STM-3116
STM-3116 is High Linearity Active Transmit Mixer manufactured by Sirenza Microdevices.
Preliminary
Product Description
The Sirenza Microdevices’ STM-3116 is a high linearity active mixer for use in a wide variety of munication systems covering the 2100-2500 MHz frequency bands. This device operates from a single 5V supply and provides 17 d B of conversion gain while requiring only 0d Bm input to the integrated LO driver. The STM-3116 also includes an integrated on chip IF amplifier and is fabricated using Silicon Germanium (Si Ge) device technology. The RF and LO ports can be driven differential or single ended. Each broadband port has been designed to minimize performance degradation while operating into highly reactive ponents such as SAW filters. The device is packaged in an industry standard 16 pin TSSOP with exposed paddle for superb RF and thermal ground.
- 2500 MHz High Linearity Active Transmit Mixer
16 pin TSSOP with Exposed Ground Pad Package Footprint: 0.197 x 0.252 inches (5.0 x 6.4 mm) Package Height: 0.039 inches (1.0 mm)
Product Features
Functional Block Diagram
VEE VCC VEE RFN RFP VEE 1 2 3 4 5 6 7 8 16 15 14 13 12 11 10 9 VEE VCC VEE LON LOP VEE VCC IFP
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- Active mixer with 17 d B conversion gain Integrated 0d Bm LO drive and IF amplifier Differential or single-ended input Single supply operation (+5V) Broadband resistive 50Ω impedance on all three ports Low LO-RF leakage UMTS/ISM transmitters
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VCC IFN
Applications
Product Specifications
Parameters RF Frequency Range LO Frequency Range IF Frequency Range Conversion Gain SSB Noise Figure Output IP3 Output P1d B Leakage (LO-RF) Leakage (LO-IF) RF, LO, IF Return Loss Matched to 50Ω, see Note 1, page 3 Supply Voltage (Vcc) Supply Current LO Drive Thermal Resistance Matched to 50 Ω junction-case IF1 = IF2 = -20 d Bm/tone, 1 MHz spacing Test Conditions: TA = 25ºC, VCC = 5.0V, PLO = 0d Bm, PIF = -20d Bm, IF = 200MHz Unit MHz MHz MHz d B d B d Bm d Bm d Bm d Bm d B V m A d Bm ºC/W -3 +4.75 21 8 Min. 2100 1900 30 14 200 17 9.0 24.5 11 -20 -30 14 +5.0...