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LT8610ABIMSE-5#TRPBF

Description
IC REG BUCK 5V 3.5A SYNC 16MSOP
Categorysemiconductor    Power management   
File Size197KB,6 Pages
ManufacturerLinear ( ADI )
Websitehttp://www.analog.com/cn/index.html
Environmental Compliance
Download Datasheet Parametric View All

LT8610ABIMSE-5#TRPBF Overview

IC REG BUCK 5V 3.5A SYNC 16MSOP

LT8610ABIMSE-5#TRPBF Parametric

Parameter NameAttribute value
Functionstep down
Output configurationjust
Topologystep down
Output typefixed
Number of outputs1
Voltage - Input (minimum)3.4V
Voltage - input (maximum)42V
Voltage - Output (minimum/fixed)5V
Voltage - Output (maximum)-
Current - Output3.5A
Frequency - Switch200kHz ~ 2.2MHz
Synchronous rectifieryes
Operating temperature-40°C ~ 125°C (TJ)
Installation typesurface mount
Package/casing16-TFSOP (0.118", 3.00mm wide) exposed pad
Supplier device packaging16-MSOP-EP
DEMO MANUAL DC2012A
LT8610AB
42V, 3.5A Micropower Synchronous
Step-Down Regulator
Description
Demonstration circuit 2012A is a 42V, 3.5A micro-
power synchronous step-down regulator featuring the
LT
®
8610AB.
The LT8610AB is a compact, high efficiency,
high speed synchronous monolithic step-down switching
regulator that consumes only 2.5µA of quiescent current
when output is regulated at 5V. The efficiency of the circuit
is greater than 90% at light load up to 1.5A. This is a 10%
improvement over competing parts. Top and bottom power
switches, compensation components and other necessary
circuits are inside of the LT8610AB to minimize external
components and simplify design.
The SYNC pin on the demo board is grounded by default
for low ripple burst mode operation. To synchronous to an
external clock, move JP1 to SYNC and apply the external
clock to the SYNC turret. Once JP1 is on SYNC position,
a DC voltage of higher than 2V or INTV
CC
can be applied
to the SYNC turret for pulse-skipping operation. Figure 1
shows the efficiency of the circuit at 12V input.
Figure 2 shows the thermal performance of the circuit.
When running at input voltage greater than 30V, 3.5A
output current and 2MHz switching frequency, the tem-
perature rise will be significant. Either reducing the input
voltage, the output current or the switching frequency will
bring the temperature down to acceptable level without
external cooling.
The demo board has an EMI filter installed. The board
and the IC are designed to minimize conducted and radi-
ated EMI. The conducted EMI performance of the board
is shown on Figure 3. The limit in Figure 3 is EN55022
class B, average. It shows the circuit passes the test with
a wide margin.
The LT8610AB 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 DC2012A.
Design files for this circuit board are available at
http://www.linear.com/demo/DC2012A
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
SYMBOL
V
IN
*
V
OUT
I
OUT
f
SW
EFE
PARAMETER
Input Supply Range
Output Voltage
Maximum Output Current
Switching Frequency
Efficiency at DC
Specifications are at T
A
= 25°C
CONDITIONS
MIN
5.5
4.8
3.5
1.85
I
OUT
= 1A
2
91
2.15
5
TYP
MAX
42
5.2
UNITS
V
V
A
MHz
%
* Refer to Figure 2 to determine the maximum input voltage. If IC temperature exceeds target, reduce input voltage, output current or switching
frequency.
dc2012af
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