參數(shù)資料
型號: LTC4055EUF#PBF
廠商: LINEAR TECHNOLOGY CORP
元件分類: 電源管理
英文描述: USB Power Controller and Li-Ion Linear Charger; Package: QFN; No of Pins: 16; Temperature Range: -40°C to +125°C
中文描述: 1-CHANNEL POWER SUPPLY SUPPORT CKT, PQCC16
封裝: 4 X 4 MM, 0.75 MM HEIGHT, PLASTIC, MO-220WGGC, QFN-16
文件頁數(shù): 9/24頁
文件大?。?/td> 292K
代理商: LTC4055EUF#PBF
LTC4055/LTC4055-1
17
4055fb
OPERATION
THERMISTORS
The LTC4055/LTC4055-1 NTC trip points were designed
to work with thermistors whose resistance-temperature
characteristics follow Vishay Dale’s “R-T Curve 2.” The
Vishay NTHS0603N02N1002J is an example of such a
thermistor. However, Vishay Dale has many thermistor
products that follow the “R-T Curve 2” characteristic in
a variety of sizes. Furthermore, any thermistor whose
ratio of RCOLD to RHOT is about 7.0 will also work
(Vishay Dale R-T Curve 2 shows a ratio of RCOLD to RHOT
of 2.815/0.4086 = 6.89).
Power conscious designs may want to use thermistors
whose room temperature value is greater than 10k. Vishay
Dale has a number of values of thermistor from 10k to 100k
that follow the “R-T Curve 1.” Using these as indicated
in the NTC Thermistor section will give temperature trip
points of approximately 3°C and 47°C, a delta of 44°C. This
delta in temperature can be moved in either direction by
changing the value of RNOMwithrespecttoRNTC.Increasing
RNOM will move both trip points to lower temperatures.
Likewise a decrease in RNOM with respect to RNTC will
move the trip points to higher temperatures. To calculate
RNOM for a shift to lower temperature for example, use
the following equation:
R
Rat
C
NOM
COLD
NTC
2 815
25
.
where RCOLD is the resistance ratio of RNTC at the desired
cold temperature trip point. If you want to shift the trip points
to higher temperatures use the following equation:
R
Rat
C
NOM
HOT
NTC
0 4086
25
.
where RHOT is the resistance ratio of RNTC at the desired
hot temperature trip point.
Here is an example using a 100k R-T Curve 1 thermistor
from Vishay Dale. The difference between the trip points
is 44°C, from before, and we want the cold trip point to
be 0°C, which would put the hot trip point at 44°C. The
RNOM needed is calculated as follows:
R
Rat
C
kk
NOM
COLD
NTC
==
2 815
25
3 266
2 815
100
116
.
.
+
+
RNOM
100k
RNTC
100k
NTC
VNTC
15
0.1V
NTC_ENABLE
4055 F03a
LTC4055/LTC4055-1
NTC BLOCK
TOO_COLD
TOO_HOT
0.74 VNTC
0.29 VNTC
+
16
+
+
RNOM
121k
RNTC
100k
R1
13.3k
NTC
VNTC
15
0.1V
NTC_ENABLE
4055 F03b
TOO_COLD
TOO_HOT
0.74 VNTC
0.29 VNTC
+
16
LTC4055/LTC4055-1
NTC BLOCK
(3a)
(3b)
Figure 3. NTC Circuits
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