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dc2023afa

DEMO MANUAL DC2023A

Description

16-Channel Power Supply 

System Featuring the LTM2987 

Power System Manager

The DC2023A is a demonstration system for the 

LTM

®

2987

 

16-channel  I

2

C/SMBus/PMBus  power  system  manager 

with EEPROM. The LTM2987 monitors and controls 16 

power supply rails. The DC2023A demonstrates the abil-

ity of the LTM2987 to sequence, trim, margin, supervise, 

monitor, and log faults for 16 power supply rails. Each 

power supply channel’s output voltage is monitored and 

the LTM2987 monitors its own internal die temperature. 
The DC2023A is a single circuit board that contains sixteen 

independent power supply rails. The board employs sixteen 

LTC

®

3405A 300mA  switch-mode  regulators,  which  are 

configured to be controlled by the LTM2987. The LTM2987 

is available in a µModule

®

 (micromodule) package and 

contains  two  LTC2977  devices.  This  board  provides  a 

sophisticated 16-channel digitally programmable power 

supply system. The rail voltages are programmable within 

the trim range shown in the Performance Summary.
This  demonstration  system  is  supported  by  the  

LTpowerPlay™ graphical user interface (GUI) that enables 

complete control of all the features of the LTM2987. To-

gether, the LTpowerPlay software and DC2023A hardware 

system create a powerful development environment for 

designing and testing LTM2987 configuration settings. 

These  settings  can  be  stored  in  the  device’s  internal 

EEPROM or in a file. This file can later be used to order 

pre-programmed  devices  or  to  program  devices  in  a 

production  environment.  The  software  displays  all  of 

the configuration settings and real time measurements 

from the LTM2987. Telemetry allows easy access and 

decoding of the fault log created by the LTM2987. The 

board comes pre-programmed with the EEPROM values 

appropriate for the sixteen power supplies used on the 

DC2023A. Just plug and play!
Multiple DC2023A board sets can be cascaded together 

to form a high channel count power supply (see Multi-

Board Arrays). This cascaded configuration demonstrates 

features of the LTM2987 which enable timing and fault 

information to be shared across multiple ICs. The user can 

L

, LT, LTC, LTM, Linear Technology, the Linear logo and µModule are registered trademarks 

and PowerPlay is a trademark of Linear Technology Corporation. All other trademarks are the 

property of their respective owners.

configure up to eight DC2023A boards, thereby control-

ling up to 128 separate power supply rails. Larger arrays 

of LTM2987s are supported through programmable I

2

base address or bus segmentation.
The DC2023A demo board can be powered by an external 

power supply, such as a +12VDC supply. Communication 

with the software is provided through the DC1613 USB-to-

I

2

C/SMBus/PMBus Controller. The following is a checklist 

of items which can be obtained from the LTC website or 

LTC Field Sales.

• 

USB-to-I

2

C/SMBus/PMBus Controller (DC1613)

• 

LTpowerPlay Software

DC2023A Features
• 

Sequence, Trim, Margin, and Supervise Sixteen Power 

Supplies

• 

Manage  Faults,  Monitor  Telemetry,  and  Create  Fault 

Logs

• 

PMBus Compliant Command Set

• 

Supported by LTpowerPlay GUI

• 

Margin or Trim Supplies to 0.25% Accuracy

• 

Fast OV/UV Supervisors Per Channel

• 

Supports Multi-Channel Fault Management 

• 

Automatic Fault Logging to Internal EEPROM

• 

Operates Autonomously without Additional Software

• 

Sixteen OV/UV V

OUT

 and Two V

IN

 Supervisors

• 

Telemetry Reads Back V

IN

, V

OUT

, and Temperature

•  16-

Channel Time-Based Output Sequencer

• 

I

2

C/SMBus Serial Interface

• 

Integrated Decoupling Capacitors and Pull-Up Resistors

• 

Powered from 6V to 14VDC

• 

Available in 144-Lead 15mm 

×

 15mm BGA

Design  files  for  this  circuit  board  are  available  at  

http://www.linear.com/demo

Summary of Contents for LTM2987

Page 1: ...comes pre programmed with the EEPROM values appropriate for the sixteen power supplies used on the DC2023A Just plug and play Multiple DC2023A board sets can be cascaded together to form a high channe...

Page 2: ...ughout the document Channel The collection of functions that monitor su pervise and trim a given power supply rail EEPROM Non volatile memory NVM storage used to retain data after power is removed Mar...

Page 3: ...y provides unprecedented diagnostic and debug features It becomes a valuable diagnostic tool during board bring up to program or tweak the power management scheme in a system or to diagnose power issu...

Page 4: ...all power good LEDs and 5V LED illuminated green The USB to I2C SMBus PMBus Controller supplies 100mA of current which should be sufficient for a single demo board 5 Ifmultipleboardsarebeingpowered c...

Page 5: ...enable OFF to disable all channels For multiple board arrays the CONTROL switch is wired to a signal that is common across all boards All CONTROL switches must be set to the RUN position to enable all...

Page 6: ...dule has a multiplexed ADC that is used to provide voltage current and temperature readback values The telemetry plot in the GUI is similar to amulti channeloscilloscopewhichiscapableofdisplaying any...

Page 7: ...ult To clear a fault the user may click the CF icon in the GUI orsimplypushtheRESETpushbuttononthedemoboard In both cases the red on the CF icon and alert LED on the board will be cleared You will not...

Page 8: ...entially based on each of the device s TOFF_DELAY values Figure 6 shows an oscilloscope screen capture of Common Demo Board Operations Figure 6 Sequencing Output Channels with DC2023A Using TON_DELAY...

Page 9: ...he LTpowerPlay GUI Why Am I Off Tool Use the Why am I Off tool in the LTpowerPlay GUI to di agnose the reason a power supply channel is turned off The tool can be located in the top right corner of th...

Page 10: ...iate LTM2987 chip We will proceed to work with the fault log Working with the Fault Log Onceafaulthasoccurred theFaultLog FL iconwillshow a red sign on it indicating that the GUI has detected a fault...

Page 11: ...a power system manager to other power system managers via FAULT pins Use the Fault Sharing Setup Tool to configure the fault sharing in the GUI Select the LTM2987 labeled U0 in the system tree Go to U...

Page 12: ...the switches to open close Click OK to close the dialog box Click the PC RAM icon to write the changes to the DC2023A We can now create a fault on U0 0 CH0 by shorting the output to ground You may us...

Page 13: ...s show up in the GUI click the hourglass icon to enumerate the I2C bus and find the addresses of the parts Go to step 2 to ensurethateachboardhasauniqueDIPswitchsetting 5 Since the individual CONTROL...

Page 14: ...e slave address of an I O expander which provides for the addition of multiple boards to a setup The I O expander has a base address of 0x20 The DIP switch settings set the offset The three switches t...

Page 15: ...t Switch Configuration Default Position Shown in Grey in the Figure Above REFERENCE DESIGNATOR SIGNAL NAME USAGE DEFAULT JP3 SCLK A0 A1 2 DIP Switch Used to Set the Address Offset of LTM2987 OPEN S1 C...

Page 16: ...16 dc2023afa DEMO MANUAL DC2023A DC2023 Details Bottom...

Page 17: ...6V 10 X5R 0603 TDK C1608X5R1C475K 13 1 C65 CAP TANT 47 F 16V 20 7343 AVX TPSD476M016R0150 14 1 C68 CAP CER 4 7pF 50V NP0 0603 MURATA GRM1885C1H4R7CZ01D 15 1 D1 DIODE SCHOTTKY 30V CC SOT 323 3 STMICROE...

Page 18: ...0603 SMD YAGEO RC0603FR 0734K8L 45 1 R54 RES 33 2K OHM 1 10W 1 0603 SMD YAGEO RC0603FR 0733K2L 46 1 R55 RES 32 4k 1 10W 1 0603 SMD YAGEO RC0603FR 0732K4L 47 16 R66 R67 R68 R69 R70 R71 R72 R73 R127 R12...

Page 19: ...Board Only 73 1 J1 CONN PWR JACK 2 1X5 5MM HIGH CUR CUI INC PJ 002AH 74 1 J2 CONN HEADER 12POS 2MM STR DL PCB FCI 98414 G06 12ULF 75 1 JP1 CONN RECEPT 2MM DUAL R A 14POS SULLINS CONNECTOR SOLUTIONS NP...

Page 20: ...70 10u 10V GND VDD GREEN DMG1012UW 7 22u 10V 220p GND GND GND 464k OPT 0 GND GND VDD 3 01k 100k 158k GND 1 2 3 4 6 5 U1 L1 R126 R134 C9 P1 3 2 1 Q17 C85 C1 R117 C77 R118 R17 R1 R9 1 2 3 4 6 5 U2 L2 R1...

Page 21: ...0 10u 10V GND VDD GREEN DMG1012UW 7 22u 10V 220p GND GND GND 340k OPT 0 GND GND VDD 3 01k 100k 80 6k GND 1 2 3 4 6 5 U5 L5 R122 R130 C13 P5 3 2 1 Q13 C81 C5 R109 C73 R110 R21 R5 R13 1 2 3 4 6 5 U6 L6...

Page 22: ...10u 10V GND VDD GREEN DMG1012UW 7 22u 10V 220p GND GND GND 226k OPT 0 GND GND VDD 3 01k 100k 42 2k GND 1 2 3 4 6 5 U13 L10 R81 R73 C27 P9 3 2 1 Q8 C54 C38 R97 C62 R96 R39 R58 R48 1 2 3 4 6 5 U14 L11...

Page 23: ...0u 10V GND VDD GREEN DMG1012UW 7 22u 10V 220p GND GND GND 182k OPT 0 GND GND VDD 3 01k 100k 32 4k GND 1 2 3 4 6 5 U17 L14 R77 R69 C31 P13 3 2 1 Q4 C50 C42 R89 C58 R88 R43 R62 R52 1 2 3 4 6 5 U18 L15 R...

Page 24: ..._CH11 RUN_CH12 RUN_CH13 RUN_CH14 RUN_CH15 RUN_CH9 DACP_CH15 SHARE_CLK SHARE_CLK SDA SDA SCL SCL CTRL CTRL FAULT VOUT_CH10 1 PRODUCTION MIKE P 01 29 14 1 ALL RESISTORS ARE 1 0603 2 ALL CAPACITORS ARE 1...

Page 25: ...6 17 18 19 20 PAD U21 C37 R37 R56 C46 1 2 3 4 5 6 7 8 U12 C26 R38 C36 TP11 TP12 1 2 3 4 5 6 7 8 9 10 11 12 13 14 JP2 1 2 3 4 5 6 7 8 9 10 11 12 13 14 JP1 R135 TP1 R100 R99 TP2 TP22 TP21 TP19 TP14 TP13...

Page 26: ...NCLUDING ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE EXCEPT TO THE EXTENT OF THIS INDEMNITY NEITHER PARTY SHALL BE LIABLE TO THE OTHER FOR ANY INDIRECT SPECIAL INCIDENTAL OR...

Page 27: ...IC23158YML EV MIC23451 AAAYFL EV MIC5281YMME EV 124352 HMC860LP3E ADM00513 ADM8611 EVALZ ADM8612 EVALZ ADM8613 EVALZ ADP1046ADC1 EVALZ ADP1055 EVALZ ADP122 3 3 EVALZ ADP130 0 8 EVALZ ADP130 1 2 EVALZ...

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