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dc1161bf

DEMO MANUAL DC1161B

 DESCRIPTION

LT3507 

Triple Monolithic Step-Down 

Regulator with LDO 

Demo circuit 1161B is a triple monolithic step-down 
regulator with LDO featuring LT

®

3507. The demo circuit 

is designed for 1.8V, 3.3V, 5.0V and 2.5V outputs from a 
7V to 36V input. The current capability of each channel 
is 2.4A, 1.3A, 1.4A and 0.2A respectively. Independent 
input voltage, feedback, soft-start and power good pins 
for each channel simplify complex power supply tracking/
sequencing requirements.

All three converters are either synchronized to a common 
external clock input or single-resistor programmable from 
250kHz to 2.5MHz using internal oscillator. At all frequen-
cies, a 180° phase shift between V

OUT1

 and the other two 

outputs is maintained, reducing input voltage ripple and 
component size. Programmable frequency allows for opti-
mization between efficiency and external component size.

L

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

Technology Corporation. All other trademarks are the property of their respective owners.

PERFORMANCE SUMMARY

Each output can be independently disabled using its own 
soft-start pin, or by using the SHDN pin the entire part 
can be placed in a low quiescent current shutdown mode.

The LT3507 data sheet gives a complete description of 
the part, operation and application information. The data 
sheet must be read in conjunction with this quick start 
guide for demo circuit 1161B.

Design files for this circuit board are available at 
http://www.linear.com/demo

(T

A

 = 25°C)

PARAMETER

CONDITION

VALUE

Minimum Input Voltage

7V

Maximum Input Voltage

36V

Output Voltage V

OUT1

 

V

IN

 = 7V ~ 36V

1.80V ±3%

Output Voltage V

OUT2

V

IN

 = 7V ~ 36V

3.33V ±3%

Output Voltage V

OUT3

V

IN

 = 7V ~ 36V

5.0V ±3%

Output Voltage V

OUT4

V

IN

 = 7V ~ 36V

2.52V ±3%

Switching Frequency

450kHz ±10%

Maximum Output Current I

OUT1

V

IN

 = 7V ~ 36V

2.4A

Maximum Output Current I

OUT2

V

IN

 = 7V ~ 36V

1.3A

Maximum Output Current I

OUT3

V

IN

 = 7V ~ 36V

1.4A

Maximum Output Current I

OUT4

V

IN

 = 7V ~ 36V

0.2A

Voltage Ripple V

OUT1

V

IN

 = 12V, I

OUT1

 = 2.4A

<20mV

Voltage Ripple V

OUT2

V

IN

 = 12V, I

OUT2

= 1.3A

<20mV

Voltage Ripple V

OUT3

V

IN

 = 12V, I

OUT3

= 1.4A

<20mV

Voltage Ripple V

OUT4

V

IN

 = 12V, I

OUT4

= 0.2A

<10mV

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Summary of Contents for LT3507

Page 1: ...tion All other trademarks are the property of their respective owners PERFORMANCE SUMMARY Each output can be independently disabled using its own soft start pin or by using the SHDN pin the entire part can be placed in a low quiescent current shutdown mode The LT3507 data sheet gives a complete description of the part operation and application information The data sheet must be read in conjunction...

Page 2: ... probe tip directly across the VIN or VOUT and GND terminals See Figure 2 for proper scope probe technique 1 With power off connect the input power supply to VIN and GND 2 Turn on the power at the input Note Makesurethattheinputvoltagedoesnotexceed36V 3 Check for the proper output voltages Note Ifthereisnooutput temporarilydisconnecttheload to make sure that the load is not set too high 4 Oncethep...

Page 3: ... an external signal generator Install EMI filters on the backside of the DC1161 however atracecutisrequiredfortheinsertionoftheoptioncircuit See Figure 3 for the cut line CUT HERE Figure 3 Cut Line for the EMI Filter Installation Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com ...

Page 4: ...040220K0FKEA 20 3 R8 R9 R23 RES CHIP 10k 1 16W 1 0402 YAGEO RC0402FR 0710KL 21 1 R10 RES CHIP 53 6k 1 16W 1 0402 VISHAY CRCW040253K6FKEA 22 1 R12 RES CHIP 10 2k 1 16W 1 0402 NIC NRC04F1022TRF 23 1 R13 RES CHIP 1 07k 1 16W 1 0402 YAGEO RC0402FR 071K07L 24 1 R14 RES CHIP 49 9k 1 16W 1 0402 VISHAY CRCW040249K9FKEA 25 1 R16 RES CHIP 499Ω 1 16W 1 0402 AAC CR05 4990FM 26 1 R17 RES CHIP 18 2k 1 16W 1 040...

Page 5: ...ponsibility 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 Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com ...

Page 6: ...CEPT TO THE EXTENT OF THIS INDEMNITY NEITHER 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 Further the user releases LTC from all claims arising from the handling or use of the goods Due to the open construction of the product it is the user s responsibility...

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