Configured for Specific Technical Task in System/Network Name, the Yokogawa YCB301-C020 (YCB301 ESB Bus Cable) provides direct physical/electrical execution. This dedicated hardware component establishes high-speed communication interconnectivity between system node baseplates and field control processors across CENTUM VP, CS 3000, and ProSafe-RS Safety Instrumented System architectures. Equipped with a 36-to-36 pin interface format and tracking a fixed length of 20 cm (0.2 Meter), this shielded assembly maintains deterministic signal routing across the internal system bus structure to secure tight synchronization intervals between localized I/O matrices and supervising controller backplanes.
| Parameter | Specification |
|---|---|
| Model | YCB301-C020 |
| Brand | Yokogawa |
| Origin | Japan |
| Weight | 2.0 kg (Shipping weight specification) |
| Dimensions | Length: 20 cm (0.2 Meter) |
| Operating Temp | -20 deg C to +55 deg C |
| Power Consumption | 0 W (Passive component) |
| Product Type | ESB Bus Cable |
| Connector Format | 36-pin to 36-pin male array |
| Bus Interface Compatibility | ESB Bus / FIO Bus topologies |
| Cable Layer Isolation | Shielded backplane design with low noise coupling |
| Mating Enclosure Target | YCB301-compatible I/O slots / System Backplane |
The bus interconnect serves as the primary data highway for multiplexed field values, passing digitized information from 4-20 mA HART loop protocol modules directly to the main processor node. Dual-layer shielding throughout the 20 cm run suppresses electromagnetic cross-talk and high-frequency noise from corrupting data frames during high-speed parallel bus cycles. Galvanic isolation circuits embedded within the terminal nodes prevent ground loop variations between adjacent rack baseplates from shifting raw signal voltages. This hardware path guarantees that critical analog input values and high-density logic loops maintain steady transmission speeds under heavy communication loads.
Q: What operational risks are associated with live-unplugging the ESB bus interface cable?
A: The physical connection does not support unguided hot-swapping while communication traffic is active. Disconnecting the 36-pin array during system runtime drops all I/O communication down that leg of the FIO bus, instantly driving the associated output modules into their predefined fail-safe shutdown states.
Q: How does the 20 cm constraint dictate physical node placement inside the enclosure layout?
A: The C020 suffix dictates a exact length of 20 cm. This spacing requires installing the system baseplates directly adjacent to each other in a vertical stack or tight horizontal line to prevent physical bend tension on the internal pin rows.
Examine the 36-pin contact paths on both cable ends to verify they are free from debris or bent pins before starting installation. Align the connector shell straight with the mating socket on the system backplane, then push the component forward smoothly until it seats completely into the socket housing. Secure the built-in locking screws firmly using a precision tool to prevent operational vibration from shifting the connector face. Keep the minimum bend radius parameters intact along the 20 cm run, ensuring the wire jacket never contacts sharp metallic frame edges or high-temperature power bus elements inside the rack cabinet.
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