates at commercial scale with different business model — relevant as an indicator of commercial pathways for the same underlying robotics technologies.
  • NASA JPL Robotics: NASA Jet Propulsion Laboratory develops operational Mars rovers (Curiosity, Perseverance) at the apex of the same technology category. Comparable in semi-autonomous navigation, robotic manipulation, and life-detection objectives, but at production scale rather than competition scale — represents the aspirational technology ceiling for CMR's work.

Market position

Strengths4 records

Weaknesses4 records

Competitive moat4 records

Key risks6 records

Key highlights6 records

Customer concentration

Cornell Mars Rover social profiles

Digital presence

Cornell Mars Rover financial estimates

Financial estimate

Revenue estimate

Valuation estimate

Cornell Mars Rover leadership team

Management profile

Number of profiles

Profiles10 records

Cornell Mars Rover funding detail

Funding detail

Funding overview

Funding rounds

Investors

Funding detail is available on the Subscription and Enterprise plan.Contact sales →

Cornell Mars Rover M&A and investment

M&A and investment

M&A

Investments

M&A and investment is available on the Subscription and Enterprise plan.Contact sales →

Frequently asked questions about Cornell Mars Rover

What does Cornell Mars Rover do?

Cornell Mars Rover designs, engineers, and manufactures semi-autonomous Mars rovers that compete in the annual University Rover Challenge. The rovers incorporate a 6-axis robotic manipulator arm with custom cycloidal gearboxes, a six-wheel rocker-bogie suspension system, an onboard life detection laboratory using spectroscopy, and LIDAR-guided autonomous navigation. The team produces one competition rover per year, building on iterative improvements across mechanical, electrical, software, and science subsystems.

Is Cornell Mars Rover a public or private company?

Cornell Mars Rover is a private company. It is classified as nonprofit foundation owned and is currently operating.

When was Cornell Mars Rover founded?

Cornell Mars Rover was founded in 2010. It employs 51 to 100 people.

Where is Cornell Mars Rover based?

Cornell Mars Rover is headquartered in Ithaca, United States, in the North America region.

How does Cornell Mars Rover make money?

One revenue line is on record: sponsorships and Donations.

Who are Cornell Mars Rover's main competitors?

Direct peers on record are BYU Mars Rover, Virginia Tech Robotics, Stanford Robotics Club, Oregon State Robotics Club, MIT Mars Rover Team, WPI Mars Rover (HURC), CMU Robotics Club and Purdue Robotics Organization. Broad incumbents are Boston Dynamics and NASA JPL Robotics.

Does Cornell Mars Rover have an API?

No public API is recorded for Cornell Mars Rover.

What industry is Cornell Mars Rover in?

Cornell Mars Rover's product category is Mars Rover Engineering. Its primary akta.pro industry code is HDAAAIAJ, Humanoid & General-Purpose Robots, with a secondary code of HDAAAIAL, Robot Hardware, Actuators & Components (sensors, grippers, motors). Its NAICS code is 336414 and its SIC code is 3760.

Unlock the full company data

50 free credits on sign-up, no credit card required.

Contact sales