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
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FILTERS - TUNABLE - SMT
3
HMC882LP5E
v01.0310
Functional Diagram
Typical Applications Features
General Description
FILTER - TUNABLE, LOW PASS SMT
4.5 - 7.6 GHz
Electrical Speci cations, TA = +25°C
The HMC882LP5E is ideal for:
• Test & Measurement Equipment
• Military RADAR & EW/ECM
• SATCOM & Space
• Industrial & Medical Equipment
Fast Tuning Response; 150 ns
Excellent Wideband Rejection; 40 dB
Single Positive Frequency Control: 0 to +14V
Low Insertion Loss &
User Selectable Cutoff Frequency
Single Chip Replacement
for Mechanically Tuned Designs
32 Lead 5x5 mm SMT Package
The HMC882LP5E is a MMIC low pass lter which
features a user selectable cutoff frequency. The
cutoff frequency can be varied from 4.5 to 7.6 GHz
by applying a single analog tuning voltage between
0 and 14V. This low pass lter provides a low 2.9 dB
insertion loss, 10 dB return loss and 1.23 x ƒcutoff
stopband attenuation of >20 dB. This tunable lter can
be used as a much smaller alternative to physically
large switched lter banks and cavity tuned lters.
The HMC882LP5E has excellent microphonics due
to the monolithic design, and provides a dynamically
adjustable solution in advanced communications
applications. The low pass tunable lter is packaged
in a RoHS compliant 5x5mm QFN leadless package.
Parameter Min. Typ. Max. Units
Passband 07.6GHz
ƒcutoff [1] Tuning Range (3 dB Loss) 4.5 7.6 GHz
Stopband Frequency (Rejection >20 dB) 1.23 x ƒcutoff GHz
Re-entry Frequency (Rejection <30 dB) 30 GHz
Insertion Loss 2.9 dB
Return Loss 10 dB
Maximum Input Power for Linear Operation 10 dBm
Frequency Control Voltage (Vfctl) 0 14 V
Frequency Control Port Source/Sink Current (Ifctl)a ±1 mA
Residual Phase Noise [2] (1 MHz offset) -160 dBc/Hz
ƒcutoff Drift Rate (Fixed Vfctl) -1.4 MHz /°C
Tuning Characteristics [3]
tFULLBAND (0% Vfctl to 90% RF) 150 ns
[1] ƒcutoff de ned as the point at which the insertion loss is 3 dB below the minimum passband insertion loss.
[2] Optimum residual phase noise performance requires the use of a low noise driver circuit.
[3]Tuning speed is dependent on driver circuit. Data measured with a high speed op-amp driver and includes driver slew rate delay.