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HSDL-1000 Просмотр технического описания (PDF) - HP => Agilent Technologies

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HSDL-1000
HP
HP => Agilent Technologies HP
HSDL-1000 Datasheet PDF : 10 Pages
1 2 3 4 5 6 7 8 9 10
Rx TH+ (Receiver On-
Threshold)
The maximum receiver on-
threshold is equivalent to the
minimum receiver sensitivity.
Both are terms for the amount of
light signal which must be present
at the HSDL-1000 detector in
order to trigger a low pulse on the
receiver output (RXD). The IrDA
Physical Layer Specification
requires a minimum receiver
sensitivity of 4.0 µW/cm2, at a Bit
Error Rate of 10-9, and in the
presence of the 10 klux of
sunlight, 0-1000 lux of fluorescent
light, or 0-1000 lux of incandes-
cent light. The fluorescent and
incandescent specifications
require minimum receiver
sensitivity with 1000 lux incident
onto the horizontal surface of the
IR link. The resulting amount of
fluorescent or incandescent light
actually reaching the detector
surface may vary between 0 and
500 lux depending upon the
design of the housing around the
HSDL-1000 module.
The HSDL-1000 VOL(RXD)
specification guarantees a
maximum receiver on-threshold
of EI = 3.6 µW/cm2, at a
BER 10-9, and TA = 0-70°C. The
EI = 3.6 µW/cm2 threshold
guarantees the IrDA minimum
receiver sensitivity of 4.0 µW/cm2,
while allowing for 10% light loss
through a cosmetic window
placed in front of the HSDL-1000.
The EI = 3.6 µW/cm2 threshold
also guarantees receiver sensitivity
with 10 klux of sunlight,
0-500 lux fluorescent light, or
0-500 lux of incandescent light
incident on the HSDL-1000
detector surface.
HSDL-1000 Reliability
Test Results
Test Name
MIL-STD-883
Reference
Test Conditions
Units Total
Tested Failed
Solder Heat (IR Profile)
See absolute profile
60
0
Solder Heat Resistance
Solder Rework Cycle
Temperature Cycle
1010
3 times thru IR Profile + 20 Temp. Cycles
Solder iron tip temp. 370°C/700°F
Time per lead 1 second
# of rework cycles = 4
-40°C to +100°C, Dwell = 15 Minutes
Transfer = 5 Minutes
60
0
17
0
20 Cycles
120
0
Power Temp. Cycle
100 Cycles
-40°C/+100°C, Dwell = 15 minutes,
Transfer = 5 Minutes, VCC = 5 Vdc,
If = 100 mAdc, LED On/Off = 1 Second
Total Cycles = 35
120
0
60
0
Mechanical Shock
2002
2 Blows each X1, X2, Y1, Y2, Z1, Z2
Condition B 1500 G’s, 0.5 msec Pulse
10
0
Vibration Variable
Frequency
2007
(4) 4 Minute Cycles, X, Y, Z
Condition A at 50 G’s Min., 20 to 2,000 Hz
10
0
Resistance to Solvents
High Temp. Operating
Life
Low Temp. Opearting Life
Wet Operating Life
ESD - Human Body Model
ESD - Machine Model
2015
3015
EIAJ
3 one minute immersion
Brush after solvent
TA= 70°C, If = 100 mAdc, VCC = 5 Vdc,
Time = 500 hours
TA = 0°C, If = 100 mAdc, VCC = 5 Vdc
Time = 500 hours
TA = 35°C, R.H., = 85% If = 100 mAdc
VCC = 5 VCC, Time = 500 hours
RI = 1500 Ohms, C = 100 µF
Level = 4000 V
Rload = 0 Ohms, C = 200 µF
Level = 300 V
20
0
60
0
60
0
60
0
10
0
10
0
Note: At the time of this publication, Light Emitting Diodes (LEDs) that are contained in this product are regulated for eye safety in
Europe by the Commission for European Electrotechnical Standardization (CENELEC) EN60825-1. Please refer to Application Briefs
I-008, I-009, I-015 for more information.
4-42

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