The CJ1W-FLN22 by Omron is designed as a FL-Net module with versatile connectivity options. It has a current draw of 0.37 A at 5V DC and operates using CSMA/CD media access.
We sell industrial automation parts backed by our 2-year DO Supply Warranty.
Same-day domestic and expedited international shipping with UPS, FedEx, DHL, and more.
AMEX, Visa, MasterCard, Discover, wire transfer, and more, plus flexible payment plans.
Repair and exchange services for all existing automation products.
Drop shipping, blind shipping, and account shipping with no extra fees.
Manufacturer | Omron |
---|---|
Series | CJ1 |
Part Number | CJ1W-FLN22 |
Current Consumption | 0.37 A at 5V DC |
Media Access Method | CSMA/CD |
Modulation | Baseband |
Baud Rate | 10 or 100 Mbps |
Transmission Paths | Star |
Maximum Transmission Distance | 100 m between hub and node |
Number of Supported Cascade Connections | 2 connections with repeater hub |
Mounting Racks | CPU or expansion racks |
Shock Resistance | 147 m/s² (15G) in 6 directions, 3 times each |
Vibration Resistance | 10 to 57 Hz, 0.075 mm amplitude, 57 to 150 Hz, 9.8 m/s² |
The Omron CJ1W-FLN22 serves as a FL-Net module within the CJ1 series. Operating with a current consumption of 0.37 A at 5V DC, it employs a baseband modulation system ideal for its communication framework. This unit supports both 10 and 100 Mbps baud rates. The transmission methodology is organized in a star topology which ensures flexible configuration. It allows a maximum transmission reach of 100 meters from the hub to connected nodes.
Moreover, it can build upon its infrastructure through two supported cascade connections when utilizing a repeater hub, offering expanded networking capabilities. The module mounts easily onto either CPU or expansion racks, providing versatility in installation.
Designed for resilience, this product demonstrates shock resistance of up to 147 m/s² (15G) in all six directions and can endure this force three times. Vibration resistance between 10 to 57 Hz at a 0.075 mm amplitude, alongside 57 to 150 Hz at 9.8 m/s², contributes to its durability in operational environments.