参数资料
型号: LT3748HMS#PBF
厂商: Linear Technology
文件页数: 10/30页
文件大小: 0K
描述: IC REG CTRLR FLYBK ISO CM 16MSOP
产品培训模块: LT3748 100V Flyback Controller
标准包装: 37
PWM 型: 电流模式
输出数: 1
电源电压: 5 V ~ 100 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: -40°C ~ 150°C
封装/外壳: 16-TFSOP(0.118",3.00mm),12 引线
包装: 管件
配用: 732-3308-ND - BOARD EVAL FOR LT3748
732-3305-ND - BOARD EVAL FOR LT3748
相关产品: 732-2669-2-ND - TRANS FLYBACK LT3748 20UH SMD
732-2669-6-ND - TRANS FLYBACK LT3748 20UH SMD
732-2668-6-ND - TRANS FLYBACK LT3748 14UH SMD
732-2667-6-ND - TRANS FLYBACK LT3748 500UH SMD
732-2666-6-ND - TRANS FLYBACK LT3748 12UH SMD
732-2665-6-ND - TRANS FLYBACK LT3748 12UH SMD
732-2664-6-ND - TRANS FLYBACK LT3748 15UH SMD
732-2663-6-ND - TRANS FLYBACK LT3748 15UH SMD
732-2662-6-ND - TRANS FLYBACK LT3748 8UH SMD
732-2661-6-ND - TRANS FLYBACK LT3748 8UH SMD
更多...
LT3748
APPLICATIONS INFORMATION
Selecting Actual R REF , R FB and R TC Resistor Values
The preceding equations define how the LT3748 would
regulate the output voltage if the system had no time de-
lays and no error sources. However, there are a number of
repeatable delays and parasitics in each application which
will affect the output voltage and force a re-evaluation of
the R FB and R TC component values. The following approach
is the best method for selecting the correct values.
The expression for V OUT, developed in the Operation sec-
tion, can be rearranged to yield the following expression
for R FB :
With a new value of R FB selected, the temperature co-
efficient of the output diode in the application can be
tested to verify the nominal R TC value. The R TC resistor
should be removed from the circuit under test (this will
cause V OUT to increase for this step) and V OUT should
be measured over temperature at a desired target output
load. It is very important for this evaluation that uniform
temperature be applied to both the output diode and the
LT3748—if freeze spray or a heat gun is used there can
be a significant mismatch in temperature between the
two devices that causes significant error. Attempting to
extrapolate the data from a diode datasheet or assuming
R FB =
where:
R REF ? N PS ?? ( V OUT + V F ) + V TC ??
V BG
the nominal R TC value may yield a better result if there is
no method to apply uniform heat or cooling such as an
oven. With at least two data points (although more data
points from hot to cold are recommended), the change
in V/°C can be determined by:
V OUT = Output voltage
V F = Output diode forward voltage
Δ V OUT
Δ TEMP
=
V OUT1 – V OUT2
TEMP1 – TEMP2
R TC = ?
N PS = Effective primary-to-secondary turns ratio
V TC = 0.55V
The equation assumes the temperature coefficients of the
output diode and V TC are equal and substitutes R FB /N PS for
the value of R TC . This is a good first order approximation
but will be revisited later.
First, the value of R REF should be approximately 6.04k
since the LT3748 is trimmed and specified using this
value. If the impedance of R REF varies considerably from
6.04k, additional errors will result. However, a variation in
R REF of several percent is acceptable. This yields a bit of
Using the measured V OUT temperature coefficient, an exact
R TC value can be selected using the following equation:
R FB 1.85mV/ ° C
N PS Δ V OUT
Δ TEMP
If the value of R TC has changed significantly, which can
happen with the use of some output diodes that have
a very low forward drop, the R FB value may need to be
changed to restore V OUT to the desired value. As in the
previous iteration, after measuring V OUT , a new R FB can
once again be selected using:
freedom in selecting standard 1% resistor values to yield
nominal R FB /R REF ratios.
R FB(NEW) =
V OUT(DESIRED)
V OUT(MEASURED)
? R FB(OLD)
With starting values for R FB and R TC , an initial iteration
of the application should be built with final selections of
all external components (transformer, diode, MOSFET,
etc.). The resulting V OUT should be measured and used
to re-evaluate the value of R FB due to non-idealities in the
sampling system:
V OUT(DESIRED)
R FB(NEW) = ? R FB(OLD)
V OUT(MEASURED)
Once the values of R FB and R TC are selected, the regulation
accuracy from board to board for a given application will
be very consistent, typically under ±5% when including
device variation of all the components in the system
(assuming resistor tolerances and transformer windings
matching of 1% or better). However, if the transformer,
the output diode or MOSFET switch are changed or the
layout is dramatically altered, there may be some change
in V OUT .
3748fa
10
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