ADC ML-96 E.D. Light Emitting Diode Display Indicators, E.D. Display Indicator Number

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11.ROTATE SENSOR FAIL- Indicates a rotational sensor circuit failure meaning that there is a fault somewhere in the tumbler (basket) rotating circuit, or the Phase 6 OPL microprocessor controller (computer) program related to this circuit (program location 2) is set incorrectly. In the active mode it should be (ROTATE SENSOR ACTIVE), if the dryer is not equipped with the optional rotational sensor it should be set in the nonactive mode (No ROTATE SENSOR).

NOTE: RPM- This routine monitors the timing response from the existing rotational sensor input and derives a RPM measurement. To display this RPM measurement (press the “ENTER/START” key once and release, then press the “ENTER/START” key a second time and hold. This will display the RPM measurement). The rotational sensor must be active for operation of this feature.

12.CHECK MAIN FUSE- Indicates that the circuit fuse protection which is located on the back side of the Phase 6 microprocessor controller (computer) the display would read “CHECK MAIN FUSE.” If the display continues after the fuse has been replaced then it is the fault of the Phase 6 microprocessor controller (computer).

B.L.E.D. (LIGHT EMITTING DIODE) DISPLAY INDICATORS

The L.E.D. (light emitting diode) indicator dots located on the top portion of the display indicates various Phase 6 OPL computer output functions while a cycle is in progress. These indicator dots (as shown in the illustration below) DO NOT necessarily mean that the outputs are functioning. They are only indicating that the function output should be active (on).

1.L.E.D. DISPLAY INDICATOR NUMBER 1

a.For Optional Reversing Models:

1)This indicator dot is on when the drive tumbler (basket) motor is operating in the forward mode (clockwise [CW] direction).

2.L.E.D. DISPLAY INDICATOR NUMBER 2

a.For Optional Reversing Models:

1)This indicator dot is on when the drive (basket [tumbler]) motor is operating in the reverse mode (counterclockwise [CCW] direction).

3.L.E.D. DISPLAY INDICATOR NUMBER 3

a.Heat Circuit Indicator:

1)This indicator dot is on whenever the Phase 6 OPL microprocessor controller (computer) is calling for the heating circuit to be active (on).

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Contents ML-96 Retain This Manual In a Safe Place For Future Reference For Your Safety Page Table of Contents Section Safety Precautions Important InformationPage Routine Maintenance CleaningMATERIALS, Gasoline and Other Flammable Vapors Adjustments LubricationInstallation Requirements ENCLOSURE, AIR SUPPLY, and Exhaust RequirementsElectrical and GAS Requirements Operational Service Check Procedure Page Description of Parts Reversing Relay PanelGAS Burner Assembly HSI HOT Surface Ignition Module Gas Models OnlyDrive Motor Drive Shaft Assembly Idler Shaft AssemblyTumbler Basket Main Door Switch Sail Switch Gas Models OnlyBurner HI-LIMIT Gas Models Only Manual Reset Thermostat Lint Drawer SwitchLint Screen Computer Board Replacement ServicingIntroduction Keyboard Touchpad Label Assembly Replacement Microprocessor Temperature Sensor Probe ReplacementFlame Sensor Probe Replacement Ignition ControlsHot Surface Ignitor Flame Sensor Probe Gas Valve Replacement Refer to burner illustration on Main Burner Orifices ReplacementTo Test and Adjust Gas Water Column Pressure To Convert Natural Gas to L.P. GasBurner Tubes Replacement HSI Hot Surface Ignition Module ReplacementDisconnect electrical power to the dryer Open lint door Sail Switch Assembly Gas Models Only Sail Switch ReplacementTo Adjust Sail Switch Main Door Assembly Replacement To Install New Main Door GlassFront Panel Replacement Main Door Hinge Block ReplacementDrive Shaft Pulley Replacement Drive Motor Pulley ReplacementPage Basket Assembly 15/16 Flange Bearing ReplacementRotational Sensor Assembly Idler Shaft Pillow Block Bearing Replacement Drive Shaft Pillow Block Bearing ReplacementBelt Adjustment Motor to Drive Axle Drive Motor V-Belts Replacement Drive Motor ReplacementMotors Motorized Impellor Blower Replacement Lint Door Switch ReplacementTroubleshooting Computer will not accept keypad touchpad entriesDryer operates but is taking too long to dry Burner hi-limit safety thermostat is tripping Thermal overload for drive motor is trippingOverload for impellor fan motor is tripping There is excessive vibration coming from the tumbler basket Phase 6 OPL System Diagnostics Diagnostic L.E.D. Light Emitting Diode Display Failure CodesPage E.D. Light Emitting Diode Display Indicators E.D. Display Indicator NumberE.D. Display Indicator Number FAN Blower Output L.E.D. light emitting diode Indicator HT1 Heat Output L.E.D. light emitting diode IndicatorFuse Main Fuse Input L.E.D. light emitting diode Indicator Lint Lint Door Input L.E.D. light emitting diode IndicatorMain Main Door Input L.E.D. light emitting diode Indicator Power Supply Input L.E.D. light emitting diode Indicator E.D. Codes 1. Display Codes GAS Models only Power 24 VAC is not Evident AT GAS Valve GAS/ELECTRIC only BURNER/OVEN Open HI-LIMIT CircuitGAS only Ignition Attempt Failure Computer Logic and Wiring Diagram Page No Display Condition Drive motor reverses but does not forward, blower motor runsBlower motor does not operate, drive motor runs Lint Door ConditionMain Door Condition Microprocessor ComputerManual Reset HI-LIMIT Instructions For Phase 6 ModelsTechnical Information Motor Plate High and LOW VoltageData Label Information on the Data LabelHOW to USE a Manometer ML-96 Tool List ADC450406 1- 02/09/00-25
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ML-96 specifications

The ADC ML-122 and ML-96 are two advanced communication devices designed for efficient data collection and transmission in various applications. Both models are renowned for their robust performance and user-friendly features, which cater to a diverse range of industries.

The ADC ML-122 is a high-performance data logger that excels in multi-channel monitoring. It supports various input types, making it versatile for applications such as environmental monitoring, industrial process control, and research. One of its standout features is its ability to accommodate both analog and digital signals, allowing users to gather a wealth of data from different sources. The device supports a wide temperature range, ensuring reliability in diverse environmental conditions. Moreover, its built-in memory can store extensive data logs, which are easily downloadable for analysis.

On the other hand, the ADC ML-96 is designed primarily for telecommunication and network monitoring. It features advanced signal processing technologies that allow it to analyze and troubleshoot communication lines efficiently. The device is equipped with real-time monitoring capabilities, enabling users to detect issues as they arise, which is crucial in maintaining network integrity. The ML-96's compact design makes it an ideal choice for installation in tight spaces without sacrificing performance.

Both models are built with cutting-edge technologies that enhance their functionality. They integrate wireless communication protocols, such as Wi-Fi and Bluetooth, enabling seamless connectivity to cloud services for data backup and remote access. This feature empowers users to monitor conditions from anywhere, ensuring that critical information is always at hand.

The user interface for both the ML-122 and ML-96 is designed for ease of use. Equipped with a clear display and intuitive controls, users can navigate through settings and view data with minimal training. The devices also offer customizable alerts that notify users of any anomalies, adding an additional layer of security and responsiveness.

In terms of power management, both models utilize energy-efficient components, allowing for extended battery life. This is particularly advantageous in remote sensing applications where power sources may be limited. Furthermore, the ability to integrate with other systems makes these models adaptable to various operational needs.

In conclusion, the ADC ML-122 and ML-96 stand out in their respective markets due to their innovative features, reliable technologies, and user-friendly designs. With their flexibility and performance, they continue to set the standard for data logging and communication monitoring technologies.