sfs group automotive industry brake systems

Brake Systems

Our customer-specific, precision-molded parts in metal and plastic are installed in hydraulic and electric brake systems. Specially designed processes such as end of pipe cleaning simplify subsequent processing.

Components for a Range of Braking Systems

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Anti-Lock Braking Systems (ABS) and Electronic Stability Control (ESC)

Within anti-lock braking systems, SFS supplies precision parts used in hydraulic control units and valve assemblies. These parts play a key role in regulating brake pressure and ensuring optimal vehicle stability under dynamic conditions.

Electronic stability control systems rely on fast and precise brake intervention. Our components enable the performance of hydraulic and electronic control systems as well as support vehicle stability and safety across a wide range of driving conditions.

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Electric Parking Brakes (EPB)

SFS components are widely used in electric parking brake systems, where precise actuation and durability are critical. Our solutions support reliable force transmission and long-term system stability in compact, highly integrated designs.

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Brake Booster Systems

Brake booster systems amplify driver input and are increasingly transitioning towards electromechanical designs. SFS develops solutions for both one-box and two-box systems used in electrohydraulic brakes (EHB), supporting compact system integration and high load requirements.

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Electromechanical Braking (EMB)

Electromechanical braking systems represent the next generation of brake-by-wire technology. The SFS Group is actively engaged in projects supporting these systems, contributing precision components for actuation and force transmission in fully electronic braking architectures.

Precision Parts in State-of-the-Art Braking Systems

SFS_AUTOMOTIVE_BSD_5103 1600x1066 Ball Screw Drives (BSD) Ball screw drives play a critical role in modern braking systems, particularly in electric brake boosters (EHB) and electromechanical braking (EMB) applications. SFS develops high-precision ball screw drive solutions for automotive actuation systems, enabling efficient force transmission, high positioning accuracy, and long service life. ABS_ESP_Anker 1600x1066 Hydraulic Control Components We manufacture high-precision parts for solenoid valves and hydraulic pumps (such as armatures, housings, bushings, closing covers, and bodies). Engineered for rapid-cycle reliability, these products ensure consistent pressure modulation, leak-proof performance, and exceptional durability under high-stress emergency braking conditions. Automotive_EPB_Ci_135_SNS_d42_Continental_02 1600x1066 Spindle Nut Systems By leveraging advanced cold forming technology, SFS produces spindle-nut system solutions that deliver high torque resistance and smooth power conversion, providing the robust clamping force necessary for vehicle safety and long-term mechanical stability. AUTOMOTIVE_GROSS 1600x1066 Connection Elements SFS specializes in high-performance connection elements, such as specialized pins, rivets, and adjustment screws, that are essential for the structural integrity of the entire brake assembly.
Bernd Huchler Head of Business Unit Automotive Formed Parts
“Modern braking demand goes beyond simple stopping power – it requires the seamless integration of hydraulics and electronics. Precision and high-end quality at the component level is the only way to guarantee performance across these sophisticated architectures. The SFS Group remains dedicated to being a premier manufacturing partner for the application-critical brake system components that keep the world moving safely”

Technologies

Frequently Asked Questions

What are the key components of modern automotive braking systems?

Modern automotive braking systems combine mechanical, hydraulic, and electronic components to ensure safe and controlled vehicle deceleration. Core brake system components include hydraulic control units, anti-lock braking system (ABS) modules, electronic stability control (ESC) systems, and brake booster assemblies (EHB). Within these systems, precision parts such as solenoid valves, sensors, and structural elements regulate brake pressure and maintain vehicle stability under dynamic conditions. As braking systems evolve, there is an increasing shift towards electromechanical braking architectures, where traditional hydraulic elements are complemented or replaced by electronically controlled actuation systems.

How do ABS, ESC, and hydraulic control components work together in braking systems?

ABS (anti-lock braking systems) and ESC (electronic stability control) are key subsystems within modern braking architectures, designed to improve vehicle control and safety. These systems rely on a combination of sensors, electronic control units (ECUs), and hydraulic control units to continuously monitor and adjust braking force. Hydraulic control units, including integrated solenoid valve and pump components, regulate brake fluid pressure to prevent wheel lock-up and maintain traction. ESC systems build on this by selectively applying braking force to individual wheels, ensuring stability during cornering or sudden maneuvers. The performance of these systems depends heavily on the precision and reliability of the underlying brake system components.

What are brake booster parts and how are they evolving in modern vehicles?

Brake booster parts are responsible for amplifying the force applied by the driver, reducing the effort required to operate the braking system. Driven by vehicle electrification and the reduced availability on combustion engine vacuum sources, traditional vacuum-assisted systems are increasingly being replaced by modern brake booster solutions. These are progressing further towards electric brake booster systems that utilize electromechanical actuation. These systems enable faster response times, improved efficiency, and seamless integration with advanced driver assistance systems (ADAS). As a result, brake booster architectures are becoming more compact, precise, and electronically controlled, requiring high-performance components designed for both mechanical strength and system integration.

What are electromechanical braking (EMB) and brake-by-wire systems?

Electromechanical braking (EMB), often referred to as brake-by-wire, represents the next generation of automotive braking systems. In these systems, traditional hydraulic connections are reduced or eliminated, and braking is controlled through electronic signals and actuators. EMB systems rely on a combination of sensors, control units, and precision mechanical components to deliver accurate and responsive braking performance. This shift towards fully electronic braking architectures supports increased vehicle automation, improved system efficiency, and greater design flexibility, while also placing higher demands on the precision and reliability of individual solutions.

What role do ball screw drives play in modern braking systems?

Ball screw drives are a key enabling technology in electric brake booster systems and electromechanical braking (EMB) applications. They convert rotational motion into precise linear movement, allowing accurate control of braking force and actuator positioning. In braking systems, ball screw drives support efficient force transmission, high load capacity, and repeatable performance, making them well-suited for safety-critical applications. As braking systems continue to evolve towards electromechanical designs, the importance of ball screw drive technology in automotive braking applications is expected to grow significantly.

What manufacturing technologies does SFS use for high-performance brake system components?

Brake system components are produced using advanced manufacturing technologies to meet strict safety, performance, and quality requirements. Processes such as cold forming, plastic injection molding, precision machining, and specialized secondary operations enable the production of high-strength, complex products with tight tolerances and consistent performance. These technologies are particularly important for solutions used in hydraulic control units, solenoid valve systems, and electromechanical actuation systems, where reliability and durability are critical. Through extensive manufacturing expertise and integrated production capabilities, the SFS Group supports both large-scale automotive production and customer-specific requirements, providing precision-engineered components that can be purchased as individual parts or integrated into complete system solutions.

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