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[. . . ] Fixed-position Laser Barcode Scanner
NLV 2001
The NLV 2001 is a fixed-position laser barcode scanner that uses a short-wavelength red laser beam.
Specifications Manual
Opticon NLV 2001 Specifications Manual
All information subject to change without notice.
Document History
Model Number: Edition: Date: NLV 2001 2 2007-08-01 Specification Number: Original Spec Number: SS07077 SS06124
Copyright 2008 Opticon. All rights reserved.
This manual may not, in whole or in part, be copied, photocopied, reproduced, translated or converted to any electronic or machine readable form without prior written consent of Opticon.
Limited Warranty and Disclaimers PLEASE READ THIS MANUAL CAREFULLY BEFORE INSTALLING OR USING THE PRODUCT. Serial Number
A serial number appears on all Opticon products. This official registration number is directly related to the device purchased. [. . . ] Weight
120 g (max. ) excluding the cable
4. Ambient Light Immunity
Decoding performance is guaranteed when the range of illumination on a barcode surface is between zero and the following values:
Incandescent light Fluorescent light Sunlight 3, 000 lx 3, 000 lx 50, 000 lx
Conditions Barcode Sample: OPTOELECTRONICS Test Sample
PCS: Resolution: Symbology: Quiet Zone: N/W Ratio: Distance: Angle (see note below): Curvature: Power Supply Voltage: 0. 9 0. 25 mm 9-digit Code 39 10 mm 1:2. 5 100 mm = 0° = 15° = 0° R= 5. 0 V
Direct light or specular reflection light from a source should be prevented from entering the acceptance area. Note: , and respectively represent pitch, skew and tilt. Please see section 7. 4 for how these values are defined.
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Opticon NLV 2001 Specifications Manual
5. Absolute Maximum Ratings
Parameter
Power supply voltage (VDD to GND) Input voltage Power ripple
Symbol
VDD VIN
Value
-0. 5 to 6. 5 -0. 5 to +0. 5 0. 1p-p (10100 kHz)
Unit
V V V
5. 2. Recommended Operating Conditions
Item
Power supply voltage Operating temperature Input voltage Output voltage
Symbol
VDD Ta Vin Vout
Min
4. 5 -10 0 0
Typ
5. 0
Max
5. 5 45 VDD VDD
Unit
V °C V V
Conditions
No condensing
5. 3. Electrical Characteristics
Parameter
Operating current Rush current peak Stand-by current Startup time
Symbol
IOP IPEAK IPRE TD
Min
Typ
85 400 35 100
Max
150 1500 70
Unit
mA mA mA ms
Conditions · · · Connect 1 resistance to a power supply line in series and measure the current by the voltage between both ends of resistance. Power supply voltage is measured at a connector terminal area. The current value depends on the interface type and host computer to which the device is connected.
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Opticon NLV 2001 Specifications Manual
6. Optical Specifications
Parameter
Light-emitting element Emission wavelength Light output Scanning method Scanning speed Scan angle
Specification
Red laser diode 650 ±10 (25° C) 1. 0 or less Bi-directional scanning 100 ±20 Scan angle: 54 ±5 Read angle: 44 (Min)
Unit
nm mW scans/s ° °
7. Technical Specifications
The conditions for technical specifications are as follows, unless otherwise specified in each section. Conditions
Ambient temperature and humidity: Ambient light: Background: Room temperature (5 to 35º C) Room humidity (45% to 85% RH) 500 to 900 lx Barcode = black Space = white Margin = white Background of label = black 5. 0 V Approve the performance when decoding is successful in all ten tests. (Decoding is deemed successful when completed in 0. 5 seconds or less. )
Power supply voltage: Decoding test:
7. 1. Print Contrast Signal
0. 45 or higher (over 70% of reflectivity of space and quiet zone). PCS= Reflectance of white barReflectance of black bar Reflectance of white bar
Scanning performance may decline if dirt or scratches mar the optical window. Minimum Resolution
0. 127 mm
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Opticon NLV 2001 Specifications Manual
7. 3. Depth of Field The scan area is a circular area centered around the beam, which appears at various resolutions.
Figure 1: Depth of field and resolution (NLV 2001 I-Type)
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Opticon NLV 2001 Specifications Manual
The depth of field is measured from the front edge of the scanner.
PCS Resolution (mm)
1. 0 0. 9 0. 5 0. 25 0. 15 0. 127
Decode Depth (mm)
70630 50400 50240 50130 60100
Conditions Barcode Sample: OPTOELECTRONICS Test Sample
N/W Ratio Angle Curvature 1:2. 5 = 0°, = 15°, = 0° R=
Resolution
1. 0 mm 0. 5 mm 0. 25 mm 0. 15 mm 0. 127 mm
Symbology
Code 39 Code 39 Code 39 Code 39 Code 39
PCS
0. 9 0. 9 0. 9 0. 9 0. 9
Quiet Zone
25 mm 18 mm 10 mm 7 mm 5 mm
Digit
1 3 8 10 4
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Opticon NLV 2001 Specifications Manual
7. 4. Pitch Angle ±35°
Figure 2: Pitch (NLV 2001 I-Type)
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Opticon NLV 2001 Specifications Manual
7. 4. 2. Skew Angle and Dead Zone Skew angle: ±50° (Excluding dead zone) Dead zone: = ±8° (There are some areas in which decoding fails due to specular reflection)
Figure 3: Skew angle and dead zone (NLV 2001 I-Type)
7. 4. 3. Tilt Angle ±20°
Figure 4: Tilt angle (NLV 2100 I-Type)
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Opticon NLV 2001 Specifications Manual
Conditions Barcode Sample: OPTOELECTRONICS Test Sample
Distance Label 100 mm from the edge of the scanner Pitch, Skew Angle, Dead Zone PCS = 0. 9, Resolution = 0. 25 mm, Symbology = 9-digit Code 39, Quiet Zone = 10 mm, N/W Ratio = 1:2. 5 Tilt Angle PCS = 0. 9, Resolution = 0. 26 mm, Symbology = 13-digit JAN, Quiet Zone = 10 mm Pitch angle: Skew angle: = +15°, Tilt angle: = 0° Tilt angle: Pitch angle: = 0°, Skew angle: = +15° Skew angle, Dead zone: Pitch angle: = 0°, Tilt angle: = 0° R=
Angles
Curvature
7. 5. Curvature
With 8-digit JAN/UPC/EAN barcodes, decoding performance is guaranteed when R15 mm. With 13-digit JAN/UPC/EAN barcodes, decoding performance is guaranteed when R20 mm.
Figure 5: Curvature (NLV 2001 I-Type)
Conditions Barcode Sample: OPTOELECTRONICS Test Sample
PCS = 0. 9, Resolution = 0. 26 mm, Quiet Zone = 10 mm Distance Angle 100 mm from the edge of the scanner Skew Angle = +15°
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Opticon NLV 2001 Specifications Manual
8. [. . . ] JIS C6802: 2005: Laser class 2 IEC 825-1/EN 60825-1: Laser class 2 FDA CDRH Laser class II. Complies with 21 CFR 1040. 10 and 1040. 11 except for deviations pursuant to laser notice No. Class II laser devices are not considered to be hazardous when used for their intended purpose. Avoid staring into the laser beam.
16. 2. [. . . ]
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