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Dimension
Name
Model format
Tireline
Pressure (bar)
Vehicle category
Lead time
Price
235/65 R19
260745 MICHELIN LATITUDE ALPIN LA2 235/65 R19 SWIFT Normal
SWIFT
LATITUDE ALPIN LA2
[1.8:3.2]
Car
2 Months
View details arrow to right in blue
235/65 R17
064439 MICHELIN LATITUDE ALPIN LA2 235/65 R17 SWIFT Normal
SWIFT
LATITUDE ALPIN LA2
[1.8:3.2]
Car
2 Months
View details arrow to right in blue
235/65 R16
036319 MICHELIN AGILIS X-ICE NORTH 235/65 R16 SWIFT Normal
SWIFT
AGILIS X-ICE NORTH
[3:5]
Car
2 Months
View details arrow to right in blue
235/55 R19
029074 MICHELIN LATITUDE ALPIN LA2 235/55 R19 SWIFT Normal
SWIFT
LATITUDE ALPIN LA2
[1.8:3.2]
Car
2 Months
View details arrow to right in blue
235/65 R17
516500 MICHELIN LATITUDE ALPIN LA2 235/65 R17 SWIFT Normal
SWIFT
LATITUDE ALPIN LA2
[1.8:3.2]
Car
2 Months
View details arrow to right in blue
235/65 R18
992409 MICHELIN LATITUDE ALPIN LA2 235/65 R18 SWIFT Normal
SWIFT
LATITUDE ALPIN LA2
[1.8:3.2]
Car
2 Months
View details arrow to right in blue
Tire icon 260745 MICHELIN LATITUDE ALPIN LA2 235/65 R19 SWIFT Normal

Car Lead time: 2 Months

Suitability

Handling
check
Interior noise
close
Ride comfort
check
Consumption
close
ADAS autonomous
check
ADAS ESP
check
Driver in the loop
check

Simulation limits

Pressure (bar)
[1.8:3.2]
Vertical load (N)
14146
Slip angle (°)
20
Camber
5
Slip ratio (%)
100
Frequency (Hz)
100

Compatibility

Model format
SWIFT
Software format
VI-CRT

Model constants

Temperature
Normal (soft handling)
Nominal speed
120 kph
Nominal load
1030 kg

Dataset reference number

260745MFS62N
Static

Mass
Simulated
Inertia
Simulated

Stiffnesses

Vertical
Simulated
Longitudinal
Simulated
Lateral
Simulated
Camber
Simulated
Parking torque
Simulated
Dynamic

Handling

Longitudinal
Simulated
Lateral
Simulated
Combined
Simulated

Vibration

Enveloping
Simulated
Dynamic
Simulated
Tire icon 064439 MICHELIN LATITUDE ALPIN LA2 235/65 R17 SWIFT Normal

Car Lead time: 2 Months

Suitability

Handling
check
Interior noise
close
Ride comfort
check
Consumption
close
ADAS autonomous
check
ADAS ESP
check
Driver in the loop
check

Simulation limits

Pressure (bar)
[1.8:3.2]
Vertical load (N)
13734
Slip angle (°)
20
Camber
5
Slip ratio (%)
100
Frequency (Hz)
100

Compatibility

Model format
SWIFT
Software format
VI-CRT

Model constants

Temperature
Normal (soft handling)
Nominal speed
120 kph
Nominal load
1000 kg

Dataset reference number

064439MFS62N
Static

Mass
Simulated
Inertia
Simulated

Stiffnesses

Vertical
Simulated
Longitudinal
Simulated
Lateral
Simulated
Camber
Simulated
Parking torque
Simulated
Dynamic

Handling

Longitudinal
Simulated
Lateral
Simulated
Combined
Simulated

Vibration

Enveloping
Simulated
Dynamic
Simulated
Tire icon 036319 MICHELIN AGILIS X-ICE NORTH 235/65 R16 SWIFT Normal

Car Lead time: 2 Months

Suitability

Handling
check
Interior noise
close
Ride comfort
check
Consumption
close
ADAS autonomous
check
ADAS ESP
check
Driver in the loop
check

Simulation limits

Pressure (bar)
[3:5]
Vertical load (N)
16686
Slip angle (°)
20
Camber
5
Slip ratio (%)
100
Frequency (Hz)
100

Compatibility

Model format
SWIFT
Software format
VI-CRT

Model constants

Temperature
Normal (soft handling)
Nominal speed
120 kph
Nominal load
1215 kg

Dataset reference number

036319MFS62N
Static

Mass
Simulated
Inertia
Simulated

Stiffnesses

Vertical
Simulated
Longitudinal
Simulated
Lateral
Simulated
Camber
Simulated
Parking torque
Simulated
Dynamic

Handling

Longitudinal
Simulated
Lateral
Simulated
Combined
Simulated

Vibration

Enveloping
Simulated
Dynamic
Simulated
Tire icon 029074 MICHELIN LATITUDE ALPIN LA2 235/55 R19 SWIFT Normal

Car Lead time: 2 Months

Suitability

Handling
check
Interior noise
close
Ride comfort
check
Consumption
close
ADAS autonomous
check
ADAS ESP
check
Driver in the loop
check

Simulation limits

Pressure (bar)
[1.8:3.2]
Vertical load (N)
11330
Slip angle (°)
20
Camber
5
Slip ratio (%)
100
Frequency (Hz)
100

Compatibility

Model format
SWIFT
Software format
VI-CRT

Model constants

Temperature
Normal (soft handling)
Nominal speed
120 kph
Nominal load
825 kg

Dataset reference number

029074MFS62N
Static

Mass
Simulated
Inertia
Simulated

Stiffnesses

Vertical
Simulated
Longitudinal
Simulated
Lateral
Simulated
Camber
Simulated
Parking torque
Simulated
Dynamic

Handling

Longitudinal
Simulated
Lateral
Simulated
Combined
Simulated

Vibration

Enveloping
Simulated
Dynamic
Simulated
Tire icon 516500 MICHELIN LATITUDE ALPIN LA2 235/65 R17 SWIFT Normal

Car Lead time: 2 Months

Suitability

Handling
check
Interior noise
close
Ride comfort
check
Consumption
close
ADAS autonomous
check
ADAS ESP
check
Driver in the loop
check

Simulation limits

Pressure (bar)
[1.8:3.2]
Vertical load (N)
12360
Slip angle (°)
20
Camber
5
Slip ratio (%)
100
Frequency (Hz)
100

Compatibility

Model format
SWIFT
Software format
VI-CRT

Model constants

Temperature
Normal (soft handling)
Nominal speed
120 kph
Nominal load
900 kg

Dataset reference number

516500MFS62N
Static

Mass
Simulated
Inertia
Simulated

Stiffnesses

Vertical
Simulated
Longitudinal
Simulated
Lateral
Simulated
Camber
Simulated
Parking torque
Simulated
Dynamic

Handling

Longitudinal
Simulated
Lateral
Simulated
Combined
Simulated

Vibration

Enveloping
Simulated
Dynamic
Simulated
Tire icon 992409 MICHELIN LATITUDE ALPIN LA2 235/65 R18 SWIFT Normal

Car Lead time: 2 Months

Suitability

Handling
check
Interior noise
close
Ride comfort
check
Consumption
close
ADAS autonomous
check
ADAS ESP
check
Driver in the loop
check

Simulation limits

Pressure (bar)
[1.8:3.2]
Vertical load (N)
14558
Slip angle (°)
20
Camber
5
Slip ratio (%)
100
Frequency (Hz)
100

Compatibility

Model format
SWIFT
Software format
VI-CRT

Model constants

Temperature
Normal (soft handling)
Nominal speed
120 kph
Nominal load
1060 kg

Dataset reference number

992409MFS62N
Static

Mass
Simulated
Inertia
Simulated

Stiffnesses

Vertical
Simulated
Longitudinal
Simulated
Lateral
Simulated
Camber
Simulated
Parking torque
Simulated
Dynamic

Handling

Longitudinal
Simulated
Lateral
Simulated
Combined
Simulated

Vibration

Enveloping
Simulated
Dynamic
Simulated