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LT6234CS8
+BOMPrecision Amplifiers LT6234 - 60MHz, Rail-to-Rail Output, 1.9nV/rtHz, 1.2mA Op Amp Family
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メーカーアナログデバイス
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メーカー品番 #LT6234CS8
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データシート LT6234CS8 DataSheet
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在庫状況18795
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
概要
Description
- Low noise: 1.1nV/√Hz at 1kHz
- High gain bandwidth: 210MHz
- Low input offset voltage: 75µV (max)
- Rail-to-rail output for wide dynamic range
- Low power: 3.5mA supply current per amplifier
- Single/dual supply operation: ±1.25V to ±6V or 2.5V to 12V
Packaged in an 8-lead SOIC (CS8), it’s ideal for high-speed signal conditioning, active filters, and data acquisition systems. Its precision and low distortion make it suitable for audio, medical, and instrumentation applications.
Key advantages include low noise, high speed, and stability at high gains, making it a versatile choice for precision analog designs.
Equivalent
- AD8628 (lower noise, similar performance)
- OPA2188 (precision, low-noise dual op-amp)
- LTC6228 (similar specs, higher bandwidth)
- ADA4898 (high-speed, low-noise alternative)
- MAX4238 (low-power, precision op-amp)
Check datasheets for exact compatibility in your application.
Pinout
Pin Functions:
1. OUT (Pin 1) – Output
2. -IN (Pin 2) – Inverting Input
3. +IN (Pin 3) – Non-Inverting Input
4. V- (Pin 4) – Negative Supply
5. NC (Pin 5) – No Connection
6. V+ (Pin 6) – Positive Supply
7. NC (Pin 7) – No Connection
8. SHDN (Pin 8) – Shutdown Control (active low)
Key Features:
- Low noise (1.1nV/√Hz)
- Rail-to-rail output
- 180MHz gain bandwidth
- Operates on 2.5V to 12.6V supply
Pins 5 & 7 are unused (NC). The SHDN pin allows power-saving mode.
Application
- Signal Conditioning: Amplification and filtering in sensor interfaces (e.g., medical, industrial).
- Data Acquisition Systems: Precision ADC/DAC buffering.
- Portable Devices: Low-power audio and signal processing.
- Communications: RF and baseband signal amplification.
- Test Equipment: High-accuracy measurement systems.
Its low noise (1.1nV/√Hz) and wide bandwidth (180MHz) make it ideal for high-performance analog circuits.