06H145710D
Category: Turbocharger Pressure Solenoid Valve
Category: Turbocharger Pressure Solenoid Valve
OE | Old and new | Warranty Service | Origin | Engine code | Famous brand reference | Brand | Size | For | Packing | Quality | MOQ | Certification |
06H145710D, 06H 145 710D | New | 1 YAER OR 30000 KILOMETERS | ZHEJIANG | ESAEVER | 81.180, 7.00415.03.0, 58-0081, 7.00415.02.0, WG1025764, 116 500, 7.01830.13.0, V10-77-1010, WG1014757, 30 93 9245, 7.00415.05.0 | ESAEVER | OEM SIZE | A3 Q5 | Neutral Packing | High-Quality | 10 Pieces | ESAEVER |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-979 | 11377603979 | 0.56 | 20.5*7.5*5.2 | 20.5*7.5*5.2 | 10 | 7 | BMW |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-694 | 11518689694 | 0.252 | 12.5*12.2*9 | 38.5*26*47 | 30 | 9 | BMW Brilliance 3 Series (G20) 2019-2022 3 Series (G28 Long Wheelbase) 2019- BMW (Import) X4 (g02) 2018-2021 |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-479 | 16137193479 | 0.38 | 12.5*11.5*6.5 | 47*27*35 | 30 | 10 | Fuel Diagnostic Pump |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-299 | 64111391958 | 0.85 | 13.2*10.6*11.5 | 55*28*25 | 20 | 18 | 1989-1995 BMW 525i E34 1993 BMW 525iT E34 1994-1995 BMW 530i E34 1988-1993 BMW 535i E34 from 03/88 1994-1995 BMW 540i E34 1994-1997 BMW 840Ci E31 1994-1995 BMW 850CSi E31 1993-1997 BMW 850Ci E31 1991-1993 BMW M5 E34 |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-652 | 64116906652 | 0.48 | 18.3*12.5*7.2 | 39*38*39.5 | 30 | 18 | 2006-2010 M5 E60 2006-2009 M6 E63 2007-2009 M6 Conv. E64 2002-2005 745i E65 2006-2008 750i E65 2004-2006 760i E65 2002-2005 745Li E66 2006-2008 750Li E66 2003-2008 760Li E66 2007-2008 Alpina B7 E65 |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-544 | 64116910544 | 0.48 | 18.3*12.5*7.2 | 39*38*39.5 | 30 | 18 | BMW (Import) x5 (e53) 2000-2006 X5 (E70) 2007-2013 X5 (E70 facelift) 2011-2013 x5 (f15) 2014-2018 x5 m (f85) 2015-2018 x6 (e71) 2008-2014 X6 (E72) 2010-2011 x6 (f16) 2014-2019 x6 m (f86) 2015-2018 |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-246 | 64116928246 | 0.68 | 19*13.5*9 | 41.5*39.5*47 | 30 | 21.6 | BMW Brilliance 3 Series (E90) 2005-2008 3 Series (E90) facelift 2009-2012 x1 (e84) 2012-2016 BMW (Import) 1 Series Coupe (E87 facelift) 2008-2011 1 Series Coupe (E82) 2010-2013 3 Series (E90) 2005-2008 3 Series Trim (E90 facelift) 2009-2012 3 Series Convertible (E93) 2007-2010 3 Series Convertible (E93 facelift) 2010-2013 3 Series Coupe (E92) 2007-2010 3 Series Coupé (E92 facelift) 2010-2013 x1 (e84) 2010-2015 |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-495 | 64116928495 | 0.43 | 12.5*11.5*6.5 | 47*27*35 | 40 | 18 | SAC E71 X6 35iX N54 2008-2010 SAC E71 X6 35iX N55 2011-2014 SAV/SUV E83N X3 3.0si 2007-2010 SAV/SUV E83N X3 3.0i 2007-2010 SAV/SUV E70 X5 3.0si 2007-2010 Sedan E90 325i Up to-03/2005 Sedan E90 330i Up to-03/2005 Sedan E90 323i Up to-03/2005 Sedan E90 330xi Up to-03/2005 Sedan E90 325xi Up to-03/2005 |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-805 | 64118369805 | 0.43 | 12.5*11.5*6.5 | 47*27*35 | 40 | 18 | 2000 BMW 323Ci, 328Ci 1999-2000 BMW 328i 2001-2006 BMW 330Ci, 325Ci 2001-2005 BMW 3330i, 330Xi, 325i, 325Xi 2001-2003 BMW 530i 2004-2006 BMW X3 2000-2002 BMW Z8 2002-2003 BMW Z8 Alpina |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-806 | 64118369806 | 0.68 | 19*13.5*9 | 41.5*39.5*47 | 30 | 21.6 | BMW |
Category: BMW
Coding | OE | Weight/KG | Inner box size/CM | Outer box size/CM | Number of boxes | Gross weight/KG | Vehicle |
XH-807 | 64118369807 | 0.96 | 16.3*11.2*16.6 | 57.5*34.5*35 | 20 | 33 | BMW Brilliance 3 Series (E46) 2004-2004 |
The company is located in Huangyan, Taizhou, the hometown of plastic molds in China. The company's leading business: design and manufacture of automotive interior and exterior molds, processing pipe molds, and daily necessities molds. As a famous China Automotive Vacuum Solenoid Valve suppliers and Automotive Electric Coolant Pump factory, we are mainly engaged in wholesale Universal Electric Water Pump Automotive. High-end processing equipment: CNC machining centers, injection molding machines, electroplating lines, spraying lines and other advanced automatic mold processing and mold testing equipment, product surface treatment production lines.
Founded in 2009
Employees
Factory Area
The automotive vacuum solenoid valve plays an important role in regulating the vacuum system in modern vehicles. This device is electrically controlled and is primarily used to manage the flow of vacuum pressure within the vehicle’s engine management systems. It works by opening and closing in response to signals from the vehicle's electronic control unit (ECU), which helps control components such as the intake manifold, brake boosters, and exhaust gas recirculation (EGR) valves.
By controlling the vacuum pressure, the vacuum solenoid valve ensures that the engine operates efficiently and maintains proper fuel- air mixture ratios. It is an essential component for controlling the timing of various engine functions and ensuring smooth performance. For instance, the automotive vacuum solenoid valve is used in systems that control variable valve timing, which helps to optimize engine power and fuel consumption under different driving conditions.
Moreover, vacuum solenoid valves contribute to the vehicle’s emissions system by managing the EGR valve and other systems that reduce harmful emissions. The ability to control vacuum flow with high precision allows for better fuel economy and reduced engine wear. As vehicles continue to evolve toward more efficient and environmentally friendly designs, the automotive vacuum solenoid valve plays a crucial role in managing the engine’s internal environment.
The universal electric water pump automotive is a highly versatile component used in a wide variety of vehicles to circulate coolant throughout the engine and heating systems. Unlike traditional mechanical water pumps that are driven by the engine’s belt, the electric water pump operates independently, driven by an electric motor. This allows for more efficient coolant circulation since the pump can be controlled electronically, enabling it to run at the desired speed regardless of engine speed.
This type of water pump is commonly used in electric and hybrid vehicles, where energy efficiency is critical. By allowing the pump to operate separately from the engine’s rotation, the universal electric water pump automotive can help reduce overall engine load, which in turn improves fuel economy and extends the lifespan of engine components. Additionally, the ability to control the pump’s operation electronically provides more precise control over the engine's temperature and cooling needs, ensuring that the engine maintains a stable operating temperature even under varying driving conditions.
Moreover, the universal electric water pump automotive is an important component in vehicles with advanced cooling systems, such as those found in turbocharged engines, where temperature management is crucial for performance and longevity. By providing continuous and reliable coolant circulation, this electric water pump ensures that the engine does not overheat, which is especially important for high-performance and electric vehicle applications.
The automotive electric coolant pump is an essential part of the modern vehicle’s cooling system. It plays a critical role in ensuring that the engine, battery, and other vital components remain within their good temperature range. Unlike traditional mechanical pumps, the electric coolant pump operates independently of the engine's rotation, meaning that it can function continuously or according to demand, based on the specific cooling needs of the vehicle.
This pump is especially useful in electric and hybrid vehicles, where managing heat is important for both the engine and the battery system. In these types of vehicles, the electric coolant pump can be activated to circulate coolant through the battery cooling system, preventing overheating and ensuring that the vehicle operates at its high efficiency. Additionally, the ability to control the pump electronically allows for better energy management, helping to conserve power and improve the vehicle's overall performance.
The automotive electric coolant pump is also used in conventional combustion engine vehicles, particularly in systems that need to maintain consistent temperatures for turbocharged engines, radiators, and HVAC systems. The pump ensures that the coolant is consistently circulated to prevent overheating of the engine, helping to maintain good engine performance and fuel efficiency. Its ability to operate independently of engine speed provides greater flexibility and efficiency in managing the vehicle’s thermal needs.
The heater valve solenoid is a critical component in a vehicle’s heating and air conditioning system. This solenoid controls the flow of coolant into the heater core, which is essential for providing heat to the cabin. When the driver adjusts the cabin temperature, the heater valve solenoid responds by opening or closing the valve, allowing the coolant to flow into the heater core and transfer heat to the air circulating inside the vehicle.
The heater valve solenoid is typically electronically controlled by the vehicle’s climate control system. The solenoid receives signals from the electronic control unit (ECU), which determines the necessary adjustments based on the desired cabin temperature. By regulating the flow of coolant, the solenoid helps to maintain a comfortable environment for the passengers, regardless of external weather conditions.
One of the significant advantages of the heater valve solenoid is its ability to operate with high precision. Modern vehicle systems demand highly responsive components to adjust cabin conditions quickly, and the solenoid plays a key role in this responsiveness. The ability to regulate the flow of coolant based on real-time conditions ensures that the heating system operates efficiently, contributing to overall vehicle comfort and energy savings.