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EL5423CL-T13 PDF预览

EL5423CL-T13

更新时间: 2024-01-10 09:46:13
品牌 Logo 应用领域
英特矽尔 - INTERSIL /
页数 文件大小 规格书
12页 289K
描述
12MHz 4, 8, 10 & 12 Channel Rail-to-Rail Input-Output Buffers

EL5423CL-T13 技术参数

生命周期:TransferredReach Compliance Code:unknown
风险等级:5.58Base Number Matches:1

EL5423CL-T13 数据手册

 浏览型号EL5423CL-T13的Datasheet PDF文件第6页浏览型号EL5423CL-T13的Datasheet PDF文件第7页浏览型号EL5423CL-T13的Datasheet PDF文件第8页浏览型号EL5423CL-T13的Datasheet PDF文件第9页浏览型号EL5423CL-T13的Datasheet PDF文件第10页浏览型号EL5423CL-T13的Datasheet PDF文件第12页 
EL5123, EL5223, EL5323, EL5423  
exceeds ±30mA. This limit is set by the design of the internal  
metal interconnects.  
Applications Information  
Product Description  
Output Phase Reversal  
The EL5123, EL5223, EL5323, and EL5423 unity gain  
buffers are fabricated using a high voltage CMOS process. It  
exhibits rail-to-rail input and output capability and has low  
power consumption (600µA per buffer). These features  
make the EL5123, EL5223, EL5323, and EL5423 ideal for a  
wide range of general-purpose applications. When driving a  
load of 10kand 12pF, the EL5123, EL5223, EL5323, and  
EL5423 have a -3dB bandwidth of 12MHz and exhibits  
15V/µs slew rate.  
The EL5123, EL5223, EL5323, and EL5423 are immune to  
phase reversal as long as the input voltage is limited from  
V - -0.5V to V + +0.5V. Figure 25 shows a photo of the  
S
S
output of the device with the input voltage driven beyond the  
supply rails. Although the device's output will not change  
phase, the input's over-voltage should be avoided. If an input  
voltage exceeds supply voltage by more than 0.6V,  
electrostatic protection diodes placed in the input stage of  
the device begin to conduct and over-voltage damage could  
occur.  
Operating Voltage, Input, and Output  
The EL5123, EL5223, EL5323, and EL5423 are specified  
with a single nominal supply voltage from 5V to 15V or a split  
supply with its total range from 5V to 15V. Correct operation  
is guaranteed for a supply range of 4.5V to 16.5V. Most  
EL5123, EL5223, EL5323, and EL5423 specifications are  
stable over both the full supply range and operating  
temperatures of -40°C to +85°C. Parameter variations with  
operating voltage and/or temperature are shown in the  
typical performance curves.  
1V  
10µs  
V =±2.5V  
S
The output swings of the EL5123, EL5223, EL5323, and  
EL5423 typically extend to within 50mV of positive and  
negative supply rails with load currents of 5mA. Decreasing  
load currents will extend the output voltage range even  
closer to the supply rails. Figure 24shows the input and  
output waveforms for the device. Operation is from ±5V  
supply with a 10kload connected to GND. The input is a  
T =25°C  
A
IN  
V
=6V  
P-P  
1V  
FIGURE 25. OPERATION WITH BEYOND-THE-RAILS INPUT  
Power Dissipation  
With the high-output drive capability of the EL5123, EL5223,  
EL5323, and EL5423 buffer, it is possible to exceed the  
125°C “absolute-maximum junction temperature” under  
certain load current conditions. Therefore, it is important to  
calculate the maximum junction temperature for the  
application to determine if load conditions need to be  
modified for the buffer to remain in the safe operating area.  
10V  
9.985V  
sinusoid. The output voltage is approximately  
P-P  
.
P-P  
5V  
10µs  
V =±5V  
S
T =25°C  
A
V
=10V  
IN  
P-P  
The maximum power dissipation allowed in a package is  
determined according to:  
T
T  
AMAX  
JMAX  
--------------------------------------------  
P
=
DMAX  
dΘ  
JA  
5V  
where:  
T
= Maximum junction temperature  
= Maximum ambient temperature  
JMAX  
FIGURE 24. OPERATION WITH RAIL-TO-RAIL INPUT AND  
OUTPUT  
T
AMAX  
θ
= Thermal resistance of the package  
JA  
Short Circuit Current Limit  
P
= Maximum power dissipation in the package  
The EL5123, EL5223, EL5323, and EL5423 will limit the  
short circuit current to ±120mA if the output is directly  
shorted to the positive or the negative supply. If an output is  
shorted indefinitely, the power dissipation could easily  
increase such that the device may be damaged. Maximum  
reliability is maintained if the output continuous current never  
DMAX  
The maximum power dissipation actually produced by an IC  
is the total quiescent supply current times the total power  
supply voltage, plus the power in the IC due to the loads, or:  
P
= Σi[V × I  
+ (V + V  
i) × I  
i]  
LOAD  
DMAX  
S
SMAX  
S
OUT  
FN7176.1  
November 19, 2004  
11  

EL5423CL-T13 替代型号

型号 品牌 替代类型 描述 数据表
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