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OPA620SG PDF预览

OPA620SG

更新时间: 2024-02-26 13:28:14
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页数 文件大小 规格书
15页 311K
描述
Wideband Precision OPERATIONAL AMPLIFIER

OPA620SG 技术参数

是否Rohs认证: 不符合生命周期:Obsolete
包装说明:CERAMIC, DIP-8Reach Compliance Code:unknown
风险等级:5.81Is Samacsys:N
放大器类型:OPERATIONAL AMPLIFIER架构:VOLTAGE-FEEDBACK
最大平均偏置电流 (IIB):40 µA25C 时的最大偏置电流 (IIB):30 µA
最小共模抑制比:65 dB标称共模抑制比:75 dB
频率补偿:YES最大输入失调电压:1000 µV
JESD-30 代码:R-CDIP-T8JESD-609代码:e0
低-偏置:NO低-失调:NO
微功率:NO负供电电压上限:-7 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:125 °C
最低工作温度:-55 °C封装主体材料:CERAMIC, METAL-SEALED COFIRED
封装代码:DIP封装等效代码:DIP8,.3
封装形状:RECTANGULAR封装形式:IN-LINE
峰值回流温度(摄氏度):NOT SPECIFIED功率:NO
电源:+-5 V可编程功率:NO
认证状态:Not Qualified最小摆率:175 V/us
标称压摆率:250 V/us子类别:Operational Amplifier
最大压摆率:25 mA供电电压上限:7 V
标称供电电压 (Vsup):5 V表面贴装:NO
技术:BIPOLAR温度等级:MILITARY
端子面层:Tin/Lead (Sn/Pb)端子形式:THROUGH-HOLE
端子节距:2.54 mm端子位置:DUAL
处于峰值回流温度下的最长时间:NOT SPECIFIED标称均一增益带宽:200000 kHz
最小电压增益:316宽带:YES
Base Number Matches:1

OPA620SG 数据手册

 浏览型号OPA620SG的Datasheet PDF文件第7页浏览型号OPA620SG的Datasheet PDF文件第8页浏览型号OPA620SG的Datasheet PDF文件第9页浏览型号OPA620SG的Datasheet PDF文件第11页浏览型号OPA620SG的Datasheet PDF文件第12页浏览型号OPA620SG的Datasheet PDF文件第13页 
6) Avoid overloading the output. Remember that output  
current must be provided by the amplifier to drive its own  
feedback network as well as to drive its load. Lowest  
distortion is achieved with high impedance loads.  
INPUT PROTECTION  
Static damage has been well recognized for MOSFET  
devices, but any semiconductor device deserves protection  
from this potentially damaging source. The OPA620 incor-  
porates on-chip ESD protection diodes as shown in Figure 2.  
This eliminates the need for the user to add external protec-  
tion diodes, which can add capacitance and degrade AC  
performance.  
7) Don’t forget that these amplifiers use ±5V supplies.  
Although they will operate perfectly well with +5V and  
–5.2V, use of ±15V supplies will destroy the part.  
8) Standard commercial test equipment has not been  
designed to test devices in the OPA620’s speed range.  
Benchtop op amp testers and ATE systems will require a  
special test head to successfully test these amplifiers.  
All pins on the OPA620 are internally protected from ESD  
by means of a pair of back-to-back reverse-biased diodes to  
either power supply as shown. These diodes will begin to  
conduct when the input voltage exceeds either power  
supply by about 0.7V. This situation can occur with loss of  
the amplifier’s power supplies while a signal source is still  
present. The diodes can typically withstand a continuous  
current of 30mA without destruction. To insure long term  
reliability, however, diode current should be externally lim-  
ited to 10mA or so whenever possible.  
9) Terminate transmission line loads. Unterminated lines,  
such as coaxial cable, can appear to the amplifier to be a  
capacitive or inductive load. By terminating a transmission  
line with its characteristic impedance, the amplifier’s load  
then appears purely resistive.  
10) Plug-in prototype boards and wire-wrap boards will not  
be satisfactory. A clean layout using RF techniques is  
essential; there are no shortcuts.  
ESDProtectiondiodesinternally  
connected to all pins.  
+VCC  
OFFSET VOLTAGE ADJUSTMENT  
The OPA620’s input offset voltage is laser-trimmed and  
will require no further adjustment for most applications.  
However, if additional adjustment is needed, the circuit in  
Figure 1 can be used without degrading offset drift with  
temperature. Avoid external adjustment whenever possible  
since extraneous noise, such as power supply noise, can be  
inadvertently coupled into the amplifier’s inverting input  
terminal. Remember that additional offset errors can be  
created by the amplifier’s input bias currents. Whenever  
possible, match the impedance seen by both inputs as is  
shown with R3. This will reduce input bias current errors to  
the amplifier’s offset current, which is typically only 0.2µA.  
External  
Pin  
Internal  
Circuitry  
–VCC  
FIGURE 2. Internal ESD Protection.  
The internal protection diodes are designed to withstand  
2.5kV (using Human Body Model) and will provide ad-  
equate ESD protection for most normal handling proce-  
dures. However, static damage can cause subtle changes in  
amplifier input characteristics without necessarily destroy-  
ing the device. In precision operational amplifiers, this may  
cause a noticeable degradation of offset voltage and drift.  
Therefore, static protection is strongly recommended when  
handling the OPA620.  
+VCC  
R2  
RTrim  
20kΩ  
47kΩ  
OPA620  
OUTPUT DRIVE CAPABILITY  
The OPA620’s design uses large output devices and has  
been optimized to drive 50and 75resistive loads. The  
device can easily drive 6Vp-p into a 50load. This high-  
output drive capability makes the OPA620 an ideal choice  
for a wide range of RF, IF, and video applications. In many  
cases, additional buffer amplifiers are unneeded.  
–VCC  
R1  
(1)R3 = R1 || R2  
VIN or Ground  
Internal current-limiting circuitry limits output current to  
about 150mA at 25°C. This prevents destruction from  
accidental shorts to common and eliminates the need for  
external current-limiting circuitry. Although the device can  
withstand momentary shorts to either power supply, it is not  
recommended.  
Output Trim Range +VCC  
(
R2 ) to –VCC  
RTrim  
(
R2  
RTrim  
)
NOTE: (1) R3 is optional and can be used to cancel offset errors due to input  
bias currents.  
FIGURE 1. Offset Voltage Trim.  
®
10  
OPA620  

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