AzEP SureShot, SureShot SSWR1 Installation And Operation Manual

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Installation and
Operation Manual
Model SSWR1
SureShotSureShot
SureShotSureShot
SureShot
Wireless Remote Controller
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Table of Contents
Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
Graphic 1: Key Placement . . . . . . . . . . . . . 5
Setting the Handheld T ransmitter Address . . . . . 5
Graphic 2: Back of T ransmitter . . . . . . . . . . . . 5
Teaching the SureShot Rack Mounted
Controller . . . . . . . . . . . . . . . . . . . . . . . 6
Programming the SureShot Rack Mounted
Controller . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Relay Programming . . . . . . . . . . . . . . . . . . . . . . . 8
Port Programming . . . . . . . . . . . . . . . . . . . . . . . . 9
Summary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
Contact Us . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
Limited Warranty . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
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INTRODUCTION
This SureShot™ Wireless Remote Controller is an RF wireless control system based on the LINX chipset. The handheld remote has a transmission range of up to 750 feet and can be set to any of 16,777,216 unique addresses. It uses a single 3V CR2032 lithium button power cell.
The handheld remote device can provide up to 8 functions.
Graphic 1: Key Placement
· Keys 1 through 4 control SPDT relays in the SureShot™ Controller . These contacts are available through the DB15 connector on the rear panel.
· Keys 5 and 6 provide user-programmable serial data strings via serial port 1. Keys 7 and 8 provide user-programmable serial data strings via serial port 2. Both serial ports are accessed via DB9 connectors on the rear of the control unit. The pinout is standard RS232 format (DB9 … pin 2 = data-in, pin 3 = data-out, pin 5 = common).
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SETTING HANDHELD TRANSMITTER ADDRESS
All transmitters are supplied set to the same address. To avoid contention with other units or to create unique relationships, the address can and should be changed, and then the rack mounted SureShot™ Wireless Controller must be taught that new address.
Changing the handheld transmitter’s address is accomplished by using a paperclip or probe to press the CREA TE button on the board, through the hole in the back of the transmitter’s case. Press the button and an LED will light up in the Access MODE_IND window (see Graphic 2), indicating that the address is being created.
Graphic 2: Back of
Transmitter
The address will be randomized for as long as the button is held down. Release the button and the randomized address will be saved and the LED will begin flashing to indicate that the Control Permissions may now be set. One at time, press the keys (on the front side of the handheld remote control) that the transmitter will have the authority to access. Usually this will be all 8 keys. Press the CREA TE button with the p aper clip again or wait 17 seconds for it to time out. The address and Control Permissions are now set.
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TEACHING SURESHOT RACK MOUNTED CONTROLLER
The decoder inside the rack mounted unit must learn the new address before it will accept any transmissions. To teach the decoder the address of the transmitter the unit needs to be put into the “learn” mode. To the right of the power LED on the front panel of the rack mounted unit is a small hole (see graphic). Insert the end of a paper clip through the hole to press and release the learn switch.
When the unit goes into learn mode the power LED will begin to flash red. While the LED is flashing, press any key on the handheld transmitter and hold it down for approximately two seconds. You must then press the learn switch again or just wait for it to time out in approximately 17 seconds. Either way, when the LED stops flashing, the decoder should have stored the handheld transmitter’s new address. It can quickly be tested by pressing any of the buttons on the handheld.
If the decoder recognizes the unit, the power LED will turn red as long as the handheld button is depressed, then return to green when it is released. If the decoder does not recognize the handheld, the light will remain green.
The decoder can store up to 40 different handheld addresses. If the memory is full when a new address is to be stored, the new address will overwrite the oldest address in memory . When this happens, the power LED will flash red 5 times to indicate that the memory is full.
To clear all stored addresses from memory , hold the learn switch closed for 10 seconds. The power LED will stay red for the full ten seconds, then return to green. When you release the learn switch, the power LED will again turn red for 2 seconds, then return to green. This indicates the memory has been cleared.
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PROGRAMMING SURESHOT RACK MOUNTED CONTROLLER
As delivered, the 4 relays are set for momentary operation and the serial data strings are NULL. The SureShot™ Controller is programmed using the Windows graphical user interface (GUI) software, which is included. Run the install program from the enclosed CD on any Windows-based PC. The PC must have a
serial port or a USB-to-serial adapter.
After installing the software, connect the PC to Port 1 of the SureShot™ Controller using the serial programming cable included with the unit. This programming cable is basically a NULL MODEM cable with female connectors on both ends. Additionally , pins 9 and 5 have a jumper between pins 9 and 5, which allows the Controller to sense that it is to go into programming mode. The cable tells it to switch from the stored parameters for Port 1 to 1 15,200 baud, 8N1, which are used for programming.
With the cable connected and the SureShot™ Controller powered up, open the programming software on the PC. The PC will query the Controller for all stored parameters and display them on the screen.
When the programming cable is disconnected, Port 1 will revert to the stored data parameters for that port.
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RELA Y PROGRAMMING
Each relay can be set to one of three operating modes: momentary , latched or pulsed.
In momentary mode, the relay closes when the corresponding key is pressed on the handheld transmitter and remains closed for as long as the key is pressed.
In latched mode, the relay alternately closes and opens. The first time the corresponding key is pressed the relay closes. The next time the key is pressed the relay opens. Each latched relay will remain in its last position until the next appropriate key press, unless power is interrupted.
In pulsed mode, the relay will close when the corresponding key is pressed and remain closed for a preset length of time. When pulsed is selected in any of the relay programming windows, a text box will appear next to the red button on the GUI. Pulse duration, in milliseconds, is entered in that box. The maximum pulse duration is 65,000 ms (65 seconds).
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PORT PROGRAMMING
Each of the two serial ports can be independently programmed with individual port parameters (baud rate, data bits, stop bits and parity). The maximum baud rate is 115,200. Both ports default to the factory settings of 1 15,200 baud, 8 dat a bits, 1 stop bit and NO P ARITY. Changing the parameters to match those of the controlled device is straightforward in the two port windows. Parity is input as ‘NONE’, ‘ODD’ or ‘EVEN’.
On the handheld transmitter , keys 5 and 6 each send a unique serial data string to Port 1, while buttons 7 and 8 each send a unique string to Port 2. The desired strings are set using the text boxes appropriately labeled in the port windows.
A simple text string should be typed into the text box. Each string can be up to a maximum of 50 characters. Most serial control codes contain some combination of simple ASCII text and control codes. Control codes are input as integer data (base 10) contained in brackets []. For example, to start a data string with the STX command (integer 1), begin the string with ‘[1]’. If the next data in the string is an integer , perhaps a switcher address, again enter it in brackets ‘[14]’. Any data not enclosed in brackets is taken literally. “[1]123[3]” is sent as integer 1 (STX) followed by ASCII characters ‘1’ ‘2’ ‘3’, followed by integer 3 (ETX). The carriage return and line feed characters are input as ‘[r]’ and ‘[n]’ respectively . An integer larger than 255 ([255]) will produce an error since no single character value can be larger than that. Because serial devices operate on byte-by-byte transmission, you should never encounter the need to input a value larger than 255.
The data string associated with each key is stored in the SureShot™ Controller exactly as it is entered in the GUI’s text
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box. When the handheld transmitter’s key is activated, that string is parsed and the bracketed data is converted at that time, before it is output to the controlled device.
When programming is compete, click on the SA VE button on the upper right hand corner of the GUI. The data will be sent to the SureShot™ Controller . Af ter the Controller saves the data, a confirmation is sent back to the Windows software and a “Data Saved” message will be displayed for 2 seconds in place of the Save button.
Any of the parameters can be changed at any time by simply editing the values desired and then resaving the data to the SureShot™ Controller .
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WIRELESS REMOTE CONTROL PRODUCT SUMMARY
This SureShot™ rack mount controller is an easy-to-use device for field or studio application. It is quite rugged and should provide years of worry-free use.
CONT ACT US
If you have any questions regarding this product or its use, please call Arizona Engineered Products LLC. Business hours are 8am to 5pm, Mountain S tandard T ime. 520-891-5858.
In addition, email inquiries may be directed to:
• CustomerService@AzEP.us
• UpgradeInfo@AzEP.us
Web Address: www.AzEP.us
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LIMITED WARRANTY
Arizona Engineered Products LLC (AzEP) warrants that if your SureShot™ Wireless Remote Controller is defective in materials or workmanship, AzEP will, at its option, repair or replace defective part(s) during a period of one (1) year following your purchase, subject to the following limitations and exclusions:
Important:
1. To obtain service, you must present or send the component(s) to:
Repair Service Arizona Engineered Products 6841 West Thunder Canyon Way Tucson, AZ 85745
2. The limited one-year warranty and remedy set forth above is in lieu of all other warranties, express or implied, including any warranty of merchantability and warranty of fitness for any particular purpose, and all other remedies, obligations or liabilities on the part of AzEP.
3. In addition, AzEP hereby disclaims liability for indirect, special, or consequential damages for breach of any express or implied warranty , including any implied warranty of merchantability and any implied warranty of fitness for a particular purpose, with respect to this SureShot™ equipment.
4. The duration of any implied warranty which might exist by operation of law shall be limited to one (1) year from the date of original purchase.
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5. This warranty does not apply to damage while in the possession of the consumer not resulting, in AzEP’s sole opinion, from a defect in material or workmanship.
6. This warranty does not apply to damage caused, in AzEP’s sole opinion, by misuse or tampering with any SureShot
equipment or components.
7. This warranty does not cover damage as a result of water , or other liquid, spilled on (or in) the Control Unit.
8. This warranty does not cover scratches on the equipment caused by use.
9. All postage, insurance and shipping costs incurred in presenting or sending this equipment to AzEP are your responsibility.
This warranty is not transferable.
It is the owner’s responsibility to ensure that this unit is installed, maintained and operated correctly . AzEP is not responsible for physical damage, video interference, failed transmissions, or financial loss resulting from the use of this equipment.
This warranty gives you specific legal rights, and you may have other rights which vary from state to state.
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Copyright 2008
Arizona Engineered Products LLC
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