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EL4430CS PDF预览

EL4430CS

更新时间: 2024-01-20 02:40:49
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英特矽尔 - INTERSIL 仪表放大器光电二极管局域网
页数 文件大小 规格书
10页 185K
描述
Video Instrumentation Amplifiers

EL4430CS 技术参数

是否Rohs认证: 不符合生命周期:Obsolete
零件包装代码:SOIC包装说明:SOIC-8
针数:8Reach Compliance Code:not_compliant
ECCN代码:EAR99HTS代码:8542.33.00.01
风险等级:5.88放大器类型:INSTRUMENTATION AMPLIFIER
JESD-30 代码:R-PDSO-G8JESD-609代码:e0
负供电电压上限:-16.5 V标称负供电电压 (Vsup):-5 V
功能数量:1端子数量:8
最高工作温度:85 °C最低工作温度:-40 °C
封装主体材料:PLASTIC/EPOXY封装代码:SOP
封装等效代码:SOP8,.25封装形状:RECTANGULAR
封装形式:SMALL OUTLINE电源:+-5 V
认证状态:Not Qualified子类别:Instrumentation Amplifier
最大压摆率:16 mA供电电压上限:16.5 V
标称供电电压 (Vsup):5 V表面贴装:YES
技术:BIPOLAR温度等级:INDUSTRIAL
端子面层:Tin/Lead (Sn/Pb)端子形式:GULL WING
端子节距:1.27 mm端子位置:DUAL
Base Number Matches:1

EL4430CS 数据手册

 浏览型号EL4430CS的Datasheet PDF文件第4页浏览型号EL4430CS的Datasheet PDF文件第5页浏览型号EL4430CS的Datasheet PDF文件第6页浏览型号EL4430CS的Datasheet PDF文件第8页浏览型号EL4430CS的Datasheet PDF文件第9页浏览型号EL4430CS的Datasheet PDF文件第10页 
EL4430, EL4431  
Input Connections  
Applications Information  
The input transistors can be driven from resistive and  
capacitive sources, but are capable of oscillation when  
presented with an inductive input. It takes about 80nH of  
series inductance to make the inputs actually oscillate,  
equivalent to 4 of unshielded wiring or about 6 of  
unterminated input transmission line. The oscillation has a  
characteristic frequency of 500MHz. Often, placing one’s  
finger (via a metal probe) or an oscilloscope probe on the  
input will kill the oscillation. Normal high-frequency  
construction obviates any such problems, where the input  
source is reasonably close to the input. If this is not possible,  
one can insert series resistors of approximately 51to de-Q  
the inputs.  
The EL4430 and EL4431 are designed to convert a fully  
differential input to a single-ended output. It has two sets of  
inputs; one which is connected to the signal and does not  
respond to its common-mode level, and another which is  
used to complete a feedback loop with the output. Here is a  
typical connection:  
Signal Amplitudes  
Signal input common-mode voltage must be between  
(V-)+3V and (V+)-3V to ensure linearity. Additionally, the  
differential voltage on any input stage must be limited to ±6V  
to prevent damage. The differential signal range is ±2V in the  
EL4430 and EL4431. The input range is substantially  
constant with temperature.  
The gain of the feedback divider is H. The transfer function of  
the part is:  
V
= A × ((V +) - (V -) + (V  
IN IN REF  
- V )).  
FB  
OUT  
O
V
V
is connected to V  
through a feedback network, so  
FB  
OUT  
. A is the open-loop gain of the amplifier,  
= H × V  
FB  
OUT  
O
The Ground Pin  
and is about 600 for the EL4430 and EL4431. The large  
The ground pin draws only 6µA maximum DC current, and  
may be biased anywhere between (V-)+2.5V and (V+)-3.5V.  
The ground pin is connected to the IC’s substrate and  
frequency compensation components. It serves as a shield  
within the IC and enhances CMRR over frequency, and if  
connected to a potential other than ground, it must be  
bypassed.  
value of A drives:  
O
(V +) - (V -) + (V - V )0.  
REF FB  
IN  
IN  
Rearranging and substituting for V  
FB:  
V
= ((V +) - (V -) + V  
IN IN  
)/H.  
OUT  
REF  
Thus, the output is equal to the difference of the V s and  
IN  
offset by V  
, all gained up by the feedback divider ratio.  
Power Supplies  
REF  
The input impedance of the FB terminal (equal to R of the  
IN  
The instrumentation amplifiers work well on any supplies  
from ±3V to ±15. The supplies may be of different voltages  
as long as the requirements of the Gnd pin are observed  
(see the Ground Pin section for a discussion). The supplies  
should be bypassed close to the device with short leads.  
4.7µF tantalum capacitors are very good, and no smaller  
bypasses need be placed in parallel. Capacitors as low as  
0.01µF can be used if small load currents flow.  
input terminals) is in parallel with an R , and raises circuit  
gain slightly.  
G
The EL4430 is stable for a gain of 1 (a direct connection  
between V  
and FB) or more and the EL4431 for gains of  
OUT  
2 or more. It is important to keep the feedback divider’s  
impedance at the FB terminal low so that stray capacitance  
does not diminish the loop’s phase margin. The pole caused  
by the parallel of resistors R and R and stray capacitance  
F
G
Single-polarity supplies, such as +12V with +5V can be  
used, where the ground pin is connected to +5V and V- to  
ground. The inputs and outputs will have to have their levels  
shifted above ground to accommodate the lack of negative  
supply.  
should be at least 200MHz; typical strays of 3pF thus require  
a feedback impedance of 270or less. Two 510resistors  
are acceptable for a gain of 2; 300and 2700make a  
good gain-of-10 divider. Alternatively, a small capacitor  
across R can be used to create more of a frequency-  
F
The dissipation of the amplifiers increases with power supply  
voltage, and this must be compatible with the package  
chosen. This is a close estimate for the dissipation of a  
circuit:  
compensated divider. The value of the capacitor should  
scale with the parasitic capacitance at the FB terminal input.  
It is also practical to place small capacitors across both the  
feedback resistors (whose values maintain the desired gain)  
to swamp out parasitics. For instance, two 10pF capacitors  
(for a gain of 2) across equal divider resistors will dominate  
parasitic effects and allow a higher divider resistance.  
P = 2 × V × I , max + (V -V ) × V /R  
PAR  
D
S
S
S
O
O
7

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