參數(shù)資料
型號(hào): LM2635M/NOPB
廠商: NATIONAL SEMICONDUCTOR CORP
元件分類: 穩(wěn)壓器
英文描述: SWITCHING CONTROLLER, 350 kHz SWITCHING FREQ-MAX, PDSO20
封裝: PLASTIC, SOP-20
文件頁數(shù): 4/13頁
文件大?。?/td> 734K
代理商: LM2635M/NOPB
Applications Information (Continued)
connected between the FB pin and ground to increase the
no load output voltage to close to the upper limit of the
window.
A possible drawback of the scheme in Figure 7 is slow
transient recovery speed. Since the 5 k
resistor and the 0.1
F capacitor have a large time constant, the settling of point
C to its steady state value during a load transient may take a
few milliseconds. Depending on the interaction between the
compensation network and the 0.1 F capacitor, V
core may
take different routes to reach its steady state value. This is
undesired when the load transients happens more than 1000
times per second. Reducing the time constant will result in a
more fluctuating V
C due to a less effective low pass filter.
Fine tuning the parameters may balance the tradeoffs.
Another way to implement the dynamic voltage positioning is
through the use of a stand-alone resistor, such as the 4 m
resistor in Figure 8 above. The advantage of this implemen-
tation over the previous one is a much faster speed of V
CORE
from transient level to steady state level. The disadvantage
is less efficiency. The total power loss can be 0.78W at 14A
of load current. The cost of the resistor can be minimized by
implementing it through a PCB trace.
REFERENCE VOLTAGE
The V
REF pin can have many uses, such as in the watchdog
circuitry and in an LDO controller. Figure 9 shows an appli-
cation where V
REF is used to build a N-FET LDO controller.
An appropriate compensation network is necessary to tailor
the dynamic performance of the whole power supply.
PCB LAYOUT CONSIDERATIONS
There are several points to consider.
1.
Try to use 2 oz. copper for the ground plane if tight load
regulation is desired. In the case of dynamic voltage
positioning, this may not be a concern because the
loose load regulation is desired anyway. However, do
not forget to take into consideration the voltage drop
caused by the ground plane when calculating dynamic
voltage positioning parameters.
2.
Try to keep gate traces short. However, do not make
them too short or else the LM2635 may stay too close to
the MOSFETs and get heated up by them. For the same
reason, do not use wide traces, 10 mil traces should be
enough.
3.
When not employing dynamic voltage positioning, place
the feedback point at the VRM connector pins to have a
tight load regulation. If it is an on-board power supply,
place the feedback point at Slot I connector or wherever
is closest to the MPU.
4.
Start component placement with the power devices such
as MOSFETs and inductors.
5.
Do not place the LM2635 directly underneath the MOS-
FETs when when surface mount MOSFETs are used.
6.
If possible, keep the capacitors some distance away
from the inductors so that the capacitors will have a
lower temperature environment.
7.
When
implementing
dynamic
voltage
positioning
through a PCB trace, be aware that the PCB trace is a
heat source and try to avoid placing the trace directly
underneath the LM2635.
10011927
FIGURE 8. Dynamic Voltage Positioning by Using A
Stand-Alone Resistor
10011928
FIGURE 9. V
REF Used in an N-FET LDO Supply
LM2635
www.national.com
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