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參數(shù)資料
型號(hào): TPS40101RGET
廠商: TEXAS INSTRUMENTS INC
元件分類: 穩(wěn)壓器
英文描述: 1.3 A SWITCHING CONTROLLER, 1000 kHz SWITCHING FREQ-MAX, PQCC24
封裝: PLASTIC, QFN-24
文件頁(yè)數(shù): 11/37頁(yè)
文件大小: 774K
代理商: TPS40101RGET
www.ti.com
ISNS
+
6
ILIM
L
20
19
VO
UDG04148
VOUT
COUT
CFLT
RF1
VIN
RF2
RF3
RNTC
RTHE
RLDG
RILIM
2000 ppm/
°C
a
^ 0.8
R
THE
R
THE ) RF1
(dimensionless)
(11)
R
THE + RF2 )
R
F3
R
NTC
R
F3 ) RNTC
(W)
(12)
SLUS726 – SEPTEMBER 2006
APPLICATION INFORMATION (continued)
Figure 30. Compensation for Temperature Coefficient of the Inductor Resistance
The first step is to determine an attenuation ratio
α. This ratio should be near to 1 but not too close. If it is too
close to 1, the circuit requires large impedances and thermistor values too high. If
α is too low, the current signal
is attenuated unnecessarily. A suggested value is 0.8.
RTHE is the equivalent resistance of the RF2-RF3-RNTC network:
The base temperature (TBASE) should be selected to be the lowest temperature of interest for the thermal
matching – the lowest ambient expected. The resistance of the inductor at this base temperature should be used
to calculate effective resistance. The expected current sense amplifier gain at TBASE should be used for
calculating over current components (RILIM).
The next step is to decide at what two temperatures the compensation is matched to the response of the
deviceand inductor copper, T1 and T2. Once these are chosen, an NTC thermistor can be chosen and its value
found from its data sheet at these two temperatures: RNTC(T1) and RNTC(T2). The component values in the network
can be calculated using the following equations:
19
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