IVO GXP1W.A2041C1 Absolute encoders - parallel Datasheet

Absolute encoders - parallel
Shaft with clamping or synchro flange
Optical multiturn encoder 12 bit ST / 12 bit MT
GXP1W - parallel
Features
–– Encoder multiturn / parallel
–– Optical sensing
–– Resolution: singleturn 12 bit, multiturn 12 bit
–– Clamping flange or synchro flange
–– Resolution, code and preset programmable
–– Encoder programming by Windows software
–– RS232 encoder programming interface
Technical data - mechanical design
Voltage supply
Housing
ø58 mm
Shaft
ø10 mm (clamping flange)
ø6 mm (synchro flange)
Flange
Clamping or synchro flange
Protection DIN EN 60529
IP 54 without shaft seal
IP 65 with shaft seal
Operating speed
≤10000 rpm (mechanical)
≤6000 rpm (electric)
Starting torque
≤0.015 Nm IP 54
≤0.03 Nm IP 65
Rotor moment of inertia
20 gcm²
Admitted shaft load
≤20 N axial
≤40 N radial
Materials
Housing: steel
Flange: aluminium
Operating temperature
-25...+70 °C
Relative humidity
95 % non-condensing
Resistance
DIN EN 60068-2-6
Vibration 10 g, 16-2000 Hz
DIN EN 60068-2-27
Shock 200 g, 6 ms
Weight approx.
600 g
E-connection
Connector D-SUB, 37‑pin, 1 m
cable
10...30 VDC
Reverse polarity protection Yes
Consumption w/o load
≤50 mA (24 VDC)
Initializing time (typ.)
50 ms after power on
Interface
24 parallel outputs
Steps per turn
4096 / 12 bit
Number of turns
4096 / 12 bit
Absolute accuracy
±0.03°
Sensing method
Optical
Code
Gray, cut gray, BCD, binary
programmable
Code sequence
CW/CCW coded and
programmable by connection
Inputs
TxD, RxD (RS232)
Control signals UP/DOWN and
zero
ENABLE
STORE
Output circuit
PNP or NPN open collector
Interference immunity
DIN EN 61000-6-2
Emitted interference
DIN EN 61000-6-4
Programming interface
RS232
Programmable
parameters
Steps per revolution
Number of revolutions
Code
2 presets (limits)
Rotation speed monitoring
Diagnostic functions
Self-diagnosis
Code continuity check
Multiturn sensing
Approval
UL approval / E63076
1
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29/10/2008
Technical data - electrical ratings
Subject to modification in technic and design. Errors and omissions excepted.
GXP1W with clamping flange
Absolute encoders - parallel
Shaft with clamping or synchro flange
Optical multiturn encoder 12 bit ST / 12 bit MT
GXP1W - parallel
Accessories
Part number
Connectors and cables (page %S)
C1
Z 140.001
E-connection
31 Cable 1 m axial, connector
D‑SUB, 37-pins
41 Cable 1 m radial, connector
D‑SUB, 37-pins
Mounting accessories (page %S)
Voltage supply / signals
10 10...30 VDC / open collector NPN
20 10...30 VDC / open collector PNP
Z 119.006
Eccentric fixing, single
Z 119.013
Adaptor plate for clamping flange for
modification into synchro flange
Z 119.015
Mounting adaptor for synchro flange
Z 119.017
Mounting angle for clamping flange
Z 119.035
Bearing flange for encoders with synchro
flange
Programming accessories (page %S)
Flange / Shaft
Clamping flange / ø10 mm IP 54
Clamping flange / ø10 mm IP 65
Synchro flange / ø6 mm IP 54
Synchro flange / ø6 mm IP 65
Z 139.005
Programming cable for parallel shaft
encoders, CD with ProGeber software and
manual
Z 150.008
CD with software ProGeber & manual
Subject to modification in technic and design. Errors and omissions excepted.
0
A
1
B
Female connector D-SUB, 37-pin
2
www.baumerivo.com
29/10/2008
GXP1W.
Absolute encoders - parallel
Shaft with clamping or synchro flange
Optical multiturn encoder 12 bit ST / 12 bit MT
Terminal assignment
UB
Encoder voltage supply.
Connector
Core colour
Assignment
GND
Encoder ground connection relating to UB.
Pin 1
white
Output D0
Outputs
D0-D23
24 parallel output signals.
For PNP it is recommended to utilize pulldown resistors for every data line, for NPN
pull-up resistors of 4.7 kΩ.
Pin 2
brown
Output D1
Outputs
D19 - D23
Zero setting
UP/DOWN
ENABLE
STORE
Special outputs
With inferior resolutions these outputs
may be configurated as special outputs.
Input for setting a zero point anywhere
within the programmed encoder resolution.
The zero setting operation is triggered by a
High impulse and has to be in line with the
selected direction of rotation (UP/DOWN).
Connect to GND after setting operation for
maximum interference immunity. Impulse
duration >100 ms. If there is an offset
being entered by programming interface
the offset will be activated by the zero
input.
UP/DOWN counting direction input.
This input is standard on High. UP/DOWN
means ascending output data with clockwise shaft rotation when looking at flange.
UP/DOWN-Low means ascending values
with counterclockwise shaft rotation when
looking at flange.
Input for activating the output drivers that
are triggered by input level Low. Upon
being on High (or less potential) the output
drivers switch to high-impedance (Tristate).
Input for output data storage. Upon a Low
input level the encoder data are stored in
the intermediate memory. Upon being on
High (or less potential) the current encoder
position data are switched to the output
drivers. This line must be applied for
reliable data readout in binary code.
GND-Sense
Internally connected to GND and serves
together with UB-Sense for measuring the
encoder voltage supply.
UB-Sense
Internally connected to UB. In case the
sensor line is not utilized the connection
must be isolated (danger of short circuit).
3
Pin 3
green
Output D2
Pin 4
yellow
Output D3
Pin 5
grey
Output D4
Pin 6
pink
Output D5
Pin 7
black
Output D6
Pin 8
violet
Output D7
Pin 9
grey/pink
Output D8
Pin 10
red/blue
Output D9
Pin 11
white/green
Output D10
Pin 12
brown/green
Output D11
Pin 13
white/yellow
Output D12
Pin 14
yellow/brown Output D13
Pin 15
white/grey
Output D14
Pin 16
grey/brown
Output D15
Pin 17
white/pink
Output D16
Pin 18
pink/brown
Output D17
Pin 19
white/black
Output D18
Pin 20
brown/black
Output D19
Pin 21
grey/green
Output D20
Pin 22
yellow/grey
Output D21
Pin 23
pink/green
Output D22
Pin 24
yellow/pink
Output D23
Pin 25
–
–
Pin 26
–
–
Pin 27
yellow/blue
Zero setting
Pin 28
brown/blue
ENABLE
Pin 29
brown/red
STORE
Pin 30
green/blue
UP/DOWN
Pin 31
–
–
Pin 32
–
–
Pin 33
–
–
Pin 34
white/blue
GND-Sense
Pin 35
white/red
UB-Sense
Pin 36
red
UB
Pin 37
blue
GND
www.baumerivo.com
29/10/2008
Terminal significance
Subject to modification in technic and design. Errors and omissions excepted.
GXP1W - parallel
Absolute encoders - parallel
Shaft with clamping or synchro flange
Optical multiturn encoder 12 bit ST / 12 bit MT
GXP1W - parallel
Terminal assignment programming cable
Trigger level
Encoder
function
Mating connector Core
M12, 5-pins
colour
PC connector
D-SUB, 9-pins
Control inputs
Input circuit
–
Pin 1
brown
–
Input level High
>0.7 UB
RxD
Pin 2
white
Pin 3
Input level Low
<0.3 UB
GND
Pin 3
blue
Pin 5
Input resistance
10 kΩ
P/R Mode Pin 4
black
Pin 5
TxD
grey
Pin 2
Parallel outputs
Output circuit
Open collector circuit-proof
Output level High (PNP)
>UB -4.5 V (I = -15 mA)
Output level Low (NPN)
<3.5 V (I = 15 mA)
Load High (PNP)
<-20 mA
Load Low (NPN)
<20 mA
Tristate
<200 µA
Pin 5
Jumper 4-6 and
Jumper 7-8
Connect encoder to voltage supply (UB/red/pin 36 and
GND/blue/pin 37) using the supplementary 37-pin D-SUB
connector.
Dimensions
GXP1W clamping flange
3
D-SUB
16
3
3
3
UNC 4 - 40
70
GXP1W synchro flange
3
D-SUB
3
16
ø 6f6
9
20
5.5
13
70
UNC 4 - 40
9
10
4
75
16
120°
42 ±0.1
50h7
58
17.5
4
5.5
10
75
ø 6f6
19
M4 x 7
3
3
UNC 4 - 40
70
4
www.baumerivo.com
Subject to modification in technic and design. Errors and omissions excepted.
13
9
ø10h6
15
20
36f8
48 ±0.1
58
70
UNC 4 - 40
120°
10 20
75
29/10/2008
17.5
10 20
15
9
ø10h6
75
19
16
M3 x 7
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