FLTR75V05 Lineage Power, FLTR75V05 Datasheet

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FLTR75V05

Manufacturer Part Number
FLTR75V05
Description
DC FILTER MODULE 75V 5A T/H
Manufacturer
Lineage Power
Datasheet

Specifications of FLTR75V05

Filter Type
Power Line
Current
5A
Mounting Type
Through Hole
Termination Style
PCB Pins
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Inductance
-
Data Sheet
October 2009
Applications
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Description
The FLTR75V05 Filter Module is designed to reduce the conducted common-mode and differential-mode noise
on input or output lines of high-frequency switching power supplies. The module has a maximum current rating
of 5 A. It provides high insertion loss throughout the frequency range regulated by the U.S. Federal Communi-
cations Commission (FCC) and the International Special Committee on Radio Interference (CISPR) for con-
ducted emissions.
The module is 25.4 mm long, 25.4 mm wide, and 10.2 mm high (1.0 in. x 1.0 in. x 0.4 in.) and mounts on a PC
board in a natural convection or forced-air environment.
Common-mode and differential-mode filtering of
power supply dc input and output lines
Distributed power architectures
Telecom
Datacom
RoHS Compliant
75 Vdc Input Maximum, 5 A Maximum
Features
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n
n
n
n
n
Options
n
Compatible with RoHS EU Directive 200295/EC
Compatible in Pb- free or SnPb reflow environment
Small size: 25.4 mm x 25.4 mm x 10.2 mm
Optimized for use with high-frequency switching
dc-to-dc power modules
Printed-circuit board mountable
Operating case temperature range:
–40 °C to +100 °C
Choice of pin lengths
FLTR75V05 Filter Module
(1.0 in. x 1.0 in. x 0.4 in.)

Related parts for FLTR75V05

FLTR75V05 Summary of contents

Page 1

... Datacom n Description The FLTR75V05 Filter Module is designed to reduce the conducted common-mode and differential-mode noise on input or output lines of high-frequency switching power supplies. The module has a maximum current rating provides high insertion loss throughout the frequency range regulated by the U.S. Federal Communi- cations Commission (FCC) and the International Special Committee on Radio Interference (CISPR) for con- ducted emissions ...

Page 2

... To meet these requirements, external filtering of the power module is often required. When used in conjunction with the recommended external components and layout, the Lineage Power filter module will significantly reduce the conducted differential and common-mode noise returned to the power source. CISPR and FCC class B require- ments can be met by using the filter as described in the following sections ...

Page 3

... Maximum Average Current ( °C, 2.03 m/s (400 lfm) air) A Maximum Average Current ( °C, natural convection) A Common-mode Insertion Loss (50 Ω circuit, 500 kHz) Differential-mode Insertion Loss (50 Ω circuit, 500 kHz) Lineage Power 75 Vdc Input Maximum Maximum Symbol Min Typ R — — I — — max I — ...

Page 4

... Figure 2. Typical Common-Mode Insertion Loss Ω Circuit -10 -20 -30 -40 -50 -60 -70 10E 1-0352 Figure 3. Typical Differential-Mode Insertion Loss Ω Circuit Internal Schematics IN 10E+6 100E+6 1-0320 Figure 4. Internal Schematic October 2009 100E+3 1E+6 10E+6 100E+6 FREQUENCY (Hz) 1-0319 OUT GND 8-1324 (F).b Lineage Power ...

Page 5

... The shield plane should be connected to the CASE pin. Lineage Power 75 Vdc Input Maximum Maximum The GND pin of the filter module is attached to Y caps within the module. This pin should be tied to a quiet chassis ground point away from the power modules ...

Page 6

... Figure 6. Recommended Layout When Used as the Input Filter to a High-Frequency dc-to-dc Converter (–) I (–) C5 (+) V (+) I FILTER MODULE V (+) I C5 CASE V (–) I October 2009 SHIELD PLANE C3 CASE V (–) O POWER MODULE V (+) O POWER MODULE C1 C4 SHIELD PLANE C2 C3 (+) and V (–) planes, as should the V (+) and 8-1325 (F).b V (+) O V (–) O 1-0118 (–) O Lineage Power ...

Page 7

... Note: C1 through C4 and C6 through C9 can be 0.01 µF to 0.1 µF. Select the voltage rating to meet input-to-output isolation requirements. C5 should be the recommended value indicated in the power module data sheet. Figure 7. Recommended Schematic of Filter Module with Two Power Modules Lineage Power 75 Vdc Input Maximum Maximum SHIELD PLANE ...

Page 8

... Vdc Input Maximum Maximum Application (continued) Figures 9, 10 & 11 show some experimental results for various Lineage Power modules obtained by using the fil- ter module, together with the recommended external components shown in Figures 5 and 6. Measured noise is highly dependent on layout, grounding, cable orientation, and load characteristics and will, vary from application to application ...

Page 9

... Figure 9. HW050FG Conducted Noise with Filter Compared to Class B Limits 0.15 0. FREQUENCY (MHz) Figure 10.JAW075A1 Conducted Noise with Filter Compared to Class B Limits 0.15 0. FREQUENCY (MHz) Figure 11.QHW100F1 Conducted Noise with Filter Compared to Class B Limits Lineage Power 75 Vdc Input Maximum Maximum 30 1-0321 30 1-0322 30 1-0323 9 ...

Page 10

... Side View Bottom View 10 25.40 (1.000) 25.40 (1.000) 9.78 (0.385) 0.38 (0.015) 8.3 (min) (0.325 min) 1.02 (0.040) DIA SOLDER-PLATED BRASS, 5 PLACES 2.8 19.81 (0.780) (0.11) V (+) V (+) I O 9.91 (0.390) GND 19.81 (0.780) V (-) October 2009 2.03 (0.08 STANDOFFS, 4 PLACES (-) 1-0119 Lineage Power ...

Page 11

... October 2009 Recommended Hole Pattern Component-side footprint. Dimensions are in millimeters and (inches). Tolerances: x.xx ± 0.50 mm (0.02 in.), x.xxx ± 0.250 mm (0.010 in.). Note: Do not route copper paths beneath power module standoffs. Lineage Power 75 Vdc Input Maximum Maximum 2.8 19.81 (0.11) (0.780) V (-) ...

Page 12

... C,while the Pb-free solder pot is 270 all RoHS-compliant through-hole products can be pro- cessed with paste-through-hole Pb or Pb-free reflow process.If additional information is needed,please con- sult with your Lineage Power representative for more details C.For max.Not October 2009 ...

Page 13

... FLTR75V05 108900739 FLTR75V05Z CC109102654 FLTR75V058Z CC109310818 FLTR75V605Z CC109101433 FLTR75V055Z CC109128237 Optional features may be ordered using the suffixes shown in the Table below. Option Codes Option Short pins: 2.79 mm (+0.38 mm/ –0.25 mm) (0.110 in. (+0.015 in./ –0.010 in.)) Short pins: 3.68 mm (+0.38 mm/ –0.25 mm) (0.145 in. (+0.015 in./ –0.010 in.)) Short pins: 4.57 mm (+0.38 mm/ – ...

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