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LMH6612MA
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HerstellerTexas Instruments
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Herstellerteil #LMH6612MA
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Auf Lager3212
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Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| EU Ro HS | Not Compliant |
| ECCN (US) | EAR99 |
| Part Status | Obsolete |
| HTS | COMPONENTS |
| Automotive | No |
| PPAP | No |
| Mounting Type | Surface Mount |
| Package Height | 1.5(Max) |
| Package Width | 3.98(Max) |
| Package Length | 5(Max) |
| PCB changed | 8 |
| Package / Case | SO |
| Supplier Device Package | SOIC |
| Pin Count | 8 |
| Lead Shape | Gull-wing |
| Packaging | Rail |
| Type | General Purpose Amplifier |
| Manufacturer Type | General Purpose Amplifier |
| Number of Channels per Chip | 2 |
| Rail to Rail | Rail to Rail Output |
| Process Technology | BiCOM |
| Maximum Input Offset Voltage (m V) | 0.75@5V |
| Minimum Single Supply Voltage (V) | 2.7 |
| Maximum Single Supply Voltage (V) | 11 |
| Maximum Input Offset Current (u A) | 0.5@5V |
| Maximum Quiescent Current (m A) | 7.4@5V |
| Typical Output Current (m A) | 100@5V |
| Power Supply Type | Single|Dual |
| Typical Slew Rate (V / us) | 460@5V |
| Typical Input Noise Voltage Density (n V / rt Hz) | 10@5V |
| Typical Voltage Gain (d B) | 103 |
| Minimum PSRR (d B) | 81 |
| Minimum CMRR (d B) | 81 |
| Minimum CMRR Range (d B) | 80 to 85 |
| Typical Gain Bandwidth Product (M Hz) | 130 |
| Typical Settling Time (ns) | 100 |
| Shut Down Support | No |
| Minimum Operating Temperature (°C) | -40 |
| Maximum Operating Temperature (°C) | 125 |
| Supplier Temperature Grade | Extended Industrial |
| Minimum Dual Supply Voltage (V) | ±1.35 |
| Maximum Dual Supply Voltage (V) | ±5.5 |
| Typical Noninverting Input Current Noise Density (p A / rt Hz) | 2@5V |
| Typical Dual Supply Voltage (V) | ±3|±5 |
| Maximum Input Bias Current (u A) | 10.1@5V |
Übersicht
Description
One of the key features of the LMH6612MA is its low quiescent current, which makes it an excellent choice for battery-powered or portable devices where power efficiency is crucial. Additionally, it has a rail-to-rail output, allowing for maximum signal swing and flexibility in single-supply applications.
The LMH6612MA is commonly used in applications such as active filters, data acquisition systems, and analog-to-digital converter (ADC) buffers. Its package options, including the SOIC-8, make it easy to integrate into various circuit designs. Overall, the LMH6612MA offers a balance of speed, precision, and power efficiency.
Equivalent
Features
1. Wide Bandwidth: It offers a bandwidth of 130 MHz, making it suitable for high-frequency applications.
2. Low Power Consumption: Operates efficiently with a low supply current of only 1.15 mA.
3. Slew Rate: Provides a fast slew rate of 215 V/µs, ensuring quick response to changes in input signals.
4. Rail-to-Rail Output: Supports rail-to-rail output swing for maximizing dynamic range in low supply voltage applications.
5. Low Input Offset Voltage: Features a low input offset voltage of 0.1 mV, enhancing precision.
6. Supply Voltage Range: Operates over a wide supply voltage range from 2.7V to 11V.
7. Unity Gain Stable: The amplifier is stable at unity gain, adding versatility in usage.
8. Small Package: Available in an 8-Pin SOIC package, making it easy to integrate into compact designs.
These features make the LMH6612MA ideal for applications in instrumentation, communication systems, and other high-speed electronics requiring precision and efficiency.
Pinout
1. Pin 1 (NC): No Connection
2. Pin 2 (IN- or V-): Inverting Input
3. Pin 3 (IN+ or V+): Non-Inverting Input
4. Pin 4 (V- or GND): Negative Power Supply or Ground
5. Pin 5 (NC): No Connection
6. Pin 6 (OUT): Output
7. Pin 7 (V+ or VCC): Positive Power Supply
8. Pin 8 (NC): No Connection
The LMH6612 is designed for applications requiring high speed and low power, featuring low distortion and low noise. It is commonly used in video, communication, and other high-frequency applications.
Manufacturer
Application
1. High-Speed Signal Processing: Suitable for applications requiring fast signal amplification with minimal distortion.
2. Data Acquisition Systems: Used in systems needing precise and rapid data capture.
3. Test and Measurement Equipment: Ideal for devices needing accurate signal amplification and processing.
4. Communications Equipment: Useful in devices requiring high-frequency signal handling.
5. Medical Instrumentation: Employed in medical devices for precise signal interpretation.
6. Consumer Electronics: Integrated into gadgets where space and power efficiency are crucial.
Its compact size and low power consumption make it suitable for portable and battery-operated devices.