TB6539FG(EL) Toshiba, TB6539FG(EL) Datasheet - Page 12

IC MOTOR CTRL DC MOTOR 30SSOP

TB6539FG(EL)

Manufacturer Part Number
TB6539FG(EL)
Description
IC MOTOR CTRL DC MOTOR 30SSOP
Manufacturer
Toshiba
Type
3 Phase Full Wave Sine Wave PWM Brushless Motor Controllerr
Datasheet

Specifications of TB6539FG(EL)

Applications
DC Motor Controller, Brushless (BLDC), 3 Phase
Number Of Outputs
1
Voltage - Load
4.5 V ~ 18 V
Voltage - Supply
10 V ~ 18 V
Operating Temperature
-30°C ~ 115°C
Mounting Type
Surface Mount
Package / Case
30-SSOP
Operating Supply Voltage
10 V to 18 V
Supply Current
30 mA
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
TB6539FGTR
with the triangular wave and a sine-wave PWM signal is generated.
rising (or rising) edges is counted. The counted time is used as the data for the next 60° phase of the
modulation waveform.
item is 1/32 of the time width of the 60° phase of the previous modulation waveform. The modulation
waveform moves forward by this width.
time (1) from HU: ↑ to HW: ↓ . Similarly, data (2)
HW: ↓ to HV: ↑ .
same time width until the next edge occurs.
modulation waveform is reset in synchronization with the rising edge of the HU signal at every electrical
angle of 360°. Thus, when the Hall signal rising edge is off-position or during acceleration or deceleration,
the modulation waveform is non-consecutive at every reset.
In the above diagram, the modulation waveform (1)
If the next edge does not occur after the 32 data items end, the next 32 data items move forward by the
The phases are matched between every rising edge of the HU signal and the modulation waveform. The
The modulation waveform is generated using Hall signals. The modulation waveform is then compared
The time (electrical angle: 60°) from the rising (or falling) edges of the three Hall signals to the next
There are 32 items of data for the 60° phase of the modulation waveform. The time width of one data
S
V
HU
HV
HW
S
S
Sw
U
V
* t = t(1) × 1/32
*t
*t
1
(5)
2
3
4
(6)
5
6
32 data items
(6)’
(1)
(1)’
(1)’
(2)
12
'
moves forward by the 1/32 time width of the time (2) from
(2)’
(3)
30
31
'
’ data moves forward by the 1/32 time width of the
32
(3)’
*HU, HV, HW: Hall signals
TB6539N/NG/F/FG
2007-07-17

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