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EL2410CS-T7 PDF预览

EL2410CS-T7

更新时间: 2024-02-13 21:12:59
品牌 Logo 应用领域
英特矽尔 - INTERSIL 运算放大器
页数 文件大小 规格书
11页 91K
描述
Low Cost, Dual, Triple and Quad Video Op Amps

EL2410CS-T7 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:SOP,
针数:14Reach Compliance Code:not_compliant
ECCN代码:EAR99HTS代码:8542.33.00.01
风险等级:5.92放大器类型:OPERATIONAL AMPLIFIER
JESD-30 代码:R-PDSO-G14JESD-609代码:e0
长度:8.6614 mm功能数量:4
端子数量:14封装主体材料:PLASTIC/EPOXY
封装代码:SOP封装形状:RECTANGULAR
封装形式:SMALL OUTLINE峰值回流温度(摄氏度):NOT SPECIFIED
认证状态:Not Qualified座面最大高度:1.7272 mm
子类别:Operational Amplifier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
处于峰值回流温度下的最长时间:NOT SPECIFIED宽度:3.9116 mm
Base Number Matches:1

EL2410CS-T7 数据手册

 浏览型号EL2410CS-T7的Datasheet PDF文件第3页浏览型号EL2410CS-T7的Datasheet PDF文件第4页浏览型号EL2410CS-T7的Datasheet PDF文件第5页浏览型号EL2410CS-T7的Datasheet PDF文件第7页浏览型号EL2410CS-T7的Datasheet PDF文件第8页浏览型号EL2410CS-T7的Datasheet PDF文件第9页 
EL2210/11, EL2310/11, EL2410/11  
Typical Performance Curves  
Package Power Dissipation vs Ambient Temp.  
JEDEC JESD51-3 Low Effective Thermal Conductivity  
Test Board  
Package Power Dissipation vs Ambient Temp.  
JEDEC JESD51-3 Low Effective Thermal Conductivity  
Test Board  
1.2  
1
1.8  
1.6  
1.4  
1.2  
1
1.042W  
1.54W  
PDIP14  
SO14  
θJA=120°C/W  
1.25W  
θJA=81°C/W  
781W  
0.8  
0.6  
0.4  
0.2  
0
0.8  
0.6  
0.4  
0.2  
0
PDIP8  
SO8  
θJA=160°C/W  
θJA=100°C/W  
0
25  
50  
75 85 100  
125  
150  
0
25  
50  
75 85 100  
125  
150  
Ambient Temperature (°C)  
Ambient Temperature (°C)  
Application Information  
resistor. If R were 150then it and the 1250internal  
Product Description  
L
resistor limit the maximum negative swing to  
150  
The EL2210, EL2310, and EL2410 are dual, triple, and quad  
operational amplifiers stable at a gain of 1. The EL2211,  
EL2311, and EL2411 are dual, triple, and quad operational  
amplifiers stable at a gain of 2. All six are built on Elantec's  
proprietary complimentary process and share the same  
voltage mode feedback topology. This topology allows them  
to be used in a variety of applications where current mode  
feedback amplifiers are not appropriate because of  
restrictions placed on the feedback elements. These  
products are especially designed for applications where high  
bandwidth and good video performance characteristics are  
desired but the higher cost of more flexible and sophisticated  
products are prohibitive.  
V
= -----------------------------  
EE  
1250 + 150  
Or--0.53V  
The negative swing can be increased by adding an external  
resistor of appropriate value from the output to the negative  
supply. The simplified block diagram shows an 820Ω  
external pull-down resistor. This resistor is in parallel with the  
internal 1250resistor. This will increase the negative swing  
to  
1250 × 820  
1250 + 820  
-----------------------------  
+ 150  
V
= 150 ÷  
EE  
Or -1.16V  
Power Dissipation and Loading  
Power Supplies  
These amplifiers are designed to work at a supply voltage  
difference of 10V to 12V. These amplifiers will work on any  
combination of ± supplies. All electrical characteristics are  
measured with ±5V supplies. Below 9V total supply voltage  
the amplifiers’ performance will degrade dramatically. The  
quiescent current is a direct function of total supply voltage.  
With a total supply voltage of 12V the quiescent supply  
current will increase from a typical 6.8mA per amplifier to  
10mA per amplifier.  
Without any load and a 10V supply difference the power  
dissipation is 70mW per amplifier. At 12V supply difference  
this increases to 105mW per amplifier. At 12V this translates  
to a junction temperature rise above ambient of 33°C for the  
dual and 40°C for the quad amplifier. When the amplifiers  
provide load current the power dissipation can rapidly rise.  
In ±5V operation each output can drive a grounded 150Ω  
load to more than 2V. This operating condition will not  
exceed the maximum junction temperature limit as long as  
the ambient temperature is below 85°C, the device is  
soldered in place, and the extra pull-down resistor is 820or  
more.  
Output Swing vs Load  
Please refer to the simplified block diagram. These amplifiers  
provide an NPN pull-up transistor output and a passive  
1250pull-down resistor to the most negative supply. In an  
application where the load is connected to V - the output  
S
If the load is connected to the most negative voltage (ground  
in single supply operation) you can easily exceed the  
absolute maximum die temperature. For example the  
maximum die temperature should be 150°C. At a maximum  
voltage can swing to within 200mV of V -. In split supply  
S
applications where the DC load is connected to ground the  
negative swing is limited by the voltage divider formed by the  
load, the internal 1250resistor and any external pull-down  
6

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