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KNACKSAT-2

KNACKSAT-2 is a small satellite in low Earth orbit. Small spacecraft have changed access to space by allowing universities, research teams and emerging space organizations to fly focused experiments at a fraction of the mass and cost of traditional satellites.

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Object identity

NORAD ID
67683
COSPAR ID
1998-067XZ
Operator
Not listed
Country
Not listed
Launch date
Not listed

Immediate discovery

Why this satellite matters

For a small satellite, mass and power budgets dominate design. Every gram and watt must be allocated among structure, battery, solar cells, radios, computers, sensors and attitude control.

Understanding the mission

Science and engineering ideas

For a small satellite, mass and power budgets dominate design. Every gram and watt must be allocated among structure, battery, solar cells, radios, computers, sensors and attitude control.

Mission

Mission and purpose

Objects in this category may be crewed stations, modules, cargo vehicles, or other spacecraft directly connected with human activity in orbit. The exact role depends on the individual object.

  • For a small satellite, mass and power budgets dominate design. Every gram and watt must be allocated among structure, battery, solar cells, radios, computers, sensors and attitude control.

Design

Engineering

For a small satellite, mass and power budgets dominate design. Every gram and watt must be allocated among structure, battery, solar cells, radios, computers, sensors and attitude control.

Real orbital values

The mathematics

The current two-line element set reports approximately 15.6912 revolutions per day. Dividing 1,440 minutes by that value gives an estimated orbital period of 91.8 minutes.

Period

91.8 min

Representative speed

27,686 km/h

Representative altitude

369 km

Inclination

51.62°

These are representative calculations derived from current orbital elements, not fixed physical specifications. Altitude and speed change around an elliptical orbit, and predictions change as new orbital elements are published.

Launch record

Launch and deployment

The orbital catalog lists the launch designator as 1998-067XZ. A fully sourced launch story, launch vehicle, deployment sequence, historical weather, and documented delays have not yet been added to this page.

TransitSatellite does not estimate historical launch weather. Temperature, clouds, wind, holds, and scrub reasons will appear only when supported by traceable historical sources.

Orbit

LEO orbit explained

Low Earth orbit is the region closest to Earth used by most crewed spacecraft, many science missions, Earth-observation satellites, and large constellations. Objects move quickly and commonly complete an orbit in roughly 90 to 130 minutes.

LEO can provide detailed Earth views, lower communications delay, and easier access than higher orbits, but it covers less area per spacecraft and is more affected by atmospheric drag.

Live TransitSatellite experience

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Open the live tracker to view its current calculated position, trajectory, orbital information, visibility tools, and Save and Share controls.

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Learning

Questions to explore

  • Why do low-orbiting stations circle Earth many times per day?
  • How do crews receive power, supplies, and communications in orbit?

Evidence

Sources and data notes

Current identity and orbital elements come from CelesTrak’s public GP data. Calculated orbit values are derived from the current TLE and may change after catalog updates. Mission-history claims are added separately and require authoritative sources.

Catalog updated

Sep 17, 2026, 11:23 PM UTC

Story review

1970-01-01T00:00:00.000Z