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LT1361CS8#PBF 参数 Datasheet PDF下载

LT1361CS8#PBF图片预览
型号: LT1361CS8#PBF
PDF下载: 下载PDF文件 查看货源
内容描述: [LT1361 - Dual and Quad 50MHz, 800V/µs Op Amps; Package: SO; Pins: 8; Temperature Range: 0°C to 70°C]
分类和应用: 运算放大器
文件页数/大小: 12 页 / 224 K
品牌: Linear [ Linear ]
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LT1361/LT1362  
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TYPICAL PERFORMANCE CHARACTERISTICS  
Small-Signal Transient  
(AV = 1)  
Small-Signal Transient  
(AV = –1)  
Small-Signal Transient  
(AV = –1, CL = 500pF)  
1361/1362 TA31  
1361/1362 TA33  
1361/1362 TA32  
Large-Signal Transient  
(AV = 1)  
Large-Signal Transient  
(AV = –1)  
Large-Signal Transient  
(AV = 1, CL = 10,000pF)  
1361/1362 TA34  
1361/1362 TA36  
1361/1362 TA35  
U
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APPLICATIONS INFORMATION  
Layout and Passive Components  
Input Considerations  
The LT1361/LT1362 amplifiers are easy to use and toler-  
ant of less than ideal layouts. For maximum performance  
(for example, fast 0.01% settling) use a ground plane,  
short lead lengths, and RF-quality bypass capacitors  
(0.01µF to 0.1µF). For high drive current applications use  
low ESR bypass capacitors (1µF to 10µF tantalum). The  
parallel combination of the feedback resistor and gain  
setting resistor on the inverting input combine with the  
input capacitance to form a pole which can cause peaking  
or oscillations. If feedback resistors greater than 5kare  
used, a parallel capacitor of value  
Each of the LT1361/LT1362 inputs is the base of an NPN  
and a PNP transistor whose base currents are of opposite  
polarity and provide first-order bias current cancellation.  
BecauseofvariationinthematchingofNPNandPNPbeta,  
the polarity of the input bias current can be positive or  
negative. The offset current does not depend on NPN/PNP  
beta matching and is well controlled. The use of balanced  
source resistance at each input is recommended for  
applications where DC accuracy must be maximized.  
The inputs can withstand transient differential input volt-  
ages up to 10V without damage and need no clamping or  
source resistance for protection. Differential inputs, how-  
ever, generate large supply currents (tens of mA) as  
required for high slew rates. If the device is used with  
sustained differential inputs, the average supply current  
will increase, excessive power dissipation will result and  
the part may be damaged. The part should not be used as  
acomparator,peakdetectororotheropen-loopapplica-  
CF > RG x CIN/RF  
should be used to cancel the input pole and optimize  
dynamic performance. For unity-gain applications where  
a large feedback resistor is used, CF should be greater  
than or equal to CIN.  
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