Anodized Aluminum Frame

Lightweight and strong with a sleek finish.

a black wireless headphone

Anodized Aluminum Frame

Lightweight and strong with a sleek finish.

a black wireless headphone

Anodized Aluminum Frame

Lightweight and strong with a sleek finish.

a black wireless headphone

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

Miniaturized Optics. Space-Grade Precision.

Miniaturized Optics. Space-Grade Precision.

Precision.
Precision.
Stablity.
Stablity.
Intelligence.
Intelligence.
Precision.
Precision.
Stablity.
Stablity.
Intelligence.
Intelligence.
Precision.
Precision.
Stablity.
Stablity.
Intelligence.
Intelligence.
Precision.
Precision.
Stablity.
Stablity.
Reliability
Reliability

Engineered for Space Environments.

Engineered for Space Environments.

Meet MIRA FS-50
A compact optical telescope engineered for space imaging delivering high-resolution Earth observation with exceptional stability and thermal robustness.
A compact optical telescope engineered for space imaging delivering high-resolution Earth observation with exceptional stability and thermal robustness.
A compact optical telescope engineered for space imaging delivering high-resolution Earth observation with exceptional stability and thermal robustness.
a black man wearing a headphone, side view
Features.

One solid piece. Every detail in focus.

Compact form factor. High optical performance. Built for orbital missions.

Lightweight

Lightweight

5x smaller

Noise Cancellation

a part of the black headphone
a part of the black headphone
Fixed Focus
an iPhone
Fixed Focus
an iPhone
Uncompromised Quality
a part of the headphone with battery signal icon
Uncompromised Quality
a part of the headphone with battery signal icon

plug-n-play

Space Qualified

a black woman wearing the white wireless headphone
plug-n-play

Space Qualified

a black woman wearing the white wireless headphone
Technical Specifications

Precision Optics. Compact Engineering.

Feature

Specification

Optical Design

Catadioptric, Monolithic

Aperture

45 mm

F-Number

F/6.67

Spectral Range

400 – 850 nm

Resolution

2048 × 1088

Pixel Size

5.5 µm

Frame Rate

111 fps

Interface

Ethernet

Dimensions

54 × 54 × 87 mm

Weight

<502 g

GSD (at 500 km)

9.167 m PAN

Swath Width

18.773 km

Space Imaging Technology

Engineered for reliable performance across every stage of the mission.

Space Imaging Technology

Engineered for reliable performance across every stage of the mission.

CubeSat Ready

Designed for seamless integration into CubeSat and small satellite platforms where space and mass are limited.

Consistent Optical Performance

Maintains imaging accuracy across varying thermal conditions encountered in orbit.

Simple Payload Integration

Standard Ethernet interface enables straightforward integration with onboard data handling systems.

Low SWaP

A compact architecture that minimizes Size, Weight, and Power requirements for modern space missions.

Remote Sensing

Suitable for Earth observation, environmental monitoring, agricultural assessment, and scientific missions.

Mission Adaptability

Flexible architecture that can support a variety of small satellite imaging applications.

FAQ

Got Questions? We’ve Got Answers.

Is the system space-qualified?

What orbit is it optimized for?

What kind of interface does it support?

How compact is the payload?

What type of imaging does it support?

Anodized Aluminum Frame

Lightweight and strong with a sleek finish.

a black wireless headphone

Anodized Aluminum Frame

Lightweight and strong with a sleek finish.

a black wireless headphone

Anodized Aluminum Frame

Lightweight and strong with a sleek finish.

a black wireless headphone

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

MIRA FS-50

Miniaturized Optics. Space-Grade Precision.

Miniaturized Optics. Space-Grade Precision.

Precision.
Precision.
Stablity.
Stablity.
Intelligence.
Intelligence.
Precision.
Precision.
Stablity.
Stablity.
Intelligence.
Intelligence.
Precision.
Precision.
Stablity.
Stablity.
Intelligence.
Intelligence.
Precision.
Precision.
Stablity.
Stablity.
Reliability
Reliability

Engineered for Space Environments.

Engineered for Space Environments.

Meet MIRA FS-50
A compact optical telescope engineered for space imaging delivering high-resolution Earth observation with exceptional stability and thermal robustness.
A compact optical telescope engineered for space imaging delivering high-resolution Earth observation with exceptional stability and thermal robustness.
A compact optical telescope engineered for space imaging delivering high-resolution Earth observation with exceptional stability and thermal robustness.
a black man wearing a headphone, side view
Features.

One solid piece. Every detail in focus.

Compact form factor. High optical performance. Built for orbital missions.

Lightweight

Lightweight

5x smaller

Noise Cancellation

a part of the black headphone
a part of the black headphone
Fixed Focus
an iPhone
Fixed Focus
an iPhone
Uncompromised Quality
a part of the headphone with battery signal icon
Uncompromised Quality
a part of the headphone with battery signal icon

plug-n-play

Space Qualified

a black woman wearing the white wireless headphone
plug-n-play

Space Qualified

a black woman wearing the white wireless headphone
Technical Specifications

Precision Optics. Compact Engineering.

Feature

Specification

Optical Design

Catadioptric, Monolithic

Aperture

45 mm

F-Number

F/6.67

Spectral Range

400 – 850 nm

Resolution

2048 × 1088

Pixel Size

5.5 µm

Frame Rate

111 fps

Interface

Ethernet

Dimensions

54 × 54 × 87 mm

Weight

<502 g

GSD (at 500 km)

9.167 m PAN

Swath Width

18.773 km

Space Imaging Technology

Engineered for reliable performance across every stage of the mission.

Space Imaging Technology

Engineered for reliable performance across every stage of the mission.

CubeSat Ready

Designed for seamless integration into CubeSat and small satellite platforms where space and mass are limited.

Consistent Optical Performance

Maintains imaging accuracy across varying thermal conditions encountered in orbit.

Simple Payload Integration

Standard Ethernet interface enables straightforward integration with onboard data handling systems.

Low SWaP

A compact architecture that minimizes Size, Weight, and Power requirements for modern space missions.

Remote Sensing

Suitable for Earth observation, environmental monitoring, agricultural assessment, and scientific missions.

Mission Adaptability

Flexible architecture that can support a variety of small satellite imaging applications.

FAQ

Got Questions? We’ve Got Answers.

Is the system space-qualified?

What orbit is it optimized for?

What kind of interface does it support?

How compact is the payload?

What type of imaging does it support?