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The origins of the CUSIP system go back to 1964, when the financial markets were dealing with what was known as the securities settlement paper crunch on Wall Street. [5] [6] [7] At that time, increased trading volumes of equity securities, which were settled by the exchange of paper stock certificates, caused a backlog in clearing and settlement activities.
In the United States and Canada the NNA is the CUSIP Services Bureau and the NSIN is the CUSIP. In the United Kingdom, the NNA is the London Stock Exchange and the NSIN is the SEDOL. In France, the NNA is Euroclear France and the NSIN used to be the Sicovam. As of July 1, 2003 SICOVAMs are no longer issued, ISINs being used instead.
A Central Index Key or CIK number is a unique number assigned to an individual, company, filing agent or foreign government by the United States Securities and Exchange Commission. The number is used to identify its filings in several online databases, including EDGAR .
In 2009, Bloomberg released Bloomberg’s Open Symbology ("BSYM"), a system for identifying financial instruments across asset classes. [1]As of 2014 the name and identifier called 'Bloomberg Global Identifier' (BBGID) was replaced in full and adopted by the Object Management Group and Bloomberg with the standard renamed as the 'Financial Instrument Global Identifier' (FIGI).
Compustat is a database of financial, statistical, and market information on active and inactive global companies throughout the world. The service began in 1962. This database provides products directed at institutional investors, universities, bankers, advisors, analysts, and asset/portfolio managers in corporate with, M&A, private capital, equity, and fixed income markets.
CUSIP-linked MIP code ... Financial Instrument Global Identifier; Financial Instruments Reference Database System ... International Securities Identification Number ...
See today's average mortgage rates for a 30-year fixed mortgage, 15-year fixed, jumbo loans, refinance rates and more — including up-to-date rate news.
For an odd number of digits, the approach in the first example is used. For an even number of digits, the approach in the second example is used. The Luhn algorithm can also be applied in the same manner for both types or lengths (alternating multiply the string of digits by 1 and 2, starting from the end of the string), being more generic.