|
ECONOMICAL RIDING INDICATORUsing high-precision electronic control for engine management, Kawasaki models can achieve a high level of fuel efficiency. However, fuel consumption is greatly affected by throttle use, gear selection, and other elements under the rider's control. The Economical Riding Indicator is a function that indicates when current riding conditions are consuming a low amount of fuel. The system continuously monitors fuel consumption, regardless of vehicle speed, engine speed, throttle position and other riding conditions. When fuel consumption is low for a given speed (i.e. fuel efficiency is high), an "ECO" mark appears on the instrument panel's LCD screen. By riding so that the "ECO" mark remains on, fuel consumption can be reduced. While effective vehicle speed and engine speed may vary by model, paying attention to conditions that cause the "ECO" mark to appear can help riders improve their fuel efficiency – a handy way to increase cruising range. Further, keeping fuel consumption low also helps minimize negative impact on the environment. |
KTRC (KAWASAKI TRACTION CONTROL)KTRC, Kawasaki's advanced traction control system provides both enhanced sport riding performance and the peace of mind to negotiate slippery surfaces with confidence. Multiple rider-selectable modes (the number of modes varies by model) offer progressively greater levels of intrusion to suit the riding situation and rider preference. Less intrusive modes maintain optimum traction during cornering. Designed with sport riding in mind, they facilitate acceleration out of corners by maximizing forward drive from the rear wheel. And because Kawasaki’s sophisticated software bases its dynamic analysis on the chassis’ orientation relative to the track surface (rather than relative to a horizontal plane), it is able to take into account corner camber, gradient, etc., and adapt accordingly. In the more intrusive modes (and for some models, in any mode), when excessive wheel spin is detected, engine output is reduced to allow grip to be regained, effectively enabling riders to negotiate both short, slippery patches (train tracks or manhole covers) and extended stretches of bad roads (wet pavement, cobblestone, gravel) with confidence. Models equipped with IMU incorporate chassis-orientation feedback to offer even more precise management. |
SMARTPHONE CONNECTIVITYClever technology enables riders to connect to their motorcycle wirelessly. Using the smartphone application “RIDEOLOGY THE APP,” a number of instrument functions can be accessed, contributing to an enhanced motorcycling experience. Vehicle information (such as the odometer, fuel gauge, maintenance schedule, etc) can be viewed on the smartphone. Riding logs (varies by model, but may include GPS route, gear position, rpm, and other information) can be viewed on the smartphone. When connected, telephone (call, mail) notices are displayed on the instrument panel. Riders can also make changes to their motorcycle’s instrument display settings (preferred units, clock and date setting, etc) via the smartphone. And on certain models, it is even possible to check and adjust vehicle settings (such as Rider Mode, electronic rider support features, and payload settings) using the smartphone. |
ABS (ANTI-LOCK BRAKE SYSTEM)Kawasaki ABS systems use front and rear wheel sensors to constantly monitor wheel speed. Should information from either of the sensors indicate that wheel lock has occurred, the ABS ECU directs the pump in the ABS unit to modulate brake fluid pressure (releasing and reapplying pressure so that traction can be regained) until normal operation resumes. ABS offers rider reassurance that contributes to greater riding enjoyment. |
ASSIST & SLIPPER CLUTCHBased on feedback from racing activities, the Assist & Slipper Clutch uses two types of cams (an assist cam and a slipper cam) to either drive the clutch hub and operating plate together or apart. Under normal operation, the assist cam functions as a self-servo mechanism, pulling the clutch hub and operating plate together to compress the clutch plates. This allows the total clutch spring load to be reduced, resulting in a lighter clutch lever feel when operating the clutch. When excessive engine braking occurs – as a result of quick downshifts (or an accidental downshift) – the slipper cam comes into play, forcing the clutch hub and operating plate apart. This relieves pressure on the clutch plates to reduce back-torque and helps prevent the rear tire from hopping and skidding. This race-style function is particularly useful when sport or track riding. |
ELECTRONIC THROTTLE VALVESKawasaki’s fully electronic throttle actuation system enables the ECU to control the volume of both the fuel (via fuel injectors) and the air (via throttle valves) delivered to the engine. Ideal fuel injection and throttle valve position results in smooth, natural engine response and the ideal engine output. The system also makes a significant contribution to reduced emissions. Electronic throttle valves also enable more precise control of electronic engine management systems like S-KTRC and KTRC, and allow the implementation of electronic systems like KLCM, Kawasaki Engine Brake Control, and Electronic Cruise Control. |
KAWASAKI ENGINE BRAKE CONTROLThe Kawasaki Engine Brake Control system allows riders to select the amount of engine braking they prefer. When the system is activated, the engine braking effect is reduced, providing less interference when riding on the track. |
KCMF (KAWASAKI CORNERING MANAGEMENT FUNCTION)Using the latest evolution of Kawasaki’s advanced modeling software and feedback from a compact IMU (Inertial Measurement Unit) that gives an even clearer real-time picture of chassis orientation, KCMF monitors engine and chassis parameters throughout the corner – from entry, through the apex, to corner exit – modulating brake force and engine power to facilitate smooth transition from acceleration to braking and back again, and to assist riders in tracing their intended line through the corner. The systems that KCMF oversees vary by model, but may include: |
KLCM (KAWASAKI LAUNCH CONTROL MODE)Designed to assist riders by optimizing acceleration from a stop, KLCM electronically manages engine output to minimize wheel spin when moving off. With the clutch lever pulled in and the system activated, engine speed is limited to a determined speed while the rider holds the throttle open. Once the rider releases the clutch lever to engage the clutch, engine speed is allowed to increase, but power is regulated to minimize wheel spin and help keep the front wheel on the ground. The system disengages automatically once a predetermined speed has been reached, or when the rider shifts into third gear. Depending on the model, riders can choose from multiple modes, each offering a progressively greater level of intrusion. |
KQS (KAWASAKI QUICK SHIFTER)Designed to help riders maximize their acceleration on the track by enabling clutchless upshifts with the throttle fully open, KQS detects that the shift lever has been actuated and sends a signal to the ECU to cut ignition so that the next gear can be engaged without having to use the clutch. On models that offer clutchless downshifts, during deceleration the system automatically controls engine speed so that the next lower gear can be selected without operating the clutch. |
POWER MODESModels equipped with multiple Power Modes offer riders an easily selectable choice of engine power delivery to suit riding conditions or preference. In addition to Full Power mode, one (Low) or two (Middle, Low) alternate mode(s) in which maximum power is limited and throttle response is milder are provided. |
SUPERCHARGED ENGINEDrawing on the know-how and technology possessed by the Kawasaki Heavy Industries, Ltd. (KHI), Kawasaki’s supercharged engine delivers high engine output while maintaining a compact design. The key to achieving this incredible performance lies in the engine’s supercharger – a motorcycle-specific unit designed completely in-house with technology from the Kawasaki Gas Turbine & Machinery Company, Aerospace Company and Corporate Technology Division. One of the greatest benefits of designing the supercharger in-house and tailoring its design to match the engine’s characteristics was that engineers were able to achieve high-efficiency operation over a wide range of conditions – something that would not have been possible by simply dropping in or trying to adapt an aftermarket automotive supercharger. The importance of high efficiency in a supercharger is that, as the air is compressed, power-robbing heat gain is minimal. And while many superchargers are able to offer high-efficiency operation in a very limited range of conditions, the Kawasaki supercharger offers high efficiency over a wide range of pressure ratios and flow rates – meaning over a wide range of engine speeds and vehicle speeds. This wide range of efficient operation (similar to having a wide power band) easily translates to strong acceleration. The supercharger’s high efficiency and minimal heat gain also meant that an intercooler was unnecessary, greatly saving weight and space, and enabling the engine’s compact design. |
BSD (BLIND-SPOT DETECTION)Using a rear-facing radar sensor, BSD monitors the bike’s surroundings and alerts the rider to presence of a vehicle approaching in the rider’s blind spot. The rear-facing radar sensor scans behind in the lanes to the left and right of the rider. When an approaching vehicle is detected, an LED built into the rearview mirror will light up. (Note: BSD will not alert the rider to vehicles directly behind the bike, or vehicles that are moving away from the bike. Should the rider indicate the intent to change lanes by switching on their turn signal while a vehicle is detected in a blind spot, the mirror LED will flash. |
CORNERING LIGHTSA set of three LED lights built into each side of the fairing help illuminate the road when cornering at night. Each of the three lights has a fixed direction and is activated based on lean angle. As the bike leans over, the lights come on in order, creating a wider illuminated path in the direction the bike is heading. |
FCW (FORWARD COLLISION WARNING)When the system determines that continuing at the current speed may result in a collision with the vehicle in front, it warns the rider. A front-facing radar sensor monitors the distance and speed of the vehicle in front. When a vehicle is in close proximity and there is danger of a collision should the current speed be maintained, the system alerts the rider using a bright flashing red LED light above the instrument panel. A warning is also shown on the TFT display. |
IMU-ENHANCED CHASSIS ORIENTATION AWARENESSThe strength of Kawasaki’s cutting-edge electronics has always been the highly sophisticated programming that, using minimal hardware, gives the ECU an accurate real-time picture of what the chassis is doing. Kawasaki’s proprietary dynamic modeling program makes skillful use of the magic formula tire model as it examines changes in multiple parameters, enabling it to take into account changing road and tire conditions. The addition of an IMU (Inertial Measurement Unit) enables inertia along 6 DOF (degrees of freedom) to be monitored. Acceleration along longitudinal, transverse and vertical axes, plus roll rate and pitch rate are measured. The yaw rate is calculated by the ECU using Kawasaki original software. This additional feedback contributes to an even clearer real-time picture of chassis orientation, enabling even more precise management for control at the limit. With the addition of the IMU and the latest evolution of Kawasaki’s advanced modeling software, Kawasaki’s electronic engine and chassis management technology takes the step to the next level – changing from setting-type and reaction-type systems to feedback-type systems – to deliver even greater levels of riding excitement. |
KIBS (KAWASAKI INTELLIGENT ANTI-LOCK BRAKE SYSTEM)Kawasaki developed KIBS to take into account the particular handling characteristics of supersport motorcycles, ensuring highly efficient braking with minimal intrusion during sport riding. It is the first mass-production brake system to link the ABS ECU (Electronic Control Unit) and engine ECU.
|
KIPASS (KAWASAKI'S INTELLIGENT PROXIMITY ACTIVATION START SYSTEM)With the compact key fob (portable immobilizer) in a pocket, KIPASS allows riders to remotely release the bike's steering lock and main switch simply by approaching the bike. When the key fob is close to the bike, the signal it sends out is picked up and recognized by the KIPASS unit in the bike. Like immobilizer keys, each key fob has a unique signal, making this system also useful as a theft deterrent. The key fob can be recognized when in a jacket pocket, so there is no need for the rider to remove the key to operate the bike's main switch. *This system uses the encryption algorithm "MISTY" developed by MITSUBISHI ELECTRIC CORPORATION.
|
KAWASAKI SPINKawasaki’s new smartphone-based infotainment app enables various third-party applications to be downloaded and mirrored on the cockpit’s TFT display. Basic functions available in the app include telephone, map display, music, calendar, and contacts. Additionally, riders can opt to download third-party apps to add to their Kawasaki SPIN library to be able to interact with them on the TFT display.
|
TIRE PRESSURE MONITORING SYSTEM (TPMS)Maintaining the correct tire air pressure is very important as it can greatly affect a motorcycle's performance. Tire air escapes naturally over time, so it is also important to check tire pressure regularly. The Tire Pressure Monitoring System continuously measures tire pressure (using sensors attached to the air valves of each wheel) and displays the current pressure on the bike's instrument panel while riding. Tire air pressure varies greatly as the tires warm up, but the Tire Pressure Monitoring System takes this into consideration and recalculates the pressure for 20°C (68°F) to avoid confusion and false warnings. |
KIBS (KAWASAKI INTELLIGENT ANTI-LOCK BRAKE SYSTEM)Kawasaki developed KIBS to take into account the particular handling characteristics of supersport motorcycles, ensuring highly efficient braking with minimal intrusion during sport riding. It is the first mass-production brake system to link the ABS ECU (Electronic Control Unit) and engine ECU.
|
The new Kawasaki Ninja H2 SX is the Kawasaki's most advanced Sport Tourer ever; the ultimate integration of the highest standards of technology, performance and riding comfort.
New dedicated features like the ARAS system provide real world benefits including adaptive cruise control and blind-spot detection. Integrated into the new 6.5” colour TFT instrumentation is Kawasaki's SPIN Infotainment system. Experience the exhilaration of the unique balanced supercharged engine for both long distance touring and daily riding.
The best technology is that which becomes a natural extension of ourselves and sets us free.
Ninja H2 SX. ENGINEERED TO BE FREE.
FEATURING
ADDITIONAL VEHICLE FEATURES