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197 Datasheet(PDF) 3 Page - Honeywell Solid State Electronics Center |
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197 Datasheet(HTML) 3 Page - Honeywell Solid State Electronics Center |
3 / 11 page www.honeywell.com/sensing 3 6655 Series Temperature sensing type air/surface Thermistor type NTC Nominal resistance at 25 °C [77 °F] 10,000 Ohm, 12,000 Ohm Operating temperature range -20 °C to 110 °C [-4 °F to 230 °F] Housing material phenolic Electrical and mechanical interface quick connect terminal: (90°, 0.25 in), (0°, 0.25 in), (45°, 0.25 in), (90°, 0.1875 in) HEL-705, 707, 710 Series HEL-775 Series Sensor type 100 Ohm, 1000 Ohm platinum RTD 100 Ohm, 1000 Ohm platinum RTD Temperature coeffiecient 0.00385 Ohm/Ohm/°C, 0.00375 Ohm/ Ohm/°C 0.00385 Ohm/Ohm/°C, 0.00375 Ohm/ Ohm/°C Temperature sensing range TFE Teflon: -70° to +260°C (-94° to +500°F) Fiberglass: -75° to +500°C (-100° to +932°F) -55 °C to 150 °C [-67 °F to 302 °F] Packaging type alumina tube ceramic case Termination 28 ga. or 24 ga. leadwire SIP Base resistance and interchangeability 100 Ohm ±1; 0.6 Ohm at 0 °C, 100 Ohm ±1; 1.2 Ohm at 0 °C, 1000 Ohm ±1; 0.6 Ohm at 0 °C, 1000 Ohm ±1; 1.2 Ohm at 0 °C 100 Ohm ±1; 0.6 Ohm at 0 °C, 100 Ohm ±1; 1.2 Ohm at 0 °C, 1000 Ohm ±1; 0.6 Ohm at 0 °C, 1000 Ohm ±1; 1.2 Ohm at 0 °C Self-heating <15 mW/°C for 0.85 O.D. typ. <6,8 mW/°C typ., 9,7 mW/°C typ. Packaged Temperature Probes discrete RTd Sensors discrete and Packaged RTd Sensors: Our platinum-based RTDs are laser-trimmed for accuracy and flexibility — designed to offer stable and fast linear outputs, accurate and interchangeable, plus plastic and ceramic, miniatur- ized and surface mount hous- ings (including printed circuit board termination). Potential applications include motor overload and semiconductor protection, electronic assem- bly thermal management and temperature compensation, as well as HVAC equipment. discrete Thermistors: These sensors don’t amplify, rectify, polarize or generate a signal, but rather change resistance with any change in tempera- ture. The change can occur in the surrounding temperature or by passing a current through the thermistor to self-heat. |
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