Kramer Electronics VS-66FW user manual Then send HEX codes

Page 29

Kramer Protocol 2000

then, after the required delay, send HEX codes

07 80 C1 81 (execute delayed switch) to implement the switch.

NOTE 18 ± After this instruction is sent, the unit will respond to the ASCII command set. The ASCII command to operate with the HEX command set must be sent in order to return to working with HEX codes.

NOTE 19 ± When data (ie. the INPUT and/or OUTPUT bytes) of more than 7 bits is required, this instruction is sent before sending the instruction needing the additional bits. The data in this instruction then becomes the Most Significant Bits of that next instruction. For example, to set the audio gain (instruction 22) of output 3 to 681dec (2A9hex), you would first send HEX codes

3F

80

85

81

and then send HEX codes

 

 

 

16

83

A9

81

To set the audio gain of output 6 to 10013dec (271Dhex), first send HEX codes

3F

80

CE

81

followed by HEX codes

 

 

 

16

86

9D

81

NOTE 20 ± To store data in the non-volatile memory of the unit, e.g. the EEPROM for saving SETUPS. The EEPROM address is sent using the INPUT byte, and the data to be stored is sent using the OUTPUT byte. To use this instruction, it is necessary to understand the memory map, and memory structure of the particular machine.

NOTE 21 ± Instruction 59 and instruction 60 load data for sending to the crosspoint switcher (or for storing in a SETUP), i.e. the data is ª lined-upº to be executed later. Instruction 58 executes the loaded data.

NOTE 22 ± If the INPUT byte is set as 127dec, then the data stored in a SETUP is loaded. The SETUP # is in the OUTPUT byte.

NOTE 23 ± Further information needed in instructions 21, 22, 25 and 26, is sent using instruction 42 ± which is sent prior to the instruction. For example, to request the audio gain value of right input # 9, send hex codes

2A

84

80

81

and then send HEX codes

 

 

 

19

89

81

81

25

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Contents Model Contents Tables FiguresAddendum VS-66FW Overview IntroductionGetting Started FireWire Compliance Understanding FireWireYour VS-66FW 6 Port FireWire Switcher Configuring as a FireWire Hub Configuring the VS-66FW as a 6 Port FireWire Hub Defining the VS-66FW 6 Port FireWire SwitcherVS-66FW 6 Port FireWire Switcher Front Panel VS-66FW 6 Port FireWire Switcher Features Connecting the VS-66FW Rear Panel Connecting the VS-66FWConnecting the VS-66FW 6 Port FireWire Switcher Controlling via RS-232 for example, using a PCControlling via RS-485 Setting the DipswitchesRemote Connector Connecting the Remote ConnectorOperating the VS-66FW Displaying Unit CharacteristicsConfirming Settings Switching LEAF- Branch CombinationsLEAF-BRANCH Storing/Recalling Input/Output ConfigurationsLocking the Front Panel Connecting the PC to the RS-232 Port Flash Memory UpgradeDownloading from the Internet Upgrading FirmwareOpen Configuration File window appears Open Configuration File Select Window RS-232 Window Turn the Power switch on the VS-66FW OFF Table of Hex Codes for Serial Communication Technical SpecificationsProtocol Definitions Kramer ProtocolInstruction Codes for Protocol 2000 Relevant to the VS-66FW VIS setting = 1, which is defined as VIS from input #1 Then send HEX codes Only the first purchase customer may enforce this warranty 2900-000066 REV