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LKW-4

NORAD 43236 Payload LEO 2018-025A ● Active
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Altitude (km)
Speed (km/s)
Latitude
Longitude
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🛰️ Orbital Parameters
Perigee
379 km
Apogee
382 km
Inclination
97.6°
Period
92.2 min
Mean Motion
15.62427153 rev/day
TLE Epoch
2026-06-19 10:00:00 UTC
📐 Computed Orbital Characteristics
Avg. Altitude381 km
Orbital Velocity27,661 km/h
Velocity7.68 km/s
Orbital Period92 minutes
Orbits / Day15.62
Eccentricity0.0002
Semi-Major Axis6,752 km
Orbit ClassSun-Synchronous (SSO)
Est. Orbital LifetimeMonths to ~1 year
🚀 Launch & Identity
Country / Operator
🇨🇳 People's Liberation Army (C41) (China)
Launch Date
2018-03-17
Launch Site
Jiuquan, China
Int'l Designator
2018-025A
Object Type
Payload
RCS Size
Large (>1 m²)
📖 About This Object
LKW-4 is an active satellite operated by People's Liberation Army (C41) (China), launched on 2018-03-17 from Jiuquan, China. It orbits in Low Earth Orbit (LEO) at altitudes between 379 km and 382 km with an inclination of 97.6°. It travels at approximately 27,661 km/h (7.68 km/s), completing one full orbit every 92 minutes — that’s roughly 15.62 orbits per day. Its near-polar, sun-synchronous orbit means it passes over any given point on Earth at approximately the same local solar time, ideal for consistent Earth observation lighting conditions. Its near-circular orbit (eccentricity close to zero) means it maintains a very consistent altitude throughout each revolution. At its current altitude, the estimated orbital lifetime before atmospheric re-entry is months to ~1 year. Orbital Radar tracks LKW-4 in real time using the latest two-line element set (TLE) data, providing live position, altitude, speed and orbital path updated continuously.
🌍 Orbit Context
LKW-4 orbits at an average altitude of 381 km in a sun-synchronous orbit (SSO), a specialised subset of LEO where the orbital plane precesses to maintain a constant angle relative to the Sun. This provides consistent lighting conditions on every pass — essential for Earth observation, weather monitoring and environmental science. Within ±50 km of LKW-4’s average altitude, there are currently 1,277 active payloads and 63 tracked debris or rocket body fragments — notable neighbours include STARLINK-1008, STARLINK-1012, STARLINK-1020. This makes it one of the more crowded altitude bands, containing roughly 7.3% of all active satellites. With an inclination of 97.6°, LKW-4 passes over latitudes between 97.6°N and 97.6°S, providing near-global coverage including the polar regions. Polar and near-polar orbits are used for reconnaissance, weather monitoring and Earth-observation missions that need to image every part of the planet. China operates approximately 1,218 active satellites in total, of which 38 share a similar altitude band with LKW-4.
❓ Frequently Asked Questions
LKW-4 is in a sun-synchronous orbit (SSO), a specialised form of LEO at approximately 381 km altitude. Its 97.6° inclination causes the orbital plane to precess at exactly the rate of the Earth’s revolution around the Sun, so the satellite crosses each latitude at a consistent local solar time. It completes one orbit every 92 minutes, travelling at 27,661 km/h.
LKW-4 is operated by People's Liberation Army (C41) (China). It is catalogued by the U.S. Space Surveillance Network under NORAD ID 43236. You can track LKW-4 in real time on Orbital Radar’s live tracker or browse all operators in the operator directory.
LKW-4 was launched on 2018-03-17 from Jiuquan, China, one of China’s oldest launch centres in the Gobi Desert, used for crewed Shenzhou missions and LEO satellites. At its current altitude, the estimated remaining orbital lifetime is: months to ~1 year. View the full satellite launch log.
Yes — Orbital Radar tracks LKW-4 (NORAD ID 43236) using the latest TLE (two-line element set) data from Space-Track and CelesTrak. Open the live tracker to see its current position, altitude, speed and orbital path updated in real time. You can also browse the satellite directory to find other tracked objects.
LKW-4 travels at approximately 27,661 km/h (17,188 mph) — roughly 7.68 km/s. It completes 15.62 orbits per day, meaning the crew or instruments aboard (if any) would experience approximately 31 sunrises and sunsets every 24 hours.