NCV33033 ON Semiconductor, NCV33033 Datasheet - Page 19

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NCV33033

Manufacturer Part Number
NCV33033
Description
Brushless DC Motor Controller
Manufacturer
ON Semiconductor
Datasheet

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
NCV33033DWR2G
Manufacturer:
RENESAS
Quantity:
1 240
Three Phase Closed Loop Controller
speed control. For closed loop speed control, the MC33033
requires an input voltage proportional to the motor speed.
Traditionally this has been accomplished by means of a
tachometer to generate the motor speed feedback voltage.
Figure 38 shows an application whereby an MC33039,
powered from the 6.25 V reference (Pin 7) of the MC33033,
is used to generate the required feedback voltage without the
need of a costly tachometer. The same Hall sensor signals
used by the MC33033 for rotor position decoding are
utilized by the MC33039. Every positive or negative going
transition of the Hall sensor signals on any of the sensor lines
causes the MC33039 to produce an output pulse of defined
amplitude and time duration, as determined by the external
resistor R
The MC33033, by itself, is capable of open loop motor
10 k
0.01
Speed
Faster
100 k
1
and capacitor C
F/R
5.1 k
Figure 38. Closed Loop Brushless DC Motor Control With the MC33033 Using the MC33039
10
4
1
2
3
5
9
4
6
7
8
1
2
3
MC33033
Close Loop
MC33039
1.0 M
1
0.1
. The resulting output train of
14
13
12
11
20
19
18
17
16
15
8
6
5
1.0 k
1.0 k
7
4.7 k
J
1
TP1
1.0 M
R
750 pF
C
1
1
MC33033, NCV33033
Enable
1.1 k
1.0 k
http://onsemi.com
1N5819
1N4742
1.1 k
19
330
pulses present at Pin 5 of the MC33039 are integrated by the
Error Amplifier of the MC33033 configured as an
integrator, to produce a dc voltage level which is
proportional to the motor speed. This speed proportional
voltage establishes the PWM reference level at Pin 11 of the
MC33033 motor controller and completes or closes the
feedback loop. The MC33033 outputs drive a TMOS power
MOSFET 3−phase bridge. High current can be expected
during conditions of start−up and when changing direction
of the motor.
having 120/240 degrees Hall sensor electrical phasing. The
system can easily be modified to accommodate 60/300
degree Hall sensor electrical phasing by removing the
jumper (J
470
470
470
The system shown in Figure 38 is designed for a motor
V
M
0.1
1.1 k
(18 to 30 V)
1
0.1
) at Pin 18 of the MC33033.
0.1
33
100
1000
0.05/1.0 W
TP2
S
Motor
N
N
S

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