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Compare Sirius XM Holdings Inc (SIRI) vs Nuscale Power Corporation (SMR) Price & Performance

Sirius XM Holdings IncTrade
Nuscale Power CorporationTrade

Price performance (Past 24H)

Key statistics

Sirius XM Holdings Inc vs Nuscale Power Corporation — how do they compare? Sirius XM Holdings Inc trades at $30.24 (market cap $10.30B), while Nuscale Power Corporation trades at $8.81 (market cap $2.76B). The key difference: Sirius XM Holdings Inc is far larger — about 3.7× Nuscale Power Corporation's market cap, and Sirius XM Holdings Inc pays a 3.53% dividend while Nuscale Power Corporation pays none. Which is the better fit depends on your goals.

SIRISMR
Market Cap
$10.30B$2.76B
Sector
MediaUtilities
52-Week High
$31.22$53.43
52-Week Low
$19.92$7.64
Enterprise Value
$19.97B$1.87B
Dividend Yield
3.53%

Returns comparison

Trailing returns across standard periods

Top news

Latest headlines on both assets

About Sirius XM Holdings Inc

SiriusXM Holdings is now composed of two businesses: SiriusXM and Pandora. SiriusXM transmits music, talk shows, sports, and news via its two satellite radio networks, primarily to consumers in vehicles who pay a subscription fee. The firm's radios come preinstalled on a wide range of light vehicles in the U.S. and Canada. The firm acquired Pandora Media in February 2019 via an all-stock transaction. Pandora is a streaming music platform that offers an ad-supported radio option and a paid on-demand service. Liberty Media owns 80% of SiriusXM, traded through its Liberty SiriusXM Group tracking stock.

Read more on SIRI

About Nuscale Power Corporation

NuScale Power Corporation is a leading developer of Small Modular Reactor (SMR) technology. The company's flagship product is a light water reactor SMR designed to generate clean, reliable, and scalable nuclear power. NuScale's technology is poised to address the global demand for carbon-free energy by offering a safer, smaller, and more flexible alternative to traditional large-scale nuclear power plants, with applications in electricity generation, desalination, and process heat.

Read more on SMR