LT1469-2 (12)
The LT1469-2 is available from Analog Devices at Xecor. Designed for high accuracy applications such as DAC current-to-voltage conversion and ADC buffers, the LT1469-2 offers 200MHz gain bandwidth product, 30V/µs slew rate, and low distortion of -96.5dB for 100kHz, 10VP-P. Available in multiple package options including 8-lead plastic SO and 12-lead (4mm × 4mm) DFN, it is ideal for precision instrumentation, high accuracy data acquisition systems, and photodiode amplifiers. Whether used in active filters or low-noise signal processing, this series ensures 16-bit accuracy, stability in gain ≥ 2, and optimized performance for demanding applications. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the LT1469-2 series below.
Part Number | Description | Package | Inventory | Add To Bom |
---|---|---|---|---|
LT1469IS8-2#TRPBF | 8-pin SOIC package for easy integration | SOIC-8 | 7,632 | |
LT1469CDF-2#PBF | LT1469CDF-2#PBF delivers precision amplification with stability | DFN-12 | 7,994 | |
LT1469AIDF-2#TRPBF | LT1469AIDF-2#TRPBF is engineered to deliver exceptional performance in audio and video applications | DFN-12 | 4,405 | |
LT1469ACDF-2#PBF | Op Amp Dual High Speed Amplifier ±18V 12-Pin DFN EP Tube | DFN-12 | 7,179 | |
LT1469ACDF-2#TRPBF | Op Amp Dual High Speed Amplifier ±18V 12-Pin DFN EP T/R | DFN-12 | 6,273 | |
LT1469CDF-2#TRPBF | Describing LT1469CDF-2#TRPBF, it's a duo of high-speed operational amplifiers | DFN-12 | 6,787 | |
LT1469AIDF-2#PBF | Op Amp Dual High Speed Amplifier ±18V 12-Pin DFN EP Tube | DFN-12 | 8,959 | |
LT1469IDF-2#PBF | Op Amp Dual High Speed Amplifier ±18V 12-Pin DFN EP Tube | DFN-12 | 5,993 | |
LT1469CS8-2#TRPBF | TRPBF design ensures reliable performance in demanding conditions | SOIC-8 | 4,721 | |
LT1469IDF-2#TRPBF | Op Amp LT1469IDF-2#TRPBF: Dual High-Speed Amplifier, ±18V, 12-Pin DFN EP T/R | DFN-12 | 5,232 | |
LT1469CS8-2#PBF | Precision Op Amp with ±18V supply voltage | SOIC-8 | 3,982 | |
LT1469IS8-2#PBF | Op Amp Dual High Speed Amplifier ±18V 8-Pin SOIC N Tube | SOIC-8 | 2,579 |
Key Featrues
200MHz Gain Bandwidth Product: With a high gain bandwidth product of 200MHz, the LT1469-2 delivers exceptional speed and precision, enabling it to handle high-frequency signals effectively. This makes it suitable for high-speed data acquisition systems and low-distortion active filters.
30V/µs Slew Rate: The high slew rate of 30V/µs ensures rapid signal transitions, minimizing distortion and improving the amplifier's ability to handle large signal swings. This feature is particularly beneficial in applications requiring fast signal processing, such as photodiode amplifiers.
Low Distortion: –96.5dB for 100kHz, 10VP-P: The LT1469-2 offers ultra-low distortion, making it ideal for high-fidelity signal processing. This is especially useful in precision instrumentation and audio applications where maintaining signal integrity is paramount.
Input Noise Voltage: 5nV/√Hz: The low input noise voltage of 5nV/√Hz ensures minimal noise interference, enhancing the accuracy of signal amplification in low-noise environments. This feature is critical for applications like photodiode amplifiers and precision data acquisition systems.
Applications
High-Speed ADC Buffer: The LT1469-2 is perfect for buffering signals in high-speed analog-to-digital converter (ADC) systems. With its 200MHz gain bandwidth product and 30V/µs slew rate, it ensures minimal signal degradation and fast settling times, making it ideal for data acquisition systems in medical imaging and telecommunications.
Low Distortion Active Filter: The LT1469-2 excels in designing active filters with low distortion and high precision. Its low noise and high gain bandwidth product make it suitable for audio signal processing, RF communication, and other applications requiring clean and accurate filtering of signals.
Photodiode Amplifier: The LT1469-2 is well-suited for amplifying signals from photodiodes in optical sensing applications. Its low input bias current and high accuracy ensure precise signal amplification, making it ideal for use in light measurement systems, spectroscopy, and fiber optic communication.
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