参数资料
型号: NCV8506D2TADJR4G
厂商: ON Semiconductor
文件页数: 10/12页
文件大小: 0K
描述: IC REG LDO ADJ .4A D2PAK-7
标准包装: 1
稳压器拓扑结构: 正,可调式
输出电压: 可调
输入电压: 最高 45 V
电压 - 压降(标准): 0.4V @ 400mA
稳压器数量: 1
电流 - 输出: 400mA
电流 - 限制(最小): 425mA
工作温度: -40°C ~ 150°C
安装类型: 表面贴装
封装/外壳: TO-263-8,D²Pak(7 引线+接片),TO-263CA
供应商设备封装: D2PAK-7
包装: 剪切带 (CT)
其它名称: NCV8506D2TADJR4GOSCT
NCV8506 Series
The value for the output capacitor C OUT shown in Figure 15
should work for most applications, however it is not
The value of R q JA can then be compared with those in the
package section of the data sheet. Those packages with
C IN *
NCV8506
necessarily the optimized solution.
V IN
V OUT
0.1 m F
R RST
C OUT **
33 m F
R q JA ’s less than the calculated value in equation 2 will keep
the die temperature below 150 ° C.
In some cases, none of the packages will be sufficient to
dissipate the heat generated by the IC, and an external
heatsink will be required.
RESET
V IN
I IN
SMART
REGULATOR ?
I OUT
V OUT
R q JA + R q JC ) R q CS ) R q SA
*C IN required if regulator is located far from the power supply
filter.
**C OUT required for stability. Capacitor must operate at minimum
temperature expected.
Figure 15. Test and Application Circuit Showing
Output Compensation
CALCULATING POWER DISSIPATION IN A
SINGLE OUTPUT LINEAR REGULATOR
The maximum power dissipation for a single output
regulator (Figure 16) is:
PD(max) + [VIN(max) * VOUT(min)] IOUT(max) (1)
) VIN(max)IQ
Where:
V IN(max) is the maximum input voltage,
V OUT(min) is the minimum output voltage,
I OUT(max) is the maximum output current for the
application, and
I Q is the quiescent current the regulator consumes at
I OUT(max) .
Once the value of P D(max) is known, the maximum
permissible value of R q JA can be calculated:
Control
} Features
I Q
Figure 16. Single Output Regulator with Key
Performance Parameters Labeled
HEAT SINKS
A heat sink effectively increases the surface area of the
package to improve the flow of heat away from the IC and
into the surrounding air.
Each material in the heat flow path between the IC and the
outside environment will have a thermal resistance. Like
series electrical resistances, these resistances are summed to
determine the value of R q JA :
(3)
Where:
R q JC = the junction ? to ? case thermal resistance,
R q CS = the case ? to ? heatsink thermal resistance, and
R q SA = the heatsink ? to ? ambient thermal resistance.
R q JC appears in the package section of the data sheet. Like
R q JA , it too is a function of package type. R q CS and R q SA are
functions of the package type, heatsink and the interface
R q JA +
150 ° C * TA
PD
(2)
between them. These values appear in heat sink data sheets
of heat sink manufacturers.
http://onsemi.com
10
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