COAXIAL MECHANICAL PHASE SHIFTER RF/Microwave Phase Shifters 29

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Part RoHS Manufacturer RF or Microwave Device Type Mounting Feature No. of Terminals Package Body Material Technology Maximum Input Power (CW) Maximum Voltage Standing Wave Ratio Maximum Supply Current Construction Power Supplies (V) Package Equivalence Code Characteristic Impedance Sub-Category Maximum Operating Temperature Minimum Operating Temperature Terminal Finish Maximum Insertion Loss Minimum Phase Shift Additional Features JESD-609 Code Minimum Operating Frequency Maximum Phase Shift Maximum Operating Frequency

PE44820B-X

Psemi

COAXIAL MECHANICAL PHASE SHIFTER

TGP2108-SM

Qorvo

COAXIAL MECHANICAL PHASE SHIFTER

SURFACE MOUNT

24

PLASTIC/EPOXY

GAAS

COMPONENT

5

LCC24,.2SQ,25

50 ohm

85 Cel

-40 Cel

Nickel/Palladium/Gold (Ni/Pd/Au)

8.5 dB

5 deg

e4

2500 MHz

360 deg

4000 MHz

MAPS-010164-TR0500

M/a-com Technology Solutions

COAXIAL MECHANICAL PHASE SHIFTER

25 dBm

1.3

COMPONENT

50 ohm

85 Cel

-40 Cel

MATTE TIN

4.5 dB

0 deg

e3

2300 MHz

360 deg

3800 MHz

8401

Api Technologies

COAXIAL MECHANICAL PHASE SHIFTER

HMC647LP6ETR

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

HMC647LP6E

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

26 dBm

COMPONENT

50 ohm

85 Cel

-40 Cel

Matte Tin (Sn)

6.5 dB

e3

2500 MHz

360 deg

3100 MHz

6603-3

Api Technologies

COAXIAL MECHANICAL PHASE SHIFTER

55 dBm

1.6

COAXIAL

125 Cel

-40 Cel

.5 dB

190 deg

0 MHz

4000 MHz

HMC642LC5TR

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

SURFACE MOUNT

32

CERAMIC

GAAS

+-5

LCC32,.2SQ,20

RF/Microwave Phase Shifters

85 Cel

-40 Cel

6802

Api Technologies

COAXIAL MECHANICAL PHASE SHIFTER

55.44 dBm

1.35

COAXIAL

125 Cel

-40 Cel

.5 dB

290 deg

N-F, I/P POWER-MAX(PEAK)=63.98DBM

0 MHz

2000 MHz

MAPS-011008-TR0500

M/a-com Technology Solutions

COAXIAL MECHANICAL PHASE SHIFTER

MATTE TIN

e3

TGP6336-EEU

Texas Instruments

COAXIAL MECHANICAL PHASE SHIFTER

30 dBm

2.6

COMPONENT

0 deg

6000 MHz

348.75 deg

18000 MHz

HMC936LP6ETR

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

MATTE TIN

e3

HMC936LP6E

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

33 dBm

COMPONENT

50 ohm

85 Cel

-40 Cel

MATTE TIN

7 dB

e3

1200 MHz

360 deg

1400 MHz

HMC-C055

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

27 dBm

COAXIAL

50 ohm

85 Cel

-40 Cel

Gold (Au) - with Nickel (Ni) barrier

8.5 dB

0 deg

SMA-F

e4

8000 MHz

360 deg

12000 MHz

HMC649LP6ETR

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

SURFACE MOUNT

28

PLASTIC/EPOXY

GAAS

15 mA

+-5

LCC28,.24SQ,25

RF/Microwave Phase Shifters

85 Cel

-40 Cel

HMC648LP6TR

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

SURFACE MOUNT

28

PLASTIC/EPOXY

GAAS

15 mA

+-5

LCC28,.24SQ,25

RF/Microwave Phase Shifters

85 Cel

-40 Cel

HMC642

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

30 dBm

COMPONENT

50 ohm

85 Cel

-55 Cel

Gold (Au)

8.5 dB

0 deg

e4

9000 MHz

360 deg

12500 MHz

HMC647LP6TR

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

HMC649LP6TR

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

SURFACE MOUNT

28

PLASTIC/EPOXY

GAAS

15 mA

+-5

LCC28,.24SQ,25

RF/Microwave Phase Shifters

85 Cel

-40 Cel

HMC649LP6

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

SURFACE MOUNT

28

PLASTIC/EPOXY

GAAS

26 dBm

15 mA

COMPONENT

+-5

LCC28,.24SQ,25

50 ohm

RF/Microwave Phase Shifters

85 Cel

-40 Cel

Tin/Lead (Sn/Pb)

10.5 dB

e0

3000 MHz

360 deg

6000 MHz

HMC649

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

32 dBm

COMPONENT

50 ohm

85 Cel

-55 Cel

Gold (Au)

9 dB

0 deg

e4

3000 MHz

360 deg

6000 MHz

HMC648LP6

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

33 dBm

COMPONENT

50 ohm

85 Cel

-40 Cel

Tin/Lead (Sn/Pb)

8 dB

0 deg

e0

2900 MHz

360 deg

3900 MHz

HMC648LP6E

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

33 dBm

COMPONENT

50 ohm

85 Cel

-40 Cel

Matte Tin (Sn)

8 dB

0 deg

e3

2900 MHz

360 deg

3900 MHz

HMC642LC5

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

29 dBm

COMPONENT

50 ohm

85 Cel

-40 Cel

Gold (Au) - with Nickel (Ni) barrier

10 dB

e4

9000 MHz

360 deg

12500 MHz

HMC648

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

33 dBm

COMPONENT

50 ohm

85 Cel

-55 Cel

Gold (Au)

6 dB

0 deg

e4

2900 MHz

360 deg

3900 MHz

HMC647

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

33 dBm

COMPONENT

50 ohm

85 Cel

-55 Cel

Gold (Au)

6 dB

0 deg

e4

2500 MHz

360 deg

3100 MHz

HMC649LP6E

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

26 dBm

COMPONENT

50 ohm

85 Cel

-40 Cel

Matte Tin (Sn)

10.5 dB

e3

3000 MHz

360 deg

6000 MHz

HMC647LP6

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

26 dBm

COMPONENT

50 ohm

85 Cel

-40 Cel

Tin/Lead (Sn/Pb)

6.5 dB

e0

2500 MHz

360 deg

3100 MHz

HMC648LP6ETR

Analog Devices

COAXIAL MECHANICAL PHASE SHIFTER

SURFACE MOUNT

28

PLASTIC/EPOXY

GAAS

15 mA

+-5

LCC28,.24SQ,25

RF/Microwave Phase Shifters

85 Cel

-40 Cel

RF/Microwave Phase Shifters

RF/microwave phase shifters are electronic devices that are used to shift the phase of an input signal by a specific amount. They are commonly used in communication systems, radar systems, and other applications that require the precise control of phase.

There are several types of RF/microwave phase shifters, including digital, analog, and hybrid types. Digital phase shifters use digital control signals to select one of several discrete phase states, while analog phase shifters use a continuously variable phase control voltage. Hybrid phase shifters use a combination of digital and analog techniques.

RF/microwave phase shifters are used in a variety of applications, such as beam steering in phased array antennas, cancellation of interference signals, and the generation of quadrature signals. They are also used in radio frequency test equipment and in the design and testing of RF/microwave circuits.

Some of the key factors to consider when selecting an RF/microwave phase shifter include the frequency range, the phase range and resolution, the insertion loss, and the switching speed. Other factors to consider include the power handling capability, the temperature stability, and the size and form factor of the device.