
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Installation Instructions Garage Door Opener Radio Controls Model 5010 (300 mHz) \ 5012 (310 mHz) Single Button Transmitters Model 5020 (300 mHz) \ 5022 (310 mHz) Dual Button Transmitters Model 5190-01 (300 mHz) \ 5190-02 (310 mHz) Receivers WARNING: •• Disconnect operator power before any installation or repair •• Always wear safety glasses Your Digi-Code radio controls are designed specifically to remotely control a garage door opener from within an automobile and to give years of trouble free service without adjustment. Because all radio controls are set with the even numbered switches in the “ON” position when they leave the factory, it is recommended that a different code be selected and set at the time of installation. Please refer to the “Setting the Code Switch” section for instructions. The radio frequency (RF) portion of the controls, however, are tuned to standard frequencies and are thoroughly tested at the factory. This permits the addition or replacement of either the transmitter or the receiver by specifying the Model number and the RF frequency designated on the identification label. RF adjustments are not needed nor should any be attempted. RECEIVER INSTALLATION The receiver is designed to mount directly to the operator. It can be remotely installed if the operator terminal strip is not accessible, or if the power for the receiver is not obtainable from the operator. To direct mount the receiver, simply loosen the terminal screws on the operator and insert the two-way lugs from the receiver under the screw heads along the wall button wires, and tighten the screws ( See Figure #1) Place the antenna (a 10 inch black wire ) in a vertical position as far from any metal as possible. For remote installation the receiver may be mounted near the operator head on a joist or the ceiling by using the mounting tab. Order Model 5192-06 adapter, which permits connection between the operator terminal and the two-way lugs on the receiver. Slip on connectors at one end of the adapter connect to the flat side of each spade lug on the receiver, and the spade connectors at the other end connect to the operator terminal. Connect wires as follows: (a) White wire to terminal “1” or “24v” (b) Black wire to terminal “2” or “Relay” (c) Red wire to terminal “3” or “Common” ( Radio Power ) (d) Connect push button wires to terminal “1” and “2” (See Figure #2) Where power for the radio receiver is not available from the operator order a Model 5192-01 power transformer adapter for connection between the operator and the remote receiver. SETTING THE ( “RECEIVER” ) CODE SWITCH - TO WORK WITH MODEL 5010 AND MODEL 5012 SINGLE BUTTON TRANSMITTERS Use your finger to slide the “code switch hatch” from the receiver for access to the code switch. On the transmitter the entire front lower half of the case ( “ the battery hatch” ) is removeable. Use a coin or the curved end of the visor clip to disengage the lower half of the transmitter front. This will expose both the code switch and the battery compartment (See Figure #3). Model – 5010 (300mHz) or 5012 (310mHz) Set both code switches to the code of your choice, being sure both are set the same since a different setting of just one switch will prevent operation. The digital code is determined by the position of the 10 small switches numbered 1 through 10 located in the receiver and the transmitter. Any combination of “on” or “off” positions can be selected by using a pencil or a pen. (Note: The switches are in the “on” position when the switch is depressed toward the number.) See Figure #3 above. Once the codes have been set, check operation and reinsert the hatches. SETTING THE ( “RECEIVER” ) CODE SWITCHES - TO WORK WITH MODEL 5020 AND MODEL 5022 DUAL BUTTON TRANSMITTERS Use your finger to slide the “code switch hatch” from the receiver for access to the code switch. On the transmitter the entire front lower half of the case ( “ the battery hatch” ) is removeable. Use a coin or the curved end of the visor clip to disengage the lower half of the transmitter front. This will expose both the code switch and the battery compartment. See Figure #3 (Receiver) above and Figure #4 (Dual Button Transmitter) below. Figure #4 Model – 5020 (300mHz) or 5022 (310mHz) Before setting the receiver code switches, you will need to set the transmitter code switch on your model 5020 or 5022. We strongly suggest that you change the code from the factory setting to provide security for your own system, and to eliminate interference with neighboring systems. SETTING THE TRANSMITTER CODE SWITCH – MODEL’S 5020 & 5022 On the transmitter the entire front lower half of the case ( “ the battery hatch” ) is removeable. Use a coin or the curved end of the visor clip to disengage the lower half of the transmitter front. This will expose both the code switch and the battery compartment Once you have done this, locate the code switch and set code switch positions 1 through 9 to your personal code scheme ( THE 10 TH POSITION SWITCH MUST BE SET IN THE CLOSED POSITION “ON” ). We strongly urge that several coding schemes be avoided: ALL ON; 2,4,6,8,10, ON. These positions are similar to our or other manufacturers test positions, or are frequently used. SETTING RECEIVER #1 (WORKS WITH LEFT BUTTON ON TRANSMITTER) Use your finger to slide the “code switch hatch” from the receiver for access to the code switch. Set the receiver code switch positions 1 through 9 to match the transmitter code switch. Then make sure that the 10 th position switch on receiver #1 is set in the closed position “ON”. The left button on the transmitter should now operate this receiver. Once the codes have been set, check operation and reinsert the hatches. SETTING RECEIVER #2 (WORKS WITH RIGHT BUTTON ON TRANSMITTER) Use your finger to slide the “code switch hatch” from the receiver for access to the code switch. Set the receiver code switch positions 1 through 9 to match the transmitter code switch. Then make sure that the 10…
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89039Page 1 ATTESTATION Digi-Code Models CR-5010 and CR-5020, FCC ID OWMRC-DIGICODE Please see Report No. 415031-027 contained elsewhere in this application for certification.
89048Page 1 ATTESTATION Digi-Code Models CR-5012 and CR-5022, FCC ID OWMRC-DIGICODE Please see Report No. 415031-028 contained elsewhere in this application for certification.
307 Robbins Dr. • Troy, Michigan 48083 • Tel: 248 589-3645 • Fax: 248 588-6801 Date: February 28, 2000 Federal Communications Commission Equipment Approval Services P.O. Box 358315 Pittsburgh, PA 15251-5315 Dear Sir/Madam: We hereby make application for Grant of Certification on garage door remote control transmitters - model #’s 5010, 5012 & model #’s 5020, 5022. The model 5010 & 5020 transmitters operate on a fixed frequency of 300mHz and the model 5012 & 5022 transmitters operate on a fixed frequency of 310 mHz. All of these transmitters are compliant with Part 15 of the FCC rules and regulations. These products will be marketed and sold by: Digi-Code Inc., 307 Robbins Dr., Troy, Michigan 48083. These products will be manufactured by: KDS Controls, 307 Robbins Dr., Troy, Michigan 48083. Model’s 5010, 5012, 5020 & 5022 will be marked with FCC ID # OWMRC-DIGICODE Thank you for your assistance in this matter. Please contact us immediately if you have any additional questions or concerns. Sincerely, Richard J. Caceres President
307 Robbins Dr. • Troy, Michigan 48083 • Tel: 248 589-3645 • Fax 248 588-6801 Description of Operation Model CR-5010, Model CR-5020, Model CR-5012 and Model CR-5022: These transmitters are all remote control devices designed and manufactured for the purpose of radio control of garage door openers and other like devices. The physical size of these devices is such that they can be either hand held or visor mounted on the interior of an automobile or similar vehicle. Models CR-5010 and CR-5020 operate on a fixed frequency of 300 mHz and Models CR-5012 and CR-5022 operate on a fixed frequency of 310 mHz. Operation or actuation of all of these devices is controled by a simple electromechanical switch. Depressing the switch causes the transmitter to emit the radio signal and upon releasing the switch, the transmitter ceases to emit the radio signal. Two button models provide the capability for activating two remote control receivers. Personal coding of each device is provided by a small 10 position switch which is mounted on the printed circuit board. Access to this switch is provided when the cover of the transmitter is removed. 10 switch positions provide 1,024 personal code selections. All models are compliant with F.C.C. Part 15 Rules.
307 Robbins Dr. • Troy, Michigan 48083 • Tel: 248 589-3645 • Fax: 248 588-6801 R.F. Exposure Compliance Calculations Requirement: Less than 1 mW/cm 2 of radiated power at the surface of the device. Model CR-5010 and Model CR-5020: The following calculations will demonstrate that the Models CR-5010 and CR-5020 garage door remote control transmitters comply with this requirement. Both of these devices operate on a fixed frequency of 300.0 mHz. The physical size of these devices is such that the nearest surface is approximately one cm from the radiating portion of the transmitter. Assuming a point source of ratiation, the radiated power is related to the field strength by the equation: E ={(30*P t ) 1/2 }/R where:E = field strength in V/m P t = radiated power in Watts R = distance in meters from the point source The test report contained elswhere in this report indicates compliance of these models with a 5,433 μV/m maximum radiated field strength at a measurement distance of 3 meters. Solving the equation above for P t at this distance, P t = {(E*R) 2 }/30 Using R = 3 meters, and a maximum field strength of 5.433 x 10 -3 V/m, the radiated power is calculated to be less than 8.9 x 10 -6 Watts, or 8.9 x 10 -3 mW. The area of shere with a radius of 1 cm is: A = 4πr 2 A = 4*π*1 = 12.5 cm 2 Conclusion: Using the above calculations, the radiated power per unit area at a distance of 1 cm is: P/A = (8.9 x 10 -3 )/12.5 = 0.7 x 10 -3 mW/cm 2 or more than 3 orders of magnitude below the limit requirement of 1 mW/cm 2 . 307 Robbins Dr. • Troy, Michigan 48083 • Tel: 248 589-3645 • Fax: 248 588-6801 Model CR-5012 and Model CR-5022: The following calculations will demonstrate that the Models CR-5010 and CR-5020 garage door remote control transmitters comply with this same requirement. Both of these devices operate on a fixed frequency of 310.0 mHz. The physical size of these devices is such that the nearest surface is approximately one cm from the radiating portion of the transmitter. The test report contained elswhere in this report indicates compliance of these models with a 5,821 μV/m maximum radiated field strength at a measurement distance of 3 meters. In a calculation similar to the one above, the maximum radiated power per unit area for these models at a distance of 1 cm is 0.8 x 10 -3 mW/cm 2 . Conclusion: Again, the radiated power per unit area is more than 3 orders of magnitude below the limit requirement of 1 mW/cm 2 .
307 Robbins Dr. · Troy, Michigan · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 310 MHz - 310 MHz | - |

Garage Door Opener
Equipment Class
DSR - Part 15 Remote Control/Security Device Transceiver
Security Remote Control
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Garage Door Opener/Security Device
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Security Transmitter
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
CRR - Superregenerative Receiver
Equipment Class
CRR - Superregenerative Receiver