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TFBS5711-TR1 Datasheet(PDF) 4 Page - Vishay Siliconix

Part # TFBS5711-TR1
Description  Fast Infrared Transceiver Module (MIR, 1.152 Mbit/s) for IrDA
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Manufacturer  VISHAY [Vishay Siliconix]
Direct Link  http://www.vishay.com
Logo VISHAY - Vishay Siliconix

TFBS5711-TR1 Datasheet(HTML) 4 Page - Vishay Siliconix

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Document Number 82634
Rev. 1.3, 05-Dec-03
VISHAY
TFBS5711
Vishay Semiconductors
Eye safety information
*) Due to the internal limitation measures the device is a "class 1" device.
**) IrDA specifies the max. intensity with 500 mW/sr.
Electrical Characteristics
Transceiver
Tamb = 25 °C, VCC1 = VCC2 = 2.7 V to 5.5 V unless otherwise noted.
Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing.
*) Standard illuminant A
**) The typical threshold level is 0.5 x V
CC1. It is recommended to use the specified min/max values to avoid increased operating current.
Parameter
Test Conditions
Symbol
Min
Typ.
Max
Unit
Virtual source size
Method: (1-1/e) encircled
energy
d1.3
1.5
mm
Maximum intensity for class 1
IEC60825-1 or EN60825-1,
edition Jan. 2001, operating
below the absolute maximum
ratings
Ie
*)
(500)**)
mW/sr
Parameter
Test Conditions
Symbol
Min
Typ.
Max
Unit
Supply voltage
VCC1
2.7
5.5
V
Dynamic supply current
SD = Low, Ee = 1 klx
ICC
550
900
µA
Average dynamic supply
current, transmitting
IIRED = 500 mA, 25 % Duty
Cycle
ICC
1100
1500
µA
Standby supply current
SD = High, T = 25 °C, Ee = 0 klx
ISD
1
µA
SD = High, T = 25 °C,
Ee = 1 klx
*)
ISD
2.5
µA
SD = High, T = 85 °C, not
ambient light sensitive
ISD
5
µA
Operating temperature range
TA
- 25
+ 85
°C
Output voltage low, Rxd
CLoad = 15 pF, IOL = 1 mA
VOL
0.4
V
Output voltage high, Rxd
IOH = - 500 µAVOH
0.8 x VCC1
V
IOH = - 250 µA, CLoad = 15 pF
VOH
0.9 x VCC1
V
Rxd to VCC1 impedance
RRxd
400
500
600
k
Input voltage low (Txd, SD)
VIL
- 0.5
0.5
V
Input voltage high (Txd, SD)
CMOS level**)
VIH
VCC1 - 0.5
VCC1 + 0.5
V
Input leakage current (Txd, SD)
Vin = 0.9 x VCC1
IICH
- 2
+ 2
µA
Controlled pull down current
SD, Txd = "0" to "1",
0 < Vin < 0.15 VCC1
IIRTx
+ 150
µA
SD, Txd = "0" to "1",
Vin > 0.7 VCC1
IIRTx
- 1
0
1
µA
Input capacitance (Txd, SD)
CIN
5pF


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