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143PC03G Datasheet(PDF) 2 Page - Honeywell Solid State Electronics Center |
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143PC03G Datasheet(HTML) 2 Page - Honeywell Solid State Electronics Center |
2 / 5 page Pressure Sensors 140PC Series Absolute, Differential, Gage, Vacuum Gage/Amplified Honeywell Sensing and Control 1-800-537-6945 USA 1-815-235-6847 International 1-800-737-3360 Canada 37 FEATURES PCB terminals on opposite side from the ports Fully signal conditioned 140PC SERIES PERFORMANCE CHARACTERISTICS at 8.0 ±0.01 VDC Excitation, 25°C Min. Typ. Max. Units Excitation 7.00 8.00 16.0 VDC Supply Current --- 8.00 20.0 mA Current Sourcing Output --- --- 10 mA Null Offset (141/142PC) 0.95 1.00 1.05 V Null Offset (143PC)* 3.45 3.50 3.55 V Null Offset 142PC15A @ 2 psia 1.62 1.67 1.72 V 142PC30A @ 2 psia 1.28 1.33 1.38 V Output at Full Pressure 5.90 6.00 6.10 V Span† (141/142PC) 4.95 5.00 5.05 V Span† (143PC)* --- 5.00 --- V Span 142PC15A (2 to 15 psia) 4.28 4.33 4.48 V 142PC30A (2 to 30 psia) 4.62 4.67 4.72 V Ratiometricity Error 7 to 8 V or 8 to 9 V --- ±0.50 --- %Span 9 to 12 V --- ±2.00 --- Stability over One Year --- ±0.50 --- %Span Response Time --- --- 1.00 msec Common Mode Pressure** --- --- 40 psi Weight --- 28 --- grams Short Circuit Protection Output may be shorted indefinitely to ground Output Ripple None, DC device Ground Reference Supply and output are common *Positive and negative pressure measurement. **Higher common mode pressures possible if sensor is not used over entire operating temperature range. †Span is defined as the algebraic difference between end points. Please note: actual output is 1 V to 6 V (at 8.00 ±0.01 VDC). Span is then 5V. ENVIRONMENTAL SPECIFICATIONS Operating Temperature −40° to +85°C (−40° to +185°F) Storage Temperature −55° to +125°C (−67° to +257°F) Compensated Temperature −18° to +63°C (0° to +145°F) Shock MIL-STD-202, Method 213 (50 g, half sine, 6 msec) Vibration MIL-STD-202, Method 204 (10 to 2000 Hz at 10 g) Media P2 port Wetted materials; polyester housing, epoxy adhesive, silicon, borosilicate glass, and silicon-to- glass bond* P1 port Dry gases only *Liquid media containing some highly ionic solutions could potentially neutralize the chip-to-glass tube bond. |
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