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Rev1.0
4/29/2005

IRDC3637EVAL

1

IR3637 EVALUATION BOARD USER GUIDE

DESCRIPTION

The IR3637 controller IC is designed to 
provide a low cost synchronous Buck 
regulator for on-board DC to DC 
applications in a small 8-pin SOIC. The 
output voltage can be precisely regulated 
using the internal 0.8V reference voltage 
for low voltage applications.
The IR3637 operates at a fixed internal 
400KHz switching frequency to reduce the 
component size.
The device features under-voltage lockout 
for both input supplies, an external 
programmable soft-start function as well as 
output under-voltage detection that latches 
off the device when an output short is 
detected.

INPUT / OUTPUT CONNECTIONS

The following is the input / output connections:

Inputs:

JP1: Input (+5V) and GND
JU1: V

c

Outputs:

JP2: V

out

(+1.8V) and GND

Other Connections:

J1: Scope connection for V

out

J2: Scope connection for Inductor Point

SPECIFICATION DATA

V

c

= 12V

V

cc

=V

in

=5V

V

out

=1.8V

Iout =7A
Output Ripple = 50mV
F

s

= 400KHz

The reference board is designed for 
1.8V output using +5V and +12V 
supplies. This will demonstrate the 
main features of IC. 
This user guide contains the schematic 
and bill of materials, the design 
guidelines are described in data sheet.

The connection points are shown in 
Figure1. Connect the power supply 
cables according to this figure, 
minimizing wire lengths to reduce 
losses in the wire. Test points J1 and 
J2 provide easy connection for 
oscilloscope voltage probe to monitor 
the inductor points and output voltage.

PACKAGE INFORMATION

Fb

Vcc

LDrv

Gnd

HDrv

Vc

Comp

SS/SD

4

3

2

1

5

6

7

8

Summary of Contents for IR3637

Page 1: ...TIONS The following is the input output connections Inputs JP1 Input 5V and GND JU1 Vc Outputs JP2 Vout 1 8V and GND Other Connections J1 Scope connection for Vout J2 Scope connection for Inductor Poi...

Page 2: ...Rev1 0 4 29 2005 IRDC3637EVAL 2 CONNECTION DIAGRAM Figure 1 Connection diagram of evaluation board for IR3637 5V Supply 12V Supply 7A Load...

Page 3: ...Ts All the decoupling capacitors and feedback components are located close to IC The feedback resistors are tied to the output voltage at the point of regulation The PCB is 4 layers board one layer is...

Page 4: ...f File C PCB2 PCB_last6 ddb Drawn By VO VIN C12 L1 C13 C9 C8 INPUT OUTPUT VIN GND JP1 JP2 D3 D1 BAT54SCT LDRV SS COMP F B N15 N40 HDRV VGH VGL J1 N25 VC JU1 IR3637 DUAL SO8 MOSFET VCC JE3637S V1R0 SS...

Page 5: ...1uF X7R 16V 2 ECJ 1VB1C104K Panasonic C1 10 11 Cap Ceramic 1uF X5R 6 3V 3 ECJ 1VB0J105K Panasonic C3 Cap Ceramic 22pF NPO 100V 1 ECJ 1VC2A220J Panasonic C4 Cap Ceramic 1800pF X7R 50V 1 ECJ 1VB1H182K...

Page 6: ...m Temp No Air Flow Unless otherwise specified 6 Figure 4 Start up waveforms Ch1 Vin Vcc Ch2 Vc Ch3 Vss Ch4 Vout Figure 5 Start up waveforms Ch1 Vin Vcc Ch2 Vc Ch3 Vss Ch4 Vout Figure 6 Gates waveforms...

Page 7: ...Room Temp No Air Flow Unless otherwise specified Figure 8 Shutdown by shorting the SS pin Ch1 Hdrv Ch2Ldrv Ch3 SS ILoad 5A Figure 9 Output Voltage Ripple Ch1 Vout Ch4 Inductor Current ILoad 5A Figure...

Page 8: ...z 0 10 20 30 40 50 60 70 80 90 100 0 1 2 3 4 5 6 7 8 9 Iout A Efficiency Figure 12 Efficiency using IRF8910 Dual MOSFET IR WORLD HEADQUARTERS 233 Kansas St El Segundo California 90245 USA Tel 310 252...

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