PHASE SHIFTER. HMC247 Datasheet

HMC247 SHIFTER. Datasheet pdf. Equivalent

Part HMC247
Description ANALOG PHASE SHIFTER
Feature PHASE SHIFTERS - ANALOG - CHIP v03.0809 Typical Applications The HMC247 is ideal for: • Fiber Op.
Manufacture Analog Devices
Datasheet
Download HMC247 Datasheet



HMC247
v03.0809
Typical Applications
The HMC247 is ideal for:
• Fiber Optics
3
• Military
• Test Equipment
Functional Diagram
HMC247
400° ANALOG PHASE SHIFTER
5 - 18 GHz
Features
Wide Bandwidth: 5 - 18 GHz
Phase Shift: >400°
Single Positive Voltage Control
Small Size: 2.3 x 1.6 x 0.1 mm
General Description
The HMC247 is an Analog Phase Shifter die which
is controlled via an analog control voltage from 0 to
+10V. The HMC247 provides a continuously variable
phase shift of 0 to 300 degrees at 9 GHz, and 0 to
100 degrees at 18 GHz, with consistent insertion loss
versus phase shift. The phase shift is monotonic with
respect to the control voltage. The control port has a
modulation bandwidth of 50 MHz. The low insertion
loss and compact size 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. All data is measured with the chip in a 50
ohm test fixture, connected via 0.076 mm (3 mil) ribbon
bonds of minimal length <0.31 mm (<12 mils).
Electrical Specifications, TA = +25° C, 50 Ohm System
Phase Shift Range:
Insertion Loss
Parameter
Frequency (GHz)
Min.
5 - 10 GHz
180
10 - 13 GHz
135
13 - 18 GHz
45
5 - 10 GHz
10 - 18 GHz
Return Loss (Input and Output)
5 - 18 GHz
Control Voltage Range
Modulation Bandwidth
5 - 18 GHz
5 - 18 GHz
Phase Voltage Sensitivity
5 - 18 GHz
Insertion Phase Temperature Sensitivity
5 - 18 GHz
Typ.
400
200
120
8
4
8
0 - 10
50
40
0.5
Max.
12
7
Units
degrees
degrees
degrees
dB
dB
dB
Volt
MHz
deg /Volt
deg /°C
3-2
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Order On-line Trademarks and registered trademarks are the property of their respective owners. at www.hAiptptilticea.tcioonmSupport: Phone: 1-800-ANALOG-D



HMC247
v03.0809
HMC247
400° ANALOG PHASE SHIFTER
5 - 18 GHz
Insertion Loss vs. Control Voltage @ 12 GHz
0
Phase Shift vs. Control Voltage
500
6 GHz
-2
400
12 GHz
18 GHz
-4
300
3
+25C
-6
+85C
200
-55C
-8
100
-10
0 1 2 3 4 5 6 7 8 9 10
Vctl (V)
0
0 1 2 3 4 5 6 7 8 9 10
Vctl (V)
Phase Shift vs. Frequency @ Vctl = 10V
(Relative to Vctl = 0V)
600
+25C
500
+85C
-55C
400
300
200
100
0
5 6 7 8 9 10 11 12 13 14 15 16 17 18
FREQUENCY (GHz)
Insertion Loss vs. Frequency
0
-2
-4
-6
0V
2V
-8
4V
6V
8V
-10
10V
-12
-14
5 6 7 8 9 10 11 12 13 14 15 16 17 18
FREQUENCY (GHz)
Input Return Loss vs. Frequency,
Vctl = 0 to +10V
0
Output Return Loss vs. Frequency,
Vctl = 0 to +10V
0
-5
-5
-10
-10
-15
-15
-20
5 6 7 8 9 10 11 12 13 14 15 16 17 18
FREQUENCY (GHz)
-20
5 6 7 8 9 10 11 12 13 14 15 16 17 18
FREQUENCY (GHz)
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Order On-line Trademarks and registered trademarks are the property of their respective owners. at www.hAiptptilticea.tcioonmSupport: Phone: 1-800-ANALOG-D
3-3





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