Applied Optoelectronics Inc EV/EBITDA

What is the EV/EBITDA of Applied Optoelectronics Inc?

The EV/EBITDA of Applied Optoelectronics Inc is N/A

What is the definition of EV/EBITDA?

EV/EBITDA is enterprise value divided by earnings before interest, tax, depreciation, and amortization. It is a measure of how expensive a stock is and is more frequently valid for comparisons across companies than the price to earnings ratio. It measures the price (in the form of enterprise value) an investor pays for the benefit of the company’s cash flow (in the form of EBITDA).

= enterprise value / EBITDA

Price to earnings ratios are impacted by a company's choice of capital structure - companies which raise money via debt will have lower P/Es (and therefore look cheaper) than companies that raise an equivalent amount of money by issuing shares, even though the two companies might have equivalent enterprise values. A sample case is when a company with debt were to raise money by issuing shares of stock, and then used the money to pay off the debt, this company's P/E ratio would shoot up because of the increased number of shares - although nothing about the fundamental value of the business has changed. EV / EBITDA is unaffected by capital structure as enterprise value includes the value of debt, and EBITDA is available to all investors (debt and equity) as it excludes interest payments on that debt. It is ideal for analysts and potential investors looking to compare companies within the same industry.

What does Applied Optoelectronics Inc do?

applied optoelectronics, inc. | nasdaq: aaoi aoi is a leading designer and manufacturer of fiber optic networking products. we primarily serve three growing end-markets: cable television broadband, fiber-to-the-home, and internet data centers. we are vertically integrated with a product portfolio from laser chips, components, sub-assemblies and modules, to complete turn-key equipment. all three of our end-markets are driven by bandwidth demand fueled by the growth of network connected devices, such as video traffic, cloud computing and online social networking. to address this increased demand, catv and telecommunications service providers are investing to improve their networks in competition to deliver voice, video, and data services to their subscribers. rising bandwidth consumption is also driving demand for higher speed server connections in the internet data center market. as a result of these trends, fiber optic networking technology has become fundamental in all three of our ta

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