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TT4P3-1067P2-4420

Description
Ceramic BPF, 1067MHz, ROHS COMPLIANT, CERAMIC PACKAGE
CategoryAnalog mixed-signal IC    filter   
File Size187KB,10 Pages
ManufacturerSkyworks
Websitehttp://www.skyworksinc.com
Environmental Compliance  
Download Datasheet Parametric View All

TT4P3-1067P2-4420 Overview

Ceramic BPF, 1067MHz, ROHS COMPLIANT, CERAMIC PACKAGE

TT4P3-1067P2-4420 Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerSkyworks
package instructionROHS COMPLIANT, CERAMIC PACKAGE
Reach Compliance Codeunknown
average input power1 W
Center frequency or cutoff frequency (fo/fc)1067 MHz
filter typeCERAMIC BPF
high4.99 mm
Input/output impedance50 OHM
Maximum insertion loss2 dB
length15 mm
Installation typeSURFACE MOUNT
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
physical sizeL15.0XB13.16XH4.99 (mm)/L0.591XB0.518XH0.196 (inch)
voltage standing wave ratio2
width13.16 mm
DATA SHEET
Introduction and Applications for Ceramic Band Pass Filters
Features
High Q ceramic
Rugged
Temperature compensated
Custom designs
Available lead (Pb)-free, RoHS-compliant, and Green
Benefits
Low insertion loss
Small compact design
Frequency stability
Mechanical stability
NEW
Skyworks Green products are lead (Pb)-free, RoHS
(Restriction of Hazardous Substances)-compliant,
conform to the EIA/EICTA/JEITA Joint Industry Guide
(JIG) Level A guidelines, and are free from antimony
trioxide and brominated flame retardants.
Introduction
Skyworks is a world-class supplier of high performance ceramic
band pass filters. Specializing in band pass, notch and diplexing
applications, Skyworks can cover a frequency range from 300 MHz
to 6000 MHz with surface mount or connectorized devices.
Utilizing state of the art assembly automation, Skyworks provides
cost-effective solutions meeting high performance specifications.
Skyworks surface mount PCB configured filters are designed to
comply with “green” manufacturing initiatives eliminating heavy
metal elements. This configuration is designed to comply with
pending European regulations regarding the elimination of lead in
electronic assemblies. Custom assemblies can be obtained with
flat pack style SMT devices, through-hole or Sn/Pb coated PCB
surface mount designs.
Skyworks assembly methodology offers a wide array of designs,
from 2 mm x 2 pole – 8 mm x 10 pole band pass filters and
diplexers, to advanced band stop (notch) designs and high-pass
or low-pass filters. For typical applications and ranges of prod-
ucts, refer to the Standard Filters/Duplexers listing included in
this document. Detailed specifications, both mechanical and
electrical, are maintained for many popular designs on our
Web site, or by contacting your local sales representative.
The nature of applications utilizing a band pass filter, duplexer or
notch filter, necessitates the close interaction of the customer
and Skyworks application engineering. Our application engineers
employ the latest in simulation and circuit analysis software with
accurately defined design rules to provide rapid turnaround on
new filter designs. With our experience and design aids,
Skyworks can provide the necessary support for your application
from prototype through production. In addition to the personal
attention, Skyworks offers a computer-aided design tool, CRaFT,
to assist engineers designing filters (the latest version can be
downloaded from our Web site, www.skyworksinc.com.
The strength of Skyworks designs begin with our ability to
produce our own coaxial resonators from proprietary ceramic
formulations. These resonators provide a high Q element that
allows us to maintain our low filter insertion loss values. With
numerous design package styles, Skyworks offers aggressive
leadtimes on both prototype and volume applications.
*These products are produced by Trans-Tech (a wholly-owned subsidiary of Skyworks Solutions, Inc.)
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • sales@skyworksinc.com • www.skyworksinc.com
Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice. • September 11, 2006
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