HEDS-9701-C51 Avago Technologies US Inc., HEDS-9701-C51 Datasheet - Page 2

ENCODER SMALL 2CH 100CPR RND

HEDS-9701-C51

Manufacturer Part Number
HEDS-9701-C51
Description
ENCODER SMALL 2CH 100CPR RND
Manufacturer
Avago Technologies US Inc.
Series
HEDSr
Datasheet

Specifications of HEDS-9701-C51

Pulses Per Revolution
100
Termination Style
Terminal Pins
Encoder Type
Optical
Output Type
Quadrature (Incremental)
Voltage - Supply
5VDC
Actuator Type
Codewheel Not Included
Detent
No
Built In Switch
No
Mounting Type
Chassis Mount
Orientation
Right Angle
Number Of Channels
2
Mounting Style
Through Hole
Supply Voltage
5 V
Product
Optical
Size / Dimension
11 mm
Technology
Rotary
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Rotational Life (cycles Min)
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HEDS-9701-C51
Manufacturer:
AVAGO
Quantity:
350
Applications
The HEDS-9700 provides sophisticated motion detection
at a low cost, making closed-loop control very cost-com-
petitive! Typical applications include printers, plotters,
copiers, and office automation equipment.
Note: Avago Technologies encoders are not recom-
mended for use in safety critical applications. Eg. ABS
braking systems, power steering, life support systems
and critical care medical equipment. Please contact
sales representative if more clarification is needed.
Block Diagram
2
EMITTER SECTION
LED
RESISTOR
LENS
WHEEL
CODE
PHOTO-
DIODES
PROCESSING
CIRCUITRY
SIGNAL
DETECTOR SECTION
COMPARATORS
A
A
B
B
+
+
-
-
CHANNEL A
CHANNEL B
V CC
GND
3
2
4
1
Theory of Operation
The HEDS-9700 is a C-shaped emitter/detector module.
Coupled with a codewheel, it translates rotary motion
into a two-channel digital output. Coupled with a
codestrip, it translates linear motion into a digital
output.
As seen in the block diagram, the module contains a
single Light Emitting Diode (LED) as its light source. The
light is collimated into a parallel beam by means of a
single lens located directly over the LED. Opposite the
emitter is the integrated detector circuit. This IC consists
of multiple sets of photodetectors and the signal
processing circuitry necessary to produce the digital
waveforms.
The codewheel/codestrip moves between the emitter
and detector, causing the light beam to be interrupted
by the pattern of spaces and bars on the code wheel/
codestrip. The photodiodes which detect these interrup-
tions are arranged in a pattern that corresponds to the
radius and count density of the codewheel/codestrip.
These detectors are also spaced such that a light period
on one pair of detectors corresponds to a dark period on
the adjacent pair of detectors. The photodiode outputs
are fed through the signal processing circuitry. Two
comparators receive these signals and produce the final
outputs for channels A and B. Due to this integrated
phasing technique, the digital output of channel A is in
quadrature with channel B (90 degrees out of phase).

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