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DCON26_PAPER_Track10_HowZeroBiasDiscreteTLVRMaximizesRevenueonProductBoards_33_66.pdf

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1、 How Zero Bias Discrete TLVR Maximizes Revenue on Product Boards Ying Zhang,Bytedance,Ltd, Pengfei Cheng,Bytedance,Ltd, Gongshan Gu,Monolithic Power Systems, Ze Zhang,Monolithic Power Systems, Lijie Jiang,Monolithic Power Systems, Huaimin Li,Monolithic Power Systems, Wei Dai,Intel, Xiaoguo Liang,Int

2、el, Abstract Zero-Bias TLVR is a proposed modification of the standard TLVR topology designed to better utilize the TLVR magnetic structure.To achieve the higher efficiency,the selection of inductors and the PCB layout are two key points.First,this paper conducts a comparative analysis between discr

3、ete TL and group TL based on two major categories of copper loss and core loss,serving as the technical basis for inductor(component selection).Secondly,it provides systematic design guidelines for PCB layout to further minimize power loss in the printed circuit board,with a focus on optimizing elec

4、trical performance and thermal management.Additionally,during the design phase,simulations for IR drop,PDN(Power Distribution Network),and transient responses are conducted.Finally,PCB prototyping and physical testing are performed to verify the efficiency and dynamic performance of the proposed sol

5、ution.Notably,this solution represents the first power supply scheme utilizing ZB discrete TLVR as the product boards power source,paired with Intel DMR CPUs,and undergoes comprehensive VRTS(Voltage Regulator Thermal Solution)testing.Author(s)Biography Ying Zhang working as a SI/PI engineer in Byted

6、ance.Responsible for the self-developed server SI/PI architecture evaluation and cost optimization.Pengfei Cheng is a SI Engineer of Bytedance.He focuses on the high speed and power integrity in server over the last decade.Gongshan Gu is an application engineer in MPS(Monolithic Power Systems).He fo

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1. **ZB-TLVR拓扑优势**:通过消除DC偏置电流,允许使用更高电感值的TL,降低开关频率(如400kHz),提升效率。峰值效率比传统TLVR高0.73%,246A TDC时高0.31%。 2. **电感选择**:离散TL优于集成TL,因铜损(ACR更低)和热管理更优,适合高效率服务器设计。 3. **PCB布局优化**:对称布局确保电流均衡;Phase 1次级路径需多层铜(如14层)降低DCR,效率提升0.32%(峰值)和0.54%(TDC)。 4. **性能验证**:通过Intel服务器原型测试,动态响应满足VRTS规范(负载瞬态电压波动1.661V-1.798V),静态特性(负载线、纹波)与传统TLVR相当。
**ZB-TLVR优势?** **如何选电感?** **PCB布局要点?**
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