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1©2001 Casablanca Fan Co. www.CasablancaFanCo.com Removing Control Gently Pull the lower edge of the control out from the holder. Note: The wall anchors and 6-32 x 1” screws may be used in situations where mounting to a stud is not possible. Use the inner mounting holes. After securing the anchor, discard the anchor’s pointed screws and use the 6-32 decor ovalhead screws supplied. VERSA•TOUCH HOLDER INSTALLATION / STORAGE DECOR OVALHEAD SCREW 6-32 X 1” TOP GOES IN FIRST Wall Installation Step 1. Locate a 2x4 wall stud in a convenient loca- tion. Step 2. Orient the control holder as shown over the 2x4 stud. Step 3. Use the 1" wood screws in ei- ther the inner or outer mounting holes. Install and tighten screws by hand only. ROCKER TYPE LIGHT SWITCH SWITCH COVER PLATE STANDARD TOGGLE SWITCH SWITCH COVER PLATE INNER MOUNTING HOLES CONTROL HOLDER OUTER MOUNTING HOLES SCREW 6-32 X 1” (2) SCREW 6-32 X 3 /8” (2) WOOD SCREW 1” (2) DRYWALL ANCHOR 6-32 (2) REMOVE TABS CAUTION! DO NOT USE WITH WALL DIMMER. 9V BATTERY W-43 CONTROL Rocker Light Switch Step 1. Break off the two tabs by pushing outward. Step 2. Remove the two screws holding the switch cover plate. Do not remove the cover plate. Step 3. Orient the control holder as shown and line up the two outer mounting holes with those on the switch. Step 4. Install and tighten screws by hand only. VERSA•TOUCH CONTROL HOLDER INSTALLATION W-42 W-43 CONTROL HOLDER VERSA•TOUCH INSTALLATION Standard Light Switch Step 1. Remove the two screws holding the switch cover plate. Do not remove the cover plate. Step 2. Orient the control holder as shown and line up the two inner mounting holes with those on the switch. Step 3. Install and tighten screws by hand only. VERSA•TOUCH BATTERY INSTALLATION GUIDE SLOTS Install Battery Press battery into control aligned as shown. Observe proper polarity. Replace the battery door. SNAP SOCKET PLUG Remove Battery Door Turn control on its front. Twist a coin to unsnap the door A. Lift door away from control B and remove C. Changes or modifications not expressly ap- proved in writing by Casablanca Fan Co. may void the user’s authority to operate this equipment. This device complies with RSS-210 of Industry Canada. Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Control Storage Angle control in top first until the unit can be gently pushed back and snapped into place. WOOD SCREW 1” ANCHOR PANHEAD SCREW DRYWALL ANCHOR 2©2001 Casablanca Fan Co. www.CasablancaFanCo.com SEND SIGNAL LED VERSA•TOUCH OPERATION Fan Control To start the fan. Press the selected speed button to run the fan at the desired speed. LO=Low speed MED=Medium speed HI=High speed To turn off the fan. Press the FAN OFF button. Airflow Direction To reverse the airflow press the REVERSE button. Reverse operates at any speed whether fan is on or off. The fan returns to its set speed after reversing. Light Control Turn the light on or off independently from the fan by pressing the UP LIGHT, DOWN LIGHT, OR BOTH button. (This is a rocker switch. Press the left side for the Up Light, right side for the Down Light, and the middle for both.) Keep pressing the button in excess of 0.7 seconds, it becomes a dimmer. The light varies from ‘bright’ to ‘dim’ over approximately 8 seconds. This sequence will reverse the light when it reaches the brightest or dimmest level if you continue to hold the LIGHT button. Release the button when the desired level is reached. Auto Resume Quick (pressing less than 0.7 seconds) on/off operation of the LIGHT button maintains the desired brightness level set previously. 9 VERSA•TOUCH IF FAN DOES NOT WORK If the fan is not functioning after installation: Step 1. Check to make sure that batteries are installed correctly in the control. Step 2. Turn the power off to the fan (from the circuit breaker) for at least 5 seconds. Step 3. Turn the power back on (at the circuit breaker) and push the Hi, Med, and Low buttons–in that order–within 20 seconds. Step 4. The fan should now function properly. VERSA•TOUCH CHANGING FREQUENCY SETTING You will only have to change the dip switch settings in the remote if you are using more than one fan in the same area and want to control them separately. Step 1. At the circuit breaker or fuse box, turn the power off for the fan you want to change. Step 2. Open the battery door of the Versa•Touch control and remove the batteries. Step 3. Change the dip switch settings, assuring that they are different from the previously installed Versa•Touch fan. Step 4. Re-install the batteries and the battery door on the control. Step 5. At the circuit breaker or fuse box, turn the power back on for the fan whose frequency you are changing. Step 6. Within 20 seconds of restoring power, push the Hi, Med, and Lo buttons (in that order). Note: All fans leave the factory set to ‘00000’. WITHIN 20 SECONDS OF TURNING THE FAN ON, PRESS IN THIS ORDER TO SET NEW FREQUENCY: 1. HI 2. MED 3. LO 123 123 CIRCUIT BREAKER OR FUSE BOX PRESS IN THIS ORDER TO SET NEW FREQUENCY: 1. HI 2. MED 3. LO DIP SWITCH SET TO ‘01001’ DIP SWITCH SET TO ‘10000’ VERSA•TOUCH CONTROL (BACK) Note: You may want to label your controls to assure you do not mix them up. WARNING: Do not turn the power off at the circuit breaker, then back on, for the previously installed Versa•Touch fan(s), as you may inadvertantly change the frequency settings for it as well. 3©2001 Casablanca Fan Co. www.CasablancaFanCo.com Before Requesting Service: Please follow this troubleshooting guide before contacting your dealer for assistance. PROBLEM POSSIBLE REMEDIES PROBLEMPOSSIBLE REMEDIES.. FAN WILL NOT START•Check main circuit fuses, circuit breakers, or wall switch position. Check all wire connections, making sure the power is turned off during this inspection. •Pin connectors are not making good contact. C…
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Casablanca Fan & Light Remote Control Transmitter Block Diagram Description: The top box of the diagram below represents all of the potential keys that may be pressed for the Casablanca W-42 & W-43 transmitters. Pressing any key generates an encoded PCM code word which will modulate on a 304 MHz RF carrier for transmission. The encoded PCM code word is obtained from encoder U1 and is ASK modulated by the RF oscillator formed by transistor Q1. Encoder U1 also provides four selectable security bits which can be set by the user. The frequency is factory tuned by inductor L1 to 304 MHz, and is not user adjustable. Antenna Loop UC1018 Transmitter Light Button(s) Fan Low Button Fan Medium Button Fan High Button Fan Off Button Fan Reverse Button U1 Encoder (HT12ESOP) Q1 (MPSH10) ASK Modulator & Oscillator (304 MHz) Factory tuned by L1 (0 ~ .22H) Hunter Fan & Light Remote Control RF Transmitter Coding Description: The UC1018 transmitter uses the following code words to modulate on a 304 MHz RF carrier by using ASK modulation. Examples of code words for different commands: 1xxxxx000101 1xxxxx001001 1xxxxx000110 1xxxxx000111 1xxxxx001000 1xxxxx001101 1xxxxx001110 (Where “x” can be set to “1” or “0” by the user with DIP switches.) Code “0” is represented as: 0.42 ms 0.21ms Code “1” is represented as: 0.21ms 0.42ms The interval between two code words is about 7.56 ms.
Casablanca Fan & Light Remote Control Transmitter Block Diagram Description: The top box of the diagram below represents all of the potential keys that may be pressed for the Casablanca W-42 & W-43 transmitters. Pressing any key generates an encoded PCM code word which will modulate on a 304 MHz RF carrier for transmission. The encoded PCM code word is obtained from encoder U1 and is ASK modulated by the RF oscillator formed by transistor Q1. Encoder U1 also provides four selectable security bits which can be set by the user. The frequency is factory tuned by inductor L1 to 304 MHz, and is not user adjustable. Antenna Loop UC1018 Transmitter Light Button(s) Fan Low Button Fan Medium Button Fan High Button Fan Off Button Fan Reverse Button U1 Encoder (HT12ESOP) Q1 (MPSH10) ASK Modulator & Oscillator (304 MHz) Factory tuned by L1 (0 ~ .22H) Hunter Fan & Light Remote Control RF Transmitter Coding Description: The UC1018 transmitter uses the following code words to modulate on a 304 MHz RF carrier by using ASK modulation. Examples of code words for different commands: 1xxxxx000101 1xxxxx001001 1xxxxx000110 1xxxxx000111 1xxxxx001000 1xxxxx001101 1xxxxx001110 (Where “x” can be set to “1” or “0” by the user with DIP switches.) Code “0” is represented as: 0.42 ms 0.21ms Code “1” is represented as: 0.21ms 0.42ms The interval between two code words is about 7.56 ms.
Project: 01RT4338 File: MC1324 Report: 010184 Date: March 26, 2001 Model: W-43 Test Report On Electromagnetic Compatibility Testing Hunter Fan Memphis, TN USA Copyright 2000 Underwriters Laboratories Inc. Underwriters Laboratories Inc. authorizes the above-named company to reproduce this Report provided it is reproduced in its entirety. Project: 01RT4338Underwriters Laboratories, Inc.Issued: 03/26/01 File: MC1324Test Report on Electromagnetic CompatibilityPage 2 of 55 Test Report: 010184 Test Report Details: Tests Performed By: Underwriters Laboratories Inc. 12 Laboratory Drive Research Triangle Park, NC 27709 Tests Performed For: Hunter Fan 2500 Frisco Avenue Memphis, TN 38114 USA Applicant Contact: Mr. Steve Bias (901) 248-2373 - FAX Test Report Number: 010184 Test Report Date: March 26, 2001 Product Type: Low-power Transmitter for Ceiling Fan/Lamp Model Number: W-43 Sample Serial Number: 2000-28 Sample Tag Number: S01LB136 EUT Category: Transmitter - Low Power EUT Type: Hand Held Sample Receive Date: February 20, 2001 Testing Start Date: March 08, 2001 Date Testing Complete: March 15, 2001 Underwriters Laboratories Inc. reports apply only to the specific samples tested under stated test conditions. All samples tested were in good operating condition throughout the entire test program. It is the manufacturer's responsibility to assure that additional production units of this model are manufactured with identical electrical and mechanical components. Underwriters Laboratories Inc. shall have no liability for any deductions, inferences or generalizations drawn by the client or others from Underwriters Laboratories Inc. issued reports. This report shall not be used to claim, constitute or imply product certification, approval, or endorsement by NVLAP or any agency of the US government. This report may contain data which is not covered by the NVLAP accreditation. Only data which is noted under Remarks of Summary of Testing as being NVLAP Accredited Data can be considered to be covered by the NVLAP accreditation. Project: 01RT4338Underwriters Laboratories, Inc.Issued: 03/26/01 File: MC1324Test Report on Electromagnetic CompatibilityPage 3 of 55 Test Report: 010184 Summary of Testing: TestTest NameComplyDoes NotSee #Test Requirement/SpecificationComplyRemark 1Radiated Disturbance Emissions - 9 kHz to 30 MHzX- 47 CFR Part 15, Subpart C / 47 CFR Part 15, Subpart C, Section 15.209 2Radiated Disturbance Emissions - 30 MHz to 1000 MHzX- 47 CFR Part 15, Subpart C / 47 CFR Part 15, Subpart C, Section 15.209 and 15.231 3Radiated Disturbance Emissions - Above 1 GHzX- 47 CFR Part 15, Subpart C / 47 CFR Part 15, Subpart C, Section 15.209 and 15.231 4Radiated Disturbance Emissions - Peak-to-Average RatioN/A- 47 CFR Part 15, Subpart C / 47 CFR Part 15, Subpart C, Section 15.231 5Radiated Disturbance Emissions - Occupied BandwidthX- 47 CFR Part 15, Subpart C / 47 CFR Part 15, Subpart C, Section 15.231 6Radiated Disturbance Emissions - Restricted BandsX- 47 CFR Part 15, Subpart C / 47 CFR Part 15, Subpart C, Section 15.205 Remarks: 1) The data contained herein can also be considered applicable to Canada RSS-210, Section 6.1.1 (Momentarily Operated Devices). 2) The test setup photo in Test 1 applies for all tests in this report. 3) The device's antenna is permanently attached and no other antenna can be used with it. Conclusion: The tests listed in the Summary of Testing section of this report have been performed and the results recorded by Underwriters Laboratories Inc. in accordance with the procedures stated in each test requirement and specification. The test list was determined by the Applicant as being applicable to the Equipment Under Test. As a result, the subject product has been verified to comply or not comply as noted in the Summary of Testing with each test specification. The test results relate only to the items tested. Project: 01RT4338Underwriters Laboratories, Inc.Issued: 03/26/01 File: MC1324Test Report on Electromagnetic CompatibilityPage 4 of 55 Test Report: 010184 Test Facilities: Test Location A) 10-Meter Anechoic Chamber (Industry Canada - IC 2953, NVLAP - 200246-0, VCCI - R-722) Constructed by Lindgren RF Enclosures, this room consists of a 17.9 by 12 by 8.3 m (inside clearance) shielded room lined with TDK absorber material. The walls, floor (conducting ground plane) and ceiling are constructed of double sided galvanized sheet steel supported by 19 mm thick particle board. The interior walls and ceiling are covered with 10 by 10 cm, 4.6 mm thick ferrite tiles and partially covered with polystyrene absorber cones. Removable floor tiles and cones covering the floor between the EUT and antenna are provided when RF immunity testing is performed. Room is provided with a 4.0 m diameter embedded turntable and a 1.2 by 2.1 m and 2.4 by 2.4 m double knife edge doors for access. Also, the room is fed electrical EUT power via permanently installed filters and is provided with a permanently mounted video surveillance camera. A remotely controllable antenna mast is located in the room for positioning the measuring antenna from 1 to 4 m above the ground plane. Test Location B) Compact Anechoic Chamber Constructed by Lindgren RF Enclosures, this room consists of a 6 by 3 by 2.9 m (inside clearance) shielded room lined with TDK absorber material. The walls, floor (conducting ground plane) and ceiling are constructed of double sided galvanized sheet steel supported by 19 mm thick particle board. The interior walls and ceiling are covered with 10 by 10 cm, 4.6 mm thick ferrite tiles and partially covered with polystyrene absorber cones. Removable floor tiles and cones covering the floor between the EUT and antenna are provided when RF immunity testing is performed. Room is provided with a 1.5 m diameter embedded turntable and a 1.2 by 2.1 m double knife edge door for access. Also, the room is fed electrical EUT power via permanently installed filters and is provided with a permanently mounted …
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12 Laboratory Drive · Research Triangle Park, North Carolina · United States
| # | Rule Parts | Frequency Range | Power Output | Emission |
|---|---|---|---|---|
| 1 | 15.231 | 303.8 MHz - 303.8 MHz | - | L1D79K0 |

Remote control for ceiling fan
Equipment Class
DSR - Part 15 Remote Control/Security Device Transceiver
Remote control for ceiling fan
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Fan and Light Control Transmitter
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Ceiling fan remote control transmitter
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Ceiling fan and lamp remote contro.
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter