Caution; EIKs produce millimeter wave radiation, which can be dangerous to personnel. Before operating an EIK CW system, ensure that appropriate waveguide connections are in place.
Caution; never apply prime power to the CW power supply with any of the connections open; irreparable damage may result and an operator hazard may exist.
Follow all instructions presented in Installation Instructions (EIK) prior to applying prime power.
The CW power supply incorporates protection to the EIK through the use of trips and limits preset at the factory. The user is responsible for incorporating prime power fusing, personnel safety and cooling interlocks.
Apply AC power by turning on "MAIN POWER" switch/breaker. The internal cooling fan should be heard running. After several identification messages on the front panel display, MENU 1 will appear.
The fourth line will display [HTR TD: **] which indicates the remaining number of seconds of heater (filament) warm-up high voltage delay. When the heater warm-up delay has expired, the message [Stdy / rdy] will be displayed. No high voltage operation is possible until "STAND-BY / READY" is displayed.
If the external cooling interlock is not satisfied, the lower display will indicate "EIK OVER TEMP".
*Ea in the lower display is only displayed when in calibrate / adjust mode.
While in STAND-BY mode, a small square next to Ea and Ek indicates that the preselected operating value is displayed.
Caution; do not leave the EIK operating in STAND-BY mode for extended periods of time. Operation of the heater without high voltage for periods greater than 1 hour may create poor high voltage application conditions and potentially producing cathode damage.
Pressing the "OPERATE" button will turn on the cathode and collector voltages to their preselected values. The display will now indicate the measured values of Eb (collector voltage) and Ek (cathode voltage). If utilizing the DIVIDED ANODE voltage terminal, the EIK will now be conducting nominal cathode current and be RF capable. However, if utilizing the REGULATED ANODE terminal, with only cathode voltage applied, no significant Ik or Iw will be conducted by the EIK.
Pressing the "RF ON" button will turn on the (REGULATED) anode voltage to the preselected value. The EIK will now be operating at preselected voltages and current.
Press the "RF OFF" button to turn off the (REGULATED) anode voltage. Press the "STAND-BY" button to turn off the cathode voltage.
Alternatively, pressing the "STAND-BY" button only will properly sequence off both voltages.
Caution; do not leave the EIK operating in STANDBY mode for extended periods of time. Operation of the heater (filament) without high voltage for periods greater than 1 hour may create poor high voltage application conditions and potentially producing cathode damage.
Caution; operation of the EIK at voltages other than those found on the EIK Final Test sheet (Test Data Sheet) may result in permanent EIK damage or out of specification performance.
To enable changes to either Ek or Ea, a password is required. Press S2 in Menu 4 (no displayed function). Rotate the ADJUST knob alternatively clockwise and then counterclockwise until the numbers 35451 are entered. The rotate the ADJUST knob once more in the opposite direction to enter into the Calibrate / Adjust mode.
Note; calibrations should not be required after factory commissioning. Consult CPI Canada for further recommendations.
The front panel displays information on EIK CW Power Supply parameters and system status. Data is displayed in pages that can be accessed through a system of menus. Four soft keys, the exit key, and the adjust knob allow navigation within the menu system.
The current function of each soft key is displayed in the screen row directly above each key.
Returns to the top level from within a menu sequence.
This knob is used to:
This screen displays key EIK parameters:
S1 enables adjustment of Ek or Ea (REGULATED) if the CW EIK Power Supply is in the CALIBRATE / ADJUST mode. In the STANDBY mode, Ea and Ek values are approximate preselection values. When the cathode and anode voltages are applied, measured values are displayed.
Menu 3 shows console (If) hours and RF ON (Ik) hours.
S1 (SETUP) key is described in a subsequent section.
S2 (INFO) key displays the following information:
This screen displays internal power supply and EIK (if used) temperatures. The system will shutdown if the internal power supply temperature exceeds 65°C.
S1 (WARNINGS) key accesses the Warnings screens (subsequent section).
Figure 4 illustrates the SETUP screen menu sequence.
Entry into this screen is from the top-level screen Menu 2 (EXIT to reach top level and then MORE until Menu 2).
Press S1 (SETUP) on Menu 2 repeatedly to cycle through the setup screens.
Press EXIT key to return to Menu 3.
Parameters or values are stored when you press MORE or EXIT.
Setup Screen 1 - Remote:
Setup Screen 2 - Temperature Units:
Setup Screen 3 - Beeper Volume and Count:
Setup Screen 4 - Computer Interface
This screen is accessed from Menu 4 by pressing the S3 (EVENTS) key. The display shows the last four system events along with their console hours. the latest (top) event will be flashing. The ADJUST knob can be turned to scroll through the last 100 events.
The computer interface can be used to implement all front panel control and monitoring functions except for calibration.
A sub-miniature DB-9 connector on the rear panel of the EIK CW Power Supply supports half-duplex RS-422 or RS-485 serial communication with an external computer.
Pin Number | RS-422 | RS-485 |
1 | N.C. | N.C. |
2 | * | |
3 | R+ | R+/T+ |
4 | T+ | * |
5 | GND | GND |
6 | T- | * |
7 | RL** | RL** |
8 | * | |
9 | R- | R-/T- |
*For 2-wire RS-485 operation, jumper pins 2 and 4 (R+ to T+) and pins 6 and 8 (R- to T-)
**To terminate the receiver with 120 Ohms, jumper pin 9 (R-) to pin 7 (RL). This termination is not usually needed at 19,200 baud or below.
Command blocks are formatted as follows:
STX | > | 0 | 1 | b | R | D | E | K | ETX | 0 | 1 | CR |
Prefix | Address | blank | Command | Suffix | Checksum | Terminator |
All characters are 8-bit ASCII.
The address must match the value in the setup screen.
The checksum is the hexadecimal sum of all ASCII character values following the STX character, up to and including the ETX character; divided by 256d (100h).
Example message exchange:
HOST:
STX | > | 0 | 1 | b | R | D | S | T | A | T | ETX | 0 | 1 | CR |
LOCAL:
ACK | STX | > | 0 | 1 | b | S | T | A | T | U | S | = | 2 | 2 | ETX | CR |
LOCAL replies to RDSTAT:
STATUS= | DESCRIPTION |
0 | No status to report, no command given |
1 | Last command was successful |
10 | Last command failed, invalid command |
11 | Last command failed, data was unparseable |
20 | Last command failed, data was beyond high limit |
21 | Last command failed, data was beyond low limit |
22 | Last command failed, data was out of range |
23 | Last command failed, data was wrong polarity |
50 | Remote mode not enabled |
60 | Not allowed |
LOCAL replies to RDFLT:
FLT= | DESCRIPTION |
7 | System fault |
8 | Heater fault |
9 | Low line voltage |
10 | Cathode over-voltage |
11 | Body over-current |
12 | Cathode under-voltage |
15 | Collector under-voltage |
16 | Inverter fault |
17 | Interlock open |
18 | Tube arc |
19 | EIK over-temperature (h) |
20 | Cabinet over-temperature (h) |
26 | Panel open |
29 | External inhibit |
30 | Anode over-voltage |
49 | EIK over-temperature (s) |
50 | Cabinet over-temperature (s) |
62 | Anode over-limit (s) |
64 | Anode not set (s) |
(h) = hardware
(s) = software
HOST COMMAND | LOCAL RESPONSE | MEANING |
PWR-ON | CR | Turn power on |
PWR-OFF | CR | Turn power off |
XMIT-ON | CR | Transmit |
XMIT-OFF | CR | Stop transmitting |
RESET | CR | Clear system faults |
RDS/N | s/n = | Read unit serial number |
RDSTAT | Status = | Refer to Status Code |
RDFLT | Status = | Refer to Fault Code |
RDCONHR | ConHr = | Read console hours |
RDCONMN | ConMn = | Read console minutes |
RDRFHR | RfHr = | Read RF (Ik) ON hours |
RDRFMN | RfMn = | Read RF (Ik) ON minutes |
RDEK | Ek = | Read cathode voltage |
RDEB | Eb = | Read collector voltage |
RDEF | Ef = | Read filament voltage |
RDIF | If = | Read filament current |
RDIW | Iw = | Read body current |
RDTMPEIKF | EIKF = | Read EIK temp. in °F |
RDTMPEIKC | EIKC = | Read EIK temp. in °C |
RDTMPPSF | PSF = | Read P/S temp. in °F |
RDTMPPSC | PSC = | Read P/S temp. in °C |
RDEIKOTF | EIKOTF = | Read EIK over-temp. warning level in °F |
SEIKOTF | none | Set EIK over-temp. warning level in °F |
RDEIKOTC | EIKOTC = | Read EIK over-temp. warning level in °C |
SEIKOTC | none | Set EIK over-temp. warning level in °C |
RDPSOTF | PSOTF = | Read P/S over-temp. warning level in °F |
SPSOTF | none | Set P/S over-temp. warning level in °F |
RDPSOTC | TC = | Read P/S over-temp. warning level in °C |
SPSOTC | none | Set P/S over-temp. warning level in °C |
RDIWOC | IwOC = | Read body current in mA |
SIWOC | none | Set body over-current in mA |
RDLOGIC | Sys = | Refer to Logic code |
RDHTDREM | HTD = | Read remaining heater warm-up delay |
LOCAL replies to RDLOGIC:
ASCII | MSD | LSD | ||
1 | Standby / ready | External inhibit | HTD OK | HV ON |
2 | RF OFF / ready | External interlock | Unused | Transmit ON |
4 | Unused | Unused | Unused | Remote mode |
8 | Unused | Power ON | Unused | Fault |
Example: logic code 07hex
Example 1:
HOST: turn high voltage ON
STX | > | 0 | 1 | b | P | O | W | - | O | N | ETX | 0 | 2 | CR |
LOCAL: successful command
CR |
Example 2:
HOST: incorrect checksum
STX | > | 0 | 1 | b | P | O | W | - | O | N | ETX | 9 | 9 | CR |
LOCAL: replies with command and NAK
NAK | STX | > | 0 | 1 | b | P | O | W | - | O | N | ETX | 9 | 9 | CR |
Example 3:
HOST: missing prefix
> | 0 | 1 | b | P | O | W | - | O | N | ETX | 9 | 9 | CR |
LOCAL: no response is missing prefix, address, or suffix
Example 4:
HOST: sends message to node 8 (wrong node)
STX | > | 0 | 8 | b | P | O | W | - | O | N | ETX | 9 | 9 | CR |
LOCAL: no response
Example 5:
HOST: sends unknown command
STX | > | 0 | 1 | b | P | W | ) | ~ | O | N | ETX | 9 | 9 | CR |
LOCAL: replies
ACK | STX | > | 0 | 1 | b | S | T | A | T | U | S | = | 1 | 0 | ETX | CR |
Example 6:
HOST: address delimiter is missing
STX | 0 | 1 | b | P | O | W | - | O | N | ETX | 9 | 9 | CR |
LOCAL: no response
Example 7:
HOST: sends message with no address
STX | P | O | W | - | O | N | ETX | 9 | 9 | CR |
LOCAL: no response