E48SR12006NNFA Delta Electronics, E48SR12006NNFA Datasheet - Page 8

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E48SR12006NNFA

Manufacturer Part Number
E48SR12006NNFA
Description
MODULE DC/DC 8TH BRICK 12V 6A
Manufacturer
Delta Electronics
Series
Delphi E48SRr
Type
Isolated with UVLOr
Datasheet

Specifications of E48SR12006NNFA

Operating Temperature
-40°C ~ 115°C
Power (watts) - Rated
72W
Efficiency
92.5%
Approvals
CE, cUL, TUV, UL
Output
12V
Number Of Outputs
1
Power (watts)
72W
Mounting Type
Through Hole
Voltage - Input
36 ~ 75V
Package / Case
8-DIP Module, 1/8 Brick
1st Output
12 VDC @ 6A
Size / Dimension
2.30" L x 0.90" W x 0.33" H (58.4mm x 22.8mm x 8.4mm)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
2nd Output
-
3rd Output
-
4th Output
-
Other names
941-1050
E48SR12007_05142009
FEATURES DESCRIPTIONS
Over-Current Protection
The modules include an internal output over-current
protection circuit, which will endure current limiting for
an unlimited duration during output overload. If the
output current exceeds the OCP set point, the modules
will automatically shut down (hiccup mode).
The modules will try to restart after shutdown. If the
overload condition still exists, the module will shut down
again. This restart trial will continue until the overload
condition is corrected.
Over-Voltage Protection
The modules include an internal output over-voltage
protection circuit, which monitors the voltage on the
output
over-voltage set point, the module will shut down
(Hiccup mode). The modules will try to restart after
shutdown. If the fault condition still exists, the module
will shut down again. This restart trial will continue until
the fault condition is corrected.
Over-Temperature Protection
The over-temperature protection consists of circuitry
that provides protection from thermal damage. If the
temperature exceeds the over-temperature threshold
the module will shut down.
The module will try to restart after shutdown. If the
over-temperature condition still exists during restart, the
module will shut down again. This restart trial will
continue until the temperature is within specification.
Remote On/Off
The remote on/off feature on the module can be either
negative or positive logic. Negative logic turns the
module on during a logic low and off during logic high.
Positive logic turns the modules on during logic high and
off during logic low.
Remote on/off can be controlled by an external switch
between the on/off terminal and the Vi(-) terminal. The
switch can be an open collector or open drain.
For negative logic if the remote on/off feature is not
used, please short the on/off pin to Vi(-). For positive
logic if the remote on/off feature is not used, please
leave the on/off pin floating.
terminals.
If
this
voltage
exceeds
the
Figure 16: Remote on/off implementation
Remote Sense
Remote sense compensates for voltage drops on the
output by sensing the actual output voltage at the point
of load. The voltage between the remote sense pins
and the output terminals must not exceed the output
voltage sense range given here:
[Vo(+) – Vo(–)] – [SENSE(+) – SENSE(–)] ≤ 10% × Vout
This limit includes any increase in voltage due to
remote sense compensation and output voltage set
point adjustment (trim).
Figure 17: Effective circuit configuration for remote sense
operation
If the remote sense feature is not used to regulate the
output at the point of load, please connect SENSE(+) to
Vo(+) and SENSE(–) to Vo(–) at the module.
The output voltage can be increased by both the
remote sense and the trim; however, the maximum
increase is the larger of either the remote sense or the
trim, not the sum of both.
When using remote sense and trim, the output voltage
of the module is usually increased, which increases the
power output of the module with the same output
current.
Care should be taken to ensure that the maximum
output power does not exceed the maximum rated
power.
Resistance
Contact
Vi(+)
Vi(-)
Sense(+)
Sense(-)
Vi(+)
ON/OFF
Vi(-)
Vo(+)
Vo(-)
Sense(+)
Sense(-)
Vo(+)
Vo(-)
Contact and Distribution
Losses
8

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