The company is located in the Automobile and Motorcycle Distribution Park in Huang jin bu Town, yu gan county, Jiangxi Province Adjacent to ying tan North Station, the traffic is very convenient. Covering an area of more than 35,000 square meters, it has a first-class sales team,advanced production lines and testing equipment, exquisite product research and development technology and modern management team.
Since its establish in 2007, Zhengpu Company has always adhered to the principle of "people-oriented, customer first,forge ahead and create brilliance together", adhering to the business philosophy of "scientific management, quality first and brand development", and relying on advanced production equipment and strong technical force, it has implemented lean production management and ERP management system. So that the "Zhengpu" series products are extraordinary and refined and are favored and praised by consumers at home and abroad.
The "honest people" who "unite and struggle, forget ahead, keep their promises and never give up" have made great achievements after more than ten years of hard work and hard work.
Why choose us
Advanced equipment
Jiangxi factory was put into use,covering an area of 35000 square meters ,the annual output value exceeded 100 million yuan in 2019 year.
Professional team
The function of the airbag spring is to connect the airbag, ensuring that current can still enter when the steering wheel is turned.
Quality control
So that the "Zhengpu" series products are extraordinary and refined and are favored and praised by consumers at home and abroad.
Rich experience
The company moved to luofeng industrial zone, cover an area of 10000 square meters,the annual output value reaches 40 million yuan in 2016 year.
Competitive price
Since its establish in 2007, Zhengpu Company has always adhered to the principle of "people-oriented, customer first, forge ahead and create brilliance togeth.
Custom service
And the inner thread has a hairspring, which will not break due to frequent rotation of the steering wheel. Ensure that the airbags are always in working conditi.
Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-SDA-Y01 For Honda ACCORD 2.4 2003 -2007
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Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-SAA-G51 For Honda City Jazz 2008
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Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-SEN-H01 For Honda City Jazz 2003-2008
planning cepteur sint occaecat planning cepteur sint occaecat
Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-TF0-E91 For Honda City1.5 Jazz 2009-2011
An airbag clock spring is used to connect the steering wheel to other electrical devices such as the airbag safety system, radio volume and station selections, horn and cruise controls. A clock spring can become faulty when wires become worn and break causing a short or open circuit.
Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-TA0-H21 For Honda Accord 2011-2012
An airbag clock spring is used to connect the steering wheel to other electrical devices such as the airbag safety system, radio volume and station selections, horn and cruise controls. A clock spring can become faulty when wires become worn and break causing a short or open circuit.
Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-SFE-Q01 For Honda Odyseey 05
An airbag clock spring is used to connect the steering wheel to other electrical devices such as the airbag safety system, radio volume and station selections, horn and cruise controls. A clock spring can become faulty when wires become worn and break causing a short or open circuit.
Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-S3N-Q03 For Honda Odyssey 03
An airbag clock spring is used to connect the steering wheel to other electrical devices such as the airbag safety system, radio volume and station selections, horn and cruise controls. A clock spring can become faulty when wires become worn and break causing a short or open circuit.
Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-S84-G11 For ACCORD 1998-,PRELUDE 1999-
An airbag clock spring is used to connect the steering wheel to other electrical devices such as the airbag safety system, radio volume and station selections, horn and cruise controls. A clock spring can become faulty when wires become worn and break causing a short or open circuit.
Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900-TF0-E11 For ACCORD 1998- And PRELUDE 1999-
An airbag clock spring is used to connect the steering wheel to other electrical devices such as the airbag safety system, radio volume and station selections, horn and cruise controls. A clock spring can become faulty when wires become worn and break causing a short or open circuit.
What is Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900 -TF0-J11 For Honda
Clockspring is also called rotation connector, airbag spring or spiral cable, used for connect main airbag and airbag harness, or the switch buttons on steering wheel and harness for control unit. Clockspring is normally assembled in the room between steering wheel and steering column stalk switch. In order to guarantee the electricity transmission for airbag detonator and ECU igniter, it moves with steering wheel on driving condition. It guarantees reliable electricity connection for the moving parts of steering wheel and steering column.
Benefits of Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900 -TF0-J11 For Honda
The wide range of applications of clock springs in different fields highlights their versatility and the key role they play in the functionality and safety of various devices and systems. From enhancing the accuracy of timekeeping devices to ensuring the safety and efficiency of modern automobiles and aerospace equipment, clock springs are a testament to the ingenuity of mechanical engineering and its impact across multiple sectors of industry and daily life. Their ongoing development and adaptation to new technologies continue to expand their use cases, highlighting the enduring importance of mechanical components in an increasingly digital and automated world.
Selecting the optimal material for a clock spring is pivotal to ensuring its performance, longevity, and compatibility with its intended application. A clock spring material calculator serves as an invaluable tool in this selection process, guiding engineers and designers through a systematic assessment of material properties, application requirements, and environmental conditions. Here's a step-by-step approach to utilizing such a calculator effectively:
Define application requirements
- Operational stress: Input the expected range of operational stress the clock spring will endure.
- Cycle life: Estimate the number of cycles the clock spring is expected to perform over its lifespan.
- Temperature range: Specify the temperature range within which the clock spring will operate.
Environmental conditions
- Corrosive exposures: Indicate if the clock spring will be exposed to corrosive substances or environments.
- Humidity levels: Enter the expected humidity levels to account for potential corrosion or material degradation.
- Special conditions: Note any other environmental factors, such as exposure to magnetic fields or requirement for non-sparking materials.
Material properties input
- Utilize the calculator to compare materials based on key properties:
- Tensile strength
- Elasticity
- Fatigue resistance
- Corrosion resistance
- Temperature stability
Compatibility with manufacturing processes
- Workability/formability: Ensure the selected material can be efficiently worked into the desired clock spring shape.
- Heat treatment: Confirm if the material benefits from heat treatment and its compatibility with the process.
Calculator analysis
- The calculator processes the inputs to suggest materials that meet the application's demands. It considers the balance between mechanical properties, environmental resilience, and manufacturability to recommend the most suitable options.
A clock spring material calculator is a powerful tool that simplifies the complex decision-making process involved in selecting the right material for clock springs. By providing a structured approach to evaluate materials against a comprehensive set of criteria, designers can make informed decisions that enhance the clock spring's performance and durability, ensuring the success of their projects.
Material of Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900 -TF0-J11 For Honda
|
Material |
Price Range |
Common Usage |
|
High-Carbon Steel |
Lowest |
Widely used for its strength and flexibility; ideal for various applications requiring high tensile strength and fatigue resistance. |
|
Stainless Steel |
Moderate |
Used where corrosion resistance is needed along with strength; suitable for mechanical and outdoor applications. |
|
Phosphor Bronze |
Higher than most steels |
Chosen for excellent corrosion resistance, low wear, and good electrical conductivity; often used in electrical connectors and mechanical parts. |
|
Nickel Alloys |
Variable, generally high |
Selected for extreme conditions in aerospace, marine, and chemical processing due to high-temperature and corrosion resistance. |
|
Beryllium Copper |
Highest |
Used in applications requiring non-sparking properties, high strength, and good conductivity; typical in aerospace, oil and gas, and automotive safety. |
Application of Clock Spring Spiral Cable Sub-Assy Cinta Airbag 77900 -TF0-J11 For Honda
Horology (timekeeping devices)
Watches and clocks: Fundamental in mechanical watches and clocks for their role in timekeeping precision.
Historical timepieces: Used in antique clocks and restoration projects to preserve historical accuracy.
Automotive industry
Safety systems: Integral to the deployment mechanisms of airbags and the tensioning of seat belts.
Steering systems: Enable electrical connectivity for steering wheel-mounted controls across multiple steering wheel rotations.
Electronics
Portable gadgets: In devices requiring compact, reliable power storage and release mechanisms.
Consumer electronics: Found in retractable cords for headphones, chargers, and other personal electronic devices.
Medical devices
Surgical instruments: Utilized in precision tools for surgeries where controlled movement is crucial.
Diagnostic equipment: Part of the mechanical workings in certain types of scanners and imaging devices.
Aerospace and defense
Aircraft controls: Used in control mechanisms for both commercial and military aircraft.
Space exploration devices: In mechanisms of satellites and space probes where reliability and precision are paramount.
Industrial machinery
Manufacturing equipment: Play roles in automated assembly lines, offering precise control and energy storage.
Robotic systems: Critical for the movement control in robotics used across manufacturing and exploration.
Consumer products
Toys: In wind-up toys, providing a simple and reliable way to store and release energy.
Furniture: Mechanisms in retractable components of furniture, like foldable tables and adjustable chairs.
Recreational and sports equipment
Exercise machines: In equipment where tension and resistance adjustments are needed for effective workouts.
Bicycles: In mechanisms like retractable bike locks and adjustable seat posts.
Environmental and renewable energy systems
Wind turbines: In tensioning systems that adjust blade angles for optimal efficiency.
Solar panel trackers: Ensure precise movement of panels to follow the sun's trajectory throughout the day.

There are two ways to reset the steering angle sensor inside the clock spring. The first method is simple and does not require any tools.
Start the engine and let it idle.
- Turn the steering wheel all the way to the right.
- Turn the steering wheel to the left.
- Repeat this procedure twice with the engine running.
- Drive for at least 50 feet, and the steering angle sensor will reset.
In most cases, this procedure will reset the clock spring and steering angle sensor and should turn off the ABS and stability control light. If the procedure above does not work, you need an OBD-II scanner to reset the steering angle. Connect the scanner to the diagnosis port under the dashboard and follow the screen's instructions to reset the steering angle sensor.
The increasing integration of electronic components and improvements in car safety technology are causing a paradigm shift in the automotive clock spring market. The demand for multifunctional clock springs that support sophisticated features like advanced driver-assistance systems (ADAS) and autonomous driving capabilities has surged, characterising this market trend. Moreover, the automobile clock spring industry's destiny is still being shaped by the pursuit of lightweight, strong, and affordable alternatives.
Integration and intelligence
The evolution of clock springs goes beyond basic connectivity. Automated steering, adaptive cruise control, and lane departure warning are examples of advanced features made possible by integrated sensors and microcontrollers. The increasing demand for autonomous driving technology and driver assistance systems (ADAS) is the main force behind this development. To handle these intricate tasks, manufacturers are concentrating on high-speed data transfer and miniaturisation.
Material revolution
Traditional materials are being replaced by more sustainable and efficient options. Superalloys, high-performance polymers, and lightweight composites are becoming more and more popular because of their improved durability, increased fuel efficiency, and weight reduction capabilities. This pattern is consistent with the continued drive towards electrification and the tightening of fuel pollution laws. Further investigation into self-healing clock spring materials may enhance dependability and save maintenance costs.
Regional expansion and customization
The old-school car titans no longer control the majority of the market. Growing car manufacturing and rising disposable incomes are driving substantial growth in developing nations like China and India. Because of this, clock springs must be locally customised to accommodate a variety of vehicle models, driving circumstances, and budgetary constraints. It is anticipated that cooperation between well-known companies and regional producers would spur additional innovation and market penetration in these area
Since its establish in 2007, Zhengpu Company has always adhered to the principle of "people-oriented, customer first,forge ahead and create brilliance together", adhering to the business philosophy of "scientific management, quality first and brand development", and relying on advanced production equipment and strong technical force, it has implemented lean production management and ERP management system. So that the "Zhengpu" series products are extraordinary and refined and are favored and praised by consumers at home and abroad.






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