Revision History SPECIFICATION LF1000 V00 II Revision History Changes to the original manual are...
Transcript of Revision History SPECIFICATION LF1000 V00 II Revision History Changes to the original manual are...
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Customer:
Customer’s Model NO.:
Model No.: LF1000 Omni-directional Laser Scanner
Date:
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SPECIFICATION
LF1000 V00
II
Revision History Changes to the original manual are listed below:
Change Date Description
V00 2014-09-03 First Version
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Index of Content
REVISION HISTORY ............................................................................ II
INDEX OF CONTENT ............................................................................ I
A. GENERAL DESCRIPTION ................................................................1
B. PHYSICAL CHARACTERISTICS .....................................................2
C. ELECTRICAL CHARACTERISTICS ................................................4
D. PERFORMANCE ...............................................................................5
E. USERS ENVIRONMENTAL ..............................................................5
F. READABLE SYMBOLOGIES ...........................................................6
G. PIN ASSIGNMENT.............................................................................7
H. SCAN MAP .........................................................................................8
I.LOCATION AND READING POSITION .......................................... 10
J.RELIABILITY..................................................................................... 11
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A. General Description
LF1000 is a hand-free omni-directional 1D barcode laser scanner, light volume, performance is remarkable, absolutely without pause between the scan, security work efficiency. LF1000 has concise, stable and reliable performance, LF1000 is a perfect multidirectional scanning solutions. This equipment can rotate with stable support, be applicable to the various occasions, and release people from handheld inconvenience. All these make the LF1000 the first-class scanning performance 1D barcode scanner.
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B. Physical Characteristics 1)Physical Characteristic Weight Body weight 150g Cable weight(USB) 200g Material Polycarbonate Cable Length 2m Dimension 78mm x 75mm x 141mm
2)Cable drawing(Unit: mm) (1)RS232
Connector Item RS232 Signal
Scanner REF CONN1 Wire Color CONN2 1 Brown N/C N/C 2 Green 2 TXD 3 Red 5 GND 4 Yellow N/C N/C 5 Blue 3 RXD 6 White 7 CTS 7 Gray N/C POWER 8 Violet N/C N/C 9 Orange 8 RTS 10 Drain N/C N/C
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(2)USB
Connector Item Signal Scanner REF CONN1 Wire Color CONN2
1 NA NA NA 2 NA NA NA 3 Black 4 SHIELD GND 4 NA NA JUMP TO PIN3 5 NA NA NA 6 NA NA NA 7 Red 1 +5VDC-HOST 8 White 3 D+ 9 NA NA NA 10 Green 2 D-
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3)Mechanical drawing(Unit: mm)
C. Electrical Characteristics Interface RS232 DC Adaptor Supply Voltage DC+5V±5% or +3.3V±5% Current Draw ±10% Power on(Typ.) 60 mA 60 mA Stand by(Typ.) 40 mA 40 mA Operation on(Typ.) 80 mA 80 mA
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D. Performance Light Source Visible Red light 650nm + 10nm Scanning Speed 1500 scan/second Scan Lines 20 lines Interface RS-232
Label Density Depth of Field Paper Label Metric English 5mil(Code 39) 0-9.1cm 0-3.59in
7.5mil(Code 39) 0-15cm 0-5.91in 10mil(Code 39) 0-17.5cm 0-6.895in 13mil(Code 39) 0-27cm 0-10.638in 26mil(Code 39) 0-30cm 0-11.82in
E. Users Environmental Operating Temp. -20°C to 60°C (-4°F to 144°F) Storage Temp. -30°C to 70°C (-22°F to 158°F) Relative Humidity 5% to 95% (Non-condensing) Ambient light Immune to normal artificial indoor and
natural outdoor (direct sunlight) lighting.
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F. Readable Symbologies Readable Default Enable
Australian Post Canada Post
Codabar Codablock Code 11 Code 39 Code 93
Code 128/EAN128 Dutch Post
EAN.UCC Composite Interleaved 2 of 5
Japan Post Matrix 2 of 5 MSI Code
Planet Plessey Code
Postnet RSS
Standard 2 of 5 Telepen TLC 39
UPC/EAN
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G. Pin Assignment (a)RS232 Interface
DB 9 Female
Pin No. Function
2 TXD
3 RXD
5 GND
7 CTS
8 RTS
Power Lead Vcc/+5V
(b)USB Interface
USB A TypeMale
Pin No. Function
1 +5VDC-HOST
2 D-
3 D+
4 SHIELD GND
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H. Scan Map All distances are measured from the front of a non-integrated imager using Grade a symbologies. An exit window reduces reading distances by about 4%. LF1000 Reading Distances: These distances are measured in an office environment (250 lux).
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Symbology Density Minimum Distance
Maximum Distance
Code 39
0.125 mm (5 mils)
0cm(0 in) 9.1cm (3.59in)
0.25 mm (10 mils)
0cm(0in) 15cm (5.91in)
0.33 mm (13 mils)
0cm (0in) 17.5cm (6.895in)
0.5 mm (20 mils)
0cm(0in) 27cm (10.638in)
UPC/EAN 0.33 mm (13 mils)
0cm(0in) 27cm (10.638in)
*Minimum distance depends on symbology length and scan angle.
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I. Location and Reading Position If you are using the LF1000 for 1D linear barcode, you do not need to be aware to much of the tolerances for the tilt, skew, and pitch of the bar code you are trying to scan. The area imager makes the barcode capturing much easier.
Tilt
The imager cannot read a bar code if all the bars are not inside the reading beam. But if the barcode is inside the reading area, the tilt angle could be 50°.
Skew
Skew reduces the bar width, which is a critical dimension for high-density bar codes. The imager can read bar codes with a skew angle up to 65°, but you should reduce skew to increase reading efficiency.
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Pitch
Pitch reduces the bar height. A small pitch angle of 2°to 3°is optimal, because it prevents a direct reflection from the bar code. The imager can read bar codes with a pitch angle up to 35°, but you should reduce pitch to increase reading efficiency.
J. Reliability Thermal Shock
High Temp. 60 °C (140 °F) Low Temp. -20 °C (-4 °F) Cycle times 30min for high temp. 30min for low temp. Cycles 24
Mechanical Shock 2000 G, 0.7 ms, half sinus, 3 axes Vibration 8 G r.m.s., from 10 to 500 Hz, 2 hours
per axis, 3 axes Drop Design to withstand 0.5m drops to
concrete on each of the faces