HMC-C010
HMC-C010 is ANALOG PHASE SHIFTER MODULE manufactured by Hittite Microwave.
Features
Wide Bandwidth: 6
- 15 GHz >600° Phase Shift Single Positive Voltage Control Hermetically Sealed Module Field Replaceable SMA Connectors -55 to +85 °C Operating Temperature
Typical Applications
The HMC-C010 is ideal for:
- Fiber Optics
- Military
- Test Equipment
General Description
The HMC-C010 is an Analog Phase Shifter which is controlled via an analog control voltage from 0 to +5V. The HMC-C010 provides a continuously variable phase shift of 0 to 800 degrees at 6 GHz, and 0 to 450 degrees at 16 GHz, with consistent insertion loss versus phase shift. The phase shift is monotonic with respect to control voltage. The control port has a modulation bandwidth of 50 MHz. The low insertion loss and extremely robust packaging enable this part to be used in a wide range of applications including the phase adjustment of clocks in fiber optic systems and test equipment. The HMC-C010 is housed in a miniature hermetic module with replaceable SMA connectors.
Functional Diagram
Electrical Specifications, TA = +25° C, 50 Ohm System
Parameter Phase Shift Range: Insertion Loss Return Loss (Input and Output) Control Voltage Range Modulation Bandwidth Phase Voltage Sensitivity Insertion Phase Temperature Sensitivity Frequency (GHz) 6
- 10 GHz 10
- 15 GHz 6
- 15 GHz 6
- 15 GHz 6
- 15 GHz 6
- 15 GHz 6
- 15 GHz 6
- 15 GHz Min. 600 360 Typ. 800 600 7 7 0-5 50 120 0.5 10 Max. Units degrees degrees d B d B Volt MHz deg /Volt deg /°C
- 80
Data Sheet 4 U .
For price, delivery, and to place orders, please contact Hittite Microwave Corporation: 20 Alpha Road, Chelmsford, MA 01824 Phone: 978-250-3343 Fax: 978-250-3373 Order On-line at .hittite.
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HMC-C010 v00.0505
600° ANALOG PHASE SHIFTER MODULE, 6
- 15 GHz
Insertion Loss vs. Control Voltage
0 -1 INSERTION LOSS (d B) -2 -3 -4 -5 -6 -7 -8 -9 -10 0 0.5 1 1.5 2 2.5 Vctl (Vdc) 3 3.5 4 4.5 5
+25C +85C -55C
Phase Shift vs. Control Voltage
NORMALIZED PHASE SHIFT (degrees) 900 800 700 600 500 400 300 200 100 0 0 0.5 1 1.5 2 2.5...