Lightwave Communications LDT-5525 Resistance Mode Operation, External Safety Switch Operation

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C H A P T E R 2

O P E R A T I O N

General Operating Procedures

Resistance Mode Operation

You can operate the LDT-5525 Temperature Controller in several modes, constant current (I TE), constant thermistor resistance (R), or constant temperature (T). This example is for constant resistance (R) mode.

aPlug the LDT-5525 Temperature Controller into an AC power source supplying the correct voltage and frequency for your unit (refer to the back panel for the correct ratings).

bTurn on the LDT-5525 Temperature Controller. The OUTPUT stage will be off at power up and the unit will automatically configure its parameters to the state which existed when the power was last shut off.

cPress the ENBL switch in the ADJUST section of the front panel so that the indicator is lit (adjustment enabled). Press the MODE switch until the R mode is selected.

dCheck the setting of the SENSOR SELECT switch for the desired operation (10 µA or 100 µA). The sensor code will be displayed for two seconds during the power-up sequence.

ePress the PARAMETER switch and check the setting of I LIMIT, T LIMIT, and GAIN. Press the CAL switch and check the setting of C1 and C2 to insure that they are compatible with the equipment you are using.

fPress the DISPLAY switch until the VIEW SET indicator is lit and check the set point resistance. If it requires changing, turn the knob until the desired value is displayed.

gTurn the TEC output on by pressing the OUTPUT ON switch. The unit will automatically control the thermistor to the set point resistance.

If the exact resistance is unknown (to control to a desired temperature), press the DISPLAY switch to view the measured temperature. Readjust the resistance set point and recheck the temperature until the desired result is attained.

Note: In some cases, a greater than 0.1 oC temperature set point resolution may be attained by using R mode with the appropriate resistance value.

If the mode is switched from R mode to T mode, the resistance set point will be lost. This is becaused in T mode, the temperature set point is converted and also stored as a resistance set point automatically.

hWhen the unit is powered off, the state of the unit at power-down is saved in non- volatile memory.

External Safety Switch Operation

On the TEC connector, pins 13 (TEMP LIMIT) and 15 (DIGITAL GND) form a type of external safety switch (see Figure 2.3). These two pins are normally not connected (open circuit), and must remain open for the TEC output to be on. If there is a short circuit between these pins the TEC output will be disabled.

This circuit is useful for remote monitoring of temperature limit, and therefore is labeled TEMP LIMIT on the back panel connector. This switch may be used with

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Contents User’s Guide Page Table of Contents Appendix a Steinhart-Hart Equation Appendix C AD590 and LM335 Sensor Calibration Iv LDT-5525 List of Figures Vi LDT-5525 Safety Information and the Manual General Safety ConsiderationsSafety Symbols Safety Marking SymbolsWarranty Claims for Shipping Damage Comments, Suggestions, and Problems When you contact us, please have the following informationXii LDT-5525 Introduction and Specifications Product OverviewAvailable Options and Accessories Description Model NumberSpecifications Output1User Calibration General Specifications LDT-5525 AC Power Considerations OperationRack Mounting Power-Up Sequence Introduction to the LDT-5525 Front PanelAdjustments Sensor CAL Output Sensor Select Switch Back Panel Controls and ConnectionsTEC Connector Back Panel TEC ConnectorTEC Grounding Considerations General Operating Procedures Temperature Mode OperationWarm-Up and Environmental Considerations Resistance Mode Operation External Safety Switch OperationBooster Operation General Operating Procedures LDT-5525 Maintenance and Troubleshooting Calibration OverviewRecommended Equipment Environmental ConditionsWarm Up Calibration Adjustments Thermistor CalibrationAD590 Sensor Calibration LM335 Sensor Calibration ITE Current Calibration Troubleshooting Symptom Causes and Corrective ActionsTemperature, based on C1 and C2 STEINHART-HART Equation Table A.1 Comparison of Curve Fitting EquationsThermistor R/T Curves Computer Program REM Print Using H$ I, TI, RI LDT-5525 Sensing Current Thermistor Selection Thermistor RangeTable B.2 10K Thermistor Temperature Range Temperature Resolution Selecting and Using ThermistorsSelecting the Sensing Current Thermistor Range AD590 and LM335 Sensor Calibration AD590 SensorLM335 Sensor Figure C.1 AD590 Nonlinearity0607 One Point Calibration Method Two Point Calibration MethodC1n = U + V * C1 and C2n = V * C2 LDT-5525