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3,783 pcs
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3783 pcs | On Request | 1 | On Request | On Request | 03+ | On Request | On Request |
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The Texas Instruments LMH6672MAX is a dual, high output current, high speed operational amplifier designed for demanding applications. It offers a significant gain bandwidth product of 180 MHz and a rapid slew rate of 170 V/µs, making it suitable for high-frequency signal processing.
This op-amp operates over a total supply voltage range of 5 V to 12 V and provides a high output current of up to ±200 mA. It exhibits low distortion with SFDR ratings of 105 dBc at 100 kHz and 98 dBc at 1 MHz. The input noise voltage is rated at 3.1 nV/√Hz, contributing to its suitability for low-noise applications.
The LMH6672MAX is available in an 8-pin SOIC package, supporting surface mount mounting. Its operating temperature range is -40°C to 150°C, ensuring reliable performance in various environmental conditions. The device is stable for gains of +2V/V or higher.
Key electrical characteristics include a minimum stable gain of 2 V/V and a typical quiescent current of 6.2 mA per channel. The high output drive capability, with differential output voltage up to 19.2 V PP into a 50 Ω load, further enhances its application versatility.
The typical gain bandwidth product (GBW) of the LMH6672MAX is 180 MHz.
The typical slew rate of the LMH6672MAX is 170 V/µs.
The LMH6672MAX operates with a total supply voltage ranging from 5 V to 12 V.
The LMH6672MAX is available in an 8-pin HSOIC (DDA) and an 8-pin SOIC (D) package.
The operating temperature range for the LMH6672MAX is -40°C to 150°C.
The LMH6672MAX has a typical output current capability of ±200 mA at VO = 9 V PP and VS = 12 V.
The input noise voltage for the LMH6672MAX is typically 3.1 nV/√Hz.