参数资料
型号: LTC3615EUF#PBF
厂商: Linear Technology
文件页数: 25/32页
文件大小: 0K
描述: IC REG BUCK SYNC ADJ 3A DL 24QFN
标准包装: 91
类型: 降压(降压)
输出类型: 可调式
输出数: 2
输出电压: 0.6 V ~ 5.5 V
输入电压: 2.25 V ~ 5.5 V
PWM 型: 电流模式,混合
频率 - 开关: 400kHz ~ 4MHz
电流 - 输出: 3A
同步整流器:
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 24-WFQFN 裸露焊盘
包装: 管件
供应商设备封装: 24-QFN 裸露焊盘(4x4)
LTC3615/LTC3615-1
APPLICATIONS INFORMATION
R RT /SYNC =
= 178k
L1 = ?
? ? ? 1 –
? = 0.6μH
L2 = ?
? ? ? 1 –
? = 0.42μH
? 2.25MHz ? 0.56μH ? ?
Δ I L1 = ? ? ? ? 1 – ? = 1.08A
? 2.25MHz ? 0.47μH ? ?
Δ I L2 = ? ? ? ? 1 – ? = 0.89A
temperaturewithlowsupplyvoltageandhighdutycycles,
such as in dropout, the heat dissipated may exceed the
maximum junction temperature of the part. If the junction
temperature reaches approximately 170°C, all four power
switches will be turned off and the SW node will become
high impedance.
To prevent the LTC3615 from exceeding the maximum
junction temperature, the user will need to do some ther-
mal analysis. To determine whether the power dissipated
exceeds the maximum junction temperature of the part.
The temperature rise is given by:
T RISE = P D ? θ JA
where P D is the power dissipated by the regulator, and
θ JA is the thermal resistance from the junction of the die
to the ambient temperature. The junction temperature,
T J , is given by:
T J = T A + T RISE
where T A is the ambient temperature.
As an example, consider this case: the LTC3615 is in
dropout at an input voltage of 3.3V with a load current for
each channel of 2A at an ambient temperature of 70°C.
Assuming a 20°C rise in junction temperature, to 90°C,
results in an R DS(ON) of 0.086mΩ (see the graph in the
Typical Performance Characteristics section). Therefore,
the power dissipated by the part is:
P D = (I 12 + I 22 ) ? R DS(ON) = 0.69W
For the QFN package, the θ JA is 37°C/W.
Therefore, the junction temperature of the regulator op-
erating at 70°C ambient temperature is approximately:
T J = 0.69W ? 37° C/W + 70°C = 95°C
Note that for very low input voltage, the junction tem-
perature will be higher due to increased switch resistance
R DS(ON) . It is not recommended to use full load current at
high ambient temperature and low input voltage.
To maximize the thermal performance of the LTC3615,
the Exposed Pad should be soldered to a ground plane.
See the PC Board Layout Checklist.
Design Example
As a design example, consider using the LTC3615 in an
application with the following specifications:
V IN = 3.3V to 5.5V
V OUT1 = 2.5V
V OUT2 = 1.2V
I OUT1(MAX) = 1A
I OUT2(MAX) = 3A
I OUT(MIN) = 100mA
f = 2.25MHz
Because efficiency is important at both high and low load
current, Burst Mode operation will be selected by connect-
ing the MODE pin to SGND.
First, calculate the timing resistor:
4E11 Ω ? Hz
2.25MHz
Next, calculate the inductor values for about 1A ripple
current at maximum V IN :
? 2.5V ? ? 2.5V ?
? 2.25MHz ? 1A ? ? 5.5V ?
? 1.2V ? ? 1.2V ?
? 2.25MHz ? 1A ? ? 5.5V ?
Using a standard value of 0.56μH and 0.47μH inductors
results in maximum ripple currents of:
? 2.5V ? ? 2.5V ?
5.5V ?
? 1.2V ? ? 1.2V ?
5.5V ?
C OUT will be selected based on the ESR that is required to
satisfy the output voltage ripple requirement and the bulk
capacitance needed for loop stability. For this design, 47μF
ceramic capacitors will be used with X5R or X7R dielectric.
C IN should be sized for a maximum current rating of:
I OUT1 I OUT2
2
2
25
I RMS(MAX) =
For more information www.linear.com/LTC3615
+
= 2A RMS
3615fb
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