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IRMS6118 Datasheet(PDF) 3 Page - Vishay Siliconix |
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IRMS6118 Datasheet(HTML) 3 Page - Vishay Siliconix |
3 / 8 page Document Number: 82575 www.vishay.com Revision 17-August-01 3 Electrical Characteristics Table 3. Basic Operating Parameters, TA=25°C (except where noted) Table 4. I/O Parameters Table 5. Receiver Parameters, TA=25°C (except where noted) Parameter Symbol Min. Typ. Max. Unit Conditions Supported Data Rate — 9.6 — 115 Kb/s 1.63 µs or 3/16 clock period Power Supply Voltage VCC 2.4 — 5.0 V –25°C to +85°C, VCC to VSS Maximum LED Anode Voltage VLEDA —— VCC+4 V VCC=2.4 V to 5.0 V ICC Shut Down Current (Note 1) ICC1 — 0.01 1.0 µA SD=VCC, VCC=2.4 V to 5.0 V ICC Standby Current (Avg.) ICC1 65 110 — µA no signal, VCC=2.7 V to 3.3 V ICC Receiving Current (Avg.) ICC2 — 120 — µA VCC=2.7 V to 3.3 V ICC Transmitting Current (Avg.) ICC3 — 1.7 2.5 mA VCC=2.7 V to 3.3 V, No LED resistor, VLED=3.0 V DC Parameter Symbol Min. Typ. Max. Unit Conditions TxD, SD Input Capacitance — — 5.0 — pF VCC=2.4 V to 5.0 V TxD Resistance — 350 500 650 k Ω TxD=VCC, VCC=2.4 V to 5.0 V TxD, SD Input Threshold (Note 1) — 0.8 1.4 2.0 V VCC=2.4 V to 5.0 V SD to RxD Tri-State — — 35 100 ns VCC=2.4 V to 5.0 V SD to RxD Enable — — 90 200 ns VCC=2.4 V to 5.0 V RxD Output High VIH — 4.3 — V VCC=5.0 V, IOH=8 mA RxD Output High VIH — 1.7 — V VCC=2.4 V, IOH=3 mA RxD Output Low VIL — 0.7 — V VCC=5.0 V, IOL =8 mA RxD Ouput Low VIL — 0.3 — V VCC=2.4 V, IOL=3.0 mA RxD Short Circuit — — 25 — mA VCC=5.0 V, RxD=0, RxD=VCC RxD Short Circuit — — 4 — mA VCC=2.4 V, RxD=0, RxD=VCC RxD to VCC Tri-State Impedance — — 500 — k Ω VCC=2.4 V to 5.0 V, between RxD to VCC RxD Rise Time tr —30 — ns VCC=5.0 V, Load=15 pF RxD Rise Time tr —40 — ns VCC=2.4 V, Load=15 pF Parameter Symbol Min. Typ. Max. Unit Conditions Maximum Data Rate — 9.6 — 115.2 Kb/s 1.63 µs with Εe=4.0 µW/cm2 to 500 mW/cm2 Receive 1 ⁄2 Angle — 15 20 30 degree IrDA Physical Layer specification Minimum Signal Detect Irradiance EIHmin — 2.0 4.0 µW/cm2 Bit error rate=10–8, 1.63 µs pulse Maximum Signal Detect Irradiance EEmax — 500 — mW/cm2 Bit error rate=10–8, 1.63 µs pulse Maximum Signal Irradiance No detect — — — 0.3 µW/cm2 <0.1 pulse per second detect, 1.63 µs Maximum DC Ambient Irradiance, 5.0 V (Note 5) — — 10 — mW/cm2 VCC=5.0 V Maximum DC Ambient Irradiance, 2.4 V (Note 5) — — 2.5 — mW/cm2 VCC=2.4 V Transmit Receiver Latency (Note 2) tL — 50 100 µs 0 to 3 mW/cm2 DC ambient input RxD Suppression Duration (Note 6) — — 50 100 µs Following end of TxD pulse Powerup Receiver Latency — — 50 100 µs 0 to 3 mW/cm2 DC ambient input Output Pulse Width at RxD — 1.0 1.63 3.0 µs 1.63 µs, 4 µW/cm2 to 500 mW/cm2 input. |
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