Online Service

Online Service

Contact Person
+86 136 6733 2386
quality Surface Acoustic Wave Filter LTE Band 2 Duplexer WISOL SFXG80AYM02 with 1880 MHz Tx and 1960 MHz Rx factory
<
quality Surface Acoustic Wave Filter LTE Band 2 Duplexer WISOL SFXG80AYM02 with 1880 MHz Tx and 1960 MHz Rx factory
>
Specifications
Mfr. Part #:
SFXG80AYM02
Package:
SMD
Key Attributes
Model Number: SFXG80AYM02
Product Description

Surface Acoustic Wave Filter - LTE Band 2 Duplexer

This preliminary datasheet describes the SFXG80AYM02, a Surface Acoustic Wave (SAW) filter designed as a duplexer for LTE Band 2 applications. It offers efficient filtering for both transmit (Tx) and receive (Rx) signals, with center frequencies of 1880 MHz for Tx and 1960 MHz for Rx. The compact 1.8x1.4x0.58mm3 package with an 8-pin layout makes it suitable for space-constrained designs.

Product Attributes

  • Brand: WISOL CO., LTD.
  • Origin: KOREA
  • Model: SFXG80AYM02
  • Application: LTE Band 2 Duplexer

Technical Specifications

ItemConditionFrequency [MHz]UnitMin.Typ.(25)Max.Termination Impedance
MAXIMUM RATINGS
DC Permissive VoltageV5
Maximum Input PowerW0.8
Operating Temperature Range-20+85
Storage Temperature Range-40+85
ELECTRICAL CHARACTERISTICS
TX ANTENNAInsertion Loss(*1)1850.48 ~ 1909.52dB-1.92.950 + 1.5[nH]
Inband Ripple1950.48 ~ 1909.52dB-1.52.050 // 4[nH]
VSWR1850.48 ~ 1909.52--1.82.0
Absolute Attenuation1565.4 ~ 1605.9dB3336-
1605.9 ~ 1680dB3336-
1930 ~ 1990dB4850-
2000 ~ 2050dB3840-
2400 ~ 2500dB3037-
3700 ~ 3820dB2531-
5500 ~ 5730dB2025-
ANTENNA RXInsertion Loss(*1)1930.48 ~ 1989.52dB-2.43.050 // 4[nH]
Inband Ripple1930.48 ~ 1989.52dB-1.52.050 // 10[nH]
VSWR1930.48 ~ 1989.52--2.12.3
Absolute Attenuation1850 ~ 1910dB4950-
Isolation between Rx and Tx1850.48 ~ 1909.52dB5154-
1930.48 ~ 1989.52dB4855-

2411220245_WISOL-SFXG80AYM02_C312171.pdf

Request A Quote

Please Use Our Online Inquiry Contact Form Below If You Have Any Questions, Our Team Will Get Back To You As Soon As Possible

You Can Upload Up To 5 Files And Each File Sized 10M Max