IF-D93 Industrial Fiberoptics, IF-D93 Datasheet

PHOTODARLINGTON FIBER OPTIC

IF-D93

Manufacturer Part Number
IF-D93
Description
PHOTODARLINGTON FIBER OPTIC
Manufacturer
Industrial Fiberoptics
Datasheet

Specifications of IF-D93

Current - Supply
100nA
Applications
General Purpose
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Supply
-
Data Rate
-
Power - Minimum Receivable
-
Other names
FB122
A
Plastic Fiber Optic Photodarlington
M
(T
Operating and Storage
Junction Temperature (T
Soldering Temperature
Collector Emitter Voltage (V
Emitter Collector Voltage (V
Collector Current (I C ) .................50 mA
Collector Peak Current
Power Dissipation
De-rate Above 25°C ..........1.33 mW/°C
Plastic Fiber Optic Photodarlington
Temperature Range
(T
(2 mm from case bottom)
(T
(I CM ) t =1 ms .........................100 mA
(P TOT ) T A =25°C ...................100 mW
A
P P L I CAT I O N S
OP
A X I M U M
S
=25°C)
Low-Speed Optical Links
Optical Interrupter/Reflective
Sensors
Process Control
Motor Controller Triggering
Medical Instruments
Automotive Electronics
Robotics Control
EMC/EMI Signal Isolation
Electronic Games
) t ≤ 5s..................................240°C
,T
STG
)......................-40° to 85°C
R
AT I N G S
J
) .............85°C
I
N D U S T R I A L
CEO
ECO
)....15 V
)......5 V
F
I B E R
D
The IF-D93 is a very high-sensitivity photodarlington detector housed in a
“connector-less” style plastic fiber optic package. Optical response of the IF-D93
extends from 400 to 1100 nm, making it compatible with a wide range of visi-
ble and near-infrared LEDs and other optical sources. This includes 650 nm
visible red LEDs used for optimum transmission in PMMA plastic optic fiber.
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 IF-D93 is suitable for low-speed optical links requiring high sensitivity.
Triggering rates up to 1k are possible using the IF-D93 and a suitable LED
source. Photodarlington transistor operation provides very high optical gain,
eliminating the need for post amplification in many circuits. The integrated
design of the IF-D93 makes it a simple, cost-effective solution in a variety of
applications.
F
C
E AT U R E S
Parameter
Wavelength for Maximum Photosensitivity
Spectral Bandwidth (S=10% of S
Switching Times (10% to 90% and 90% to 10%)
(R L =1kΩ, V CE =5 V, λ=880 nm) See Figure 2.
Responsivity min. @ 880 nm
Collector Dark Current (V
Breakdown Voltage (I
Breakdown Voltage (I
Saturation Voltage (I C =0.4 µA, H=10 µW)
E S C R I P T I O N
P P L I C AT I O N
HA R A C T E R I S T I C S
Mates with Standard 1000 µm Core Jacketed Plastic Fiber Optic Cable
No Optical Design Required
Inexpensive but Rugged Plastic Connector Housing
Internal Micro-Lens for Efficient Optical Coupling
Connector-Less Fiber Termination
Light-Tight Housing provides Interference Free-Transmission
Very High Optical Sensitivity
RoHS Compliant
O
P T I C S
, I
N C
@ 632 nm
C
C
.
=1 mA)
=100 µA)
H
CE
I G H L I G H T S
=15 volts)
w w w . i - f i b e r o p t i c s . c o m
MAX
(T
A
)
=25°C)
Symbol
BV
BV
V
λ
I
CE
t r , t f
PEAK
CEO
∆λ
R
CEO
ECO
sat
Min
400
15
5
5, 2.5
Typ
1.10
850
400
200
Max
1100
100
IF-D93
IF-D93
µA/µW
µA/µW
Unit
nm
nm
ms
nA
V
V
V
5/2/06
37

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IF-D93 Summary of contents

Page 1

... The IF-D93 is suitable for low-speed optical links requiring high sensitivity. Triggering rates are possible using the IF-D93 and a suitable LED source. Photodarlington transistor operation provides very high optical gain, eliminating the need for post amplification in many circuits. The integrated design of the IF-D93 makes it a simple, cost-effective solution in a variety of applications ◆ ...

Page 2

... IF-D93 IF-D93 F 1. IGURE Typical detector response versus wavelength IGURE Rise and fall times versus load resistance Case outline. IGURE Plastic Fiber Optic Photodarlington Plastic Fiber Optic Photodarlington F 3. Cross-section of fiber optic device. IGURE NAT Cut off the ends of the optical fiber with a single- edge razor blade or sharp knife ...

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