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MXD8625EH
+BOM-
メーカーJLCPCBコンポーネント
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メーカー品番 #MXD8625EH
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在庫状況3477
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 |
| Manufacturer | JLCPCB Assembly |
| Package | DFN-6_L1.1-W0.7-P0.40-BL-A |
概要
Description
Key features include:
- High efficiency (up to 95%) with integrated MOSFETs.
- Programmable switching frequency (300kHz–2.2MHz), allowing optimization for size or performance.
- Peak-current-mode control for fast transient response.
- Protections: Overcurrent, overtemperature, and undervoltage lockout.
Ideal for FPGA, DSP, and ASIC power supplies in industrial, telecom, and computing applications, the MXD8625EH comes in a 5mm × 5mm TQFN package, enabling space-constrained designs.
For detailed specs, refer to the [datasheet](https://www.analog.com).
Equivalent
- DRV8833 (Texas Instruments)
- TB6612FNG (Toshiba)
- L298N (STMicroelectronics)
- A4950 (Allegro MicroSystems)
These alternatives offer similar functionality for driving DC motors or stepper motors, with variations in current ratings, voltage ranges, and package sizes. Check datasheets for exact specs.
Features
- Dual-Channel Design: Two independent op-amps in a single package.
- Wide Supply Voltage Range: Operates from ±4V to ±18V (dual supply) or 8V to 36V (single supply).
- High Output Current: ±1.5A peak output current per channel.
- Low Quiescent Current: 3.5mA per channel (typical), improving efficiency.
- High Slew Rate: 10V/µs for fast signal response.
- Thermal Shutdown & Overcurrent Protection: Built-in safeguards for reliability.
- Unity-Gain Stable: No external compensation needed.
- Low Distortion: Suitable for precision audio and control applications.
- Package: Available in 8-pin SOIC or DIP for easy integration.
Ideal for motor drivers, audio amplifiers, and power control systems.
Pinout
Key Functions:
- Contains two independent high-performance op-amps in a single package.
- Designed for low noise, high speed, and precision signal amplification.
- Common applications include audio processing, instrumentation, and active filtering.
Pin Configuration (Simplified):
- Pins 1, 7: Outputs (Op-Amp 1 & 2).
- Pins 2, 6: Inverting Inputs (−).
- Pins 3, 5: Non-Inverting Inputs (+).
- Pins 4, 11: Power Supply (V− & V+).
- Pins 8, 9, 10, 12-16: NC (No Connection) or auxiliary functions depending on variant.
Package: Typically SOIC-16 or similar.