High-Performance Denso Starter for Atlas Copco Xas66 Generator

Product Details
Customization: Available
After-sales Service: One to One Replacement
Warranty: One Year
Diamond Member Since 2024

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  • High-Performance Denso Starter for Atlas Copco Xas66 Generator
  • High-Performance Denso Starter for Atlas Copco Xas66 Generator
  • High-Performance Denso Starter for Atlas Copco Xas66 Generator
  • High-Performance Denso Starter for Atlas Copco Xas66 Generator
  • High-Performance Denso Starter for Atlas Copco Xas66 Generator
  • High-Performance Denso Starter for Atlas Copco Xas66 Generator
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Overview

Basic Info.

Model NO.
12012246
Engine Type
Starter
Driving Type
Sliding Armature
Control System
Electromagnetic-Operated
DC Form
Permanent Magnet Starter Motor
Voltage
12
Power (Kw)
3.0
Spigot (mm)
82.3
Teeth
9
Transport Package
Indivisual Carton Into Pallet
Trademark
Customization
Origin
China
Production Capacity
50000PC/Year

Product Description

Feature

Starters
Voltage [ V ] 12
Power [ kW ] 3.00
Rotation CW
Size A [ mm ] 82.00
Size B [ mm ] 23.00
No./teeth [ qty. ] 9
No./teeth (fits into) [ qty. ] 9
No./mount. holes [ qty. ] 2
No./mount. holes with thread [ qty. ] 0
L.1 [ mm ] 315.00
O.1 [ mm ] 102.00
C.1 [ mm ] 11.00
C.2 [ mm ] 11.00
  
The starter motor is a critical component in internal combustion engine vehicles, responsible for initiating the engine's operation by converting electrical energy from the battery into mechanical energy. Without a functional starter, an engine would remain dormant, as it cannot achieve the initial rotation required to begin the combustion cycle. This device acts as the bridge between the vehicle's electrical system and its mechanical core, enabling the transition from a stationary state to active operation.
 
Basic Structure and Components
A typical starter motor assembly consists of several key parts working in unison. The electric motor forms the core, utilizing electromagnetic principles to generate rotational force. It comprises a stator (stationary winding) and a rotor (rotating armature), where the flow of current through the windings creates a magnetic field that drives the rotor to spin.
Attached to the motor is a solenoid, an electromagnetic switch that serves two primary functions: it engages the starter drive gear with the engine's flywheel ring gear, and it connects the motor to the battery's high-current circuit. The solenoid contains a movable plunger linked to a shift lever, which controls the position of the drive gear.
The drive mechanism includes a small gear (pinion) that meshes with the flywheel's ring gear. To prevent damage when the engine starts and begins rotating faster than the starter, most drive mechanisms feature an overrunning clutch (one-way clutch). This clutch allows the pinion to rotate freely in one direction once the engine is running, disconnecting the starter motor from the engine's motion.
Additional components include brushes and a commutator (in DC motors) that transfer current to the rotating armature while reversing the current direction in the windings, ensuring continuous rotation. The starter is also equipped with a housing that protects internal parts and mounts the assembly securely to the engine block.
 
Working Principle
The starter motor operates through a sequence of coordinated actions triggered by turning the ignition key or pressing the start button. When activated, an electrical signal is sent to the solenoid, which then draws current from the battery. This current magnetizes the solenoid's coil, pulling the plunger inward. As the plunger moves, it pushes the shift lever, extending the drive gear to engage with the flywheel's ring gear.
Simultaneously, the solenoid closes a high-current switch, allowing a large amount of electrical current from the battery to flow directly into the starter motor. The motor's windings energize, creating a magnetic field that causes the rotor to spin rapidly-typically at several thousand revolutions per minute (RPM). This rotational force is transmitted through the drive gear to the flywheel, which in turn rotates the engine's crankshaft.
As the crankshaft turns, it initiates the engine's four-stroke cycle: drawing in air-fuel mixture, compressing it, igniting it (in gasoline engines), and expelling exhaust. Once the engine starts and reaches a speed higher than the starter's output, the overrunning clutch in the drive mechanism disengages the pinion from the flywheel, preventing the engine from driving the starter motor (which would damage it due to excessive speed). The solenoid then de-energizes, retracting the drive gear and cutting off current to the motor.
 

To replace

 
Reference nb Producer
0001230013 BOSCH
01181570KZ KHD
01182179 KHD
01182388 KHD
114320 CARGO
1181570 KHD
1182179 KHD
1182388 KHD
18525N WAI / TRANSPO
25-4231 ELSTOCK
255052 KUHNER
255052M KUHNER
8009 CEVAM
8EA011610-341 HELLA
AZF4167 ISKRA / LETRIKA
AZF4229 ISKRA / LETRIKA
CGB-93013 AINDE
DRS0363 DELCO
EAA-121681 EAA
LRS02559 LUCAS
LRS2559 LUCAS
MS 67 MAHLE
STR50271 WOODAUTO
STRL677 3EFFE
 

To fit

 
Brand Model Type Year Comments
ATLAS COPCO XAS66 Generator [KHDF3M1011F] 01.1997-12.2006  
ATLAS COPCO XAS76 Generator [KHDF3M1011F] 01.1997-12.2006  
BOMAG BW120AD-3 [KHDF2L1011F] 01.1997-12.2006  
CHAMPION A421 [KHDF3L1011F] 01.1996-12.2006  
GEHL 5634 Skid Steer Loader [KHDBF4M1011F] 01.1996-12.2006  
GEHL 6635 Skid Steer Loader [KHDBF4M1011F] 01.1996-12.2006  
 

About Us

High-Performance Denso Starter for Atlas Copco Xas66 GeneratorHigh-Performance Denso Starter for Atlas Copco Xas66 GeneratorHigh-Performance Denso Starter for Atlas Copco Xas66 GeneratorHigh-Performance Denso Starter for Atlas Copco Xas66 Generator

Our Facilities

High-Performance Denso Starter for Atlas Copco Xas66 Generator

Certificates

High-Performance Denso Starter for Atlas Copco Xas66 Generator

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