TIDA-010054

This reference design provides an overview on the implementation of a single-phase dual active bridge (DAB) DC/DC converter. DAB topology offers advantages like soft-switching commutations, a decreased number of devices and high efficiency. The design is beneficial where power density, cost, weight (...)
- TI 器件
- TL431
- SN74LVC2G34
- TPS22944
- OPA320
- CSD17313Q2
- + More
- SN6501
- LMV762
- CSD18534Q5A
- TLV713P
- LMT87-Q1
- LMT87
- REF2033
- TPS82130
- TPS763
- ISO7721
- SN6505B
- AMC1306M05
- AMC1311
- TMP235
- TPS7B69
- TMS320F280049C
- TVS1400
- AMC1302
- UCC21530
- Less
TIDA-010054

This reference design provides an overview on the implementation of a single-phase dual active bridge (DAB) DC/DC converter. DAB topology offers advantages like soft-switching commutations, a decreased number of devices and high efficiency. The design is beneficial where power density, cost, weight (...)
- TI 器件
- TL431
- SN74LVC2G34
- TPS22944
- OPA320
- CSD17313Q2
- + More
- SN6501
- LMV762
- CSD18534Q5A
- TLV713P
- LMT87-Q1
- LMT87
- REF2033
- TPS82130
- TPS763
- ISO7721
- SN6505B
- AMC1306M05
- AMC1311
- TMP235
- TPS7B69
- TMS320F280049C
- TVS1400
- AMC1302
- UCC21530
- Less
适用于通信处理器电源的四相、160A 同步降压转换器参考设计

This reference design uses four TPS546D24 converters with integrated MOSFETs to support a full load of 160A at a 0.9V output. The system operates at a switching frequency of 650 kHz and has a PMBus interface that can be used to configure key converter parameters, including internal compensation. The (...)
- TI 器件
- CSD16408Q5
- TPS546D24
- TPS82130
TIDA-010122

This reference design provides the solution for synchronization design challenges associated with emerging 5G adapted applications like massive multiple input multiple output (mMIMO), phase array RADAR and communication payload. The typical RF front end contains antenna, low noise amplifier (LNA (...)
- TI 器件
- CSD15571Q2
- TPS7A8300
- LMH5401
- TPS25926
- TLV702
- + More
- LMH6401
- TPS82130
- TPS7A84
- LMK61E2
- ADC12DJ3200
- LMX2594
- SN74LVC1G08
- SN74LVC1G125
- SN74LVC2G53
- SN74AVC4T774
- OPA376
- TCA9534A
- DS90LT012AQ-Q1
- DS90LV028AQ-Q1
- LM95233
- LMC6762
- TPS7A33
- LMK00304
- LMK04828
- Less
适用于 12 位数字转换器的可扩展 20.8GSPS 参考设计

This reference design describes a 20.8 GSPS sampling system using RF sampling analog-to-digital converters (ADCs) in time interleaved configuration. Time interleaving method is a proven and traditional way of increasing sample rate, however, matching individual ADCs offset, gain and sampling time (...)
- TI 器件
- SN74LVC1G08
- ADC12DJ5200RF
- SN74LVC2G53
- SN74AVC4T774
- OPA376
- + More
- TCA9534A
- DS90LT012AQ-Q1
- DS90LV028AQ-Q1
- LM95233
- LMC6762
- TPS7A33
- LMK00304
- LMK04828
- CSD15571Q2
- TPS7A8300
- LMH5401
- TPS25926
- TLV702
- LMH6401
- TPS82130
- TPS7A84
- LMK61E2
- LMX2594
- SN74LVC1G125
- Less
适用于高速示波器和宽带数字转换器的 12.8-GSPS 模拟前端参考设计

此参考设计提供了一个用于实现 12.8GSPS 采样率的交错射频采样模数转换器 (ADC) 的实用示例。这可通过对两个射频采样 ADC 进行时序交错来实现。交错需要在 ADC 之间进行相移,此参考设计通过 ADC12DJ3200 的无噪声孔径延迟调节(tAD 调节)功能来实现相移。此功能还可用于最大限度地减少交错 ADC 常见的失配问题:最大程度地提升 SNR、ENOB 和 SFDR 性能。此参考设计还采用了支持 JESD204B 的低相位噪声时钟树,该时钟树通过 LMX2594 宽带 PLL、LMK04828 合成器以及抖动清除器来实现。
- TI 器件
- LMX2594
- ADC12DJ5200RF
- LMK61E2
- TPS7A84
- TPS82130
- + More
- LMH6401
- TLV702
- TPS25926
- LMH5401
- TPS7A8300
- CSD15571Q2
- LMK04828
- LMK00304
- TPS7A33
- LMC6762
- LM95233
- DS90LV028AQ-Q1
- DS90LT012AQ-Q1
- TCA9534A
- OPA376
- SN74AVC4T774
- SN74LVC2G53
- SN74LVC1G125
- SN74LVC1G08
- ADC12DJ3200
- Less
适用于保护继电器处理器模块的高效电源架构参考设计

This reference design showcases various power architectures for generating multiple voltage rails for an application processor module, requiring >1A load current and high efficiency . The required power supply is generated using 5-, 12- or 24-V DC input from the backplane. Power supplies are (...)
- TI 器件
- TPS3705
- TLV62569
- TVS3300
- INA381
- TPS62821
- + More
- TPS62823
- TPS62822
- TMP235
- TPS767D3
- TPS2595
- TPSM82480
- LM73606
- TVS1400
- TPSM84824
- TPSM84424
- TPSM84624
- TPS7A80
- TPS65216
- SN74LVC1G125
- SN74LVC2G04
- SN74LVC1G14
- SN74LVC1G17
- SN74LVC2G34
- TMP75
- TPS3808
- TPS75003
- TPS51200
- TPS62060
- TPS62085
- TPS650250
- TPS54325
- TPS54226
- TPS54225
- TPS54326
- TPS62061
- TPS386596
- TPS62065
- TPS62067
- TPS54425
- INA250
- TPS54426
- TPS62080
- TPS51206
- TPS62063
- TPS7A8101
- TPS54427
- LM235
- LM3880
- LM3881
- LM5050-2
- LP2995
- LP2997
- LP2998
- CSD18504Q5A
- LMZ10500
- LMZ10501
- TPS62087
- TPS62086
- TLV62565
- TPS27081A
- CSD17571Q2
- LMZ20502
- LMZ20501
- LMZ30602
- LMZ30604
- LMZ30606
- TMP75B
- TMP75C
- LP2996A
- TPS82085
- LMZ36002
- TPS82130
- TPS82084
- TLV62568
- LM73605
- LMZ34202
- LM53625-Q1
- LM53635-Q1
- LMZM33602
- LMZM33603
- TLV62084A
- LMZM23601
- Less
适用于 DSO、雷达和 5G 无线测试系统的灵活 3.2GSPS 多通道 AFE 参考设计

此高速多通道数据采集参考设计可实现最佳的系统性能。系统设计人员需要考虑关键的设计参数,如高速多通道时钟生成功能的时钟抖动和偏斜(这会影响整个系统的 SNR、SFDR、通道间偏斜和确定性延迟)。此参考设计演示了一种多通道 AFE 和时钟解决方案,采用具有 JESD204B 的高速数据转换器、高速放大器、高性能时钟和低噪声电源解决方案,可实现最佳的系统性能
- TI 器件
- SN74LVC1G08
- SN74LVC1G125
- ADC08DJ3200
- LMX2594
- ADC12DJ3200
- + More
- ADC12DJ2700
- LMK61E2
- TPS7A84
- TPS82130
- LMH6401
- TLV702
- TPS25926
- LMH5401
- TPS7A8300
- CSD15571Q2
- LMK04828
- LMK00304
- TPS7A33
- LMC6762
- LM95233
- DS90LV028AQ-Q1
- DS90LT012AQ-Q1
- TCA9534A
- OPA376
- SN74AVC4T774
- SN74LVC2G53
- Less
适用于小型低噪声系统的 3V 至 11.5V 输入电压、-5V 输出电压、1.5A 反相电源模块参考设计

这种简单的小型低噪声反向电源模块设计(电压逆变器)在 3V 至 11.5V 的输入电压以及高达 1.5A 的电流下明确支持 –5V 输出电压。该设计采用 TI 具有反向降压/升压拓扑的 TPS82130 MicroSiP™ 电源模块降压转换器,可实现 (...)
支持温度高达 125°C 的 3V 至 15.2V 输入电压、2A、–1.8V 反相电源模块参考设计

TIDA-01405 设计演示了反相电源模块(电压反相器),用于在 3V 至 15.2V 的输入电压以及高达 2A 的电流下生成 –1.8V 的电压轨。许多通信设备系统和工业设备(如测试和测量)需要此类负电压。使用 TPS82130 电源模块可以实现非常简单的负电压反相器(反相降压/升压)设计,以便在 2A 的高电流下创建 1.8V 的负输出电压。