欢迎访问ic37.com |
会员登录 免费注册
发布采购

MC33035P 参数 Datasheet PDF下载

MC33035P图片预览
型号: MC33035P
PDF下载: 下载PDF文件 查看货源
内容描述: 直流无刷电机控制器 [Brushless DC Motor Controller]
分类和应用: 光电二极管电动机控制电机控制器
文件页数/大小: 28 页 / 433 K
品牌: ONSEMI [ ONSEMI ]
 浏览型号MC33035P的Datasheet PDF文件第8页浏览型号MC33035P的Datasheet PDF文件第9页浏览型号MC33035P的Datasheet PDF文件第10页浏览型号MC33035P的Datasheet PDF文件第11页浏览型号MC33035P的Datasheet PDF文件第13页浏览型号MC33035P的Datasheet PDF文件第14页浏览型号MC33035P的Datasheet PDF文件第15页浏览型号MC33035P的Datasheet PDF文件第16页  
MC33035, NCV33035  
Undervoltage Lockout  
Capacitor C  
T
A triple Undervoltage Lockout has been incorporated to  
prevent damage to the IC and the external power switch  
transistors. Under low power supply conditions, it  
guarantees that the IC and sensors are fully functional, and  
that there is sufficient bottom drive output voltage. The  
Error Amp  
Out/PWM  
Input  
Current  
Sense Input  
positive power supplies to the IC (V ) and the bottom  
CC  
Latch Set"  
Inputs  
drives (V ) are each monitored by separate comparators that  
C
have their thresholds at 9.1 V. This level ensures sufficient  
gate drive necessary to attain low R  
when driving  
DS(on)  
Top Drive  
Outputs  
standard power MOSFET devices. When directly powering  
the Hall sensors from the reference, improper sensor  
operation can result if the reference output voltage falls  
below 4.5 V. A third comparator is used to detect this  
condition. If one or more of the comparators detects an  
undervoltage condition, the Fault Output is activated, the top  
drives are turned off and the bottom drive outputs are held  
in a low state. Each of the comparators contain hysteresis to  
prevent oscillations when crossing their respective  
thresholds.  
Bottom Drive  
Outputs  
Fault Output  
Figure 21. Pulse Width Modulator Timing Diagram  
Reference  
The on−chip 6.25 V regulator (Pin 8) provides charging  
current for the oscillator timing capacitor, a reference for the  
error amplifier, and can supply 20 mA of current suitable for  
directly powering sensors in low voltage applications. In  
higher voltage applications, it may become necessary to  
transfer the power dissipated by the regulator off the IC. This  
is easily accomplished with the addition of an external pass  
transistor as shown in Figure 22. A 6.25 V reference level  
was chosen to allow implementation of the simpler NPN  
Fault Output  
The open collector Fault Output (Pin 14) was designed to  
provide diagnostic information in the event of a system  
malfunction. It has a sink current capability of 16 mA and  
can directly drive a light emitting diode for visual indication.  
Additionally, it is easily interfaced with TTL/CMOS logic  
for use in a microprocessor controlled system. The Fault  
Output is active low when one or more of the following  
conditions occur:  
circuit, where V − V exceeds the minimum voltage  
ref  
BE  
required by Hall Effect sensors over temperature. With  
proper transistor selection and adequate heatsinking, up to  
one amp of load current can be obtained.  
1) Invalid Sensor Input code  
2) Output Enable at logic [0]  
3) Current Sense Input greater than 100 mV  
4) Undervoltage Lockout, activation of one or more of  
the comparators  
UVLO  
17  
V
in  
18  
8
5) Thermal Shutdown, maximum junction temperature  
being exceeded  
REF  
This unique output can also be used to distinguish between  
motor start−up or sustained operation in an overloaded  
condition. With the addition of an RC network between the  
Fault Output and the enable input, it is possible to create a  
time−delayed latched shutdown for overcurrent. The added  
circuitry shown in Figure 23 makes easy starting of motor  
systems which have high inertial loads by providing  
additional starting torque, while still preserving overcurrent  
protection. This task is accomplished by setting the current  
limit to a higher than nominal value for a predetermined time.  
During an excessively long overcurrent condition, capacitor  
MPS  
U01A  
To  
Control  
Circuitry  
6.25 V  
Sensor  
Power  
ꢀ5.6 V  
UVLO  
39  
17  
V
in  
18  
REF  
MPS  
U51A  
0.1  
8
C
will charge, causing the enable input to cross its  
DLY  
threshold to a low state. A latch is then formed by the positive  
feedback loop from the Fault Output to the Output Enable.  
Once set, by the Current Sense Input, it can only be reset by  
To Control Circuitry  
and Sensor Power  
6.25 V  
shorting C  
or cycling the power supplies.  
DLY  
The NPN circuit is recommended for powering Hall or opto sensors, where  
the output voltage temperature coefficient is not critical. The PNP circuit is  
slightly more complex, but is also more accurate over temperature. Neither  
circuit has current limiting.  
Figure 22. Reference Output Buffers  
http://onsemi.com  
12