参数资料
型号: LTC3865IFE#TRPBF
厂商: Linear Technology
文件页数: 17/38页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM CM 38TSSOP
标准包装: 2,000
系列: PolyPhase®
PWM 型: 电流模式
输出数: 2
频率 - 最大: 880kHz
占空比: 95%
电源电压: 4.5 V ~ 38 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: -40°C ~ 125°C
封装/外壳: 38-TFSOP (0.173",4.40mm 宽)裸露焊盘
包装: 带卷 (TR)
LTC3865/LTC3865-1
APPLICATIONS INFORMATION
always the same and varies with temperature; consult the
manufacturers’ data sheets for detailed information.
Using the inductor ripple current value from the Induc-
P LOSS R 1 =
( V IN ( MAX ) ? V OUT
R 1
) ? V OUT
tor Value Calculation section, the target sense resistor
value is:
Ensure that R1 has a power rating higher than this value.
If high ef?ciency is necessary at light loads, consider this
I ( MAX ) +
R SENSE ( EQUIV ) =
V SENSE ( MAX )
Δ I L
2
power loss when deciding whether to use DCR sensing or
sense resistors. Light load power loss can be modestly
higher with a DCR network than with a sense resistor, due
to the extra switching losses incurred through R1. However,
To ensure that the application will deliver full load current
over the full operating temperature range, choose the
minimum value for the Maximum Current Sense Threshold
(V SENSE(MAX) ) in the Electrical Characteristics table (24mV,
44mV or 68mV, depending on the state of the I LIM pin).
Next, determine the DCR of the inductor. Where provided,
use the manufacturer’s maximum value, usually given at
DCR sensing eliminates a sense resistor, reduces conduc-
tion losses and provides higher ef?ciency at heavy loads.
Peak ef?ciency is about the same with either method.
To maintain a good signal to noise ratio for the current
sense signal, use a minimum Δ V SENSE of 10mV to 15mV.
For a DCR sensing application, the actual ripple voltage
will be determined by the equation:
R 1 ? C 1 V IN OSC
20°C. Increase this value to account for the temperature
coef?cient of resistance, which is approximately 0.4%/°C.
A conservative value for T L(MAX) is 100°C.
Δ V SENSE =
V IN ? V OUT V OUT
? f
To scale the maximum inductor DCR to the desired sense
resistor value, use the divider ratio:
Slope Compensation and Inductor Peak Current
R D =
R SENSE ( EQUIV )
DCR ( MAX ) at T L ( MAX )
Slope compensation provides stability in constant-
frequency architectures by preventing subharmonic oscil-
lations at high duty cycles. It is accomplished internally
C1 is usually selected to be in the range of 0.047μF to
0.47μF. This forces R1||R2 to around 2kΩ, reducing error
that might have been caused by the SENSE pins’ ±1μA
current.
The equivalent resistance R1||R2 is scaled to the room
temperature inductance and maximum DCR:
by adding a compensating ramp to the inductor current
signal at duty cycles in excess of 40%. Normally, this
results in a reduction of maximum inductor peak current
for duty cycles >40%. However, the LTC3865/LTC3865-1
use a patented scheme that counteracts this compensating
ramp, which allows the maximum inductor peak current
to remain unaffected throughout all duty cycles.
R 1 || R 2 =
L
( DCR at 20 ° C ) ? C 1
Inductor Value Calculation
Given the desired input and output voltages, the inductor
R 1 ? R D
R 1 =
; R 2 =
V OUT ? V IN – V OUT ?
? ? f
I RIPPLE =
OSC ? L ?
?
The sense resistor values are:
R1|| R2
R D 1 ? R D
The maximum power loss in R1 is related to duty cycle,
value and operating frequency f OSC directly determine the
inductor’s peak-to-peak ripple current:
V IN
and will occur in continuous mode at the maximum input
voltage:
3865fb
17
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