
e-STUDIO350/450 DRIVE SYSTEM
10 - 2
November 2003 © TOSHIBA TEC
10
(MAMCK)
MAMPL
MAMCW
MAMBK
MAMON
Wave
correction
Phase
comparator
Speed
comparator
Lock
protection
circuit
Rotor
position
detection
Voltage
detection
circuit
Rotation
control
Excitation
phase
switching
section
Main motor (PC board)
Main motor (Motor)
LGC board
24v
Phase W
Phase V
Phase U
Hall element C
Photo-
interuptor
FG pulse
Hall element A
Hall element B
CN318
24v
10.3
Main Motor
10.3.1 Main motor drive
The main motor consists of the motor and the drive board combined with the motor, and its rotation is
controlled by control signals (three) and reference frequency.
(1)
LGC board outputs the control signals for the main motor rotation. (MAMCW: Motor rotation direction
setting, MAMON: Motor rotation command)
(2)
The excitation phase switching section excites each phase of the main motor.
→
The main motor is
rotated.
(3)
Hall elements A, B and C detect the rotation position of the motor (rotor).
(4)
The excitation phase switching section switches the excitation of each phase.
(The motor keeps rotating by repeating from (2) to (4).)
(5)
An FG pulse is generated by the FG pattern of the encoder attached to the main motor.
(6)
The FG pulse and the reference frequency from the LGC board are compared in terms of the phase
and speed, and the difference is added to the IC1. The fluctuations in the power supply voltage is
also added to the value. (Signal generation)
(7)
In accordance with the signal obtained in the step (6), the excitation phase switching section changes
the switching timing.
i.e. The FG pulse and reference frequency are controlled to be equal.
→
The main motor rotates at a
fixed speed. (Locked range)
(8)
When the main motor enters the locked range, the excitation phase switching section outputs the
MAMPL signal to the LGC board. (“L” level)
(9)
When the MAMBK from the LGC board becomes “L” level, the main motor is braked. When the
MAMON signal becomes “H” level, the main motor is stopped.
Fig. 10-301
Содержание e-STUDIO350
Страница 1: ...MULTIFUNCTIONAL DIGITAL SYSTEMS e STUDIO350 450 File No SME03002800 R03092140700 TTEC Ver00 2003 11 ...
Страница 2: ... 2003 TOSHIBA TEC CORPORATION All rights reserved ...
Страница 94: ...e STUDIO350 450 GENERAL OPERATION 4 16 November 2003 TOSHIBA TEC 4 ...
Страница 108: ...e STUDIO350 450 CONTROL PANEL 5 14 November 2003 TOSHIBA TEC 5 10 Remove 16 screws and take off the KEY board Fig 5 509 ...
Страница 182: ...e STUDIO350 450 PAPER FEEDING SYSTEM 9 32 November 2003 TOSHIBA TEC 9 ...
Страница 188: ...e STUDIO350 450 DRIVE SYSTEM 10 6 November 2003 TOSHIBA TEC 10 ...
Страница 208: ...e STUDIO350 450 DRUM RELATED SECTON 11 20 November 2003 TOSHIBA TEC 11 ...
Страница 224: ...e STUDIO350 450 DEVELOPMENT SYSTEM 12 16 November 2003 TOSHIBA TEC 12 ...
Страница 270: ...e STUDIO350 450 AUTOMATIC DUPLEXING UNIT 14 20 November 2003 TOSHIBA TEC 14 ...
Страница 278: ...e STUDIO350 450 POWER SUPPLY UNIT 15 8 November 2003 TOSHIBA TEC 15 ...
Страница 279: ...November 2003 TOSHIBA TEC 16 1 e STUDIO350 450 PC BOARDS 16 16 PC BOARDS 1 PWA F SYS ...
Страница 280: ...e STUDIO350 450 PC BOARDS 16 2 November 2003 TOSHIBA TEC 16 2 PWA F LGC ...
Страница 281: ...November 2003 TOSHIBA TEC 16 3 e STUDIO350 450 PC BOARDS 16 3 PWA F SLG 4 PWA F CCD 5 PWA F LRL ...
Страница 282: ...e STUDIO350 450 PC BOARDS 16 4 November 2003 TOSHIBA TEC 16 6 PWA F LDR 7 PWA F SNS 8 PWA F ADU ...
Страница 283: ...November 2003 TOSHIBA TEC 16 5 e STUDIO350 450 PC BOARDS 16 9 PWA F DSP 10 PWA F KEY ...
Страница 285: ......
Страница 286: ...1 1 KANDA NISHIKI CHO CHIYODA KU TOKYO 101 8442 JAPAN ...