参数资料
型号: IRU1010CSTR
厂商: International Rectifier
文件页数: 4/10页
文件大小: 0K
描述: IC REG LDO ADJ 1A 8-SOIC
标准包装: 2,500
稳压器拓扑结构: 正,可调式
输出电压: 2.5 V ~ 3.6 V
输入电压: 最高 7V
电压 - 压降(标准): 1.1V @ 1A
稳压器数量: 1
电流 - 输出: 1A
电流 - 限制(最小): 1.1A
工作温度: 0°C ~ 150°C
安装类型: 表面贴装
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
供应商设备封装: 8-SOIC
包装: 带卷 (TR)
IRU1010(PbF)
Output Voltage Setting
The IRU1010 can be programmed to any voltages in the
range of 1.25V to 5.5V with the addition of R1 and R2
external resistors according to the following formula:
to the load side, the effective resistance between the
regulator and the load is gained up by the factor of (1+
R2/R1), or the effective resistance will be R P(eff) =R P × (1+
R2/R1). It is important to note that for high current appli-
(
) + I
V OUT = V REF × 1+
Where:
R2
R1
ADJ × R2
cations, this can represent a significant percentage of
the overall load regulation and one must keep the path
from the regulator to the load as short as possible to
minimize this effect.
V REF = 1.25V Typically
I ADJ = 50 μ A Typically
R1 and R2 as shown in Figure 3:
V IN
V IN
V OUT
PARASITIC LINE
RESISTANCE
R P
IRU1010
V IN
V IN
IRU1010
V OUT
Vout
Adj
R1
R L
Adj
V REF
I ADJ = 50uA
R1
R2
R2
Figure 4 - Schematic showing connection
for best load regulation.
Figure 3 - Typical application of the IRU1010
for programming the output voltage.
The IRU1010 keeps a constant 1.25V between the out-
put pin and the adjust pin. By placing a resistor R1 across
these two pins a constant current flows through R1, add-
ing to the I ADJ current and into the R2 resistor producing
a voltage equal to the (1.25/R1) × R2+I ADJ × R2 which will
be added to the 1.25V to set the output voltage. This is
summarized in the above equation. Since the minimum
load current requirement of the IRU1010 is 10mA, R1 is
typically selected to be 121 ? resistor so that it auto-
matically satisfies the minimum current requirement.
Notice that since I ADJ is typically in the range of 50 μ A it
only adds a small error to the output voltage and should
only be considered when a very precise output voltage
setting is required. For example, in a typical 3.3V appli-
cation where R1=121 ? and R2=200 ? the error due to
I ADJ is only 0.3% of the nominal set point.
Load Regulation
Since the IRU1010 is only a three-terminal device, it is
not possible to provide true remote sensing of the output
voltage at the load. Figure 4 shows that the best load
regulation is achieved when the bottom side of R2 is
connected to the load and the top side of R1 resistor is
connected directly to the case or the V OUT pin of the
regulator and not to the load. In fact, if R1 is connected
Stability
The IRU1010 requires the use of an output capacitor as
part of the frequency compensation in order to make the
regulator stable. Typical designs for microprocessor ap-
plications use standard electrolytic capacitors with a
typical ESR in the range of 50 to 100m ? and an output
capacitance of 500 to 1000 μ F. Fortunately as the ca-
pacitance increases, the ESR decreases resulting in a
fixed RC time constant. The IRU1010 takes advantage
of this phenomena in making the overall regulator loop
stable. For most applications a minimum of 100 μ F alu-
minum electrolytic capacitor such as Sanyo MVGX se-
ries, Panasonic FA series as well as the Nichicon PL
series insures both stability and good transient response.
Thermal Design
The IRU1010 incorporates an internal thermal shutdown
that protects the device when the junction temperature
exceeds the maximum allowable junction temperature.
Although this device can operate with junction tempera-
tures in the range of 150 C, it is recommended that the
selected heat sink be chosen such that during maxi-
mum continuous load operation the junction tempera-
ture is kept below this number. The next example for a
SCSI terminator application shows the steps in sellecting
the proper regulator in a surface-mount package. (See
IRU1015 for non-surface-mount packages)
4
www.irf.com
Rev. 1.7
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