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dc2378abfa

DEMO MANUAL DC2378A-B

Information  furnished  by  Linear  Technology  Corporation  is  believed  to  be  accurate  and  reliable.  

However, no responsibility is assumed for its use. Linear Technology Corporation makes no representa-

tion that the interconnection of its circuits as described herein will not infringe on existing patent rights.

schematic Diagram

5

5

4

4

3

3

2

2

1

1

D

D

C

C

B

B

A

A

VIN+

VIN-

VIN

GND

4.5V-15V

VO1+

VO1-

VO2-

VO2+

ON

TRACK1

ON

EXT.

SOFT-START

TRACK1 SEL.

NOTE: UNLESS OTHERWISE SPECIFIED

1.  ALL RESISTORS AND CAPACITORS ARE 0603.

m

SW2

SW1

VOUT1

VIN

INTVCC

VO1+

VO1-

INTVCC

VO1-

VO1+

INTVCC

VOUT1

VO2+

VO2-

VIN

INTVCC

INTVCC

DIFFP

COMP1

VFB1

DIFFN

DIFFOUT

VOUT1S

VOUT1

TRACK1

RUN1

VO2+

VOUT2

VO2-

VOUT2S

RUN2

TRACK2

VFB2

COMP2

INTVCC

TEMP

REVISION HISTORY

DESCRIPTION

DATE

APPROVED

ECO

REV

PRODUCTION

1

4-26-16

__

JL

REVISION HISTORY

DESCRIPTION

DATE

APPROVED

ECO

REV

PRODUCTION

1

4-26-16

__

JL

REVISION HISTORY

DESCRIPTION

DATE

APPROVED

ECO

REV

PRODUCTION

1

4-26-16

__

JL

SIZE

DATE:

IC NO.

REV.

SHEET

OF

TITLE:

APPROVALS

PCB DES.

APP ENG.

TECHNOLOGY

Fax: (408)434-0507

Milpitas, CA 95035 Phone: (408)432-1900

1630 McCarthy Blvd.

LTC Confidential-For Customer Use Only

CUSTOMER NOTICE

LINEAR TECHNOLOGY HAS MADE A BEST EFFORT TO DESIGN A CIRCUIT THAT MEETS CUSTOMER-SUPPLIED SPECIFICATIONS; HOWEVER, IT REMAINS THE CUSTOMER'S RESPONSIBILITY TO VERIFY PROPER AND RELIABLE OPERATION IN THE ACTUAL APPLICATION.  COMPONENT SUBSTITUTION AND PRINTED CIRCUIT BOARD LAYOUT MAY SIGNIFICANTLY AFFECT CIRCUIT PERFORMANCE OR RELIABILITY.  CONTACT LINEAR TECHNOLOGY APPLICATIONS ENGINEERING FOR ASSISTANCE.

THIS CIRCUIT IS PROPRIETARY TO LINEAR TECHNOLOGY AND

SCHEMATIC

SUPPLIED FOR USE WITH LINEAR TECHNOLOGY PARTS.

SCALE = NONE

www.linear.com

1

Tuesday, April 26, 2016

12

STEP-DOWN      MODULE REGULATOR

LT

JL

N/A

LTM4650EY-1

DEMO CIRCUIT 2378A-B

HIGH EFFICIENCY, DUAL 25A, SINGLE 50A, 

SIZE

DATE:

IC NO.

REV.

SHEET

OF

TITLE:

APPROVALS

PCB DES.

APP ENG.

TECHNOLOGY

Fax: (408)434-0507

Milpitas, CA 95035 Phone: (408)432-1900

1630 McCarthy Blvd.

LTC Confidential-For Customer Use Only

CUSTOMER NOTICE

LINEAR TECHNOLOGY HAS MADE A BEST EFFORT TO DESIGN A CIRCUIT THAT MEETS CUSTOMER-SUPPLIED SPECIFICATIONS; HOWEVER, IT REMAINS THE CUSTOMER'S RESPONSIBILITY TO VERIFY PROPER AND RELIABLE OPERATION IN THE ACTUAL APPLICATION.  COMPONENT SUBSTITUTION AND PRINTED CIRCUIT BOARD LAYOUT MAY SIGNIFICANTLY AFFECT CIRCUIT PERFORMANCE OR RELIABILITY.  CONTACT LINEAR TECHNOLOGY APPLICATIONS ENGINEERING FOR ASSISTANCE.

THIS CIRCUIT IS PROPRIETARY TO LINEAR TECHNOLOGY AND

SCHEMATIC

SUPPLIED FOR USE WITH LINEAR TECHNOLOGY PARTS.

SCALE = NONE

www.linear.com

1

Tuesday, April 26, 2016

12

STEP-DOWN      MODULE REGULATOR

LT

JL

N/A

LTM4650EY-1

DEMO CIRCUIT 2378A-B

HIGH EFFICIENCY, DUAL 25A, SINGLE 50A, 

SIZE

DATE:

IC NO.

REV.

SHEET

OF

TITLE:

APPROVALS

PCB DES.

APP ENG.

TECHNOLOGY

Fax: (408)434-0507

Milpitas, CA 95035 Phone: (408)432-1900

1630 McCarthy Blvd.

LTC Confidential-For Customer Use Only

CUSTOMER NOTICE

LINEAR TECHNOLOGY HAS MADE A BEST EFFORT TO DESIGN A CIRCUIT THAT MEETS CUSTOMER-SUPPLIED SPECIFICATIONS; HOWEVER, IT REMAINS THE CUSTOMER'S RESPONSIBILITY TO VERIFY PROPER AND RELIABLE OPERATION IN THE ACTUAL APPLICATION.  COMPONENT SUBSTITUTION AND PRINTED CIRCUIT BOARD LAYOUT MAY SIGNIFICANTLY AFFECT CIRCUIT PERFORMANCE OR RELIABILITY.  CONTACT LINEAR TECHNOLOGY APPLICATIONS ENGINEERING FOR ASSISTANCE.

THIS CIRCUIT IS PROPRIETARY TO LINEAR TECHNOLOGY AND

SCHEMATIC

SUPPLIED FOR USE WITH LINEAR TECHNOLOGY PARTS.

SCALE = NONE

www.linear.com

1

Tuesday, April 26, 2016

12

STEP-DOWN      MODULE REGULATOR

LT

JL

N/A

LTM4650EY-1

DEMO CIRCUIT 2378A-B

HIGH EFFICIENCY, DUAL 25A, SINGLE 50A, 

COUT14 100uF 6.3V 1210

E4

R16 OPT

JP3

OFF

RUN2

1

3

2

E15

TEMP

COUT13 100uF 6.3V

E7

C10 220pF

R19 90.9K

C5 0.1uF

R3 10

J4

E1

CIN4 22uF

1210

25V

COUT2

100uF 6.3V

COUT6

100uF 6.3V 1210

+

COUT1

OPT 2.5V

C4 OPT

C3 OPT

R10 6.04K

JP1

EXT_CLK

PS

CCM

MODE

BM

1

3

2

4

6

5

7

8

J5

J6

1.5V / 25A

VOUT1

R30

121K

U1

LTM4650EY-1

VIN

J9

VIN

J10

VIN

J11

VIN

K2

VIN

K3

VIN

K4

VIN

K9

VIN

K10

VIN

K11

VIN

M2

VIN

M3

VIN

M4

VIN

M5

VIN

M6

VIN

M7

VIN

M8

VIN

M9

VIN

M10

VIN

M11

VIN

L2

VIN

L3

VIN

L4

VIN

L5

VIN

L6

VIN

L7

VIN

L8

VIN

L9

VIN

L10

VIN

L11

VIN

J2

VIN

J3

VIN

J4

RUN1

F5

TRACK1

E5

VOUT1S

C5

VOUT1

A1

VOUT1

A2

VOUT1

A3

VOUT1

A4

VOUT1

A5

VFB1

D5

SW1

G2

PGOOD1

G9

COMP1

E6

DIFFOUT

F8

DIF

FN

E9

DIF

FP

E8

FSE

T

C6

PHASMD

G4

GND

A6

GND

A7

GND

B6

GND

B7

GND

D1

GND

D2

GND

D3

GND

D4

GND

D9

GND

D10

GND

D11

GND

D12

GND

E1

GND

E2

GND

E3

GND

E4

GND

E10

GND

E11

GND

E12

GND

F1

GND

F2

GND

F3

GND

F10

GND

F11

GND

F12

GND

G1

GND

G10

GND

G12

GND

H1

GND

H2

GND

H3

GND

H4

GND

H5

GND

H6

GND

H7

GND

H9

GND

H10

GND

H11

GND

H12

GND

J1

GND

J5

GND

J8

GND

J12

GND

K1

GND

K5

GND

K6

GND

K7

GND

K8

GND

K12

GND

L1

GND

L12

GND

M1

GND

M12

SGND

C7

SGND

D6

SGND

F6

SGND

F7

SGND

G6

SGND

G7

VOUT1

B1

VOUT1

B2

VOUT1

B3

VOUT1

B4

VOUT1

B5

VOUT1

C1

VOUT1

C2

VOUT1

C3

VOUT1

C4

COMP2

E7

PGOOD2

G8

SW2

G11

VFB2

D7

TRACK2

D8

RUN2

F9

VOUT2S

C8

TEMP

J6

MODE-PLLIN

F4

CLK

OU

T

G5

INTVCC

H8

EXTVCC

J7

VOUT2

A8

VOUT2

A9

VOUT2

A10

VOUT2

A11

VOUT2

A12

VOUT2

B8

VOUT2

B9

VOUT2

B10

VOUT2

B11

VOUT2

B12

VOUT2

C9

VOUT2

C10

VOUT2

C11

VOUT2

C12

GND

G3

JP5

VOUT1

TRACK2 SEL.

1

3

2

4

5

6

C7

0.1uF

R46 21K

E12

PGOOD2

E13

EXTVCC

CIN3 22uF 25V 1210

R15

60.4K

R32

0

COUT16 100uF

6.3V

R1

10

C6 OPT

+

COUT17

OPT 7343

+

COUT18 470uF 2.5V 7343

+

COUT10 470uF 2.5V

7343

R42

OPT

E6

CIN2 22uF 25V 1210

R21

0

COUT4

100uF 6.3V 1210

E14

CLKOUT

R7 0

C1 4.7uF

R22

10

COUT15

100uF 6.3V 1210

C2 1uF

R47 20K

R20

OPT

E8

R2 OPT

R6 OPT

R41

OPT

R24

10K

C12 47pF

J9

GND

R27

10K

+

COUT7 OPT 7343

CIN5 22uF 25V 1210

JP2

OFF

RUN1

1

3

2

R5

100K

R8 OPT

C11

OPT

COUT8 100uF

6.3V

R18 60.4K

E10

TRACK2

+

COUT12

470uF 2.5V

7343

R9

60.4K

+

CIN1 330uF 25V

E9

C17 3.3nF

R12

60.4K

C8 OPT

E3

PGOOD1

C9

OPT

R26

10

+

COUT11 OPT 2.5V

JP4

SOFT-START

TRACK

1

3

2

E5

COUT5 100uF 6.3V 1210

R13

6.04K

C18 4.7nF

J7

GND

E16

CLKIN

R29

0

J8

1V / 25A

VOUT2

R25

40.2K

COUT3 100uF 6.3V 1210

+

COUT9

470uF 2.5V 7343

R4

OPT

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Summary of Contents for LTM4650-1

Page 1: ...arallel for a single 50A output solution with optional jumper resistors The board allows the user to program L LT LTC LTM Linear Technology the Linear logo and Burst Mode are registered trademarks of...

Page 2: ...boards to apply load transient on channel 1 or channel 2 correspondingly 6 Optional LTM4650 1 can be synchronized to an externalclocksignal PlacetheJP1jumperonEXT_CLK and apply a clock signal 0V 5V s...

Page 3: ...a DEMO MANUAL DC2378A B Quick Start Procedure Figure 3 Measuring Output Voltage Ripple Figure 2 Test Setup of DC2378A B VOUT GND COUT Downloaded from Arrow com Downloaded from Arrow com Downloaded fro...

Page 4: ...Figure 7 Measured Channel 2 12 5A to 18 75A Load Transient VIN 12V VOUT2 1V OUTPUT LOAD CURRENT A 0 EFFICIENCY 95 90 80 85 75 70 15 dc2378aa F04 25 20 10 5 12VIN 1 5VO 5VIN 1 5VO OUTPUT LOAD CURRENT...

Page 5: ...UT at 25A and 1VOUT at 25A Ambient Temperature 23 C 200 LFM Airflow and No Heat Sink Figure 9 Measured Output Voltage Ripple at 12V Input 1V 25A with Standard Demo Circuit Default Setup dc2378aa F08 1...

Page 6: ...FKEA 17 2 R10 R13 RES 6 04k 1 10W 1 0603 VISHAY CRCW06036K04FKEA 18 1 R19 RES 90 9k 1 10W 1 0603 VISHAY CRCW060390K9FKEA 19 3 R24 R27 R36 RES 10k 1 10W 1 0603 YAGEO RC0603FR 0710KL 20 1 R25 RES 40 2k...

Page 7: ...7 2 J4 J5 CONN JACK BANANA NON INSULATED 0 218 KEYSTONE 575 4 8 4 J6 J7 J8 J9 STUD TESTPIN PEM KFH 032 10 9 8 J6 J7 J8 J9 2 NUT BRASS 10 32 ANY 10 32 10 4 J6 J7 J8 J9 RING LUG 10 KEYSTONE 8205 10 11 4...

Page 8: ...HAS MADE A BEST EFFORT TO DESIGN A CIRCUIT THAT MEETS CUSTOMER SUPPLIED SPECIFICATIONS HOWEVER IT REMAINS THE CUSTOMER S RESPONSIBILITY TO VERIFY PROPER AND RELIABLE OPERATION IN THE ACTUAL APPLICATI...

Page 9: ...SUBSTITUTION AND PRINTED CIRCUIT BOARD LAYOUT MAY SIGNIFICANTLY AFFECT CIRCUIT PERFORMANCE OR RELIABILITY CONTACT LINEAR TECHNOLOGY APPLICATIONS ENGINEERING FOR ASSISTANCE THIS CIRCUIT IS PROPRIETARY...

Page 10: ...ITHER PARTY SHALL BE LIABLE TO THE OTHER FOR ANY INDIRECT SPECIAL INCIDENTAL OR CONSEQUENTIAL DAMAGES The user assumes all responsibility and liability for proper and safe handling of the goods Furthe...

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