AEDR-8400-130 Avago Technologies US Inc., AEDR-8400-130 Datasheet - Page 4

2CH, 254LPI, REF EN, 2.8V, TR

AEDR-8400-130

Manufacturer Part Number
AEDR-8400-130
Description
2CH, 254LPI, REF EN, 2.8V, TR
Manufacturer
Avago Technologies US Inc.
Series
-r
Datasheet

Specifications of AEDR-8400-130

Mounting Style
SMD/SMT
Sensing Distance
0.017" (0.43mm)
Sensing Method
Reflective
Sensing Object
Codewheel/Codestrip
Output Configuration
-
Sensing Light
-
Mounting Type
Surface Mount
Current - Supply
6mA
Voltage - Supply
2.6 V ~ 3 V
Package / Case
3.00mm L x 3.28mm W x 1.28mm H
Features
Compact Model
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Recommended Codewheel and Codestrip Characteristics
Encoding Characteristics
Encoding characteristics over the recommended operating condition and mounting conditions.
Note:
1. Typical values represent the encoder performance at typical mounting alignment, whereas the maximum values represent the encoder perfor-
Electrical Characteristics
Characteristics over recommended operating conditions at 25°C.
Notes:
1. Measurements from SMS µScan System. Contact factory for more information.
2. Contact factory for more information on compatibility of codewheel/strip.
4
Parameter
Pulse Width Error (Channel A)
Pulse Width Error (Channel B)
Phase Error
Parameter
Detector Supply Current
High Level Output Voltage
Low Level Output Voltage
Rise Time
Fall Time
Window/bar Ratio
Window/bar Length
Specular Reflectance
Line Density
Optical radius
Parameter
mance across the range of recommended mounting tolerance.
Ww/Wb
L
R
LPmm (LPI)
Rop
Symbol
W
f
Symbol
Icc
V
V
t
t
r
f
OH
OL
Symbol
∆P
∆P
∆φ
0.9
1.80 (0.071)
60
-
10 (254)
12.5 (318)
11
Min.
W
L
W
W
, Reflective area
Min.
2.4
Codestrip
Typical
10
11
7
1.1
2.31 (0.091)
-
10
-
Max.
Typ.
6.0
400
120
W
Maximum
75
80
60
b
, Non-reflective area
Max.
7.0
0.4
mm (inches)
lines/mm (inch)
mm
Unit
Unit
mA
V
V
ns
ns
Unit
°e
°e
°e
W
W
= W
Notes
I
I
C
R
OH
OL
Reflective area.
See note 1.
Non reflective area
Recommended
Rop=11.0mm
Notes
L
L
= 2.7kΩ
= 25pF
= 8.0mA
= -0.2mA
B
= 50µm (254LPI)
= 40µm (318LPI)

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