• Part: HMC296MS8
  • Description: LOW LO DRIVE DOUBLE-BALANCED FET MIXER
  • Manufacturer: Hittite Microwave Corporation
  • Size: 187.41 KB
Download HMC296MS8 Datasheet PDF
Hittite Microwave Corporation
HMC296MS8
HMC296MS8 is LOW LO DRIVE DOUBLE-BALANCED FET MIXER manufactured by Hittite Microwave Corporation.
Features IP3 (Input): +24 d Bm @ +11 d Bm LO LO Range = +3 to +11 d Bm Conversion Loss: 7 d B LO/RF Isolation: 40 d B LOW LO DRIVE DOUBLE-BALANCED FET MIXER, 1.1 - 1.7 GHz Typical Applications The HMC296MS8 is ideal for: - Miniature Basestations - PCMCIA - Portable Wireless - Wireless LAN Functional Diagram General Description The HMC296MS8 is a low LO drive, high IP3 double-balanced FET mixer in an 8 lead plastic surface mount MSOP package. This MMIC mixer is constructed of switched Ga As FETs and novel planar transformer baluns on the chip. The device can be used as an up or downconverter for 1.1 to 1.7 GHz applications. The consistent MMIC performance will improve system operation. The package dimensions are 0.118” x 0.192” (3.0mm x 4.9mm). MIXERS - SMT Electrical Specifications, TA = +25° C, As a Function of LO Drive, Vgg = -1.5 Vdc LO = +11 d Bm Parameter Min. Frequency Range, RF & LO Frequency Range, IF Conversion Loss Noise Figure (SSB) LO to RF Isolation LO to IF Isolation IP3 (Input) 1 d B Gain pression (Input) 30 21 20 10 Typ. 1.1 - 1.7 DC - 0.7 7 7 40 26 24 14 10 10 35 22 15 6 Max. Min. Typ. 1.1 - 1.7 DC - 0.5 7.5 7.5 40 26 18 9 10.5 10.5 35 22 11 2 Max. Min. Typ. 1.2 - 1.6 DC - 0.4 7.5 7.5 40 26 14 4 11.5 11.5 Max. GHz GHz d B d B d B d B d Bm d Bm LO = +7 d Bm LO = +3 d Bm Units - Unless otherwise noted, all measurements performed as downconverter, IF= 70 MHz. - 122 For price, delivery, and to place orders, please contact Hittite Microwave Corporation: 12 Elizabeth Drive, Chelmsford, MA 01824 Phone: 978-250-3343 Fax: 978-250-3373 Order Online at .hittite. MICROWAVE CORPORATION v02.1201 LOW LO DRIVE DOUBLE-BALANCED FET MIXER, 1.1 - 1.7 GHz Conversion Loss vs. Temperature @ LO = 11 d Bm -5 Isolation @ LO = 11 d Bm 0 -10 RF/IF CONVERSION LOSS (d B) -6 -40 C -7 ISOLATION (d B) +25 C -20 -30 LO/IF -40 -50...