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1FADP5AUXHL111795-2017-ford-c-max-0
BADVIN vehicle history report for

2017 FORD C-MAXVIN: 1FADP5AUXHL111795

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Historical Records
events
Photos
64 images
Sales History
5 records
Sale Prices
4 records
VIN Decoder
53 entries
Market report
Price analytics

Historical Records

Historical records may include service and maintenance records, title status (clean, junk, salvage), insurance records, number of owners, registration events and states, and other information.
You can find more information about historical records in BADVIN reports and see more examples here.
Available historical records for VIN 1FADP5AUXHL111795
Latest reported mileage: 212 mi
Below you can see some examples of what these records could look like.
2023-07-27
a year ago
153,441 mi
REBUILT TITLE ISSUED
2021-12-06
3 years ago
11,407 mi
Odometer reading reported
2019-04-20
5 years ago
29,675 mi
Sold as a BMW Certified Pre-Owned Vehicle

Sale Record

Sale Date
in 5 months
Buy Now Price
$9,500
Odometer
78,502 mi
Location
Virtual Lane B
Has Keys:𐄂 NO
Year2017
TitleCLEAR (California) (***TITLE TBO***)
ODO 78,502 mi (Actual)
DamageNormal Wear & Tear
Estimated Repair Cost$100
Buy Now Price$9,500
LocationVirtual Lane B
Date
will be in 5 months (2024-12-01)
Sale Website Typesalvage or insurance auction
sale information provided by user #204599
All photos above are REAL and display ACTUAL car. After you get the report you will see full resolution photos.

Tech Specs
Body StyleHATCHBACK
TransmissionAutomatic Transmission
Engine2.0L I-4 DOHC, VVT, 141HP
Cylinders4 Cylinders
DriveFront Wheel Drive
Fuel TypeOther

Sale Record

Sale Date
in 2 days
Msrp
$25,760
Odometer
78,529 mi
Location
Houston, TX, 77061
2017 Ford C-Max Hybrid SE FWD Hatchback
Year2017
ODO 78,529 mi
SellerHidden text
MSRP$25,760
LocationHouston, TX, 77061
Date
will be in 2 days (2024-06-28)
Sale Website Typedealer auction
sale information provided by user #678470
Photos loading error. Looks like we have some issues with getting these photos from the server. Please, contact support for assistance.

Tech Specs
Body Style4DSN
ColorWhite
Color (Interior)Gray
TransmissionCVT
Engine4 Cylinder
DriveFWD
Fuel TypeGasoline Hybrid

Standard Features
All these features are based on a model in general. This specific vehicle may differ.

Model Analytics & Market Report

We've analyzed more than 22,200 sales records of this model and here are some numbers.
The average price for new (MSRP) 2017 FORD C-MAX in 2017 was $27,995.
The average price for used 2017 FORD C-MAX nowadays in 2024 is $13,267 which is 47% from the original price.
Estimated mileage driven per year is 10,932 miles.
For this model we also have depreciation curve, photos, list of features and options, and other analytics.
Take a look at 2017 FORD C-MAX model page in BADVIN vehicles catalog.

Depreciation

The graph below is a depreciation curve for 2017 FORD C-MAX. It shows how much this model looses per year in price. This analytics is calculated using sales records from BADVIN database.
The table below shows average price for used 2017 FORD C-MAX in each year since the year of manufacturing, current year price and projected price in the future years.
You can scroll the table horizontally to see all columns.
YearAverage MileageAverage Price% Left% Lost
2017 MSRP0 mi$27,995100%0%
→ Visit 2017 FORD C-MAX depreciation page to see full data.

Price vs Mileage

The graph below shows how mileage affects the price for 2017 FORD C-MAX. This data was calculated using sales records from BADVIN database.
The table below shows average price for used 2017 FORD C-MAX by mileage and number of sales.
You can scroll the table horizontally to see all columns.
MileageAverage PriceSample Size
5,000 mi$16,75013 sales
10,000 mi$21,78994 sales
15,000 mi$19,900134 sales
20,000 mi$18,590225 sales
25,000 mi$18,995476 sales
30,000 mi$17,991397 sales
→ Visit 2017 FORD C-MAX depreciation page to see full data.

VIN Decoder — 53 records

Active Safety System
Anti-lock Braking System (ABS)

Anti-lock Braking System (ABS) means a portion of a service brake system that automatically controls the degree of rotational wheel slip during braking by: (1) Sensing the rate of angular rotation of the wheels; (2) Transmitting signals regarding the rate of wheel angular rotation to one or more controlling devices that interpret those signals and generate responsive controlling output signals; and (3) Transmitting those controlling signals to one or more modulator devices that adjust brake actuating forces in response to those signals.

Standard
Auto-Reverse System for Windows and Sunroofs

An auto-reverse system enables power windows and sunroofs on motor vehicles to automatically reverse direction when such power windows and panels detect an obstruction. This feature can prevent children and others from being trapped, injured, or killed by the power windows and sunroofs.

Standard
Automatic Pedestrian Alerting Sound (for Hybrid and EV only)

Electric vehicle warning sounds are a series of sounds designed to alert pedestrians to the presence of electric drive vehicles such as hybrid electric vehicles (HEVs), plug-in hybrid electric vehicles (PHEVs), and all-electric vehicles (EVs) travelling at low speeds. Vehicles operating in all-electric mode produce less noise than traditional combustion engine vehicles and can make it more difficult for pedestrians, the blind, cyclists, and others to be aware of their presence.

Standard
Electronic Stability Control (ESC)

ESC is a computerized technology that improves a vehicle's stability by detecting and reducing loss of traction (skidding). When ESC detects loss of steering control, it automatically applies the brakes to help steer the vehicle in the driver's intended direction. Braking is automatically applied to wheels individually, such as the outer front wheel to counter oversteer, or the inner rear wheel to counter understeer. Some ESC systems also reduce engine power until control is regained.

Standard
Tire Pressure Monitoring System (TPMS) Type

A TPMS is an electronic system designed to monitor the air pressure inside the pneumatic tires on various types of vehicles. TPMS can be divided into two different types - direct and indirect. Direct TPMS employ pressure sensors on each wheel, either internal or external. The sensors physically measure the tire pressure in each tire and report it to the vehicle's instrument cluster or a corresponding monitor. Indirect TPMS does not use physical pressure sensors but measure air pressures by monitoring individual wheel rotational speeds and other signals available outside of the tire itself.

Direct
Traction Control

When the traction control computer detects a driven wheel or wheels spinning significantly faster than another, it invokes an electronic control unit to apply brake friction to wheels spinning due to loss of traction. This braking action on slipping wheels will cause power transfer to the wheels with traction due to the mechanical action within the differential.

Standard
Active Safety System / 911 Notification
Automatic Crash Notification (ACN) / Advanced Automatic Crash Notification (AACN)

An ACN system notifies emergency responders that a crash has occurred and provides its location.

Standard
Active Safety System / Backing Up and Parking
Backup Camera

A backup camera, also known as a rearview video system, helps prevent back-over crashes and protects our most vulnerable people - children and senior citizens - by providing an image of the area behind the vehicle. A backup camera helps the driver see behind the vehicle while in reverse.

Standard
Active Safety System / Forward Collision Prevention
Dynamic Brake Support (DBS)

A DBS system is an automatic emergency braking system designed to detect an impending forward crash with another vehicle. DBS systems automatically supplement the driver's braking in an effort to avoid a crash if the driver does not brake hard enough to avoid it.

Standard
Active Safety System / Lighting Technologies
Daytime Running Light (DRL)

DRL is an automotive lighting system on the front of a vehicle or bicycle, that automatically switches on when the vehicle is in drive, and emits white, yellow, or amber light to increase the conspicuity of the vehicle during daylight conditions.

Standard
Semiautomatic Headlamp Beam Switching

A semi-automatic headlamp beam switching device provides automatic or manual control of beam switching at the option of the driver. When the control is automatic, the headlamps switch from the upper beam to the lower beam when illuminated by the headlamps on an approaching car and switch back to the upper beam when the road ahead is dark. When the control is manual, the driver may obtain either beam manually regardless of the condition of lights ahead of the vehicle.

Standard
Engine
Displacement (CC)

Engine displacement (in cubic centimeters) is the volume swept by all the pistons inside the cylinders of a reciprocating engine in a single movement from top dead center to bottom dead center.

2000.0
Displacement (CI)

Engine displacement (in cubic inches) is the volume swept by all the pistons inside the cylinders of a reciprocating engine in a single movement from top dead center to bottom dead center.

122.04748818946
Displacement (L)

Engine displacement (in liters) is the volume swept by all the pistons inside the cylinders of a reciprocating engine in a single movement from top dead center to bottom dead center.

2.0
Electrification Level

Electrification level defines to what level the vehicle is powered by electric system. The common electric system configurations are mild hybrid, strong hybrid, plug-in hybrid, battery electric, and fuel cell vehicles.

(1) Mild hybrid is the system such as 12-volt start-stop or 48-volt belt integrator starter generator (BISG) system that uses an electric motor to add assisting power to the internal combustion engine. The system has features such as stop-start, power assist, and mild level of generative braking features.

(2) Strong hybrid systems, in vehicles such as the Toyota Prius, mainly consist of motors, conventional gasoline engine, and battery, but the source of electrical charge for the battery power is provided by the conventional engine and/or regenerative braking.

(3) Plug-in hybrid systems, in vehicles such as the Toyota Rav4 Prime, mainly consist of motors, conventional gasoline engine and battery. Plug-in hybrid vehicles are like strong hybrids, but they have a larger battery pack and can be charged with an external source of electricity by electric vehicle supply equipment (EVSE).

(4) Battery electric vehicles (BEV), such as the Tesla Model S or Nissan Leaf, have only a battery and electrical motor components and use electricity as the only power source.

(5) Fuel cell electric vehicles (FCEV) use full electric drive platforms but consume electricity generated by onboard fuel cells and hydrogen fuel.

Strong HEV (Hybrid Electric Vehicle)
Engine Brake (hp) From

Engine brake is the horsepower (hp) at the engine output shaft. Engine Brake (hp) From is the lower value of the range.

188
Engine Configuration

Engine configuration defines how engine cylinders are arranged. Common values are V6 for V-shaped arrangement, I4 or L4 for in-line arrangement.

In-Line
Engine Manufacturer

This data element captures the name of the engine manufacturer.

Ford
Engine Model

Engine model is a name that a manufacturer applies to a family of engine.

2.0L ATK IVCT HEV
Engine Number of Cylinders

This is a numerical field to store the number of cylinders in an engine. Common values for passenger cars are 4 or 6.

4
Fuel Type - Primary

Fuel type defines the fuel used to power the vehicle. For vehicles that have two power sources, such as plug-in hybrid vehicle, both primary fuel type and secondary fuel type will be provided.

Gasoline
Fuel Type - Secondary
Fuel type defines the fuel used to power the vehicle. For vehicles that have two power sources, such as plug-in hybrid vehicle, both primary fuel type and secondary fuel type will be provided.
Electric
Top Speed (MPH)

This data element captures the top speed of the vehicle in miles per hour (mph).

85
Exterior / Body
Body Class

Body Class presents the body type based on 49 CFR 565.12(b): "Body type means the general configuration or shape of a vehicle distinguished by such characteristics as the number of doors or windows, cargo-carrying features and the roofline (e.g., sedan, fastback, hatchback)." Definitions are not provided for individual body types in the regulation.

Hatchback/Liftback/Notchback
Doors

This is a numerical field to store the number of doors on a vehicle.

5
Exterior / Dimension
Gross Vehicle Weight Rating From

Gross vehicle weight rating (GVWR) is the maximum operating weight of a vehicle including the vehicle's chassis, body, engine, engine fluids, fuel, accessories, driver, passengers and cargo, but excluding that of the trailers. Per 49 CFR 565.15, Class 1 is further broken down to Class A-D; Class 2 is further broken down to Class E-H. This field captures the lower bound of GVWR range for the vehicle.

Class 1: 6,000 lb or less (2,722 kg or less)
Gross Vehicle Weight Rating To

Gross vehicle weight rating (GVWR) is the maximum operating weight of a vehicle including the vehicle's chassis, body, engine, engine fluids, fuel, accessories, driver, passengers and cargo, but excluding that of the trailers. Per 49 CFR 565.15, Class 1 is further broken down to Class A-D; Class 2 is further broken down to Class E-H. This field captures the higher bound of GVWR range for the vehicle.

Class 1: 6,000 lb or less (2,722 kg or less)
Wheel Base (inches) From

Wheel base is the distance between the centers of the front and rear wheels measured in inches. This field captures the lower bound of the wheel base range.

104.30
Exterior / Wheel tire
Number of Wheels

This field captures the number of wheels on a vehicle.

4
Wheel Size Front (inches)

This field captures the diameter of the front wheel in inches.

17
Wheel Size Rear (inches)

This field captures the diameter of the rear wheel in inches.

17
General
Base Price ($)

Base price of the vehicle is the cost of a new vehicle with only the standard equipment and factory warranty. It is the cost without any optional packages.

27120
Make

Per 49 CFR 565, Make is a name that a manufacturer applies to a group of vehicles or engines.

FORD
Manufacturer Name
Name of the vehicle manufacturer.
FORD MOTOR COMPANY
Model

Per 49 CFR 565, Model means a name that a manufacturer applies to a family of vehicles of the same type, make, line, series and body type.

C-Max
Model Year

If the model year (MY) is supplied when the VIN is decoded, such as from a crash report or a vehicle registration record, the MY value will be the supplied MY, even if the MY decoded from the VIN differs from the supplied MY. If the MY is not supplied when the VIN is decoded, the MY value will be decoded from the 10th character in the VIN.

2017
Plant City

This data element captures the city of the manufacturing plant where the manufacturer affixes the VIN.

WAYNE
Plant Company Name

This data element captures the name of the company that owns the manufacturing plant where the manufacturer affixes the VIN.

Michigan Assembly
Plant Country

This data element captures the country of the manufacturing plant where the manufacturer affixes the VIN.

UNITED STATES (USA)
Plant State

This data element captures the State or Province name within the Plant Country of the manufacturing plant where the manufacturer affixes the VIN.

MICHIGAN
Series

Per 49 CFR 565, Series means a name that a manufacturer applies to a subdivision of a "line" denoting price, size or weight identification and that is used by the manufacturer for marketing purposes.

SE FHEV
Vehicle Type

This field defines the type of the vehicle based on the World Manufacturer Identifier (WMI).

PASSENGER CAR
Interior
Steering Location

This data element captures the location of steering column, either on left- (LHD) or right-hand side (RHD).

Left-Hand Drive (LHD)
Interior / Seat
Number of Seat Rows

This data element is a numeric field to capture the number of rows of seats in a vehicle.

2
Number of Seats

This data element is a numeric field to store the number of seats in a vehicle.

5
Internal
NCSA Body Type

An internal NHTSA field to capture the body type of the vehicle.

5-door/4-door hatchback
NCSA Make

An internal NHTSA field to capture the Make of the vehicle.

Ford
NCSA Model

An internal NHTSA field to capture the Model of the vehicle.

C-Max
Mechanical / Drivetrain
Axles

This numerical field defines the number of axles on a vehicle.

2
Passive Safety System
Seat Belt Type

This field describes the type of seat belt, such as manual or automatic. Automatic seat belts automatically close over riders in a vehicle. Automatic seat belts were mainly used in some older model GM, Nissan, and Honda vehicles and are rarely seen now.

Manual
Passive Safety System / Air Bag Location
Front Air Bag Locations

This field captures the location of frontal air bags. Frontal air bags are generally designed to deploy in "moderate to severe" frontal or near-frontal crashes.

1st Row (Driver and Passenger)
Knee Air Bag Locations

This field captures the location of knee air bags, which deploy from a car's lower dashboard, are meant to distribute impact forces on an occupant's legs in the case of a crash, thereby reducing leg injuries.

Driver Seat Only
Side Air Bag Locations

This field captures the location of side air bags, typically designed for three areas of added protection: chest/torso, head, or both.

1st and 2nd Rows
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Frequently asked questions
A CPO vehicle offers the reliability of a new car at a lower price, backed by a comprehensive warranty, making it a great option for those seeking value and peace of mind.
A VIN decoder reveals the vehicle's trim level by decoding specific characters of the VIN that relate to the vehicle's series and equipment levels.
Yes, it is generally safe to share your VIN online for decoding, as the VIN is a public figure and does not contain sensitive personal information.
Discrepancies between a window sticker and actual dealer pricing can occur due to additional dealer markup, optional add-ons not included in the sticker, or regional pricing differences.
A vehicle history report provides past data and records but cannot assess the current physical condition of a vehicle, underscoring the need for an independent inspection before purchase.
Federal highway inspection data for 2017 FORD vehicles may include inspection dates and details on safety, driver, and hazardous materials violations, if such inspections have been documented.
The window sticker for 2017 FORD vehicles provides emissions information including compliance with federal or state standards and the vehicle's environmental impact ratings.
If theft records are present, it’s crucial to ensure the vehicle has been recovered and legally cleared for sale to avoid potential legal issues, depending on the accuracy of the data.
The information on vehicles provided here is supplied by third parties; BADVIN.ORG is not responsible for the accuracy of any information. BADVIN.ORG provides all service and materials without representations or warranties of any kind, either expressed or implied. Use BADVIN search and reports along with certified vehicle inspection and test drive. See Terms of Use for more details. All other logos, brands and designated trademarks are the property of their respective holders.