COMMON
SPECIFICATIONS - ALL MODELS
SIGNAL OUTPUT Connection: 2-wire
Linear Range: 4-20 mA Maximum Output: 35 mA Voltage Compliance:
9-50 Vdc Power Supply Rejection: 0.01% of span/volt INPUT/OUTPUT
PROTECTION CMV, Input to Case or Output: 2100 Vp per HV
test, 354 Vp per IEC spacing CMR, Input to Case or Output: 120 dB,
DC to 60 Hz NMV Across Output Leads: 120 Vac for 1 min Reverse
Polarity Across Output Leads: 400 Vp ACCURACY,
-40░C to +85░C Hysteresis & Repeatability: ▒0.1% of span
6-month Stability Error: ▒0.2% of zero suppression Error Due
to 50░C Change in Transmitter Temperature: Zero Error: ▒0.2% of zero
suppression Span Error: ▒0.2% of span ENVIRONMENTAL
Operating temperature: -40 to +85░C (-40 to +185░F) Storage Temperature:
-55 to +125░C (-67 to +257░F) Relative Humidity: 0 to 100% (sealed
case) Watertight Proof Pressure: 35 kPa (5 PSI) Shock: 55 g, half sine,
9-13 ms duration Vibration: 1.52 mm (0.06 in) double amplitude, 10-80
Hz cycled MECHANICAL Case
Material: Zamak« zinc alloy Gasket Material: Fluorosilicone
Diameter: 74 mm (2.9 in) Height, Including Barriers: 53 mm (2.1")
Weight: 380 g (13 oz) Electrical Connection: #6 screws with
wire clamps Terminal Protection: Standard: Screw terminal barriers
plus barrier strip cover CPB1 (Optional): Plastic cover for case top (protects
T/C screw terminals from air currents) NON-COMMON
SPECIFICATIONS RTD INPUT - MODEL
501 Signal Source: Pt 100 RTD Span for 4-20 mA Output:
100 to 1050░C (180 to 1890░F) Zero Suppression: -200 to +750░C (-328
to +1382░F) Source Connection: 2- or 3-wire Excitation Current:
200 ╡A Lead Resistance, Max: 100 ohm Bandwidth: DC-60 Hz
OHMS INPUT MODEL 501 Signal Source:
0-400 ohm Span for 4-20 mA Output: 35 to 400 ohm Zero Suppression:
0 to 365 ohm Source Connection: 2- or 3-wire Excitation Current:
200 ╡A Lead Resistance, Max: 100 ohm Bandwidth: DC-60 Hz
THERMOCOUPLE INPUT MODEL 502A Span
and Zero Suppression: See input table Input Resistance (Open T/C Detector
Resistance): 5 M ohm Bias Current, Max: 50 nA NMV Across
Input Leads: 120 Vac for 1 min NMR Across Input Leads: 40 dB, 50/60
Hz, 100 mV input Thermocouple Lead Resistance: For specified performance:
100 ohm Maximum: 10 kohm Step Response, Type: 400 ms MILLIVOLT
INPUT MODEL 504 Span for 4-20 mA Output: 5 to 100 mV
Zero Suppression: -30 to +60 mV Input Resistance: 100 M ohm
Bias Current, Max: 50 nA NMV Across Input Leads: 120 Vac for
1 min NMR Across Input Leads: 40 dB, 50/60 Hz, 100 mV input Step
Response, Type: 400 ms MILLIAMP INPUT MODEL
505 Span for 4-20 mA Output: 5 to 100 mA Zero Suppression:
-30 to +60 mA Input Resistance: 1 ohm Step Response, Type:
400 ms VOLT INPUT MODEL 506 Span
for 4-20 mA Output: 0.5 to 5 V (506-1); 5 to 50 V (506-2) Zero Suppression:
-3.5 to +6.0 V (506-1); -35 to +60 V (506-2) Input Resistance: 1 M
ohm Bias Current, Max: 1 nA NMV Across Input Leads: 120 Vac for 1 min
NMR Across Input Leads: 40 dB, 50/60 Hz, 100 mV input Step Response,
Type: 400 ms Quick Selection Guide by Input
Type
Model
|
Signal Type
|
Zero Suppression* for
4 mA Output |
Maximum
Signal* for 20 mA Output |
Signal
Span* for 20 mA Output |
Input
Impedance | |
RTD Pt 100 Ohms |
-200 to +750░C -328 to
+1382░F 0 to 365 ohm |
+850░C +1562░F 400
ohm | 100
to 1050░C 180 to 1890░F 35 to 400 ohm |
N/A
| 502A-J
|
Type J T/C Iron Costantan |
-50 to
+660░C -58 to +1220░F |
+760░C +1400░F
| 100
to 810░C 180 to 1458░F |
5 Mohm |
502A-K
|
Type K T/C
Chromel Alumel |
-50 to +1272░C -58 to
+2322░F | +1372░C
+2502░F | 100
to 1422░C 180 to 2560░F |
5 Mohm |
502A-T
|
Type T T/C
Copper Costantan | -50
to +350░C -58 to +662░F |
+400░C +752░F |
50 to
450░C 90 to 810░F |
5 Mohm |
502A-E
| Type
E T/C Chromel Costantan |
-50 to +900░C -58 to +1652░F
| +1000░C
+1832░F | 100
to 1050░C 180 to 1890░F |
5 Mohm |
| Millivolts
| -30
to +60 mV | +160
mV | 5
to 100 mV | 100
Mohm |
505 |
Milliamps
| -30
to +60 mA | +160
mA | 5
to 100 mA | 1
ohm |
506-1 |
Low
Volts | -3.5
to +6.0 V | +11
V | 0.5
to 5 V | 1
Mohm | 506-2
| High
Volts | -35
to +60 V | +110
V | 5
to 50 V | 1
Mohm | *The
signal span shown in column 5 for 4-20 mA output cannot include inputs below the
maximum signal in column 4. |