参数资料
型号: LTC3735EUHF
厂商: Linear Technology
文件页数: 24/32页
文件大小: 0K
描述: IC CTRLR DC/DC 2PH HI EFF 38-QFN
标准包装: 52
应用: 控制器,Intel 移动式 CPU
输出数: 1
输出电压: 0.7 V ~ 1.71 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 38-WFQFN 裸露焊盘
供应商设备封装: 38-QFN(5x7)
包装: 管件
LTC3735
APPLICATIONS INFORMATION
1.5V ? 35A ?
(
)
? ? 1 + 0.005 ? ( 85 ° C – 25 ° C ) ?
21V 2 ? 17.5A
0.008 ? + ? 350kHz ? 307pF ?
2 ? ? ?
+
= 1.26W
DesignExample
As a design example, assume V IN = 12V (nominal), V IN
= 21V (max), V OUT = 1.5V, I MAX = 35A, and f = 350kHz
(each phase).
The inductance value is chosen first based on a 40% ripple
current assumption. The highest value of ripple current
occurs at the maximum input voltage. The minimum
inductance for 40% ripple current is:
P TOP =
2
21V ? ? 2 ? ?
2
? 1 1 ?
? 5V – 1V 1V ? ?
? ? 1– OUT ? =
L ≥
V OUT ? V ?
f ? ? I ? V IN ?
1.5V
350kHz ? ( 40% ? 17.5A )
?
Equation 4 gives the worst-case power loss dissipated
by the bottom MOSFET (assuming FDS7760 and T J =
85°C again):
? ? 1– 21V ? ? = 0.57 μ H
? ?
? 1.5V ?
P BOT =
21V – 1.5V ? 35A ?
?
21V ? 2 ?
2
?
t ON(MIN) =
V OUT 1.5V
V IN ? f
= = 204ns
I SC =
+ ? ?
? ? = 16A
– 200ns
? ( 16A ) ?
P BOT =
R SENSE =
= 0.002 ?
DC =
= 12.5%
UsingL=0.6μH,acommon“off-the-shelf”valueresults
in 38%ripple current. The peak inductor current will be
the maximum DC current plus one half of the ripple cur-
rent, or 21A.
Tie the FREQSET pin to 1.2V, resistively divided down from
PV CC to have 350kHz operation for each phase.
The minimum on-time also occurs at maximum input
voltage:
21V ? 350kHz
which is larger than 150ns, the typical minimum on time
of the LTC3735.
R SENSE1 and R SENSE2 can be calculated by using a con-
servative maximum sense voltage threshold of 40mV and
taking into account of the peak current:
40mV
21A
The power loss dissipated by the top MOSFET can be cal-
culated with equations 3 and 7. Using a Fairchild FDS7760
as an example: R DS(ON) = 8mΩ, Q G = 55nC at 5V V GS , C RSS
= 307pF, V TH(MIN) = 1V. At maximum input voltage with
T J (estimated) = 85°C at an elevated ambient temperature:
( 1 + 0.005 ? ( 85 ° C – 25 ° C ) ) ? 0.008 ?
= 2.95W
Therefore it is necessary to have two FDS7760s in parallel
to split the power loss.
A short-circuit to ground will result in a folded back cur-
rent of about:
25mV 1 ? 200ns ? 21V ?
0.002 ? 2 ? 0.6 μ H
The worst-case power dissipation by the bottom MOSFET
under short-circuit conditions is:
1
350kHz 2
1
350kHz
( 1 + 0.005 ? ( 85 ° C – 25 ° C ) ) ? 0.008 ?
= 2.48W
which is less than normal, full load conditions.
The nominal duty cycle of this application is equation 1:
1.5V
12V
3735fa
24
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