EN2360QI
6A Voltage Mode Synchronous Buck PWM
DC-DC Converter with Integrated Inductor
Description
The EN2360QI is a Power System on a Chip
(PowerSoC) DC-DC converter. It integrates MOSFET
switches, small-signal control circuits, compensation
and an integrated inductor in an advanced 8x11x3mm
QFN module. It offers high efficiency, excellent line
and load regulation over temperature. The EN2360QI
operates over a wide input voltage range and is
specifically designed to meet the precise voltage and
fast transient requirements of high-performance
products. The EN2360QI features frequency
synchronization to an external clock, power OK
output voltage monitor, programmable soft-start along
with thermal and over current protection. The device’s
advanced circuit design, ultra high switching
frequency and proprietary integrated inductor
technology delivers high-quality, ultra compact, non-
isolated DC-DC conversion.
The Enpirion solution significantly helps in system
design and productivity by offering greatly simplified
board
design,
layout
and
manufacturing
requirements. In addition, overall system level
reliability is improved given the small number of
components required with the Enpirion solution.
All Enpirion products are RoHS compliant and lead-
free manufacturing environment compatible.
Features
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Integrated Inductor, MOSFETs, Controller
Wide Input Voltage Range: 4.5V – 14V
Total Solution Size Estimate: 185mm
2
Frequency Synchronization (External Clock)
2% V
OUT
Accuracy (Over Line/Load/Temperature)
Output Enable Pin and Power OK signal
Programmable Soft-Start Time
Can be Pin Compatible with the EN2340QI (4A)
Under Voltage Lockout Protection (UVLO)
Programmable Over Current Protection
Thermal Shutdown and Short Circuit Protection
RoHS Compliant, MSL Level 3, 260
o
C Reflow
Applications
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Space Constrained Applications
Distributed Power Architectures
Output Voltage Ripple Sensitive Applications
Beat Frequency Sensitive Applications
Servers, Embedded Computing Systems,
LAN/SAN Adapter Cards, RAID Storage Systems,
Industrial Automation, Test and Measurement,
and Telecommunications
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Efficiency vs. Output Current
100
90
80
70
60
50
40
30
20
10
0
0 0.5
1 1.5 2 2.5 3 3.5 4 4.5
OUTPUT CURRENT (A)
5 5.5
6
VOUT = 3.3V
VOUT = 1.8V
VOUT = 1.2V
EFFICIENCY (%)
CONDITIONS
V
IN
= 12.0V
AVIN = 3.3V
Dual Supply
Figure 1.
Simplified Applications Circuit
(Footprint Optimized)
Figure 2.
Highest Efficiency in Smallest Solution Size
www.enpirion.com
07514
September 17, 2012
Rev:
A