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BQ60120HEB25PNS Datasheet(PDF) 10 Page - SynQor Worldwide Headquarters

Part # BQ60120HEB25PNS
Description  Half-brick DC/DC Converter
Download  13 Pages
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Manufacturer  SYNQOR [SynQor Worldwide Headquarters]
Direct Link  http://www.synqor.com
Logo SYNQOR - SynQor Worldwide Headquarters

BQ60120HEB25PNS Datasheet(HTML) 10 Page - SynQor Worldwide Headquarters

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Product # BQ60120HEA30
Phone 1-888-567-9596
www.synqor.com
Doc.# 005-2BH612M Rev. B
09/02/05
Page 10
Input:
Input:
Output:
Output:
Current:
Current:
PPackage:
ackage:
35-75 V
35-75 V
12 V
12 V
30 A
30 A
Half-brick
Half-brick
T
Technical S
echnical Specification
pecification
BASIC OPERATION AND FEATURES
The
BusQor Exa series converter uses a two-stage power conver-
sion topology. The first stage keeps the output voltage constant
over variations in line, load, and temperature. The second stage
uses a transformer to provide the functions of input/output isola-
tion and voltage step-down to achieve the low output voltage
required.
Both the first stage and the second stage switch at a fixed fre-
quency for predictable EMI performance. Rectification of the
transformer’s output is accomplished with synchronous rectifiers.
These devices, which are MOSFETs with a very low on-state resis-
tance, dissipate far less energy than Schottky diodes. This is the
primary reason that the
BusQor converter has such high efficien-
cy.
Dissipation throughout the converter is so low that it does not
require a heatsink for operation. Since a heatsink is not required,
the
BusQor converter does not need a metal baseplate or potting
material to help conduct the dissipated energy to the heatsink.
The
BusQor converter can thus be built more simply and reliably
using high yield surface mount techniques on a PCB substrate.
The
BusQor series of half-brick, quarter-brick and eighth-brick
converters uses the industry standard footprint and pin-out con-
figuration.
CONTROL FEATURES
REMOTE ON/OFF (Pin 2): The ON/OFF input, Pin 2, permits
the user to control when the converter is
on or off. This input is
referenced to the return terminal of the input bus, Vin(-). There are
two versions of the converter that differ by the sense of the logic
used for the ON/OFF input.
In the positive logic version, the ON/OFF input is active high
(meaning that a high turns the converter
on). In the negative logic
version, the ON/OFF signal is active low (meaning that a low
turns the converter
on). Figure A details five possible circuits for
driving the ON/OFF pin.
REMOTE SENSE(+) (Pins 8 and 6)
: The SENSE(+) inputs cor-
rect for voltage drops along the conductors that connect the con-
verter’s output pins to the load.
Pin 8 should be connected to Vout(+) and Pin 6 should be con-
nected to Vout(-) at the point on the board where regulation is
desired. If these connections are not made, the converter will
deliver an output voltage that is slightly lower than its specified
value.
Note: the output over-voltage protection circuit senses the voltage
across the sense leads (pins 8 and 6) to determine when it should
trigger, not the voltage across the converter’s output pins (pins 9
and 5).
OUTPUT VOLTAGE TRIM (Pin 7): The TRIM input permits the
user to adjust the output voltage across the sense leads up or
down according to the trim range specifications. SynQor uses
industry standard trim equations.
To decrease the output voltage, the user should connect a resistor
between Pin 7 and Pin 6 (SENSE(-) input). For a desired decrease
of the nominal output voltage, the value of the resistor should be
Rtrim-down =
(
100%) - 2 kΩ
where
∆% =
Vnominal – Vdesired x 100%
Vnominal
To increase the output voltage, the user should connect a resistor
between Pin 7 and Pin 8 (SENSE(+) input). For a desired increase
of the nominal output voltage, the value of the resistor should be
Open Collector Enable Circuit
Figure A: Various circuits for driving the ON/OFF pin.
Remote Enable Circuit
Direct Logic Drive
Negative Logic
(Permanently Enabled)
Positive Logic
(Permanently Enabled)
ON/OFF
Vin(_
)
ON/OFF
ON/OFF
Vin(_
)
ON/OFF
5V
TTL/
CMOS
Vin(_
)
ON/OFF
Vin(_)
Vin(_
)
k
Rtrim-up =
(
Vnominal – 2) x VDES + VNOM
1.225
VDES - VNOM


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