Datenblatt-Suchmaschine für elektronische Bauteile |
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SS361CT Datenblatt(PDF) 2 Page - Honeywell Solid State Electronics Center |
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SS361CT Datenblatt(HTML) 2 Page - Honeywell Solid State Electronics Center |
2 / 4 page 2 www.honeywell.com/sensing Table 1. SS361CT/SS461C Performance Specifications (At 4 Vdc to 24 Vdc supply, 20 mA load, T A = -40 ºC to 125 ºC [-40 ºF to 257 ºF] except where otherwise specified. Characteristic Condition Min. Typ. Max. Unit Supply voltage -40 °C to 125 °C [-40 °F to 257 °F] 4 – 24 Vdc Supply current Vsupply = 5 V at 25 °C [77 °F] Vsupply = 3 V at 25 °C [77 °F] – – – 4 3.5 – 6 5 8 mA Vsat Gauss >95 – – 0.4 V Output leakage current Gauss >95 – – 10 µA Rise/fall time rise fall Vsupply = 12 V at 25 °C [77 °F] R L =1.6 KOhm, CL = 20 pF – – – – – – 1.5 1.5 1.5 µs Operate -40 °C to 85 °C [-40 °F to 185 °F] 5 50 80 Gauss -40 °C to 125 °C [-40 °F to 257 °F] 5 50 95 Release -40 °C to 85 °C [-40 °F to 185 °F] -80 -50 -5 Gauss -40 °C to 125 °C [-40 °F to 257 °F] -95 -50 -5 Differential -40 °C to 85 °C [-40 °F to 185 °F] 50 100 160 Gauss -40 °C to 125 °C [-40 °F to 257 °F] 50 100 190 Operating temperature Vsupply = 4 Vdc to 24 Vdc -40 [-40] – 125 [257] °C [°F] Storage temperature – -40 [-40] – 150 [302] °C [°F] NOTICE Bipolar Hall-effect sensor ICs may have an initial output in either the ON or OFF state if powered up with an applied magnetic field in the differential zone (applied magnetic field >Brp and <Bop). Honeywell recommends allowing 10 µs for output voltage to stabilize after supply voltage has reached 5 V. NOTICE The magnetic field strength (Gauss) required to cause the switch to change state (operate and release) will be as specified in the magnetic characteristics. To test the switch against the specified magnetic characteristics, the switch must be placed in a uniform magnetic field. Table 2. SS361CT/SS461C Absolute Maximum Ratings 1 Characteristic Min. Typ. Max. Unit Supply voltage -26.0 – 28.0 V Applied output voltage -0.5 – 28.0 V Output current – – 20 mA Magnetic flux – – no limit Gauss Note 1: Absolute maximum ratings are the extreme limits that the device will withstand without damage to the device. However, the electrical and mechanical characteristics are not guaranteed as the maximum limits (above recommended operating conditions) are approached, nor will the device necessarily operate at absolute maximum ratings. Figure 1. Typical Magnetic Characteristics Figure 2. Current Sinking Output Block Diagram |
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