Vehicle Identification Number
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A Vehicle Identification Number, commonly abbreviated to VIN, is a unique serial number used by the automotive industry to identify individual motor vehicles. Prior to 1981, there was not an accepted standard for these numbers, so different manufacturers used different formats.
Modern day VINs consist of 17 characters which do not include the letters I, O, or Q (to avoid confusion with numerals 1 and 0).
There are vehicle history services in several countries that can help potential car owners use VINs to find lemons and branded vehicles. See the used car article for a list of countries where this service is available.
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[edit] Components of the VIN
Modern-day Vehicle Identification Number systems are based on two related standards, originally issued by the International Organization for Standardization (ISO) in 1979 and 1980; ISO 3779 and ISO 3780, respectively. Compatible but somewhat different implementations of these ISO standards have been adopted by the European Union and the United States of America.[1]
The VIN is composed of the following sections:
Standard | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 | 16 | 17 | ||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
ISO 3779 | World Manufacturer Identifier | VDS | VIS | ||||||||||||||||
European Union & North America more than 500 vehicles/year |
World Manufacturer Identifier | Vehicle Attributes | Check Digit | Model Year | Plant Code | Sequential Number | |||||||||||||
European Union & North America fewer than 500 vehicles/year |
World Manufacturer Identifier | Vehicle Attributes | Check Digit | Model Year | Plant Code | Manufacturer Identifier | Sequential Number |
[edit] World Manufacturer Identifier
The first three characters uniquely identify the manufacturer of the vehicle using the World Manufacturer Identifier or WMI code. A manufacturer who builds fewer than 500 vehicles per year uses a 9 as the third digit and the 12th, 13th and 14th position of the VIN for a second part of the identification. Some manufacturers use the third character as a code for a vehicle category (e.g., bus or truck), a division within a manufacturer, or both. For example, within 1G (assigned to General Motors in the United States), 1G1 represents Chevrolet passenger cars; 1G2, Pontiac passenger cars; and 1GC, Chevrolet trucks.
The Society of Automotive Engineers (SAE) in the US assigns WMIs to countries and manufacturers.[2]
The first character of the WMI is the region in which the manufacturer is located. In practice, each is assigned to a country of manufacture.
In the notation below, assume that letters precede numbers and that zero is the last number. For example, 8X-82 denotes 8X, 8Y, 8Z, 81, 82. In particular this does not include 80.
[edit] Country codes
A–H = Africa | J–R = Asia | S–Z = Europe | 1–5 = North America | 6–7 = Oceania | 8–9 = South America |
---|---|---|---|---|---|
AA-AH South Africa |
JA-JT Japan |
SA-SM Great Britain |
1A-10 United States |
6A-6W Australia |
8A-8E Argentina |
[edit] Vehicle Descriptor Section
The 4th through 9th positions in the VIN are the Vehicle Descriptor Section or VDS. This is used, according to local regulations, to identify the vehicle type and may include information on the platform used, the model, and the body style. Each manufacturer has a unique system for using this field. Most manufacturers since the 1980s have used the 8th digit to identify the engine type whenever there is more than one engine choice for the vehicle. Example: for the 2007 Chevrolet Corvette U= 6.0L V8, E= 7.0L V8.
[edit] North American Check Digits
One element that is fairly consistent is the use of position 9 as a check digit, compulsory for vehicles in North America, and used fairly consistently even outside this rule.
[edit] Vehicle Identifier Section
The 10th through 17th positions are used as the Vehicle Identifier Section or VIS. This is used by the manufacturer to identify the individual vehicle in question. This may include information on options installed or engine and transmission choices, but often is a simple sequential number. In fact, in North America, the last five digits must be numeric.
[edit] Model year encoding
One consistent element of the VIS is the 10th digit, which is required (in North America) to encode the model year of the vehicle. Besides the three letters that are not allowed in the VIN itself (I, O and Q), the letters U and Z and the digit 0 are not used for the model year code. Note that the year code is the model year for the vehicle.
The year 1980 was encoded by some manufacturers, especially General Motors and Chrysler, as "A" (since the 17-digit VIN wasn't mandatory until 1981, and the "A" or zero was in the manufacturer's pre-1981 placement in the VIN), yet Ford and AMC still used a zero for 1980. Subsequent years increment through the allowed letters, so that "Y" represents the year 2000. 2001 through 2009 are encoded as the digits 1 through 9, and subsequent years are encoded as "A", "B", "C", etc.
Code | Year | Code | Year | Code | Year | Code | Year |
---|---|---|---|---|---|---|---|
A = | 1980 | L = | 1990 | Y = | 2000 | A = | 2010 |
B = | 1981 | M = | 1991 | 1 = | 2001 | B = | 2011 |
C = | 1982 | N = | 1992 | 2 = | 2002 | C = | 2012 |
D = | 1983 | P = | 1993 | 3 = | 2003 | D = | 2013 |
E = | 1984 | R = | 1994 | 4 = | 2004 | E = | 2014 |
F = | 1985 | S = | 1995 | 5 = | 2005 | F = | 2015 |
G = | 1986 | T= | 1996 | 6 = | 2006 | G = | 2016 |
H = | 1987 | V = | 1997 | 7 = | 2007 | H = | 2017 |
J = | 1988 | W = | 1998 | 8 = | 2008 | J = | 2018 |
K = | 1989 | X = | 1999 | 9 = | 2009 | K = | 2019 |
[edit] North American Plant Code
Another consistently-used element (which is compulsory in North America) is the use of the 11th character to encode the factory of manufacture of the vehicle. Although each manufacturer has their own set of plant codes, their location in the VIN is standardized.
[edit] Check digit calculation
If trying to validate a VIN with a check digit, first either: (a) remove the check digit for the purpose of calculation; or (b) utilize the multiplicative property of zero in the weight to cancel it out. You should later compare the original value of the check digit with the calculated value. If the two values do not match (and there was no error in the calculation), then there is a mistake in the VIN. However, a match does not prove the VIN is correct, because there is still a 1 in 11 chance of any two distinct VINs having a matching check digit.
[edit] Transliterating the numbers
Transliteration consists of removing all of the letters and substituting them with their appropriate numerical counterparts. These numerical alternatives can be found in the following chart. I, O and Q are not allowed, and can not exist in a valid VIN; for the purpose of this chart, they have been filled in with N/A (not applicable). Numerical digits use their own values.
A: 1 | B: 2 | C: 3 | D: 4 | E: 5 | F: 6 | G: 7 | H: 8 | N/A |
J: 1 | K: 2 | L: 3 | M: 4 | N: 5 | N/A | P: 7 | N/A | R: 9 |
S: 2 | T: 3 | U: 4 | V: 5 | W: 6 | X: 7 | Y: 8 | Z: 9 |
S is 2, and not 1. There is no left-alignment linearity.
[edit] Weights used in calculation
The following is the weight factor for each position in the VIN. The 9th position is that of the check digit. It has been substituted with a 0, which will cancel it out in the multiplication step.
Position | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 | 16 | 17 |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Weight | 8 | 7 | 6 | 5 | 4 | 3 | 2 | 10 | 0 | 9 | 8 | 7 | 6 | 5 | 4 | 3 | 2 |
[edit] Worked example
Consider the hypothetical VIN 1M8GDM9A_KP042788, where the underscore will be the check digit.
VIN | 1 | M | 8 | G | D | M | 9 | A | 0 | K | P | 0 | 4 | 2 | 7 | 8 | 8 |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Value | 1 | 4 | 8 | 7 | 4 | 4 | 9 | 1 | 0 | 2 | 7 | 0 | 4 | 2 | 7 | 8 | 8 |
Weight | 8 | 7 | 6 | 5 | 4 | 3 | 2 | 10 | 0 | 9 | 8 | 7 | 6 | 5 | 4 | 3 | 2 |
Products | 8 | 28 | 48 | 35 | 16 | 12 | 18 | 10 | 0 | 18 | 56 | 0 | 24 | 10 | 28 | 24 | 16 |
- The VIN's Value is calculated from the above table, this number will be used in the rest of the calculation.
- Copy over the weights from the above table.
- The products row is a result of the multiplication of the vertical columns: Value and Weight.
- The products (8,28,48,35..24,16) are all added together to yield a sum of 351
- One of the following operations:
- 351 MOD 11 = 10
- 351 ÷ 11 = 31 10/11
- 351 ÷ 11 = 31.9090- (Requires a lookup table)
- 351 MOD 11 = 10
- The remainder is the check digit. If the remainder is 10 then the check digit is X. In this example the remainder is 10, so the check digit is transliterated into X.
With a check digit of 'X' the VIN: 1M8GDM9A_KP042788 is written as: 1M8GDM9AXKP042788.
Straight-ones (seventeen consecutive '1's) will suffice the check-digit. This is because a value of one, multiplied against 89 (sum of weights), is still 89. And 89 % 11 is 1, the check digit. This is an easy way to test a VIN-check algorithm.
[edit] See also
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[edit] References
[edit] External links
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