OPVS (NanoFlex Power) Current Ratio: 0.02 (As of Dec. 2019)


What is NanoFlex Power Current Ratio?

NanoFlex Power OPVS Current Ratio is 0.02 as of Dec. 2019.

The current ratio is a liquidity ratio that measures a company's ability to pay short-term obligations. It is calculated as a company's Total Current Assets divides by its Total Current Liabilities. NanoFlex Power's current ratio for the quarter that ended in Dec. 2019 was 0.02.

NanoFlex Power has a current ratio of 0.02. It indicates that the company may have difficulty meeting its current obligations. Low values, however, do not indicate a critical problem. If NanoFlex Power has good long-term prospects, it may be able to borrow against those prospects to meet current obligations.

The historical rank and industry rank for NanoFlex Power's Current Ratio or its related term are showing as below:

OPVS's Current Ratio is not ranked *
in the Semiconductors industry.
Industry Median: 2.48
* Ranked among companies with meaningful Current Ratio only.

NanoFlex Power  (OTCPK:OPVS) Current Ratio Explanation

The current ratio can give a sense of the efficiency of a company's operating cycle or its ability to turn its product into cash. Companies that have trouble getting paid on their receivables or have long inventory turnover can run into liquidity problems because they are unable to alleviate their obligations. Because business operations differ in each industry, it is always more useful to compare companies within the same industry.

Acceptable current ratios vary from industry to industry and are generally between 1 and 3 for healthy businesses.

The higher the current ratio, the more capable the company is of paying its obligations. A ratio under 1 suggests that the company would be unable to pay off its obligations if they came due at that point. While this shows the company is not in good financial health, it does not necessarily mean that it will go bankrupt - as there are many ways to access financing - but it is definitely not a good sign.

If all other things were equal, a creditor, who is expecting to be paid in the next 12 months, would consider a high current ratio to be better than a low current ratio, because a high current ratio means that the company is more likely to meet its liabilities which fall due in the next 12 months.


NanoFlex Power Current Ratio Related Terms


NanoFlex Power Current Ratio Historical Data

* Premium members only.

The historical data trend for NanoFlex Power's Current Ratio can be seen below:

* For Operating Data section: All numbers are indicated by the unit behind each term and all currency related amount are in USD.
* For other sections: All numbers are in millions except for per share data, ratio, and percentage. All currency related amount are indicated in the company's associated stock exchange currency.

NanoFlex Power Current Ratio Chart

NanoFlex Power Annual Data
Trend Dec12 Dec13 Dec14 Dec15 Dec16 Dec17 Dec18 Dec19
Current Ratio
Get a 7-Day Free Trial 0.00 0.00 0.01 0.02 0.02

NanoFlex Power Quarterly Data
Mar15 Jun15 Sep15 Dec15 Mar16 Jun16 Sep16 Dec16 Mar17 Jun17 Sep17 Dec17 Mar18 Jun18 Sep18 Dec18 Mar19 Jun19 Sep19 Dec19
Current Ratio Get a 7-Day Free Trial Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only 0.02 0.02 0.01 0.01 0.02

OPVS vs SPI, PECK, VVPR: Current Ratio Comparison

For the Solar subindustry, NanoFlex Power's Current Ratio, along with its competitors' market caps and Current Ratio data, can be viewed below:

* Competitive companies are chosen from companies within the same industry, with headquarter located in same country, with closest market capitalization; x-axis shows the market cap, and y-axis shows the term value; the bigger the dot, the larger the market cap. Note that "N/A" values will not show up in the chart.


NanoFlex Power Current Ratio vs Semiconductors Industry

For the Semiconductors industry and Technology sector, NanoFlex Power's Current Ratio distribution charts can be found below:

* The bar in red indicates where NanoFlex Power's Current Ratio falls into.



NanoFlex Power Current Ratio Calculation

The current ratio is mainly used to give an idea of the company's ability to pay back its short-term liabilities with its short-term assets.

NanoFlex Power's Current Ratio for the fiscal year that ended in Dec. 2019 is calculated as

Current Ratio (A: Dec. 2019 )=Total Current Assets (A: Dec. 2019 )/Total Current Liabilities (A: Dec. 2019 )
=0.268/14.087
=0.02

NanoFlex Power's Current Ratio for the quarter that ended in Dec. 2019 is calculated as

Current Ratio (Q: Dec. 2019 )=Total Current Assets (Q: Dec. 2019 )/Total Current Liabilities (Q: Dec. 2019 )
=0.268/14.087
=0.02

* For Operating Data section: All numbers are indicated by the unit behind each term and all currency related amount are in USD.
* For other sections: All numbers are in millions except for per share data, ratio, and percentage. All currency related amount are indicated in the company's associated stock exchange currency.

Frequently Asked Questions Learn more about Current Ratio →
What does a Current Ratio of 0.02 mean?
NanoFlex Power (OPVS) has a Current Ratio of 0.02 as of Dec. 2019.
Is NanoFlex Power's Current Ratio too high?
NanoFlex Power's current Current Ratio is 0.02. The Semiconductors industry median Current Ratio is 2.48. NanoFlex Power's value of 0.02 is 99.2% below this industry median.
How does NanoFlex Power's Current Ratio compare to SPI and PECK?
NanoFlex Power's Current Ratio of 0.02 can be compared against companies in the Semiconductors industry. The industry median Current Ratio is 2.48. NanoFlex Power's value of 0.02 is 99.2% below this benchmark. See the competitive comparison table and distribution chart on this page for a detailed peer-by-peer breakdown.
What is a good Current Ratio for a Semiconductors company?
The median Current Ratio among Semiconductors companies is 2.48, based on 1,028 companies in the industry. Companies in the top quartile (top 25%) have a Current Ratio significantly above this median, while those in the bottom quartile fall well below. However, Current Ratio should not be evaluated in isolation — investors should consider it alongside profitability, growth, and financial strength metrics. NanoFlex Power's current Current Ratio of 0.02 is 99.2% below the industry median. Use the industry distribution chart on this page to see where any company falls relative to its peers.
What does a high Current Ratio mean?
A high Current Ratio can signal that a stock is expensive relative to its fundamentals. For the Semiconductors industry, the median Current Ratio is 2.48 — values significantly above this may indicate overvaluation, while values below may suggest a bargain or underlying issues. NanoFlex Power's current Current Ratio is 0.02. However, context matters — high-growth companies often justify higher valuations. Always evaluate alongside other metrics like GF Score™ and GF Value™.
Is NanoFlex Power stock overvalued right now?
NanoFlex Power (OPVS) has a current Current Ratio of 0.02. The current Current Ratio is 0.02 and 99.2% below the Semiconductors industry median of 2.48. Investors should evaluate multiple metrics — including profitability, growth, and financial strength — before making a decision.
How is Current Ratio calculated?
Current Ratio is calculated from a company's financial statements. For NanoFlex Power (OPVS), the current Current Ratio is 0.02 as of Dec. 2019. GuruFocus calculates this using data sourced from SEC filings and annual reports. See the calculation section and 30-year financial data on this page for the full breakdown.

NanoFlex Power Business Description

Address 15333 North Pima Road, Suite 305, Scottsdale, AZ, USA, 85260
NanoFlex Power Corp serves in the solar industry in the United States. It is organized to fund, develop, commercialize and license advanced photovoltaic technologies that enable thin-film solar products with industry- leading efficiencies, light weight, flexibility, and low total system cost. These technologies are used for applications including portable and off-grid power generation, building applied photovoltaics, building integrated photovoltaics, space vehicles and unmanned aerial vehicles, semi-transparent solar power generating windows or glazing, ultra-thin solar films for automobiles or other consumer applications and solar-powered sensors.