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ICL7650CPD 参数 Datasheet PDF下载

ICL7650CPD图片预览
型号: ICL7650CPD
PDF下载: 下载PDF文件 查看货源
内容描述: 零漂移运算放大器 [Zero-Drift Operational Amplifier]
分类和应用: 运算放大器光电二极管斩波器
文件页数/大小: 24 页 / 846 K
品牌: Linear [ Linear ]
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LTC1052/LTC7652  
U
THEORY OF OPERATIO  
C1  
S3  
V
REF  
C2  
R
l
2
+ IN  
– IN  
S2  
S1  
+
δl  
+
g
g
m2  
g
g
+
V
+
m1  
m5  
m4  
OUT  
l
R
R
L2  
1
L1  
C
EXT B  
R
L4  
L5  
C
EXT A  
g
m3  
V
l
3
LTC1052/7652 • TO02  
g
m6  
+
Figure 1b. LTC1052 Block Diagram  
Sampling Cycle  
W U U  
U
APPLICATIO S I FOR ATIO  
EXTERNAL CAPACITORS  
CEXTA and CEXTB are the holding elements of a sample-  
and-hold circuit. The important capacitor characteristics  
are leakage current and dielectric absorption. A high  
qualityfilm-typecapacitorsuchasmylarorpolypropylene  
provides excellent performance. However, low grade  
capacitors such as ceramic are suitable in many  
applications.  
On competitive devices, connecting CEXTA and CEXTB to  
Vcausesanincreaseinamplifiernoise.Designchanges  
have eliminated this problem on the LTC1052. On the  
14-pin LTC1052 and 8-pin LTC7652, the capacitors can  
be returned to Vor CRETURN with no change in noise  
performance.  
ACHIEVING PICOAMPERE/MICROVOLT PERFORMANCE  
Picoamperes  
Capacitors with very high dielectric absorption (ceramic)  
can take several seconds to settle after power is first  
turned on. This settling appears as clock ripple on the  
output and, as the capacitor settles, the ripple gradually  
disappears. If fast settling after power turn-on is  
important, mylar or polypropylene is recommended.  
In order to realize the picoampere level of accuracy of the  
LTC1052, proper care must be exercised. Leakage  
currents in circuitry external to the amplifier can  
significantlydegradeperformance. Highqualityinsulation  
should be used (e.g., Teflon, Kel-F); cleaning of all  
insulating surfaces to remove fluxes and other residues  
will probably be necessary—particularly for high  
temperature performance. Surface coating may be  
necessary to provide a moisture barrier in high humidity  
environments.  
Above 85°C, leakage, both from the holding capacitors  
and the printed circuit board, becomes important. To  
maintain the capabilities of the LTC1052 it may be  
necessary to use Teflon™ capacitors and Teflon standoffs  
when operating at 125°C (see Achieving Picoampere/  
Microvolt Performance).  
CEXTA and CEXTB are normally in the range of 0.1µF  
to 1.0µF. All specifications are guaranteed with 0.1µF and  
the broadband noise (refer to Typical Performance Char-  
acteristics) is only very slightly degraded with 0.1µF.  
Output clock ripple is not present for capacitors of 0.1µF  
or greater at any temperature.  
Board leakage can be minimized by encircling the input  
connections with a guard ring operated at a potential  
close to that of the inputs: in inverting configurations, the  
guard ring should be tied to ground; in noninverting  
Teflon is a trademark of Dupont.  
1052fa  
8
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