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Comprehensive Bosch portfolio for software-driven mobility is a crowd-puller

03.09.2025

Press release

Business/economy

Comprehensive Bosch portfolio for software-driven mobility is a crowd-puller

Farmington Hills, Mich. – The automotive industry is changing. Software and artificial intelligence are making cars even more digital, while codes and algorithms are turning driving into a customized experience. To develop its full potential, software needs the right hardware. After all, even the most modern car won’t move an inch without physical components. Bosch operates in all relevant areas of software-driven mobility, and is a partner for automakers across the globe – regardless of how much progress they have made in the transformation to the software-defined vehicle. With its profound automotive expertise, Bosch interconnects the various vehicle domains. From brakes, steering systems, and electric powertrains to sensors, vehicle computers, and software, the supplier of technology and services develops and manufactures the key components of modern vehicles under one roof. At booth D01 in hall B3, Bosch is showcasing its latest solutions for connected and intelligent transportation systems at IAA Mobility 2025 in Munich. Bosch driving assistance for more safety and convenience Automated driving is an essential feature of software-defined vehicles. Bosch is actively pressing ahead with its development, and systematically taking driver assistance systems to new levels – for greater safety and convenience. The company uses an End-to-End AI architecture: The use of AI along the entire technology chain accelerates development cycles and increases the performance of the software stack. For assisted driving and parking up to SAE Level 2, Bosch offers its ADAS (advanced driver assistance system) product family in three variants: entry-level, mid-range, and premium. These variants differ in scope of software function, the number and combination of sensors, and required computing power. Automakers can purchase the hardware and software as integrated or stand-alone packages. The number of automakers who have opted for various constellations of the Bosch ADAS product family now runs into double figures. Both the mid-range and luxury variants are already in series production in China. Also available to end customers on the market are connected map services that extend the vehicle's field of vision like an additional sensor. The crowd-based solution provides information on difficult weather and road conditions, accidents, or wrong-way drivers, for example. Sensors for precise surround sensing: More and more vehicles, including less expensive ones, are being equipped with comprehensive driver assistance systems. This explains why high-performance and cost-effective camera solutions are becoming increasingly important. The Bosch multi purpose camera is available as a camera-only solution, or alternatively as a new two-part system variant comprising camera head and control unit. In the camera-only solution, the entire ADAS function is installed in the camera itself, and computation is done there. This is particularly suitable for vehicles with decentralized architectures. The two-part system variant, on the other hand, is a step on the way to centralized architectures. It is particularly attractive for automakers who want to take advantage of advanced driver assistance functions in their existing architectures. In software-defined vehicles with centralized architectures, the camera’s safety-relevant computation is done in powerful computers. For its new radar sensor , Bosch has developed and manufactured all the key elements itself, including the system on a chip (SoC). Thanks to advanced semiconductor technology, the SX600 and SX601 radar sensors’ range is roughly 30 percent greater than that of comparable models. This technology also allows driving functions to be fully and cost-effectively integrated into the radar sensor. Both sensor types support AI-assisted signal processing. The SX601 offers significantly greater computing power than usual on the market, as well as even better detection properties. For improved system performance and maximum precision, two SX601s can be connected in series to use eight transmitting and eight receiving antennas. In software-driven mobility, centralized semiconductor architectures are taking on increasing importance. They govern many sensor-based functions, including ESP ® , navigation, and driver assistance systems. To reduce complexity, Bosch has developed the latest generation of especially powerful MEMS inertial sensors . They can provide several systems at once with the data they need. This “one-sensor-fits-all” approach features in Bosch sensors such as the SMU300 and SMI980 , which are already in use in inertial measurement units and in airbag control units. At the IAA, Bosch will also be presenting its new TB293 and TB193 chips for ultrasonic sensors , which offer the highest data transmission rate in the ultrasonic market. For even greater sensor performance, Bosch is also turning to raw data, with the signal being recorded directly at the ultrasonic sensor (at the transducer), which means that the full range of data is retained. This is a great advantage, especially for AI-based functions. As a result, the sensors allow much better object detection. Now, for the first time, these chips are freely available in the market, independent of any sensors. With this step, Bosch is also making its new VASI bus interface (versatile automotive sensor interface) available, thus setting a new standard in the market. This means that automakers have a wider choice of sensor supplier, benefit from state-of-the-art ultrasonic technology, and can avoid lock-in effects. New standards for Bluetooth-based tire pressure sensors: In the Bosch SMP290 , safety and energy efficiency go hand in hand. With its compact design, low power consumption, long life, and one-of-a-kind integration of acceleration and pressure sensor as well as ASIC including Bluetooth on one chip, it truly stands out. Not only that: it helps simplify vehicle architecture. Thanks to the standardized Bluetooth interface, the SMP290 also enables new applications such as direct interaction with a smartphone. Bosch solution for damage detection: With its small damage detection , Bosch demonstrates how to cleverly combine software and hardware. This solution uses existing vehicle components such as the airbag ECU and sensors, obviating the need for any additional hardware. And in software-defined vehicles, small damage detection can even be updated over the air, after the vehicle has been purchased. It accurately detects even minor damage to the vehicle – both while driving and when parked. Small damage detection registers shocks that are below the threshold for airbag deployment, storing the relevant data. The system thus enables fast, automated, and objective damage detection. Act-by-wire technology: the future of vehicle control Act-by-wire systems transmit the driver’s steering and braking commands purely electronically. They are highly relevant for software-driven mobility, especially for the personalization of vehicle dynamics and handling, and for higher-level modes of automated driving. New brakes and steering for greater flexibility: Braking and steering via electrical cables (act-by-wire) opens up the possibility of new concepts for the steering wheel and brake pedal, crash-optimized design, and the more flexible positioning of components and the design of the interior. Bosch is one of the pioneers in the development of this technology, and soon one of the first to market it. Its brake-by-wire solution , comprising a by-wire actuator and ESP®, will feature in a production vehicle of a major Asian automaker. What is special about the hydraulic Bosch by-wire braking system is that it requires absolutely no mechanical connection between the brake pedal and the braking system. Software systems solution for vehicle dynamics: Bosch Vehicle Motion Management assumes the task of intelligently controlling actuators. This systems solution perfectly synchronizes the brakes, steering, chassis, and powertrain. Vehicle Motion Management is suitable for all vehicles and marques in the passenger-car segment. It takes the driving experience to a new level. Thanks to a special software function, the vehicle can be transformed into a super-maneuverable urban vehicle, a powerful speedster, or a limousine with chauffeur-driven comfort – depending on the individual driver’s mood. It can be activated either at the push of a button or by AI, which works in the background to customize the vehicle. Software function against travel sickness: Vehicle Motion Management’s “Comfort Stop” function increases comfort and counters travel sickness. The interaction of the brakes and the electric motor can reduce the jerk resulting from braking by 70 to 90 percent and gently bring the vehicle to a standstill. The shift from decentralized to centralized vehicle architectures Software-defined functions require a completely different setup for the electronic components and systems. Intelligence in the vehicle will be centralized in a few high-performance computers, instead of being distributed among currently sometimes more than 100 individual control units. This reduces the need for wiring, and makes both centralized processing and over-the-air updates possible. Bosch can supply the basic framework for any vehicle. Powerful computers for the software-defined vehicle: The Bosch portfolio not only includes centralized, powerful computers and state-of-the-art software , but also scalable and adaptable vehicle infrastructure. Bosch’s centralized high-performance computers and all its other components feature state-of-the-art communication interfaces. Depending on requirements, the resulting communication infrastructure can either be fast and broadband or lean and especially cost-efficient. Here, a key role is played by zone-level control units, which aggregate and translate the various communication channels and media. Robust on-board networks with zone-based architecture and 48-volt technology create the basis for a stable power supply that satisfies the growing requirements of modern vehicles. On the level of power-supply infrastructure, the key components supplied by Bosch include its 48-volt Powernet Master, which ensures that the vehicle’s safety-relevant functions are supplied with power at all times. The portfolio also includes combined communication and power-supply solutions, and well as zone-level control units. The range is rounded out by intelligent solutions for power distribution. These not only open up new diagnostic and maintenance options, but also meet the most stringent functional safety requirements. Faster data transmission in modern vehicles: It takes automotive ECUs just milliseconds to exchange data. The invisible backbone of this communication is the controller area network, or CAN. In vehicle architectures, such networks ensure a high level of stability, simplicity, flexibility, and cost efficiency. And with the new Bosch CAN SIC XL transceiver , they work especially fast – up to 20 Mbit/s in the case of CAN XL networks. In addition to the customary CAN commands, the new CAN XL standard can transmit internet protocol (IP), and thus complies with the requirements of modern E/E architectures. ETAS software: The Bosch subsidiary ETAS offers a Vehicle Software Platform Suite , which provides a stable and secure basis for the efficient development and management of scalable vehicle architecture. It supports all modern vehicle architectures – from classic control units to powerful computers and platforms for assisted and automated driving. Customers can use it to efficiently create state-of-the-art vehicle platforms and market them more quickly. As a founding member of Eclipse S-Core, ETAS uses a code-first approach as an integral part of the platforms it offers, and in this way plays a major part in shaping the open-source initiative. Using the ETAS Comprehensive Measurement Solution , vehicle functions can be validated quickly and cost-effectively, and system behavior optimized efficiently. The platform software records data in real time, and perfectly synchronizes internal data from microprocessor-based control units. This scalable and flexible solution can be adapted to various E/E architectures and to vehicle domains such as assisted and automated driving (ADAS/AD), infotainment, and motion. Bosch powertrain solutions: powerful and efficient In the powertrain domain, too, Bosch is responding to the growing requirements of software-driven mobility, and is developing sophisticated solutions. Following a technology-neutral approach, Bosch offers concepts for powertrains ranging from combustion engines to electric motors. Silicon-carbide semiconductors for electromobility: Automakers, automotive suppliers, and distributors can draw on a wide range of Bosch silicon-carbide (SiC) power semiconductors for diverse automotive applications. Silicon carbide is seen as a key technology for electromobility. Bosch offers its dual-channel trench MOSFETs as 750 and 1200 volt versions – unpackaged for inverter modules or packaged for on-board chargers, DC/DC converters, and inverters. By 2030, Bosch predicts that one in three newly registered cars and light trucks will be battery-electric. In electromobility, the Chinese market is setting the pace. Bosch is playing an active part in its development. Here, scalable and standardized platforms are crucial in making innovations universally available and affordable. They are also the basis of the broad Bosch portfolio for electric and hybrid vehicles of all types (Mild Hybrid, Strong Hybrid, Plug-in Hybrid, Range-extended electric vehicle). A global platform for a wealth of variants: Oil-cooled Bosch e-axles can be used as primary or secondary powertrains. They are globally available and locally adaptable. The 3-in-1 e-axle combines an electric motor, power electronics, and transmission. Bosch is adding further energy management components to its e-axle, such as an on-board charger, a DC/DC converter, and a power distribution unit. This combination of several functions in one unit offers a number of benefits, including a more compact design, lighter weight, and optimized costs, while increasing efficiency at the same time. From electric vehicle to mobile energy storage unit: Although they take up 30 percent less space, the latest generation of bidirectional charger converters , which combine an on-board charger with a DC/DC converter, are even more efficient. This systems solution is much easier to integrate, whether close to the powertrain in the e-axle or close to the battery. With bidirectional flows of energy, an electric vehicle can also function as a mobile energy storage unit. Inverters with greater power density: A new generation of inverters featuring power modules and semiconductors as well as innovative inverter topologies is paving the way for significant progress in power density and efficiency. And in electric motors as well, Bosch is moving ahead. Automakers can benefit from a globally standardized technology platform comprising various electric motors and active components such as rotors and stators. Shorter winding heads, innovative cooling designs including a direct copper conductor and magnet solution, and innovative materials are having a positive effect on electric motors’ size, efficiency, and use of materials. Increased range, reduced charging time: Standardized hardware means that intelligent software is gaining in significance. It can be used to extend range and curtail recharging time. Synchronous control (voltage modulation) allows efficiency to be increased by 1.5 percent, and an electric vehicle’s peak power and continuous output by 10 percent. Solely by using software, switching behavior can be synchronized with the rotation of the electric motor, without modifying the hardware. This extends the vehicle's range and simultaneously enhances the driving experience. Through the software feature eAxle Heating , the electric vehicle's battery is optimally preconditioned prior to charging. This facilitates higher charging capacities and consequently reduces vehicle downtimes. Digital proof of renewable fuels: In addition to electric vehicles, hybrid vehicles can also reduce carbon emissions from road traffic. This is why Bosch is continuing to develop injection and exhaust-gas treatment technology for combustion engines. Apart from strong and plug-in hybrids, electric vehicles with range extenders are becoming increasingly common, especially in China. Using renewable fuels in hybrid vehicles makes them much more climate-friendly. Proof that such fuels are in the tank can be provided by a Bosch cloud solution, the Digital Fuel Twin . This also shows how much less CO2 has been emitted. Optimum battery temperature: Thermal management systems can further increase the efficiency of hybrid and electric vehicles. By deliberately controlling flows of cold and heat, they ensure that the high-voltage battery remains within the optimum temperature window at all times, that the electric motor does not overheat under heavier loads, and that as little electricity as possible is used for cooling and heating. For this, Bosch is developing pre-integrated modules that combine essential elements such as electric cooling compressors and coolant pumps. This considerably reduces complexity and installation effort. In new systems, the coolant used is propane (R290), which is already used in heat pumps and tumble dryers. Intelligent coordination of energy management: The modular software solutions used in Bosch Vehicle Energy Management distribute energy in the vehicle in an especially intelligent way. An integrated approach coordinates and optimizes energy management and its component subsystems such as thermal management, powertrain, on-board network, and charging system. This connected system also takes account of current and forecast vehicle parameters, as well as of road conditions and driver behavior. In this way, electric vehicles’ efficiency, convenience, and service life can be further improved. Bosch Vehicle Energy Management is also offered as a hardware-agnostic solution. Safety in critical operating states: Together with its electronic disconnect unit , the Bosch battery management system monitors and controls the high-voltage battery’s cells – in both electric cars and plug-in hybrids. In critical operating states, it provides the necessary safety mechanisms. It also optimizes power output and battery life. It comprises a control unit as well as elements that are attached to the individual battery modules and that monitor each individual cell. Software functions, such as the battery passport that will be required in the EU from 2027, can also be integrated. In the event of an accident, the electronic disconnect unit disconnects the battery from the vehicle electronics. The battery management system, the cell monitoring units, and the charger-converter can be brought together in this disconnect unit, thereby reducing complexity. New battery for the on-board network: To meet ever greater demands for power, more and more electric vehicles will feature a 48-volt on-board network in the future. To satisfy this need, Bosch is developing a 48-volt lithium-ion battery – in addition to the 48-volt battery for mild hybrids it has already manufactured millions of times. The new variant will consistently provide the power needed for safety-critical features and for highly automated driving, but also when the vehicle is stationary for a protracted period. The battery can be flexibly integrated into the vehicle. Unlike conventional 12-volt batteries, it is lead-free. Bosch ESI[tronic] adds Tesla to its diagnostic program: The range of vehicles covered by Bosch’s tried and tested ESI[tronic] diagnostic software now also includes Tesla models. For the first time, therefore, independent workshops will now be able to use their everyday multibrand solution to perform extensive diagnostic work on Tesla models . Accessing diagnostic data was a special challenge when integrating Tesla. In contrast to many other automakers whose data Bosch receives in advance and translates into [ESI]tronic languages, the original Tesla diagnosis interacts in English only. And while other documentation is available in several languages, it is not available in all 23 of the languages supported by [ESI]tronic. To deal with this language barrier, Bosch has now come up with a technical solution that works with artificial intelligence, and has integrated this automatic translation functionality directly into the diagnostic process. As soon as a mechatronics engineer hooks up to a Tesla, the English diagnostic information is translated in real time into the user’s selected [ESI]tronic system language. This innovative approach ensures that independent workshops can work on Tesla vehicles efficiently and precisely, without language difficulties. This addition is an important step toward providing independent workshops with a future-proof, comprehensive diagnostic solution for the growing electric-vehicle segment. Bosch press conference: Monday, September 8, 2025, 11:00–11:20 CEST: with Dr. Stefan Hartung, chairman of the board of management of Robert Bosch GmbH, and Dr. Markus Heyn, member of the Bosch board of management and chairman of Bosch Mobility, at the Bosch booth D01 in Hall B3 and via Livestream on the Bosch Media Service . Bosch eBike Systems at IAA Mobility | Open Space: The IAA Open Space in downtown Munich will be open from 11:00 to 21:00 CEST from September 9 to 13, 2025. On Sunday, September 14, 2025, the IAA Open Space will be open for guests from 10:00 until 17:00 CEST. During the IAA, visitors can take the Cargo Line and other innovations, as well as many digital features offered by Bosch eBike Systems, for a test ride on the cycling test track in Munich’s Englischer Garten park. In addition, Bosch eBike product experts will be on hand to answer questions in the Open Space at Odeonsplatz.

More power, more Uphill Flow: Performance Line CX is increasing in strength

01.05.2025

Press release

eBike

More power, more Uphill Flow: Performance Line CX is increasing in strength

Foothill Ranch, Calif. – Conquer technical trail sections, tackle steep ascents with ease, and constantly test your own limits. For passionate MTB riders, Bosch eBike Systems is adding another dimension to the trail experience. From July 2025, eMTB enthusiasts can increase the performance values of the Performance Line CX (BDU384Y) in the eBike Flow app and customize them to their personal setup. In the new eMTB+ mode, this power is delivered with sensitive precision exactly when the rider needs it. The Kiox 400C display, the highly sensitive sensor technology for eBike ABS and eBike ABS Pro, and a customized eShift setting complete the new features in the Bosch eMTB ecosystem. More power for the Performance Line CX – individually adjustable The Performance Line CX is becoming even more powerful and adaptable. eBike riders can individually increase the performance of their drive unit via a software update in the eBike Flow app. A slider can be used to adjust the maximum power from the default value of 600 watts (W) up to 750 W, while the maximum torque can be increased from 85 Newton meters (Nm) to 100 Nm and the maximum support up to 400%. This gives eMTB riders a noticeable increase in power for particularly steep and technical uphill trails. The amount of power actually utilized is left up to the rider within the framework predefined by Bosch. It is important to bear in mind that higher values put more strain on the mechanical components and also affect the range – the more power, the greater the wear and the shorter the ride. The performance upgrade for the Performance Line CX can be downloaded free of charge over-the-air to eBikes with the current Performance Line CX (BDU384Y) after manufacturer approval for the respective eBike model from July. Bicycle manufacturers set the maximum values within which users can adjust their performance values. Maximum dynamics and control: The new eMTB+ mode The newly developed eMTB+ mode, which bridges the gap between Race and eMTB mode, offers greater dynamics and control. Depending on the rider's input, eMTB+ mode adapts support with up to 400% of rider power. Extended Boost can be controlled as sensitively as in eMTB mode and can develop the same maximum overrun as in Race mode – which is only available in conjunction with the Performance Line CX-R. Dynamic Control ensures full control of the power delivery. On demanding trails with changing surfaces and tire grip, the sensor technology recognizes the conditions and ensures a balanced and smooth power delivery. This keeps riders in the flow and the riding behavior of the drive unit confident, dynamic, and fully controllable. While eMTB mode in the basic setting is optimized for touring and a longer range, eMTB+ mode scores points for performance and trail fun. Riders who want to customize eMTB and eMTB+ mode according to their personal preferences can fine tune the various performance values in the eBike Flow app. “eMTB riding is part of our DNA,” says Claus Fleischer, CEO of Bosch eBike Systems. “We enable eMTB riders to live out their passion to the full – with optional additional power and even more customization options for different riding situations and needs. The increased performance values of the Performance Line CX in combination with the new eMTB+ mode offer even more power and agility on demanding trail rides.” Protected in the frame, all ride data at a glance: Kiox 400C display Power, cadence, heart rate, elevation, and more: eBike riders want to be able to view the most important ride data on challenging rides. The new Kiox 400C displays these values dynamically without manual intervention during the ride – and is a display and control unit in one. It is permanently and seamlessly integrated into the top tube of the eBike. This protects it from mud, knocks, and bumps while keeping the cockpit tidy. The dynamic screen for the Kiox 400C is preset so that riders can keep their hands on the handlebars at all times. The displayed data changes automatically in this setting – depending on the riding situation. For example, the elevation covered is displayed when riding uphill, and the speed when riding downhill. The various screens can be customized in the display configuration of the eBike Flow app. The tactile buttons also allow the display to be operated manually. In addition, the Mini Remote ensures safe and convenient operation directly from the handlebars – including control of lights, Walk Assist, and the Hill Start feature. With up to 1,000 cd/m², the razor-sharp display shows information and automatically adjusts to the surrounding brightness, remaining easy to read and glare-free even in direct sunlight. In addition, the navigation display enables precise route guidance so that eBike riders can easily find their way from trail to trail. Another clever feature is the protected USB-C charging socket on the Kiox 400C, which can be used to power external devices such as smartphones. Even better control when braking: Optimized Bosch eBike ABS and Bosch eBike ABS Pro Increased riding stability on the trail and powerful braking without the front wheel skidding: Bosch eBike ABS and Bosch eBike ABS Pro allow eMTB riders to focus better on the trail, ride more precisely, and concentrate less on braking. The ABS software has been further optimized to regulate the brake pressure even more precisely. A new sensor in the drive unit also measures the inclination of the eBike more accurately, allowing the eBike ABS to calculate more precisely when a crash over the bars could be imminent. In this way, Bosch eBike ABS can further reduce the braking distance. The new integrated sensor also enables a cleaner design without a sensor disk on the rear wheel. Focus when riding, composure when coasting: M+ with eShift A situation many eMTB riders will be familiar with: When they start pedaling again after coasting for a while, the last gear engaged is no longer suitable for a smooth start – either it is too hard or they feel a lack of resistance. M+ extends eShift from Bosch eBike Systems to include the “auto-shift” variant. When coasting, M+ automatically shifts to the right gear with eShift. This keeps the rider fully focused on the trail – allowing them to really push themselves on next pedaling section. On uphills and while pedaling, eMTB riders with M+ stay in control and shift gears manually. eShift ensures an optimum gear on the downhill when the rider isn't even thinking about it. M+ will be available from fall 2025 in combination with TRP E.A.S.I. A12 as part of an over-the-air update.

More adrenaline, more power, more trail fun

01.05.2025

Press release

eBike

More adrenaline, more power, more trail fun

Foothill Ranch, Calif. – eMTB riding combines adrenaline, flow, and the constant pushing of boundaries. Every rider has their own specific requirements: more power for steep uphills, more boost for technical terrain, or maximum range for long rides. The new Performance Line CX-R from Bosch eBike Systems, a pioneer in eMTB riding, stands for first class trail fun – with maximum power, lightning-fast response, precise control, and an exclusive Race mode for the highest demands. It offers up to 100 Newton meters (Nm) of torque, 750 watts (W) of power, and support of up to 400% of the pedal input. At the same time, the drive unit developed with top athletes boasts high-tech materials from aerospace and racing, has a low weight, and features high quality sensor technology. The latter ensures that the drive unit responds to the pedal input in milliseconds, pushing to the performance limit with power and control. The Race and eMTB+ riding modes, which have been customized for eMTB riding, enable precise and controlled power delivery. Claus Fleischer, CEO of Bosch eBike Systems, says: “The new Performance Line CX-R is the most powerful drive unit in our portfolio. We have made no compromises when it comes to materials, software, and sensor technology – enabling experienced riders to explore and push the limits of their skills on difficult trails. The new eMTB+ riding mode brings the power of the CX-R to the trail in a controlled manner. Thanks to Dynamic Control – a type of traction control in the new mode – propulsion remains controlled even on demanding terrain, steep sections, and wet surfaces.” Uncompromising support: Exclusive Race mode On challenging terrain, power is not the only thing that counts – a sensitive interplay of performance and control is crucial. Since riders have different requirements, there is a choice of customizable riding modes. Riders who want direct power delivery and maximum support can select the Race mode available exclusively with Performance Line CX-R. It enables lag-free acceleration and assists with full power up to maximum speed – with up to 400% in addition to rider power. When dynamically negotiating large rocks and complex tree roots, Extended Boost, which is further extended in Race mode, provides additional thrust. This makes it the first choice for competitions and for eMTB riders who want to constantly challenge themselves and master a variety of technical riding challenges. Riders wishing to adapt the mode to their personal preferences can customize the various performance parameters in the eBike Flow app. Full dynamics and control: New eMTB+ mode for demanding trails The dynamic and progressive eMTB+ mode is another key innovation for physically demanding trail rides. It bridges the gap between eMTB mode and Race mode and balances the full power of the latter with unique control. Based on the rider's input, eMTB+ mode delivers controlled support with up to 400% assistance in addition to the rider's own power. It develops its power in a natural and agile manner, and thanks to Dynamic Control it can always be precisely regulated via the rider's input. eMTB+ mode switches intelligently – depending on the situation – between Dynamic Control and the familiar, direct response. Just like in Race mode, the performance values of eMTB+ mode can also be fine tuned in the eBike Flow app to precisely suit the rider's needs and riding situations. For ambitious MTB riders, four fine tuned, dynamic riding modes are now available: Tour+, eMTB, eMTB+, and Race. These can be customized via the eBike Flow app – both in terms of performance values (W, Nm) and dynamics and response. Premium materials: Low weight and dynamic riding experience Whether on steep uphill trails, sprints over complex tree roots, or rough terrain, the materials of the Performance Line CX-R are designed for maximum performance and durability to get the most out of every riding situation. The powder coated magnesium housing in space gray adds durability, while the corrosion-resistant titanium crank spindle and high-quality ceramic ball bearings reduce the weight to just 6 pounds – and ensure even smoother operation. At the same time, the Performance Line CX-R is durable and reliable thanks to its high-quality construction and powerful electronics. When riding downhill, the decoupling of the external drivetrain (chain, chainring, cassette) from the internal drivetrain (freewheel, gear system, motor) ensures reduced mechanical noise so that the full focus remains on the trails and nature. High-quality sensor technology: Power at exactly the right moment To ensure that the Performance Line CX-R delivers power precisely in the right riding situations, sensor technology measures the pedal input up to a thousand times per second. The sensor technology used includes precise torque measurement technology and a high-resolution cadence sensor. Inertial sensors (IMU) also measure acceleration and rotation speeds in six dimensions, and recognize inclination and tilt angles as well as vibrations. On the trail, this means maximum power, precisely controllable and available at exactly the right moment – whether it's a powerful sprint out of a turn, a fine-tuned start on a slippery surface, or steep, technically demanding ascents. The first electric mountain bikes with the new Performance Line CX-R are expected to be available from dealers from fall 2025.

CES 2025: Bosch eBike Systems presents digital theft protection for eBike batteries

06.01.2025

Press release

eBike

CES 2025: Bosch eBike Systems presents digital theft protection for eBike batteries

Stuttgart/Reutlingen – Anyone who decides to buy an eBike wants to protect it against theft in the best possible way. To make things more difficult for thieves, Bosch eBike Systems is now extending its digital theft protection to batteries. At CES 2025 in Las Vegas, Bosch will present the Battery Lock : a unique function that ensures that the eBike battery can no longer be used if it is stolen, making it worthless to thieves. The new solution complements the digital theft protection portfolio in the smart system centred around " eBike Lock " and " eBike Alarm ". Gregor Dasbach, Head of Digital Business at Bosch eBike Systems: "The battery is one of the most valuable eBike components. With Battery Lock, eBike riders get a smart security function that helps them to protect their eBike even better against theft and to park it more carefree. The expansion of our digital theft protection portfolio brings us a big step closer to our vision of ensuring that no eBike with a Bosch system is stolen in the future." Battery Lock provides additional digital protection for the eBike battery Removable batteries such as PowerTube and PowerPack are mechanically secured by a lock. Battery Lock complements this protection on a digital level: as soon as Battery Lock is activated in the eBike Flow app, the battery locks automatically when the eBike is switched off. If a locked battery is inserted into another eBike with the smart system, it automatically deactivates its motor support and renders the entire eBike unusable for the thief. This also makes reselling the battery pointless, which reduces the risk of theft. Full flexibility: Compatible with all batteries or battery combinations in the smart system Several digital keys can be used simultaneously for Battery Lock: the smartphone with the eBike Flow app and Kiox 300 or Kiox 500. These digital keys are flexibly managed with the eBike Flow app and Battery Lock can also be switched off if you want to share the battery with friends or family, for example. Battery Lock is also compatible with all batteries or battery combinations in the smart system and also works with DualBatteries and the PowerMore 250 Range Extender. Optimum additional theft protection With the new Battery Lock function, Bosch eBike Systems is expanding its existing portfolio of digital security solutions and offering eBike riders even more protection against theft. With the eBike Lock function, which is already available, the smartphone and the Kiox 300 and Kiox 500 displays serve as a digital key to activate motor support. eBike Alarm informs users about the location of their eBike and sounds the alarm in the event of suspicious activity. If the eBike is stolen, they receive a push notification on their smartphone and location tracking starts. In the event of theft, the theft report summarises all the important data about the eBike and the crime so that it can be passed on to the police, including a live tracking link. The eBike pass serves as a digital vehicle registration document that shows eBike riders all the important information about their eBike at a glance. Available from summer 2025 Battery Lock can be installed over-the-air as usual on any Bosch eBike with the smart system via the eBike Flow app and will be available from summer 2025 as part of the Flow+ subscription.

New Bosch radar-based assistance system used for first time by KTM

24.09.2024

Press release

eBike

New Bosch radar-based assistance system used for first time by KTM

Stuttgart, Germany, and Yokohama, Japan – Thanks to Bosch, motorcyclists can now feel even safer in the saddle: the technology company has unveiled six new radar-based assistance systems, including five world-firsts. According to Bosch Accident Research, these could help prevent not just one in seven, like earlier systems, but as many as one in six accidents on German roads alone. Bosch already revolutionized the motorcycle market back in 2020 with its support functions for motorcyclists. Of the six new assistance functions, four will be unveiled in a new model from leading European motorbike manufacturer KTM in November 2024 and are set to enter production in 2025. “Bosch’s declared aim is to make motorcycling even safer and more comfortable by employing innovative new technologies – without diminishing riding enjoyment,” says Geoff Liersch, head of Two-Wheeler & Powersports at Bosch. “The new functions mark yet another step in this direction, and we’re delighted to have KTM as a customer.” The manufacturer will incorporate the four Bosch rider assistance functions that use front radar. This is not the first time Bosch and KTM have worked together: in 2013, the two companies collaborated on the successful launch of the MSC motorcycle stability control system. „We’re very satisfied with the longstanding collaborative relationship between our development teams, and we’re excited that KTM is the first to put these new functions to use,” says Stefan Haist, Lead KTM Chassis Control System – Street Development. Bosch assistance systems provide more support on two wheels Adaptive cruise control – stop and go (ACC S&G) For two-wheelers, traffic jams can be strenuous as well as dangerous. Riders have to constantly apply the clutch, use the brakes, and then start moving again. To make this task easier, Bosch launched ACC adaptive cruise control back in 2020. Once the desired speed has been set, this system constantly matches the vehicle’s speed to the flow of traffic while maintaining the necessary safe distance from the vehicle in front. Bosch has now taken this technology to a new level to offer increased riding comfort with its new ACC S&G function, which can bring the motorcycle to a controlled standstill in order to support the motorcyclist. This works best with an automatic transmission such as the one used in KTM’s new bike, which will be the first to incorporate this new function. If their motorcycle comes to a halt, there is no need for riders to use the clutch; they can set their bike in motion simply by pressing a button or briefly activating the throttle as soon as the vehicle in front starts moving. Group ride assist (GRA) Group riding in a staggered formation is popular among motorcyclists, though it can be challenging with ACC, because the function expects the motorcycles riding in front to be in the middle of the lane. GRA is a useful addition to ACC; using an algorithm, it detects when a group is riding in a staggered formation and regulates the speed to automatically maintain the same distance from the motorcycles in front. In this way, the function assists riders in achieving a natural group formation. When not riding in groups, the GRA system works the same as ACC. Riding distance assist (RDA) When traffic is flowing smoothly and RDA is activated, it helps maintain an appropriate distance from vehicles in front and thus prevent rear-end collisions. With ACC, a desired speed must be set; but when RDA is activated, the motorcycle can be controlled as normal via the throttle grip. While riding, the system automatically reduces the vehicle’s acceleration or applies the brakes as and when required. Riders can set the desired distance from the vehicle in front beforehand. If they wish, they can also use a switch to deactivate the function or apply the throttle to override the deceleration generated by the RDA system. This enables the function to blend naturally and comfortably into the dynamic flow of riding. Emergency brake assist (EBA) Hazardous situations on the road require not only a rapid response but, in many cases, emergency braking. Every second counts when it comes to preventing collisions and avoiding potentially serious consequences. EBA is triggered when the system detects a risk of collision and the rider doesn’t brake hard enough. In this case, the function actively increases the wheel brake pressure further to reduce the bike’s speed as quickly as possible. Rear distance warning (RDW) Even in a car, it can be hard to keep a constant eye on traffic approaching from behind; but on a motorcycle, it requires an extra level of concentration. RDW monitors the situation behind the rider and flashes a warning on the display if another vehicle gets too close. Based on this warning, the rider can take mitigating action to prevent a rear-end collision. Rear collision warning (RCW) RCW warns vehicles behind the motorcycle when a rear-end collision is imminent, for example by activating the hazard warning lights. In this way, the function protects motorcyclists from accidents caused by having to brake unexpectedly or by a vehicle failing to see them – whether waiting at traffic lights, sitting in a traffic jam, or riding in free-flowing traffic. These new functions supplement Bosch’s worldwide portfolio of radar-based assistance systems, thus expanding the “sensory world” of the motorcycle. In addition to basic safety features, increasing importance is also being given to convenience and experience features that focus on the motorcycle and take real-life riding situations into consideration – functions that ensure not only safety and convenience, but also unmatched riding enjoyment.