SKU
ACC-CS-00025
MPN
C-5-UW-43-AI6

Description

The CommScope Directional Coupler (SKU: ACC-CS-00025, Part Number: C-5-UW-43-AI6) is a high-performance RF passive component designed for frequency ranges between 555 MHz and 6000 MHz. With a coupling value of 5 dB and a 3rd Order PIM rating of -165 dBc, it ensures superior signal integrity and minimal interference. This coupler features a 4.3-10 Female connector for input, output, and coupled ports, and operates with an input impedance of 50 Ω.

Engineered to withstand harsh environments, it holds an IP67 ingress protection rating and operates within a temperature range of -35°C to 85°C. Its performance metrics include a VSWR of < 1.2:1 and an insertion loss of 2.40 dB for the 555-2700 MHz range, and a VSWR of < 1.3:1 for the 2700-6000 MHz range.

CommScope, a leader in telecommunications infrastructure, ensures this product meets ISO 9001 Quality Management standards. Ideal for wired and wireless network applications, the CommScope Directional Coupler is a reliable choice for maintaining robust and efficient signal distribution.

RF Specification

Min. Frequency
555 MHz
Max. Frequency
6000 MHz
Coupling / Split
4.8 dB
Input Impedance
50 Ω
Max. Input Power
300 W
PIM, 3rd Order
-165 dBc
Port Matrix
Port Function RF Interface
Input
Output
Coupled
Frequency Test Data
Start Frequency Stop Frequency VSWR Insertion Loss
555 MHz
2700 MHz
< 1.2:1
2.4 dB
2700 MHz
3800 MHz
< 1.25:1
3800 MHz
6000 MHz
< 1.3:1

Physical Specification

Input Ports
1
Output Ports
2
Ingress Protection
IP67
Dimensions
156 x 70 x 23
Weight
0.36 kg
Min. Operating Temperature
-35 °C
Max. Operating Temperature
85 °C
Compliance/Certifications

Downloadable Resources

CommScope (NASDAQ: COMM) helps design, build and manage wired and wireless networks around the world. As a communications infrastructure leader, we shape the always-on networks of tomorrow. For more than 40 years, our global team of greater than 20,000 employees, innovators and technologists have empowered customers in all regions of the world to anticipate what’s next and push the boundaries of ...