96
Triac (SSR) Output
Rating :
1A/240VAC
Inrush Current :
20A for 1 cycle
Min. Load Current :
50mA rms
Max. Off-state Leakage :
3mA rms
Max. On-state Voltage :
1.5V rms
Insulation Resistance :
1000Mohms min. at 500VDC
Dielectric Strength :
2500VAC for 1 minute
DC voltage supply characteristics (installed at output 2)
Alarm 1/Alarm 2
Alarm 1:
5V DC logic output, max. source current 100mA,
short circuit unprotected.
Alarm 2 relay:
Form A, max. rating 2A/240VAC,
200,000 life cycles for resistive load.
Alarm functions:
Dwell timer,
Deviation high/low alarm,
Deviation band high/low alarm,
PV1 high/low alarm,
PV2 high/low alarm,
PV1 or PV2 high/low alarm,
PV1-PV2 high/low alarm,
Loop break alarm,
Sensor break alarm.
Alarm mode:
Normal, latching, hold, latching/hold.
Dwell timer:
0–6553.5 minutes
Data Communication
Interface:
RS-232 (1 unit), RS-485 (up to 247 units)
Protocol:
Modbus protocol RTU mode
Address:
1–247
Baud Rate:
0.3~38.4Kbits/sec
Data Bits:
7 or 8 bits
Parity Bit:
None, even or odd
Stop Bit:
1 or 2 bits
Communication Buffer:
50 bytes
Analog Retransmission
Functions:
PV1, PV2, PV1-PV2, PV2-PV1, set point,
MV1, MV2, PV-SV deviation value
Output Signal:
4–20mA, 0–20mA, 0–1V, 0–5V, 1–5V, 0–10V
Resolution:
15 bits
Accuracy:
±0.05% of span ±0.0025%/°C
Load Resistance:
0–500ohms (for current output)
10Kohms minimum (for voltage output)
Output Regulation:
0.01% for full load change
Output Settling Time:
0.1 sec. (stable to 99.9%)
Isolation Breakdown Voltage:
1000VAC min.
Integral linearity error:
±0.005% of span
Temperature effect:
±0.0025% of span/°C
Saturation low:
0mA (or 0V)
Saturation high:
22.2mA (or 5.55V, 11.1V min.)
Linear output range:
0–22.2mA(0–20mA or 4–20mA),
0–5.55V (0–5V, 1–5V), 0–11.1V (0–10V)
User Interface
Dual 4-digit LED displays:
Upper 0.4" (10mm), lower 0.3" (8mm)
Keypad:
3 keys
Programming port:
For automatic setup, calibration, and testing
Communication port:
Connection to PC for supervisory control
Control Mode
Output 1:
Reverse (heating) or direct (cooling) action
Output 2:
PID cooling control, cooling P band 1~255% of PB
ON-OFF:
0.1–100.0(°F) hysteresis control (P band=0)
P or PD:
0–100.0% offset adjustment
PID:
Fuzzy logic modified
Proportional band 0.1~900.0°F
Integral time 0–1000 seconds
Derivative time 0–360.0 seconds
Cycle time:
0.1–100.0 seconds
Manual control:
Heat (MV1) and cool (MV2)
Auto-tuning:
Cold start and warm start
Self-tuning:
Select NONE or YES
Failure mode:
Auto-transfer to manual mode while sensor
break or A-D converter damage
Sleep mode:
Enable or disable
Ramping control:
0–900.0°F/minute or 0–900.0°F/hour ramp rate
Power limit:
0–100% output 1 and output 2
Pump/pressure control:
Sophisticated functions provided
Remote set point:
Programmable range for voltage or
current input
Differential control:
Control PV1-PV2 at set point
Digital Filter
Function:
First order
Time constant:
0, 0.2, 0.5, 1, 2, 5, 10, 20, 30, 60 seconds
programmable
Environmental and Physical
Operating temperature:
-10°C to 50°C
Storage temperature:
-40°C to 60°C
Humidity:
0 to 90% RH (non-condensing)
Insulation resistance:
20Mohms min. (at 500VDC)
Dielectric strength:
2000VAC, 50/60Hz for 1 minute
Vibration resistance:
10–55Hz, 10m/s for 2 hours
Shock resistance:
200m/s (20g)
Moldings:
Flame retardant polycarbonate
Dimensions:
50mm(W)X26.5mm(H)X110.5mm(D),
98.0mm depth behind panel
Weight:
120 grams
Approval Standards
Safety:
UL873 (11th edition, 1994), CSA C22.2 No. 24-93,
EN61010-1 (IEC1010-1)
Protective class:
NEMA 4X (IP65) front panel, indoor use,
IP 20 housing and terminals
EMC:
EN61326
Содержание TEC-2500
Страница 2: ...NOTES...
Страница 4: ...NOTES...
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Страница 11: ...7 1 5 Menu Overview...
Страница 13: ...9 1 7 Parameter Description...
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Страница 19: ...15...
Страница 20: ...16 NOTES...
Страница 25: ...21 2 9 CT Heater Current Input Wiring...
Страница 27: ...23 2 11 Output 1 Wiring Continued...
Страница 29: ...25...
Страница 31: ...27 2 14 Alarm 2 Wiring...
Страница 32: ...28 2 15 RS 485...
Страница 34: ...30 2 17 Analog Retransmission...
Страница 35: ...31 2 18 Programming Port See figure 1 3 in section 1 3 to find the programming port location...
Страница 36: ...32 NOTES...
Страница 45: ...41 Although the above descriptions are based on alarm 1 the same conditions can be applied to alarm 2...
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Страница 98: ...94 NOTES...
Страница 101: ...97 A 1 Menu Existence Conditions...
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Страница 104: ...100 A 2 Factory Menu Description...
Страница 105: ...101 A 5 Memo Use the following table as a master copy for your settings page 1 of 2...
Страница 106: ...102...