Part | RoHS | Manufacturer | RF or Microwave Device Type | Mounting Feature | No. of Terminals | Maximum Input Power (CW) | Maximum Voltage Standing Wave Ratio | Construction | Characteristic Impedance | Maximum Operating Temperature | Minimum Operating Temperature | Terminal Finish | Maximum Insertion Loss | Additional Features | JESD-609 Code | Minimum Operating Frequency | Maximum Operating Frequency |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
NXP Semiconductors |
ISOLATOR |
47.78 dBm |
1.2 |
MODULE |
85 Cel |
-10 Cel |
.7 dB |
930 MHz |
965 MHz |
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NXP Semiconductors |
ISOLATOR |
64.77 dBm |
1.25 |
MODULE |
40 Cel |
.3 dB |
2425 MHz |
2475 MHz |
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NXP Semiconductors |
ISOLATOR |
43.01 dBm |
2 |
.6 dB |
200.5 MHz |
207.5 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
40 dBm |
1.2 |
MODULE |
50 Cel |
-20 Cel |
.4 dB |
1700 MHz |
2100 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
53.01 dBm |
1.4 |
MODULE |
60 Cel |
0 Cel |
.7 dB |
225 MHz |
400 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
50.79 dBm |
1.25 |
95 Cel |
-30 Cel |
.4 dB |
1270 MHz |
1400 MHz |
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NXP Semiconductors |
ISOLATOR |
41.76 dBm |
2 |
.4 dB |
1470 MHz |
1620 MHz |
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NXP Semiconductors |
ISOLATOR |
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NXP Semiconductors |
4 PORT CIRCULATOR |
44.77 dBm |
1.11 |
MODULE |
55 Cel |
0 Cel |
.4 dB |
1700 MHz |
2100 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
56.99 dBm |
1.25 |
MODULE |
70 Cel |
-10 Cel |
.35 dB |
710 MHz |
860 MHz |
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NXP Semiconductors |
ISOLATOR |
68.13 dBm |
1.25 |
MODULE |
40 Cel |
.3 dB |
2425 MHz |
2475 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
56.99 dBm |
1.25 |
MODULE |
70 Cel |
-10 Cel |
.35 dB |
600 MHz |
800 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
60 dBm |
1.25 |
MODULE |
40 Cel |
-10 Cel |
.35 dB |
160 MHz |
178 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
63.01 dBm |
1.2 |
MODULE |
40 Cel |
-10 Cel |
.35 dB |
710 MHz |
860 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
56.99 dBm |
1.25 |
MODULE |
70 Cel |
-10 Cel |
.35 dB |
600 MHz |
800 MHz |
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NXP Semiconductors |
ISOLATOR |
46.02 dBm |
1.2 |
MODULE |
85 Cel |
-10 Cel |
.35 dB |
1805 MHz |
1880 MHz |
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NXP Semiconductors |
ISOLATOR |
50 dBm |
2 |
.5 dB |
201 MHz |
209 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
56.99 dBm |
1.25 |
MODULE |
70 Cel |
-10 Cel |
.35 dB |
590 MHz |
720 MHz |
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NXP Semiconductors |
ISOLATOR |
48.45 dBm |
1.2 |
85 Cel |
-10 Cel |
.3 dB |
935 MHz |
960 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
60 dBm |
1.25 |
MODULE |
40 Cel |
-10 Cel |
.35 dB |
173 MHz |
204 MHz |
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NXP Semiconductors |
ISOLATOR |
43.01 dBm |
2 |
.8 dB |
73 MHz |
74 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
56.99 dBm |
1.25 |
MODULE |
60 Cel |
-10 Cel |
.35 dB |
200 MHz |
230 MHz |
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NXP Semiconductors |
ISOLATOR |
43.01 dBm |
2 |
.6 dB |
156 MHz |
157 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
46.99 dBm |
1.15 |
55 Cel |
-10 Cel |
.25 dB |
1805 MHz |
1880 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
50 dBm |
1.5 |
MODULE |
85 Cel |
-30 Cel |
.8 dB |
170 MHz |
310 MHz |
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NXP Semiconductors |
ISOLATOR |
50 dBm |
1.3 |
60 Cel |
0 Cel |
.6 dB |
118 MHz |
144 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
50.41 dBm |
2 |
.4 dB |
165.4 MHz |
170.6 MHz |
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NXP Semiconductors |
ISOLATOR |
40 dBm |
1.15 |
MODULE |
55 Cel |
0 Cel |
.4 dB |
1427 MHz |
1535 MHz |
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NXP Semiconductors |
ISOLATOR |
44.77 dBm |
1.2 |
85 Cel |
-10 Cel |
.35 dB |
460 MHz |
470 MHz |
|||||||||
NXP Semiconductors |
ISOLATOR |
68.13 dBm |
2 |
.3 dB |
2350 MHz |
2400 MHz |
|||||||||||
NXP Semiconductors |
3 PORT CIRCULATOR |
40 dBm |
1.15 |
MODULE |
55 Cel |
0 Cel |
.4 dB |
1427 MHz |
1535 MHz |
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NXP Semiconductors |
ISOLATOR |
64.77 dBm |
2 |
.3 dB |
2350 MHz |
2400 MHz |
|||||||||||
NXP Semiconductors |
3 PORT CIRCULATOR |
46.99 dBm |
1.3 |
MODULE |
50 Cel |
-10 Cel |
.8 dB |
88 MHz |
108 MHz |
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NXP Semiconductors |
ISOLATOR |
43.01 dBm |
1.3 |
MODULE |
85 Cel |
-10 Cel |
.5 dB |
870 MHz |
960 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
63.01 dBm |
1.25 |
MODULE |
40 Cel |
-10 Cel |
.35 dB |
600 MHz |
800 MHz |
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NXP Semiconductors |
ISOLATOR |
43.01 dBm |
1.25 |
MODULE |
70 Cel |
0 Cel |
.4 dB |
1200 MHz |
1415 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
50.41 dBm |
MODULE |
55 Cel |
0 Cel |
.5 dB |
138 MHz |
141 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
53.01 dBm |
1.15 |
40 Cel |
5 Cel |
.25 dB |
440 MHz |
470 MHz |
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NXP Semiconductors |
ISOLATOR |
46.99 dBm |
1.25 |
MODULE |
70 Cel |
-10 Cel |
.5 dB |
2000 MHz |
4000 MHz |
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NXP Semiconductors |
ISOLATOR |
41.76 dBm |
1.11 |
MODULE |
55 Cel |
0 Cel |
.25 dB |
1900 MHz |
2300 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
43.01 dBm |
1.25 |
MODULE |
70 Cel |
-10 Cel |
.5 dB |
3000 MHz |
6000 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
56.99 dBm |
1.25 |
MODULE |
70 Cel |
-10 Cel |
.35 dB |
590 MHz |
720 MHz |
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NXP Semiconductors |
ISOLATOR |
30 dBm |
2 |
.4 dB |
2300 MHz |
2700 MHz |
|||||||||||
NXP Semiconductors |
3 PORT CIRCULATOR |
40 dBm |
1.25 |
MODULE |
70 Cel |
-10 Cel |
.5 dB |
4000 MHz |
8000 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
48.45 dBm |
1.2 |
MODULE |
85 Cel |
-10 Cel |
.3 dB |
935 MHz |
960 MHz |
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NXP Semiconductors |
3 PORT CIRCULATOR |
50 dBm |
1.25 |
MODULE |
60 Cel |
-10 Cel |
.5 dB |
960 MHz |
1225 MHz |
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NXP Semiconductors |
ISOLATOR |
40 dBm |
1.05 |
WAVEGUIDE |
70 Cel |
-10 Cel |
.5 dB |
8500 MHz |
9600 MHz |
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NXP Semiconductors |
ISOLATOR |
40 dBm |
1.25 |
MODULE |
60 Cel |
-10 Cel |
.5 dB |
790 MHz |
1000 MHz |
RF/Microwave isolators and circulators are two types of passive electromagnetic devices that are commonly used in RF and microwave systems. These devices are used to control the flow of electromagnetic energy in a system, and are essential for isolating and protecting components from unwanted signal reflections.
An isolator is a two-port device that allows electromagnetic energy to flow in only one direction. It is typically used to protect RF and microwave components, such as amplifiers, from reflected energy and to improve the overall performance of a system. Isolators are used in a variety of applications, including radar systems, communication systems, and test and measurement equipment.
A circulator is a three-port device that allows electromagnetic energy to flow in a specific sequence through the ports. The energy entering port 1 is directed to port 2, while the energy entering port 2 is directed to port 3, and so on. Circulators are typically used to isolate and protect components from unwanted signal reflections, as well as to provide a means of combining and separating signals in a system. They are commonly used in microwave and RF communication systems, as well as in satellite and radar systems.