OP Amp Dual Current Fdbk ±6V/12V 8Pin SOIC N T/R
Product Details
The AD8007 single and AD8008 dual are high performance current feedback amplifiers with ultralow distortion and noise. Unlike other high performance amplifiers, the low price and low quiescent current allow these amplifiers to be used in a wide range of applications. Analog Devices, Inc., proprietary second-generation eXtra-Fast Complementary Bipolar XFCB process enables such high performance amplifiers with low power consumption.
The AD8007/AD8008 have 650 MHz bandwidth, 2.7 nV/√Hz voltage noise, −83 dB SFDR at 20 MHz AD8007, and −77 dBc SFDR at 20 MHz AD8008.
With the wide supply voltage range 5 V to 12 V and wide bandwidth, the AD8007/AD8008 are designed to work in a variety of applications. The AD8007/AD8008 amplifiers have a low power supply current of 9 mA/amplifier.
The AD8007 is available in a tiny SC70 package as well as a standard 8-lead SOIC. The dual AD8008 is available in both an 8-lead SOIC and an 8-lead MSOP. These amplifiers are rated to work over the industrial temperature range of −40°C to +85°C.
**Applications**
### Features and Benefits
Second Harmonic
-88 dBc @ 5 MHz
−83 dBc @ 20 MHz AD8007
−77 dBc @ 20 MHz AD8008
Third Harmonic
−101 dBc @ 5 MHz
−92 dBc @ 20 MHz AD8007
−98 dBc @ 20 MHz AD8008
650 MHz, −3 dB bandwidth G = +1
1000 V/μs slew rate
2.7 nV/√Hz input voltage noise
22.5 pA/√Hz input inverting current noise
供电电流 9 mA
电路数 2
通道数 2
共模抑制比 59 dB
输入电容 1.00 pF
带宽 650 MHz
转换速率 1.00 kV/μs
增益频宽积 380 MHz
输入阻抗 4.00 MΩ
输入补偿电压 500 µV
输入偏置电流 4 µA
工作温度Max 85 ℃
工作温度Min 40 ℃
3dB带宽 650 MHz
共模抑制比Min 54 dB
电源电压Max 12 V
电源电压Min 5 V
安装方式 Surface Mount
引脚数 8
封装 SOIC-8
长度 5 mm
宽度 4 mm
高度 1.5 mm
封装 SOIC-8
工作温度 -40℃ ~ 85℃
产品生命周期 Active
包装方式 Tape & Reel TR
RoHS标准 RoHS Compliant
含铅标准 Contains Lead
军工级 No
型号/品牌 | 代替类型 | 替代型号对比 |
---|---|---|
AD8008ARZ-REEL7 ADI 亚德诺 | 当前型号 | 当前型号 |
AD8008AR-REEL 亚德诺 | 完全替代 | AD8008ARZ-REEL7和AD8008AR-REEL的区别 |
AD8008ARZ 亚德诺 | 类似代替 | AD8008ARZ-REEL7和AD8008ARZ的区别 |
AD8008ARZ-REEL 亚德诺 | 类似代替 | AD8008ARZ-REEL7和AD8008ARZ-REEL的区别 |