参数资料
型号: DC1385A
厂商: Linear Technology
文件页数: 10/20页
文件大小: 0K
描述: BOARD EVAL LTM4614
软件下载: LTM4614
设计资源: DC1385A Design Files
DC1385A Schematic
标准包装: 1
系列: µModule®
主要目的: DC/DC,步降
输出及类型: 2,非隔离
输出电压: 1.2V,1.8V
电流 - 输出: 4A,4A
输入电压: 2.375 ~ 5.5V
稳压器拓扑结构: 降压
频率 - 开关: 1.25MHz
板类型: 完全填充
已供物品:
已用 IC / 零件: LTM4614
相关产品: LTM4614IV#PBF-ND - IC UMODULE DC/DC DUAL 4A 144LGA
LTM4614EV#PBF-ND - IC UMODULE DC/DC DUAL 4A 144LGA
LTM4614
APPLICATIONS INFORMATION
? 4.99k = R TB
R TA =
+ FB – TRACK
TRACK1isthetrackrampappliedtotheslave’strackpin.
TRACK1 applies the track reference for the slave output up
to the point of the programmed value at which TRACK1
proceeds beyond the 0.8V reference value. The TRACK1
pin must go beyond the 0.8V to ensure the slave output
has reached its final value.
Ratiometric tracking can be achieved by a few simple cal-
culations and the slew rate value applied to the master’s
TRACK pin. As mentioned above, the TRACK pin has a
control range from 0V to 0.8V. The control ramp slew rate
applied to the master’s TRACK pin is directly equal to the
master’s output slew rate in Volts/Time.
The equation:
MR
SR
where MR is the master’s output slew rate and SR is the
slave’s output slew rate in Volts/Time. When coincident
tracking is desired, then MR and SR are equal, thus R TB
is equal to 4.99k. R TA is derived from equation:
0.8V
V FB V V
4.99k R FB R TB
where V FB is the feedback voltage reference of the regula-
tor, and V TRACK is 0.8V. Since R TB is equal to the 4.99k top
feedback resistor of the slave regulator in equal slew rate
or coincident tracking, then R TA is equal to R FB with V FB =
V TRACK . Therefore R TB = 4.99k and R TA = 10k in Figure 2.
Figure 3 shows the output voltage tracking waveform for
coincident tracking.
In ratiometric tracking, a different slew rate maybe desired
for the slave regulator. R TB can be solved for when SR
is slower than MR. Make sure that the slave supply slew
rate is chosen to be fast enough so that the slave output
voltage will reach it final value before the master output.
For example, MR = 2.5V/ms and SR = 1.8V/1ms. Then
R TB = 6.98k. Solve for R TA to equal to 3.24k. The master
output must be greater than the slave output for the
tracking to work. Output load current must be present
for tracking to operate properly during power down.
Power Good
PGOOD1 and PGOOD2 are open-drain pins that can be
used to monitor valid output voltage regulation. These
pins monitor a ±7.5% window around the regulation point.
COMP Pin
This pin is the external compensation pin. The module
has already been internally compensated for all output
voltages. Table 4 is provided for most application require-
ments. The LTpowerCAD GUI is available for other control
loop optimization.
MASTER OUTPUT
SLAVE OUTPUT
TIME
4614 F03
Figure 3. Output Voltage Coincident Tracking
4614fb
10
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