參數(shù)資料
型號(hào): LTC2927CDDB#TRM
廠商: LINEAR TECHNOLOGY CORP
元件分類: 電源管理
英文描述: 1-CHANNEL POWER SUPPLY SUPPORT CKT, PDSO8
封裝: 3 X 2 MM, PLASTIC, MO-229WECD-1, DFN-8
文件頁(yè)數(shù): 16/16頁(yè)
文件大小: 264K
代理商: LTC2927CDDB#TRM
LTC2927
9
2927fb
Figure 9. Coincident Tracking (from Figure 10)
A typical application is shown in Figure 10. The master
signal is a 3.3V ramp generated by the LTC2927. The
slave 1 supply is a 1.8V switching power supply and the
slave 2 supply is a 2.5V switching power supply. Both
slave supplies track coincidently with the 3.3V ramping
master signal. The ramp rate of the supplies is 100V/s.
The 3-step design procedure detailed previously can be
used to determine component values. Only the slave 1
supply is considered here as the procedure is the same
for the slave 2 supply.
1. Set the ramp rate of the master signal.
From Equation 1:
C
A
Vs
F
RAMP
==
μ
10
100
01
μ
/
.
2. Solve for the pair of resistors that provide the desired
slave supply behavior, assuming no delay.
From Equation 2:
Rk
Vs
k
TB
=
16 5
100
16 5
.
/
.
ΩΩ
From Equation 3:
R
V
k
V
k
V
k
TA
′ =
+
08
1 235
16 5
1 235
35 7
08
16 5
13
.
ΩΩ
Ω
3. Choose RTA to obtain desired delay.
Since no delay is desired, RTA = RTA
In this example, the supply remains low while the ON pin
is held below 1.23V. When the ON pin rises above 1.23V,
10μA pulls up the master signal on CRAMP at 100V/s.
The master signal is buffered from the RAMP pin to the
RAMPBUF pin. As this output and the RAMPBUF pin rise,
the current from the TRACK pin is reduced. Consequently,
the voltage at the slave supply’s output is increased, and
the slave supply tracks the master signal. When the ON
pin is again pulled below 1.23V, 10μA will pull down CRAMP
at 100V/s. If the loads on the outputs are sufcient, all
outputs will track down coincidently at 100V/s.
Figure 10. Coincident Tracking Example
1V/DIV
10ms/DIV
MASTER
SLAVE1
SLAVE2
2927 F09
10ms/DIV
1V/DIV
MASTER
3.3V
RONB
138k
RONA
100k
ON
RAMP
SLAVE1
1.8V
VCC
3.3V
EARLY VIN
3.3V
LTC2927
GND
SDO
RUN/SS
FB
IN
DC/DC
FB = 1.235V
OUT
RAMPBUF
TRACK
0.1μF
RTB1
16.5k
RFB1
16.5k
RFA1
35.7k
RTA1
13k
ON
RAMP
SLAVE2
2.5V
2927 F10
VCC
3.3V
EARLY
3.3V
LTC2927
GND
SDO
RUN/SS
FB
IN
DC/DC
FB = 0.8V
OUT
RAMPBUF
TRACK
0.1μF
RTB2
887k
RFB2
887k
RFA2
412k
RTA2
412k
Coincident Tracking Example
APPLICATIO S I FOR ATIO
WU
U
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