HP LaserJet Enterprise 600 Service Manual - Page 38

Motors and fans, Failure detection, Motor failure

Page 38 highlights

Motors and fans The product has four motors and four fan motors. The motors are used for the media feeding and image formation. The fan motors are used for preventing a temperature rise inside the product. Table 1-3 Fans Description Cooling area Type Speed Cooling fan FN101 Cartridge area and power supply area Intake Full/Half1 Cooling fan FN102 Cartridge area Intake Full2 Cooling fan FN103 Cartridge area Intake Full2 Cooling fan FN301 Cartridge area and laser/scanner Intake Full2 1 Cooling fan FN101 rotates at full speed for eight seconds when the product is turned on, and then decreases to half-speed for approximately 10 minutes. After that time period, if there is no print job in the print queue, the fan will stop completely. The fan rotates at full speed during a print job. 2 This fan operates at full speed only during a print job. Otherwise, it does not rotate. Table 1-4 Motors Description Driving parts Type Paper feed motor (M101) Drum motor (M102) Fuser motor (M299) Lifter motor (M103) Drives the Tray 1 pickup roller, Tray 2 pickup roller, DC and feed roller Drives the photosensitive drum, primary charging roller, DC and transfer roller Drives the pressure roller and feed roller-when rotated DC counterclockwise it releases the fusing pressure for easier jam removal Drives the lifting plate of the tray DC Failure detection Yes Yes Yes No Failure detection Motor failure The DC controller determines a motor failure and notifies the formatter when it encounters the following conditions: ● Motor start-up failure: The motor does not reach a specified speed within a specified period from when each motor starts up. ● Motor rotational failure: The rotational speed of the motor is out of a specified range for a specified period from when it once reaches a specified speed. Fan motor failure The DC controller determines a fan motor failure and notifies the formatter when the fan locks for a specified period from when each fan starts up. 14 Chapter 1 Theory of operation ENWW

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Motors and fans
The product has four motors and four fan motors. The motors are used for the media feeding and image
formation. The fan motors are used for preventing a temperature rise inside the product.
Table 1-3
Fans
Description
Cooling area
Type
Speed
Cooling fan FN101
Cartridge area and power supply area
Intake
Full/Half
1
Cooling fan FN102
Cartridge area
Intake
Full
2
Cooling fan FN103
Cartridge area
Intake
Full
2
Cooling fan FN301
Cartridge area and laser/scanner
Intake
Full
2
1
Cooling fan FN101 rotates at full speed for eight seconds when the product is turned on, and then decreases to half-speed for
approximately 10 minutes. After that time period, if there is no print job in the print queue, the fan will stop completely. The
fan rotates at full speed during a print job.
2
This fan operates at full speed only during a print job. Otherwise, it does not rotate.
Table 1-4
Motors
Description
Driving parts
Type
Failure
detection
Paper feed motor (M101)
Drives the Tray 1 pickup roller, Tray 2 pickup roller,
and feed roller
DC
Yes
Drum motor (M102)
Drives the photosensitive drum, primary charging roller,
and transfer roller
DC
Yes
Fuser motor (M299)
Drives the pressure roller and feed roller—when rotated
counterclockwise it releases the fusing pressure for
easier jam removal
DC
Yes
Lifter motor (M103)
Drives the lifting plate of the tray
DC
No
Failure detection
Motor failure
The DC controller determines a motor failure and notifies the formatter when it encounters the following
conditions:
Motor start-up failure
: The motor does not reach a specified speed within a specified period
from when each motor starts up.
Motor rotational failure
: The rotational speed of the motor is out of a specified range for a
specified period from when it once reaches a specified speed.
Fan motor failure
The DC controller determines a fan motor failure and notifies the formatter when the fan locks for a
specified period from when each fan starts up.
14
Chapter 1
Theory of operation
ENWW