Wesley BC-620-4CA User Manual

Page 6

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2

Curtis 1234/36/38 Manual,

OS

11

Adaptation of control algorithm to motor temperature variation so

optimal performance is maintained under widely varying conditions

Real-time battery current, motor torque, and power estimates available

Power limiting maps allow performance customization for reduced motor

heating and consistent performance over varying battery state-of-charge

Powerful operating system allows parallel processing of vehicle control

tasks, motor control tasks, and user configurable programmable logic

A wide range of I/O can be applied wherever needed, for maximum

distributed system control

Internal battery-state-of-charge, hourmeter, and maintenance timers

Easily programmable through the Curtis 1311 handheld programmer

and 1314 PC Programming Station

CAN bus connection allows communication with other CAN bus

enabled system components; protocol meets CANopen standards;

other 11-bit identifier field CAN protocols can be custom configured

through VCL

Field-programmable, with flash downloadable main operating code

Thermal cutback, warning, and automatic shutdown provide protection

to motor and controller

Rugged sealed housing and connectors meet IP65 environmental sealing

standards for use in harsh environments

Insulated metal substrate power base provides superior heat transfer for

increased reliability

Built-in Dual Drive software allows easy setup and control of typical

dual-drive vehicles, without VCL.

Note: If you have a dual-drive application, see the Dual Drive

Addendum to the 1234/36/38 manual, part number 37022-DD.

Familiarity with your Curtis controller will help you install and operate it prop-
erly. We encourage you to read this manual carefully. If you have questions,
please contact the Curtis office nearest you.

Using the 1311 handheld programmer, you can set up the controller to per-
form all the basic operations. In this manual, we first show you how to wire
your system and adjust its performance characteristics without the use of VCL.
Then, in Section 7, we show you how to adjust the system using VCL, which
interacts with a second, independent software realm resident in a powerful logic
controller embedded within the 1234/36/38 controller.

1 — OVERVIEW

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