FLTR75V05Z

FLTR75V05Z Datasheet


FLTR75V05 Filter Module 75 Vdc Input Maximum, 5 A Maximum

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FLTR75V05Z FLTR75V05Z FLTR75V05Z (pdf)
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Data Sheet October 2009

FLTR75V05 Filter Module 75 Vdc Input Maximum, 5 A Maximum
n Common-mode and differential-mode filtering of power supply dc input and output lines
n Distributed power architectures n Telecom n Datacom
n Compatible with RoHS EU Directive 200295/EC n Compatible in Pb- free or SnPb reflow environment n Small size mm x mm x mm
in. x in. x in. n Optimized for use with high-frequency switching
dc-to-dc power modules n Printed-circuit board mountable n Operating case temperature range:
°C to +100 °C

Options
n Choice of pin lengths

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 Communications Commission FCC and the International Special Committee on Radio Interference CISPR for conducted emissions.

The module is mm long, mm wide, and mm high in. x in. x in. and mounts on a PC board in a natural convection or forced-air environment.

FLTR75V05 Filter Module 75 Vdc Input Maximum, 5 A Maximum

Data Sheet October 2009

Introduction

High-density power modules are usually designed to operate at a high switching frequency to reduce the size of the internal filter components. The small EMI filters internal to the modules are often inadequate to meet stringent international EMI requirements. Many high-density electronic packaging techniques can increase the noise conducted onto the modules’ input and output lines. For example, the close proximity of switching components to the input pins increases internal noise coupling and planar transformers, designed to handle high-power levels in lowprofile packages, have high interwinding capacitance that can increase common-mode current levels. Also, metal substrates used to facilitate heat transfer from the power train components to an external heat sink add to common-mode noise because of the large capacitance between switching components and the metal substrate.

Many international agencies specify conducted and radiated emissions limits for electronic products. Included among these are CISPR, FCC, VCCI, and the new CE specifications. Most agency-conducted noise limits apply only to noise currents induced onto the ac power lines in finished products. European Telecommunication Standard Instructions ETSI are an exception, applying CE requirements to dc supplies with cables over three meters long. Although not required to do so by agency standards, some system designers apply the conducted emissions requirements to subassemblies within the product to reduce internal interference between subsystems and to reduce the difficulty of meeting overall system requirements.

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 requirements can be met by using the filter as described in the following sections.

Absolute Maximum Ratings

Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are absolute stress ratings only. Functional operation of the device is not implied at these or any other conditions in excess of those given in the operations sections of the data sheet. Exposure to absolute maximum ratings for extended periods can adversely affect device reliability.

Parameter Input Voltage:

Continuous Transient 100 ms Voltage from GND to Either Input Lead Operating Case Temperature Storage Temperature

VI, trans

Tstg
75 100 1500 100 125

Unit

Vdc V

Vdc °C °C

Lineage Power

Data Sheet October 2009

FLTR75V05 Filter Module 75 Vdc Input Maximum, 5 A Maximum

Electrical Specifications

Unless otherwise indicated, specifications apply over all operating input voltage and temperature conditions.

Parameter

Resistance per Leg

Maximum Average Current TA = 60 °C, m/s 400 lfm air

Maximum Average Current TA = 60 °C, natural convection

Common-mode Insertion Loss 50 Ω circuit, 500 kHz

Differential-mode Insertion Loss 50 Ω circuit, 500 kHz

Unit

I max
Ordering Information

Please contact your Lineage Power Account Manager or Field Application Engineer for pricing and availability.

Table Device Codes

Device Code FLTR75V05 FLTR75V05Z FLTR75V058Z FLTR75V605Z FLTR75V055Z

Comcode 108900739 CC109102654 CC109310818 CC109101433 CC109128237

Optional features may be ordered using the suffixes shown in the Table below.

Option Codes

Option Short pins mm/ mm
in. in./ in.

Short pins mm/ mm in. in./ in.

Short pins mm/ mm in. in./ in.

Device Code Suffix 8 6 5

A sia-Pacific Head quart ers Tel +65 6 41 6 4283

World W ide Headqu arters

Lin eag e Power Co rporation sTtXem75s,0I7n4c., U SA USA FAX +1-972-284-2900 ower.co m

Eu ro pe, M id dle-East and Afric a He ad qu arters Tel +49 898 780 672 80

India Headqu arters Tel +91 8 0 28411633

Lineage Power reserves the right to make changes to the produc t s or information contained herein without notice. No liability is ass umed as a res ult of their use or TyacoppEllicecattrioonni.cNs oartioinnfocromnatatiinoned. herein without notice. No liability is assumed as a result of their use or application. No rights under any patent accompany the sale of any such product s or information.

Lineage Power DC-DC Products are protected under various patents. Information on these patents is available at 2001 Tyco Electronics Corporation Power Systems, Inc., Mesquite, Texas All International Rights Reserved. Pr inte2d00in8 UL.iSne.Aa.ge Power Corpor ation, Plano, Texas All International Rights Res er ved.

October 2009 ADS01-052EPS Replaces ADS01-051EPS
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Datasheet ID: FLTR75V05Z 645651