IF-D97 Industrial Fiberoptics, IF-D97 Datasheet

DETECTOR PHOTOLOG FO 400-1050NM

IF-D97

Manufacturer Part Number
IF-D97
Description
DETECTOR PHOTOLOG FO 400-1050NM
Manufacturer
Industrial Fiberoptics
Datasheet

Specifications of IF-D97

Data Rate
50Mbps
Voltage - Supply
4.75 V ~ 5.25 V
Power - Minimum Receivable
-17dBm
Current - Supply
40mA
Applications
General Purpose
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
FB133
A
Plastic Fiber Optic 50 Mbps Photologic Detector
M
(T
Operating Temperature Range
Storage Temperature Range
Soldering Temperature
Supply Voltage, (V
Power Dissipation
De-rate Above 25°C ...........1.7 mW/°C
Plastic Fiber Optic 50 Mbps Photologic Detector
(T
(T
(2 mm from case bottom)
(T
(P
A
P P L I CAT I O N S
A X I M U M
TOT
OP
STG
S
=25°C)
PC-to-Peripheral Data Links
Motor Controller Triggering
Local Area Networks
Medical Instruments
Automotive Electronics
Digitized Video
Electronic Games
Robotics Communications
Reduction of Lightning and
Voltage Transient Susceptibility
) t≤ 5s ..................................240°C
) ..............................-10° to 70°C
) ............................-40° to 85°C
) T A =25°C ..................100 mW
R
S
)............... -.5 to 7 V
AT I N G S
I
N D U S T R I A L
F
I B E R
D
The IF-D97 is a high-speed photologic detector housed in a “connector-less” style
plastic fiber optic package. The detector contains an IC with a photodiode, linear
amplifier and Schmitt trigger featuring an ACT logic compatible totem pole out-
put. Optical response of the IF-D97 extends from 400 to 1050 nm, making it
compatible with a wide range of visible and IR LED and laser diode sources. The
detector package features an internal micro-lens and a precision-molded PBT
housing to ensure efficient optical coupling with standard 1000 µm core plastic
fiber cable.
A
The fast transition times of the IF-D97 make it suitable for medium-speed digital
data links. Link distances in excess of 75 meters at data rates of 50 Mbps are pos-
sible using standard 1000 µm core plastic fiber and an IF-E98 LED. The integrated
design of the IF-D97 provides simple, cost-effective implementation in a wide
variety of digital applications.
F
C
N
1. Output is the "L" level (inverted logic) when light is input.
E AT U R E S
Parameter
Peak Sensitivity
Spectral Sensitivity (S=10% of S
Operating Voltage
Supply Current
Light Required to Trigger
λ=660 nm)
High Level Output Voltage (I
Low Level Output Voltage (I
Output Rise and Fall Times
Propagation delay time
E S C R I P T I O N
P P L I C AT I O N
OTES
(f= 10.0 kHz, R
HA R A C T E R I S T I C S
No Optical Design Required
Mates with Standard 1000 µm Core Jacketed Plastic Fiber Cable
Internal Micro-Lens for Efficient Coupling
Inexpensive Plastic Connector Housing
Connector-Less Fiber Termination and Connection
Interference-Free Transmission from Light-Tight Housing
Totem-Pole Output
Totally Integrated Solution
Low Current Stand-by Model Available as Special Order
RoHS Compliant
O
:
P T I C S
, I
L
= 10 TTL Loads)
N C
.
H
1
(V
I G H L I G H T S
OL
CC
OH
= .6 mA)
MAX
=5 V,
= -2.0 µA)
w w w . i - f i b e r o p t i c s . c o m
(T
)
A
=25°C)
Symbol
λ PEAK
Er (+)
V
V
V
t r , t f
I
∆λ
CC
t p
OH
CC
OL
Min
4.75
400
-17
17
2
Typ
800
12
5
Max
1050
5.25
40
IF-D97
IF-D97
1
7
Unit
dBm
mA
µW
nm
nm
ns
ns
V
V
V
5/2/06
43

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IF-D97 Summary of contents

Page 1

... The detector contains an IC with a photodiode, linear amplifier and Schmitt trigger featuring an ACT logic compatible totem pole out- put. Optical response of the IF-D97 extends from 400 to 1050 nm, making it compatible with a wide range of visible and IR LED and laser diode sources. The detector package features an internal micro-lens and a precision-molded PBT housing to ensure efficient optical coupling with standard 1000 µ ...

Page 2

... IF-D97 Plastic Fiber Optic 50 Mbps Photologic Detector IF-D97 Plastic Fiber Optic 50 Mbps Photologic Detector F 1. IGURE Typical detector response versus wavelength IGURE Normalized threshold irradiance vs. amb. temp Case outline. IGURE Typical interface circuit. IGURE NAT Cut off the ends of the optical fiber with a single- edge razor blade or sharp knife ...

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