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LF444CM 参数 Datasheet PDF下载

LF444CM图片预览
型号: LF444CM
PDF下载: 下载PDF文件 查看货源
内容描述: 四路低功耗JFET输入运算放大器 [Quad Low Power JFET Input Operational Amplifier]
分类和应用: 运算放大器光电二极管
文件页数/大小: 10 页 / 362 K
品牌: NSC [ National Semiconductor ]
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AC Electrical Characteristics (Note 5)  
Symbol  
Parameter  
Conditions  
LF444A  
Typ Max Min  
LF444  
Units  
Min  
Typ Max  
−120  
Amplifier-to-Amplifier  
Coupling  
−120  
dB  
=
=
=
±
±
SR  
Slew Rate  
VS  
VS  
15V, TA 25˚C  
1
1
1
1
V/µs  
MHz  
=
GBW  
en  
Gain-Bandwidth Product  
Equivalent Input Noise Voltage  
15V, TA 25˚C  
=
=
TA 25˚C, RS 100,  
35  
35  
=
f
1 kHz  
=
=
in  
Equivalent Input Noise Current  
TA 25˚C, f 1 kHz  
0.01  
0.01  
Note 1: Unless otherwise specified the absolute maximum negative input voltage is equal to the negative power supply voltage.  
Note 2: Any of the amplifier outputs can be shorted to ground indefinitely, however, more than one should not be simultaneously shorted as the maximum junction  
temperature will be exceeded.  
Note 3: For operating at elevated temperature, these devices must be derated based on a thermal resistance of θ  
.
jA  
Note 4: The LF444A is available in both the commercial temperature range 0˚C T 70˚C and the military temperature range −55˚C T 125˚C. The LF444 is  
A
A
available in the commercial temperature range only. The temperature range is designated by the position just before the package type in the device number. A “C”  
indicates the commercial temperature range and an “M” indicates the military temperature range. The military temperature range is available in “D” package only.  
=
=
±
±
Note 5: Unless otherwise specified the specifications apply over the full temperature range and for V  
20V for the LF444A and for V  
15V for the LF444. V ,  
OS  
S
S
=
0.  
I
, and I  
OS  
are measured at V  
CM  
B
Note 6: The input bias currents are junction leakage currents which approximately double for every 10˚C increase in the junction temperature, T . Due to limited pro-  
j
duction test time, the input bias currents measured are correlated to junction temperature. In normal operation the junction temperature rises above the ambient tem-  
=
perature as a result of internal power dissipation, P . T  
D
T
+ θ P where θ is the thermal resistance from junction to ambient. Use of a heat sink is recommended  
jA D jA  
j
A
if input bias current is to be kept to a minimum.  
Note 7: Supply voltage rejection ratio is measured for both supply magnitudes increasing or decreasing simultaneously in accordance with common practice from  
±
±
±
±
15V to 5V for the LF444 and from 20V to 5V for the LF444A.  
Note 8: Refer to RETS444X for LF444MD military specifications.  
Note 9: Max. Power Dissipation is defined by the package characteristics. Operating the part near the Max. Power Dissipation may cause the part to operate outside  
guaranteed limits.  
Note 10: Human body model, 1.5 kin series with 100 pF.  
Note 11: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating ratings indicate conditions for which the device is func-  
tional, but do not guarantee specific performance limits. Electrical Characteristics state DC and AC electrical specifications under particular test conditions which guar-  
antee specific performance limits. This assumes that the device is within the Operating Ratings. Specifications are not guaranteed for parameters where no limit is  
given, however, the typical value is a good indication of device performance.  
Typical Performance Characteristics  
Input Bias Current  
Supply Current  
Input Bias Current  
DS009156-12  
DS009156-14  
DS009156-13  
3
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