电子说
在电子设计领域,电源管理是一个至关重要的环节。今天我们要深入探讨的是德州仪器(Texas Instruments)的LM26484电源管理单元评估板,它为工程师们提供了一个便捷的平台,用于测试和应用这款多功能的电源管理芯片。
文件下载:LM26484SQEV.pdf
LM26484评估板是一个集成了两个降压DC - DC转换器和一个LDO控制器的工作演示平台。该评估板预先配置了输出电压,其中VOUT Buck1设置为1.8V,VOUT Buck2设置为1.0V,VOUT LDO设置为1.0V。不过,由于LM26484具有外部可配置性和多种电压选项,我们可以通过改变反馈网络来获得不同的调节器输出电压。
LM26484是一款多功能、可配置的电源管理单元,它集成了两个高效的2.0A降压DC/DC转换器、一个LDO控制器、一个POR(电源开启复位)电路和热过载保护电路。所有调节器的输出电压都是外部可调的,这为设计提供了很大的灵活性。
该芯片采用5 × 4 × 0.8 mm的24引脚WQFN封装,这种封装形式在保证性能的同时,也节省了电路板空间。
其引脚功能丰富,涵盖了电源输入、使能控制、反馈等多个方面。例如,VIN1和VIN2为DC电源输入引脚,分别为Buck1和Buck2提供电源;ENSW1和ENSW2为开关使能引脚,逻辑高电平使能对应的开关;FB1和FB2为反馈引脚,用于调节输出电压。
| Pin # | Name | I/O | Type (1) | Description |
|---|---|---|---|---|
| 1 | VIN1 | I | PWR | Power in DC source Buck1 PMOS |
| 2 | ENSW1 | I | D | Enable for Buck1 switcher, a logic HIGH enables Buck1 |
| 3 | FB1 | I | A | Buck1 feedback terminal |
| 4 | AVIN | I | PWR | Analog power for internal circuits |
| 5 | FB2 | I | A | Buck2 feedback terminal |
| 6 | ENSW2 | I | D | Enable for Buck2 switcher, a logic HIGH enables Buck2 |
| 7 | VIN2 | I | PWR | Power in DC source Buck2 PMOS |
| 8 | VIN2 | I | PWR | Power in DC source Buck2 PMOS |
| 9 | SW2 | O | A | Buck2 switcher output |
| 10 | SW2 | O | A | Buck2 switcher output |
| 11 | PGND_SW2 | G | G | Buck2 NMOS Power Ground |
| 12 | PGND_SW2 | G | G | Buck2 NMOS Power Ground |
| 13 | ENLDO | I | D | Enable for LDO, a logic HIGH enables LDO |
| 14 | LDOGATE | O | A | LDO Controller output to NMOS power transistor Gate |
| 15 | LDOFB | I | A | LDO Controller input to feedback terminal |
| 16 | AGND | G | G | Analog GND |
| 17 | GND | G | G | Ground |
| 18 | nPOR | O | D | nPOR Active low Reset output. nPOR remains LOW while the input supply is below threshold, and goes HIGH after the threshold is reached and timed delay |
| 19 | AVDD | I | PWR | Analog Power Pin |
| 20 | PGND_SW1 | G | G | Buck1 NMOS Power Ground |
| 21 | PGND_SW1 | G | G | Buck1 NMOS Power Ground |
| 22 | SW1 | O | A | Buck1 switcher output |
| 23 | SW1 | O | A | Buck1 switcher output |
| 24 | VIN1 | I | PWR | Power in DC source Buck1 PMOS |
注:(1) A: Analog Pin, D: Digital Pin, G: Ground Pin, PWR: Power Pin
从一个共同的输入电压,用户可以使用两个DC - DC降压转换器。通过选择合适的反馈网络组件,我们可以配置转换器的输出电压。文档中提供了详细的Buck1/2配置和组件选择指南,根据目标输出电压,选择对应的理想电阻值和常见电阻值,并将其焊接到电路板上。
| Target V OUT (V) | Ideal Resistor Values (K Ω ) | Common R Values (K Ω ) | Actual V OUT with Com/R (V) | Actual V OUT Delta from Target (V) | Feedback Capacitors | |||
|---|---|---|---|---|---|---|---|---|
| R1/R3 | R2/R4 | R1/R3 | R2/R4 | C3/C6 (pF) | C4/C8 (pF) | |||
| 0.8 | 120 | 200 | 121 | 200 | 0.803 | 0.002 | 15 | none |
| 0.9 | 160 | 200 | 162 | 200 | 0.905 | 0.005 | 15 | none |
| 1 | 200 | 200 | 200 | 200 | 1 | 0 | 15 | none |
| 1.1 | 240 | 200 | 240 | 200 | 1.1 | 0 | 15 | none |
| 1.2 | 280 | 200 | 280 | 200 | 1.2 | 0 | 12 | none |
| 1.3 | 320 | 200 | 324 | 200 | 1.31 | 0.01 | 12 | none |
| 1.4 | 360 | 200 | 357 | 200 | 1.393 | -0.008 | 10 | none |
| 1.5 | 400 | 200 | 402 | 200 | 1.505 | 0.005 | 10 | none |
| 1.6 | 440 | 200 | 442 | 200 | 1.605 | 0.005 | 8.2 | none |
| 1.7 | 427 | 178 | 432 | 178 | 1.713 | 0.013 | 8.2 | none |
| 1.8 | 463 | 178 | 464 | 178 | 1.803 | 0.003 | 8.2 | none |
| 1.9 | 498 | 178 | 499 | 178 | 1.902 | 0.002 | 8.2 | none |
| 2 | 450 | 150 | 453 | 150 | 2.01 | 0.01 | 8.2 | none |
| 2.1 | 480 | 150 | 475 | 150 | 2.083 | -0.017 | 8.2 | none |
| 2.2 | 422 | 124 | 422 | 124 | 2.202 | 0.002 | 8.2 | none |
| 2.3 | 446 | 124 | 442 | 124 | 2.282 | -0.018 | 8.2 | none |
| 2.4 | 471 | 124 | 475 | 124 | 2.415 | 0.015 | 8.2 | none |
| 2.5 | 400 | 100 | 402 | 100 | 2.51 | 0.01 | 8.2 | none |
| 2.6 | 420 | 100 | 422 | 100 | 2.61 | 0.01 | 8.2 | none |
| 2.7 | 440 | 100 | 442 | 100 | 2.71 | 0.01 | 8.2 | 33 |
| 2.8 | 460 | 100 | 464 | 100 | 2.82 | 0.02 | 8.2 | 33 |
| 2.9 | 480 | 100 | 475 | 100 | 2.875 | -0.025 | 8.2 | 33 |
| 3 | 500 | 100 | 499 | 100 | 2.995 | -0.005 | 6.8 | 33 |
| 3.1 | 520 | 100 | 523 | 100 | 3.115 | 0.015 | 6.8 | 33 |
| 3.2 | 540 | 100 | 536 | 100 | 3.18 | -0.02 | 6.8 | 33 |
| 3.3 | 560 | 100 | 562 | 100 | 3.31 | 0.01 | 6.8 | 33 |
| 3.4 | 580 | 100 | 576 | 100 | 3.38 | -0.02 | 6.8 | 33 |
| 3.5 | 600 | 100 | 604 | 100 | 3.52 | 0.02 | 6.8 | 33 |
LDO控制器同样需要配置反馈网络才能正常工作。根据目标输出电压,从文档提供的LDO配置和组件选择指南中选择合适的电阻值,并焊接到电路板上。焊接完成后,务必清洁电路板,因为FB引脚是高阻抗节点,电路板上残留的助焊剂可能会导致输出电压出现误差。
| Target V OUT (V) | Ideal Resistor Values | Common R Values | Actual V OUT with Com R (V) | Feedback Capacitor C11 (pF) | ||
|---|---|---|---|---|---|---|
| R5 (K Ω ) | R6 (K Ω ) | R5 (K Ω ) | R6 (K Ω ) | |||
| 0.8 | 120 | 200 | 120 | 200 | 0.8 | 15 |
| 0.9 | 160 | 200 | 162 | 200 | 0.905 | 15 |
| 1 | 200 | 200 | 200 | 200 | 1 | 15 |
| 1.1 | 240 | 200 | 240 | 200 | 1.1 | 15 |
| 1.2 | 280 | 200 | 280 | 200 | 1.2 | 12 |
| 1.3 | 320 | 200 | 324 | 200 | 1.31 | 12 |
| 1.4 | 360 | 200 | 357 | 200 | 1.393 | 10 |
| 1.5 | 400 | 200 | 402 | 200 | 1.505 | 10 |
为了使评估板正常工作,需要正确设置一些跳线。例如,JP1 - JP4、JP6 - JP7和JP9必须连接,以确保电源和使能信号的正常传输;JP10 - JP12为可选跳线,可用于改变输出电压;JP14用于切换FET漏极电压。
| JP1 | Must be in place | Connects Vin1 to board power |
|---|---|---|
| JP2 | Must be in place | Connects Vin2 to board power |
| JP3 | Must be in place | Connects AVDD to board power |
| JP4 | Must be in place | Connects AVIN to board power |
| JP5 | Must be in place | This alternates between GND and board power to enable Buck2 |
| JP6 | Must be in place | This alternates between GND and board power to enable Buck1 |
| JP7 | Must be in place | This alternates between GND and board power to enable the LDO |
| JP9 | Must be in place | Connects GND to board GND |
| JP10 | Optional | Changes the output voltage of Buck2 |
| JP11 | Optional | Changes the output voltage of the LDO |
| JP12 | Optional | Changes the output voltage of Buck1 |
| JP14 | Must be in place | Alternates the FET Drain voltage between Buck 2 and board power |
在使用评估板为应用板供电时,正确的接地返回连接非常重要。将每个VOUT及其对应的接地连接到应用板的输入和接地,确保每个LM26484 Buck输出的接地都正确连接,以保证接地电流的正常流动,从而使输出电压尽可能干净。
文档中还提供了评估板的物料清单,包括芯片、电容、电感、电阻、跳线等组件的详细信息,为工程师们进行采购和组装提供了便利。
| Item | Designator | Vendor | Part Number | Qty. | Comp. Type | Value |
|---|---|---|---|---|---|---|
| 1 | Texas Instruments | LM26484 | 1 | LM26484 Eval Board PCB, Rev A | ||
| 2 | U1 | Texas Instruments | WQFN | 1 | ||
| 3 | C1, C1A, C2, C5, C5A, C7, C12, C17 | Taiyo Yuden | JMK316B7226ML - T | 8 | CAP CER 22 µF 6.3V X7R 1206 | 22 µF |
| 4 | C9, C10, C11, C14 | Murata | GRM21BR71A106KE51L | 4 | CAP CER 10 µF 10V X7R 0805 | 10 µF |
| 5 | C3 | Murata | ERB21B5C2E8R2CDX1L | 1 | CAP CER 8.2F 250V 0805 | 8.2 pF |
| 6 | C6,C15 | Murata | ERB21B5C2E150JDX1L | 2 | CAP CER 15F 250V 0805 | 15 pF |
| 7 | C4, C8 | NO LOAD | NO LOAD | 5 | NO LOAD | |
| 8 | C16 | Murata | GRM32ER61A476KE20L | 1 | CAP CER 47 µF 10V X5R 1210 | 47 µF |
| 9 | L2, L3 | Coilcraft | LPS4414 - 501MLB | 2 | LPS4414 Series Low Profile Shielded Power Inductors | 0.5 µH |
| 10 | Q1 | Vishay | SI1450DH | 1 | MOSFET N - CH 20V 1.6A SOT - 363 | 20V, 1.6A |
| 11 | R2 | Panasonic | ERJ - 3EKF1783V | 1 | RES 178 k Ω 1/10W 1% 0603 SMD | 178K |
| 12 | R1 | Panasonic | ERJ - 3EKF4643V | 1 | RES 464 k Ω 1/1 |
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