LM65680
- Functional Safety-Capable
- Versatile synchronous buck converter family
- Wide input voltage range of 3.5V to 65V
- 4A, 6A, and 8A output current options
- Adjustable output voltage from 0.8V to 60V, or fixed output options of 3.3V and 5V
- 150°C maximum junction temperature
- 36ns tON(min) for high step-down conversion
- Mitigated interference and noise technology – architecture 1 (MINT 1)
- Facilitates CISPR 11 or 32 Class B compliance
- Enhanced HotRod™ QFN (eQFN) package with symmetrical pinout design and minimal LLOOP
- Spread Spectrum (DRSS) and switching slew-rate control reduce peak emissions
- Switching frequency from 300kHz to 2.2MHz
- High efficiency across the full load current range
- 95% at 48VIN, 12VOUT, 8A, 400kHz
- Multiphase stackable for higher output current
- Dual-input VCC subregulator with BIAS option
- VIN sleep quiescent current as low as 1.8µA
- Improved reliability with optimized pinout design and clearance for short-circuit-to-adjacent-pin test
- VIN to PGND pin clearance of 1.1mm
- Create a custom design using the LM656x0 with the WEBENCH® Power Designer
The LM656x0 is a synchronous buck DC/DC converter offered from a family of devices with mitigated interference and noise technology using architecture 1 features (MINT 1) that enable low EMI, high power density, and excellent conversion efficiency. Integrated power MOSFETs with low RDS(on) enable up to 8A of output current across a wide VIN range of 3.5V to 65V.
Phase stackable with synchronized interleaving, the peak current-mode control architecture of the LM656x0 supports accurate current sharing with paralleled phases for higher output currents. AUTO mode enables frequency foldback during light-load operation, giving high light-load efficiency and a no-load input current as low as 2.2µA, which extends operating run-time in battery-powered systems.
A high-side switch minimum on-time of 36ns facilitates large step-down ratios, enabling the direct conversion from 24V or 48V inputs to low-voltage rails for reduced system cost and complexity. The package has several NC pins between critical power pins, which improve the Failure Modes and Effects Analysis (FMEA) result.
The LM656x0 includes several features to simplify compliance with CISPR 11 and CISPR 32 emissions requirements. First, a symmetrical pinout provides excellent input capacitor placement and enables an ultra-low effective value for the power-loop parasitic inductance, which reduces switching losses and improves EMI performance at high input voltage and high switching frequency. A pin-selectable switch-node slew-rate control feature further reduces emissions at high frequencies. To lower input capacitor ripple current and EMI filter size, interleaved operation using a SYNCOUT signal with 180° phase shift works well for cascaded, multichannel or multiphase designs. Resistor-adjustable switching frequency as high as 2.2MHz can be synchronized to an external clock source to eliminate beat frequencies in noise-sensitive applications. Finally, the LM656x0 has dual-random spread spectrum (DRSS), a unique EMI-reduction feature that combines low-frequency triangular and high-frequency random modulations to mitigate disturbances across lower and higher frequency bands, respectively.
Additional features of the LM656x0 include 150°C maximum junction temperature operation, open-drain power-good (PG) indicator for fault reporting and output voltage monitoring, precision enable input for input UVLO protection, monotonic start-up into prebiased loads, dual-input VCC bias subregulator powered from VIN or BIAS, hiccup-mode overload protection, and thermal shutdown protection with automatic recovery.
The LM656x0 comes in a 4.5mm × 4.5mm, thermally enhanced, 26-pin eQFN package with additional pin clearance for increased reliability. Also included are wettable-flank pins to facilitate optical inspection during manufacturing. Leveraging a flip-chip routable leadframe (FCRLF) packaging technique, the LM656x0 with useable current, lifetime reliability, and cost advantages targets applications requiring high power density. The wide input voltage range, low quiescent current consumption, high-temperature operation, cycle-by-cycle current limit, low EMI signature, and small design size provide an excellent point-of-load regulator design for applications requiring enhanced robustness and durability.
技術資料
| 上位の文書 | タイプ | タイトル | フォーマットオプション | 最新の英語版をダウンロード | 日付 | |
|---|---|---|---|---|---|---|
| * | データシート | LM656x0 65V, 8A/6A/4A, Synchronous Buck DC/DC Converter Family With Mitigated Interference and Noise Technology (MINT) データシート (Rev. A) | PDF | HTML | 2026年 5月 20日 | ||
| 機能安全情報 | LM65640, LM65660, and LM65680 Functional Safety FIT Rate, FMD and Pin FMA (Rev. A) | PDF | HTML | 2025年 12月 5日 | |||
| 証明書 | LM65680-Q1EVM EU Declaration of Conformity (DoC) | 2024年 9月 3日 |
設計と開発
その他のアイテムや必要なリソースを参照するには、以下のタイトルをクリックして詳細ページをご覧ください。
LM65680-Q1EVM — LM65680-Q1 評価基板
| パッケージ | ピン数 | CAD シンボル、フットプリント、および 3D モデル |
|---|---|---|
| WQFN-FCRLF (RZY) | 26 | Ultra Librarian |
購入と品質
- RoHS
- REACH
- デバイスのマーキング
- リード端子の仕上げ / ボールの原材料
- MSL 定格 / ピーク リフロー
- MTBF/FIT 推定値
- 使用材料
- 認定試験結果
- 継続的な信頼性モニタ試験結果
- ファブ拠点
- アセンブリ拠点
推奨製品には、この TI 製品に関連するパラメータ、評価基板、またはリファレンス デザインが存在する可能性があります。