参数资料
型号: LTC1753CSW#PBF
厂商: Linear Technology
文件页数: 18/24页
文件大小: 0K
描述: IC SW REG CNTRLR PENT III 20SOIC
标准包装: 38
应用: 控制器,Intel Pentium? III
输入电压: 5V
输出数: 1
输出电压: 1.3 V ~ 3.5 V
工作温度: 0°C ~ 70°C
安装类型: 表面贴装
封装/外壳: 20-SOIC(0.295",7.50mm 宽)
供应商设备封装: 20-SOIC
包装: 管件
LTC1753
APPLICATIO S I FOR ATIO
response using a network analyzer to find the actual loop
poles and zeros.
Table 5 shows the suggested compensation components
for 5V input applications based on the inductor and output
capacitor values. The values were calculated using mul-
tiple paralleled 330 μ F AVX TPS series surface mount
tantalum capacitors as the output capacitor. The optimum
Table 7 shows the suggested compensation component
value for a 5V application based on the Sanyo OS-CON
4SP820M low ESR output capacitors
Table 7. Suggested Compensation Network for 5V Input
Application Using Multiple Paralleled 820 μ F Sanyo OS-CON
4SP820M Output Capacitors
L O ( μ H)   C O ( μ F)   R C (k ? )   C C ( μ F)   C1 (pF)   C2 (pF)
component values might deviate from the suggested
values slightly because of board layout and operating
condition differences.
Table 5. Suggested Compensation Network for 5V Input
Application Using Multiple Paralleled 330 μ F AVX TPS Output
Capacitors
L O ( μ H) C O ( μ F) R C (k ? ) C C ( μ F) C1 (pF)
1
1
1
2.7
2.7
2.7
5.6
1640
2460
4100
1640
2460
4100
1640
5.6
9.1
15
16
24
39
33
0.01
0.0047
0.0047
0.0047
0.0033
0.0022
0.0033
220
150
82
82
56
33
39
270
270
270
270
270
270
270
1
1
990
1980
1.8
3.6
0.022
0.01
680
330
5.6
5.6
2460
4100
47
82
0.0022
0.0022
27
15
270
270
1
4950
9.1
0.01
120
2.7
2.7
2.7
5.6
5.6
5.6
990
1980
4950
990
1980
4950
5.1
10
24
10
20
51
0.01
0.01
0.0047
0.01
0.0047
0.0033
220
120
47
120
56
22
Remote Sense Considerations
In some installations such as Intel Slot 2 designs, the
regulator is by necessity a relatively long distance from the
load. It is desirable in these instances to connect the
regulator sense connection at the load rather than directly
at the regulator output. This forces the supply voltage to
An alternate output capacitor is the Sanyo MV-GX series.
Using multiple parallel 1500 μ F Sanyo MV-GX capacitors
for the output capacitor, Table 6 shows the suggested
compensation component value for a 5V input application
based on the inductor and output capacitor values.
Table 6. Suggested Compensation Network for 5V Input
Application Using Multiple Paralleled 1500 μ F Sanyo MV-GX
Output Capacitors
L O ( μ H) C O ( μ F) R C (k ? ) C C ( μ F) C1 (pF)
be regulated at the load which, after all, is the desired point
to control. In most cases no problems will be encountered
as a result of doing this. However, care must be exercised
if the power path is long or the capacitance at the load is
very large.
The power distribution path has some finite amount of
inductance. There will also be a significant amount of
capacitance at the load as the local bypass. These two
circuit elements constitute a second order, lowpass filter
1
1
1
2.7
2.7
2.7
5.6
5.6
5.6
4500
6000
9000
4500
6000
9000
4500
6000
9000
4.3
5.6
8.2
11
15
22
24
30
47
0.022
0.015
0.01
0.01
0.01
0.01
0.01
0.0047
0.0047
270
220
150
100
82
56
56
39
27
and the SENSE lead connects to the output of this filter. As
is true for any LC filter, there is 180 ° of phase shift at a
frequency beyond the double pole. If the resonant fre-
quency of the filter falls below the regulator’s feedback
loop crossover frequency, the loop will likely oscillate.
There are a couple of measures that may be taken to
alleviate this problem. The first is to minimize the induc-
tance of the power path. Therefore, it is desirable to make
the power trace as wide as possible and as short as
1753fa
18
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