Foxboro FBM215 P0922VU Brand New Communication Output Interface Module
Products Description

The HART Communication Output Module (FBM215) contains eight channel-isolated outputs. The FBM215 supports any mix of standard 4 to 20 mA devices and HART devices.
The FBM215 serves as a HART communications field device host, enabling the Foxboro Evo™ system to request and receive two digital messages per second from each field device. The message pass-through capability can be used to support HART universal, common practice, and device-specific commands, but not the burst communication mode.
These commands are implemented using the Intelligent Field Device Configurator Foxcom™ and HART™ Protocols (IFDC - refer to PSS 21S-8A3 B3 for details). The FBM215 provides an isolated power supply for each channel.
OVERVIEW
FBM215 HART® Communication Output Module
An FBM215 provides up to eight HART® output channels. HART outputs are electrically compatible with 4-20 mA signals, permitting the plant to upgrade field devices without the need to change the control system

FEATURES
- Key features of the FBM215 module are:
- Eight channel-isolated output channels, each providing one of the following outputs:
- • Standard 4 to 20 mA analog output signal
- • Digital HART Frequency Shift Keying (FSK) signal superimposed on a 4 to 20 mA analog output signal
- FSK modem dedicated to each output channel for bi-directional digital communications with a HART field device
- Galvanic isolation of all output channels from each other, and from ground and module logic
- Support for HART universal commands necessary to interface the field device with the Foxboro Evo system database
- Rugged design suitable for enclosure in Class G3 (harsh) environments
- Termination Assemblies (TAs) for locally or remotely connecting field wiring to the FBM215.

Applications

- Assembly Lines
- Machine Tools
- Industrial Robotics
- Automated Production Equipment
- Conveyor Systems
- Warehouse Automation
- Sorting Equipment
- Distribution Centers
FIELDBUS COMMUNICATION
A Fieldbus Communication Module or a Control Processor interfaces the redundant 2 Mbps module Fieldbus used by the FBMs. The FBM215 module accepts communication from either path (A or B) of the redundant 2 Mbps fieldbus – should one path fail or be switched at the system level, the module continues communication over the active path.
PRODUCT SAFETY
Underwriters Laboratories (UL) for U.S. and Canada UL/UL-C listed as suitable for use in UL/ULC listed Class I, Groups A-D; Division 2; temperature code T4 enclosure based systems when connected to specified Foxboro Evo processor modules as described in the Standard and Compact 200 Series Subsystem User's Guide (B0400FA). Communications circuits also meet the requirements for Class 2 as defined in Article 725 of the National Electrical Code (NFPA No.70) and Section 16 of the Canadian Electrical Code (CSA C22.1). Conditions for use are as specified in the Standard and Compact 200 Series Subsystem User's Guide (B0400FA). European Low Voltage Directive 2006/95/EC (Prior to April 20, 2016) and 2014/35/EU (Beginning April 20, 2016) and Explosive Atmospheres (ATEX) directive 94/9/EC (Prior to April 20, 2016) and 2014/34/EU (Beginning April 20, 2016) DEMKO certified as Ex nA IIC T4 for use in certified Zone 2 enclosure when connected to specified I/A Series processor modules as described in the Standard and Compact 200 Series Subsystem User's Guide (B0400FA). Also, see Table 1 on page

MODULAR BASEPLATE MOUNTING
The module mounts on a modular baseplate, which accommodates up to four or eight FBMs. The modular baseplate is either DIN rail mounted or rack mounted, and includes signal connectors for redundant fieldbus, redundant independent DC power, and termination cables.
TERMINATION ASSEMBLIES
Field output signals connect to the FBM subsystem via DIN rail mounted TAs. The TAs used with the FBM215 are described in "TERMINATION ASSEMBLIES AND CABLES" on page 7.
ISOLATION
The channels are galvanically isolated (both optical and transformer isolation) from each other, and from ground and module logic. The module withstands, without damage, a potential of 600 V AC applied for one minute between the isolated channels and earth (ground).


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