HW010A0F1 Lineage Power, HW010A0F1 Datasheet - Page 14

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HW010A0F1

Manufacturer Part Number
HW010A0F1
Description
CONVERTER DC/DC 3.3V 33W OUT T/H
Manufacturer
Lineage Power
Series
HWr
Type
Isolated with Remote On/Offr
Datasheet

Specifications of HW010A0F1

Output
3.3V
Number Of Outputs
1
Power (watts)
33W
Mounting Type
Through Hole
Voltage - Input
36 ~ 75V
Package / Case
18-DIP Module (6 Leads)
1st Output
3.3 VDC @ 10A
Size / Dimension
1.86" L x 1.16" W x 0.34" H (47.2mm x 29.5mm x 8.6mm)
Power (watts) - Rated
33W
Operating Temperature
-40°C ~ 85°C
Efficiency
90%
Approvals
CE, CSA, UL, VDE
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
3rd Output
-
2nd Output
-
4th Output
-
Lead Free Status / Rohs Status
No RoHS Version Available

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HW010A0F1-SR
Manufacturer:
Danfuss
Quantity:
1 000
Lineage Power
Feature Descriptions
Output Voltage Set-Point Adjustment
(Trim)
Figure 41. Circuit Configuration to Decrease Output
With an external resistor Rtrim-up, connected between the
TRIM and VO(+) pins, the output voltage set point VO, set
increases (see Fiugre 42). The following equation deter-
mines the required external-resistor value to trim-up the out-
put voltage from VO, set to VO:
Rtrim-up is the external resistor in kW
D% is the % change in output voltage
A, B and C are defined in Table 2
Table 2
For example, to trim-up the output voltage of 1.5 V module
(HW012A0M) by 8% to 1.62 V, Rtrim-up is calcualted is as
follows:
R
R
R
Data Sheet
June 26, 2009
trim-up
trim-up
trim-up
V
ON/OFF
V
I
I
Output Voltage
(+)
(–)
D% = 8
A = 19.8
B = 1089
C = 104
(continued)
=
=
=
(V)
1.2
1.5
1.8
2.5
3.3
5.0
27.175kΩ
Voltage.
A 100
------------------------------------------ -
19.8 100
--------------------------------------------------- -
(
V
TRIM
V
O
O
(
(+)
(–)
+
Δ%
Δ%
+
8
8
) B
15.9
19.8
23.8
34.5
45.5
69.0
) 1089
A
(continued)
R
trim-down
C
1089
1089
1089
1690
1690
1690
104
B
HW006/010/012 Series Power Modules; dc-dc Converters
R
LOAD
36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A
62.0
73.1
73.1
73.1
104
104
C
Figure 42. Circuit Configuration to Increase
The amount of power delivered by the module is defined as
the voltage at the output terminals multiplied by the output
current. When using trim, the output voltage of the module
can be increased, which at the same output current would
increase the power output of the module. Care should be
taken to ensure that the maximum output power of the mod-
ule remains at or below the maximum rated power (maxi-
mum rated power = VO, set x IO, max).
Overcurrent Protection
To provide protection in an output overload fault condition,
the module is equipped with internal current-limiting circuitry,
and can endure current limiting for an unlimited duration. At
the instance of current-limit inception, the module enters a
"hiccup" mode of operation, whereby it shuts down and auto-
matically attempts to restart. While the fault condition exists,
the module will remain in this mode until the fault is cleared.
The unit operates normally once the output current is
reduced back into its specified range.
Output Overvoltage Protection
The output overvoltage protection clamp consists of control
circuitry, independent of the primary regulation loop, that
monitors the voltage on the output terminals. This control
loop has a higher voltage set point than the primary loop
(See the overvoltage clamp values in the Feature Specifica-
tions Table). In a fault condition, the overvoltage clamp
ensures that the output voltage does not exceed VO, ovsd,
max. This provides a redundant voltage-control that reduces
the risk of output overvoltage.
V
ON/OFF
V
I
I
(+)
(–)
Output Voltage.
V
TRIM
V
O
O
(+)
(–)
R
trim-up
R
LOAD
14

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