For price, delivery and to place orders: Hittite Microwave Corporation, 20 Alpha Road, Chelmsford, MA 01824
Phone: 978-250-3343 Fax: 978-250-3373 Order On-line at www.hittite.com
Application Support: Phone: 978-250-3343 or apps@hittite.com
MIXERS - SINGLE & DOUBLE BALANCED - SMT
10
10 - 1
HMC552LP4 / 552LP4E
GaAs MMIC MIXER w/ INTEGRATED
LO AMPLIFIER, 1.6 - 3.0 GHz
v03.1210
General Description
Features
Functional Diagram
The HMC552LP4 & HMC552LP4E are high linearity,
double-balanced converter ICs that operate from
1.6 to 3.0 GHz and deliver a +25 dBm input third
order intercept point. The LO amplier output and
high dynamic range mixer input are positioned so
that an external LO lter can be placed in series
be-tween them. The converter provides 30 dB of
LO to RF isolation and is ideal for upconverter and
down-converter applications. The IC operates from
a single +5V supply consuming 62 mA of current
and accepts a LO drive level of -4 to +4 dBm. The
design requires no external baluns and supports
IF frequencies between DC and 1 GHz. The
HMC552LP4 & HMC552LP4E are pin for pin com-
patible with the HMC551LP4 & HMC551LP4E, which
operate from 0.8 to 1.2 GHz.
Input IP3: +25 dBm
Low Input LO Drive: -4 to +4 dBm
LO to RF Isolation: 30 dB
Low Conversion Loss: 8 dB
Single Positive Supply: +5V @ 62 mA
Robust 1,000V ESD, Class 1C
24 Lead 4x4mm SMT Package: 16mm2
Electrical Specications, TA = +25° C, LO = 0 dBm, Vcc = +5V, R1 = 18 Ohms, IF = 100 MHz*
Typical Applications
The HMC552LP4 / HMC552LP4E is ideal for
Wireless Infrastructure Applications:
• PCS / 3G Infrastructure
• Base Stations & Repeaters
• WiMAX & WiBro
• ISM & Fixed Wireless
Parameter Min. Typ. Max. Units
Frequency Range, RF, LO 1.6 - 3.0 GHz
Frequency Range, IF DC - 1.0 GHz
Conversion Loss 8 10 dB
Noise Figure (SSB) 8 dB
LO to RF Isolation 25 30 dB
LO to IF Isolation 10 20 dB
IP3 (Input) 25 dBm
1 dB Compression (Input) 16 dBm
LO Drive Input Level (Typical) -4 to +4 dBm
Supply Current (Icc) 62 mA
*Unless otherwise noted, all measurements performed as a downconverter congured as shown in application circuit.