Temperature
5163 K
5030 to 5313
Unclassified star • 451.3 pc
Records
27
literature rows
Planets
3
system count
References
16
distinct source labels
Approximate color
from effective temperature
Canonical Summary
Values come from the row with the most populated summary measurements. Missing values stay missing. Ranges and counts describe all source rows.
Stellar source: Morton et al. 2016 • System source: TICv8
Temperature
5163 K
5030 to 5313
Mass
0.85 Msun
0.78 to 0.93
Radius
0.79 Rsun
0.77 to 1.57
Age
3.98 Gyr
3.09 to 14
Distance
451.3 pc
single adopted value
Planets
3
Stable across source rows
Scale Comparison
Current adopted radius: 0.79 R☉ • circles scaled linearly by radius
Sun
1.0 R☉ baseline
Kepler-196
0.79 R☉
System Layout
3 planets linked to this host
Transit
Discovery
2014
Period
20.74 days
Radius
1.90 R⊕
Mass
—
Eq. Temp
—
Transit
Discovery
2014
Period
47.43 days
Radius
2.24 R⊕
Mass
—
Eq. Temp
—
Transit
Discovery
2021
Period
122.1 days
Radius
2.66 R⊕
Mass
—
Eq. Temp
—
Kepler-196 is a star located 1470 light-years away, and three planets have been reported to orbit it. The star has an age of 3.98 billion years, a mass of 0.85 solar masses, and a radius of 0.79 solar radii. Its reported temperature is 5160 K. The star's reported mass and radius estimates are smaller than the Sun's, and its reported temperature is cooler than the Sun's.
Kepler-196 b is a Super-Earth discovered by the transit method in 2014. It has a radius of 1.9 Earth radii and an orbital period of 20.7 days. Among the listed planets, it has the shortest year and the smallest radius by reported estimates. Kepler-196 c, also a Super-Earth, was discovered by transit in 2014. Its radius is 2.24 Earth radii, and its orbital period is 47.4 days, giving it the second-shortest year and second-smallest radius among the listed planets. Kepler-196 d is a Neptune-like planet discovered by transit in 2021. It has a radius of 2.66 Earth radii and an orbital period of 122 days, making it the longest-year and largest-radius planet among the listed planets. The radius estimates of all three planets are larger than Earth's.
A transit occurs when a planet passes in front of its star from our viewpoint, causing a small dip in observed brightness; repeated dips help establish orbital periods. The size classes compare radius with Earth's: a Super-Earth reaches 2.5 times Earth's radius, while a Neptune-like planet reaches 4 times. An orbital period is the time a planet takes to complete one orbit - its year.
Provenance
Evidence Summary
Rows
27
Stellar refs
15
System refs
1