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NJM2373AU-TE1#

分流器 电压基准 IC 13 V ±1% SOT-89-3

产品类别:半导体    多通道IC(PMIC)   

制造商:Nisshinbo Micro Devices Inc.

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NJM2373AU-TE1#概述
NJM2373A 系列是可调高精度分流调节器。这些电压的输出电压可通过两个扩展电阻器调整为参考电压和 14V 之间的任何值。

工作电压 VREF 至 13V
高精度电压参考
最小输入电流 80μA μ A 典型值
可调输出电压
双极技术
NJM2373AU-TE1#规格参数
参数名称
属性值
类别
半导体;多通道IC(PMIC)
厂商名称
Nisshinbo Micro Devices Inc.
包装
卷带(TR)
参考类型
分流器
输出类型
可调式
电压 - 输出(最小值/固定)
1.25V
电压 - 输出(最大值)
13 V
电流 - 输出
30 mA
容差
±1%
电流 - 阴极
500 µA
工作温度
-40°C ~ 85°C(TA)
安装类型
表面贴装型
封装/外壳
TO-243AA
供应商器件封装
SOT-89-3
基本产品编号
NJM2373
NJM2373AU-TE1#文档预览
NJM2373/73A/76
ADJUSTABLE HIGH PRECISION SHUNT REGULATOR
■GENERAL
DESCRIPTION
■PACKAGE
OUTLINE
NJM2373 / NJM2373A / NJM2376
is an adjustable
high precision shunt regulator.
The output voltage can be adjusted to any value
between reference voltage and 14V by two extend
resistors.
NJM2373F/AF
NJM2376F
NJM2373AU
NJM2376U
■FEATURES
Operating Voltage
V
REF
to 13V
High Precision Voltage Reference NJM2373
NJM2373A/76
Minimum Input Current
80µA typ.
Adjustable Output Voltage
Bipolar Technology
Package Outline
SOT-89 (3pin), MTP5
1.25V±2%
1.25V±1%
■BLOCK
DIAGRAM
CATHODE
■PIN
CONFIGURATION
NC 1
ANODE 2
NC 3
4 REFERENCE
5 CATHODE
REFERENCE
NJM2373F/73AF
NC 1
ANODE 2
V
REF
5 REFERENCE
4 CATHODE
NC 3
NJM2376F
REFERENCE 1
ANODE 2
CATHODE 3
ANODE
NJM2373AU
CATHODE 1
ANODE 2
REFERENCE 3
NJM2376U
Ver.2009-11-26
-1-
NJM2373/73A/76
■ABSOLUTE
MAXIMUM RATINGS (Ta=25°C)
PARAMETER
SYMBOL
Cathode Voltage
V
KA
Continuous Cathode Current
I
K
Reference Input Current
I
REF
Power Dissipation
Operating Temperature Range
Storage Temperature Range
P
D
T
OPR
T
STG
MAXIMUM RATINGS
+14
-30 ~ 50
-10 ~ 0.05
(SOT-89) 350
(MTP5)
200
-40 ~ +85
-40 ~ +150
UNIT
V
mA
mA
mW
°C
°C
■RECOMMENDED
OPERATING CONDITIONS (Ta=25°C)
PARAMETER
SYMBOL
MIN.
TYP.
Cathode Voltage
V
KA
V
REF
Cathode Current
I
K
0.5
MAX.
13
30
UNIT
V
mA
■ELECTRICAL
CHARACTERISTICS (I
K
=1mA, Ta=25°C)
PARAMETER
Reference Voltage
Reference Voltage
Change vs. Cathode
Voltage Change
Reference Input Current
Minimum Input Current
Cathode Current
(Off Cond.)
Dynamic Impedance
SYMBOL
V
REF
∆V
REF
/
∆V
KA
I
REF
I
MIN
I
OFF
⎮Z
KA
TEST CONDITION
V
KA
=V
REF
NJM2373A
V
KA
=V
REF
NJM2373A/ NJM2376
⎮V
REF
⎮≤
V
KA
5V
5V
V
KA
13V
V
KA
=V
REF
R1=10kΩ, R2=∞
V
KA
=V
REF
,
∆V
REF
=±1%
V
KA
=13V, V
REF
=0V
V
KA
= V
REF
, f≤1kHz
0.5mA
I
K
30mA
(*1)
(*1)
(*2)
(*2)
(*2)
(*1)
(*3)
(*1)
MIN.
1225
1237
TYP.
1250
1250
2.0
80
0.01
0.12
MAX.
1275
1263
±2.7
±2.0
4.0
500
1.0
mV/V
mV/V
µA
µA
µA
UNIT
mV
■TEMPERATURE
CHARACTERISTICS (I
K
=1mA, Ta= -40°C ~ 85°C)
PARAMETER
SYMBOL
TEST CONDITION
Reference Voltage
Change
Reference Input Current
Change
∆V
REF
∆I
REF
V
KA
=V
REF
V
KA
=V
REF
R1=10kΩ, R2=∞
(*1)
(*2)
MIN.
TYP.
±10
0.5
MAX.
UNIT
mV
µA
⎮V
REF
⎮···Reference
voltage includes error.
(*1): Test Circuit (Fig.1)
(*2): Test Circuit (Fig.2)
(*3): Test Circuit (Fig.3)
-2-
Ver.2009-11-26
NJM2373/73A/76
■TEST
CIRCUIT
INPUT
I
K
V
KA
INPUT
R1
I
K
I
REF
V
KA
V
REF
R2
V
REF
Fig.1 V
KA
=V
REF
to test circuit
V
O
=V
KA
=V
REF
Fig.2 V
KA
>V
REF
to test circuit
R1
V
O
=
V
KA
=
V
REF
1
+
⎟ +
I
REF
×
R1
R2
INPUT
I
OFF
V
KA
I
K
=1mA
10kΩ
470uF
10kΩ
Fig.3 I
OFF
to test circuit
Fig.4 Gain and Phase to test circuit
■POWER
DISSIPATION VS. AMBIENT TEMPERATURE
500
Power Dissipation P
D
(mW)
400
300
MTP5
SOT-89
200
100
0
0
25
50
75
Ambient Temperature Ta (°C)
100
Ver.2009-11-26
-3-
NJM2373/73A/76
■TYPICAL
CHARACTERISTICS
Reference Voltage vs. Cathode Current
(V
KA
=V
REF
,Ta=25°C)
Reference Voltage V
REF
(mV)
Reference Voltage V
REF
(mV)
1260
1255
1250
1245
1240
1400
1200
1000
800
600
0
Reference Voltage vs. Cathode Current
(V
KA
=V
REF
,Ta=25°C)
0
10
20
30
20
40
60
80
100
Cathode Current I
K
(mA)
Reference Voltage Change vs. Cathode Voltage
(I
K
=1mA,R1=Variable,R2=10kΩ,Ta=25°C)
4
Reference Voltage Change
∆V
REF
(mV)
Cathode Current I
K
(uA)
Cathode Current (Off Cond.) vs. Cathode Voltage
(V
REF
=0V,Ta=25°C)
1
Cathode Current I
OFF
(nA)
0.8
0.6
0.4
0.2
0
3
2
1
0
0
5
10
15
Cathode Voltage V
KA
(V)
0
5
10
Cathode Voltage V
KA
(V)
15
Dynamic Impedance |Z
KA
| (Ω)
1.2
1
0.8
0.6
0.4
0.2
0
1
Dynamic Impedance
(I
K
=0.5~30mA,V
KA
=V
REF
,Ta=25°C)
80
60
Voltage Gain A
V
(dB)
40
20
0
-20
-40
-60
-80
100
Voltage Gain · Phase vs. Frequency
(Fig.4 Test Circuit,Ta=25°C)
360
270
90
0
-90
Phase
Φ
(deg)
180
Gain
Phase
-180
-270
-360
10M
10
100
1k
10k
100k
Cathode Current Frequency f (Hz)
1k
10k
100k
1M
Frequency f (Hz)
-4-
Ver.2009-11-26
NJM2373/73A/76
■TYPICAL
CHARACTERISTICS
Safety Operating Boundary Condition
(Rin=1kΩ, V =V
1000
Cathode Current I
K
(µA)
800
600
400
200
0
0.01
Unstable Operaion
Region
0.1
1
Output Capacitor C
10
(µF)
KA
REF
, Ta=25
o
C)
Safety Operating Boundary Condition
Test Circuit
Rin=1kΩ
V
KA
I
K
V
+
C
OUT
Ceramic Capacitor
Stable Operaion
Region
Note) Oscillation might occur while operating within the range of
safety curve.
So that, it is necessary to make ample margins by taking
considerations of fluctuation of the device.
OUT
Safety Operating Boundary Condition
(Rin=1kΩ, V =V
1000
Cathode Current I
K
(µA)
800
600
400
200
0
0.1
Unstable Operaion
Region
Stable Operaion
Region
KA
REF
, Ta=25 C)
o
Aluminum Electrolytic Capacitor
1
Output Capacitor C
10
(µF)
OUT
Ver.2009-11-26
-5-
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