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XC6701D502PR 参数 Datasheet PDF下载

XC6701D502PR图片预览
型号: XC6701D502PR
PDF下载: 下载PDF文件 查看货源
内容描述: 28V操作的高速电压调整器与待机功能 [28V Operation High Speed Voltage Regulators with Stand-by Function]
分类和应用:
文件页数/大小: 31 页 / 525 K
品牌: TOREX [ TOREX SEMICONDUCTOR ]
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XC6701
Series
■ELECTRICAL
CHARACTERISTICS (Continued)
●XC6701D
Series
Ta=+25℃
PARAMETER
Output Voltage
SYMBOL
V
OUT(E)
CONDITIONS
MIN.
I
OUT
=10mA
V
IN
= V
OUT(T)
+3.0V
(V
OUT(T)
≧3.0V)
V
IN
=V
OUT(T)
+3.0V
(V
OUT(T)
<3.0V
)
1mA≦I
OUT
≦50mA
1.8V≦V
OUT(T)
≦5.0V
1mA≦I
OUT
≦50mA
5.1V≦V
OUT(T)
≦12.0V
1mA≦I
OUT
≦50mA
12.1V≦V
OUT(T)
≦18.0V
I
OUT
=20mA
I
OUT
=100mA
1.8V≦V
OUT(T)
≦5.0V
Supply Current
I
SS
△V
OUT
△V
IN
・V
OUT(T)
△V
OUT
△V
IN
・V
OUT(T)
V
IN
I
OUT
=20mA
-40℃≦Ta≦85℃
V
IN
=[V
OUT(T)
+2.0V]+0.5V
p-pAC
I
OUT
=20mA , f=1kHz
V
IN
=V
OUT(T)
+2.0V
Junction Temperature
Junction Temperature
Junction Temperature
5.1V≦V
OUT(T)
≦12.0V
12.1V≦V
OUT(T)
≦18.0V
V
OUT(T)
+2.0V≦V
IN
≦28.0V
I
OUT
=5mA
V
OUT(T)
+2.0V≦V
IN
≦28.0V
I
OUT
=13mA
11
11
11
-
-
2.0
-
-
-
-
-
-
150
100
-
-
-
TYP.
E-0
-
-
50
110
180
E-2
E-3
50
60
65
0.05
0.15
-
±100
50
40
150
125
25
105
115
125
0.10
0.30
28.0
-
-
-
-
-
-
-
-
90
175
275
mV
mV
μA
μA
%/V
%/V
V
ppm/℃
dB
mA
-
-
mV
MAX.
V
mA
mA
UNIT
CIRCUIT
Maximum Output Current
I
OUTMAX
Load Regulation
△V
OUT
Dropout Voltage1
Dropout Voltage2
Vdif1
Vdif2
Line Regulation1
Line Regulation2
Input Voltage
Output Voltage
△V
OUT
Temperature Characteristics
△Ta・V
OUT(T)
Ripple Rejection Rate
Short Current
Thermal Shutdown Detect
Temperature
Thermal Shutdown Release
Temperature
Hysteresis Width
PSRR
I
SHORT
T
TSD
T
TSR
T
TSD
-T
TSR
NOTE:
*1: V
OUT(T)
: Specified output voltage
*2: V
OUT(E)
: Effective output voltage
(i.e. the output voltage when “V
OUT(T)
+2.0V” is provided at the V
IN
pin while maintaining a certain I
OUT
value.)
*3: Vdif={V
IN1
{Note 5}
- V
OUT1
{Note 4}
}
*4: V
OUT1
: In case of V
OUT(T)
< 3.0V, the V
OUT1 is
equal to 98% of the V
OUT(T)
when a stabilized input voltage is applied in V
OUT(T)
+3.0V.
: In case of V
OUT(T)
≧3.0V,
the V
OUT1 is
equal to 98% of the V
OUT(T)
when a stabilized input voltage is applied in V
OUT(T)
+2.0V.
*5: V
IN1
: The input voltage when V
OUT1
appears as input voltage is gradually decreased.
*6: Unless otherwise stated, V
IN
=V
OUT(T)
+2.0V.
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