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EE-SY310 Datasheet(PDF) 2 Page - Omron Electronics LLC |
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EE-SY310 Datasheet(HTML) 2 Page - Omron Electronics LLC |
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2 / 4 page ![]() Photomicrosensor (Reflective) EE-SY310/-SY410 329 I Engineering Data Note: The values in the parentheses apply to the EE-SY410. Input Output Input Output EE-SY310 EE-SY410 200 mm dia. 15 mm 5 mm 15 mm 15 mm (tPLH) (tPHL)(tPLH) (tPHL) Note: 1.With incident light" denotes the condition whereby the light reflected by white paper with a reflection factor of 90% at a sensing distance of 5 mm is received by the photo IC when the forward current (IF) of the LED is 20 mA. 2. Sensing object: White paper with a reflection factor of 90% at a sensing distance of 5 mm. 3. Hysteresis denotes the difference in forward LED current value, expressed in percentage, calculated from the respective forward LED currents when the photo IC is turned from ON to OFF and when the photo IC is turned from OFF to ON. 4. The value of the response frequency is measured by rotating the disk as shown below. 5. The following illustrations show the definition of response delay time. The value in the parentheses applies to the EE-SY410. Forward Current vs. Collector Dissipation Temperature Rating Forward Current vs. Forward Voltage Characteristics (Typical) LED Current vs. Supply Voltage (Typical) LED Current vs. Ambient Temperature Characteristics (Typical) Low-level Output Voltage vs. Output Current (Typical) Current Consumption vs. Supply Voltage (Typical) Response Delay Time vs. Forward Current (Typical) Sensing Position Characteristics (Typical) Low-level Output Voltage vs. Ambient Temperature Characteristics (Typical) Distance d1 (mm) IFT OFF (IFT ON) IFT ON (IFT OFF) IFT OFF (IFT ON) IFT ON (IFT OFF) IOL = 16 mA IOL = 5 mA VOUT (EE-SY3 @@) VOUT (EE-SY4 @@) tPHL (tPLH) Sensing object: White paper with a reflection factor of 90% I F = 20 mA V CC = 5 V Ta = 25 °C Operate Release Forward voltage VF (V) Supply voltage VCC (V) Supply voltage VCC (V) Forward current IF (mA) VCC = 5 V IF = 0 mA (15 mA) Ta = 25 °C IF = 0 mA (15 mA) VCC = 5 V RL = 330 Ω Ta = 25 °C Ambient temperature Ta ( °C) Ta = 25 °C RL = 1 k Ω VCC = 5 V Ta = 25 °C Ambient temperature Ta ( °C) VCC = 5 V RL = 330 Ω Ta = −30°C Ta = 25 °C Ta = 70 °C Output current IOUT (mA) Ambient temperature Ta ( °C) IF = 0 mA (15 mA) |
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