AURES ODP300 Technical Manual

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ODP300
Dot Printer
Technical manual

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Summary of Contents for AURES ODP300

  • Page 1 ODP300 Dot Printer Technical manual...
  • Page 2 ODP300 Technical Manual TABLE OF CONTENTS 1. General Specifications Printing Specifications Character Specifications Auto Cutter Paper Roll Supply Device Paper Specification Printable Area Printing and Cutting Positions Internal Buffer Electrical Characteristics EMI and Safety Standards Applied Reliability Environmental Conditions 2. Configuration...
  • Page 3: General Specifications

    ODP300 Technical Manual 1. General Specifications 1.1 Printing Specifications 1) Printing method: 9pin serial impact dot method 2) Printing direction: Bi-directional 63.5 mm (2.5") 3) Printing width: 4) No. of Columns: 42/35, 40/33 (EPSON TM-U200 Emulation) 40/33 (Others Emulation) 5) Printing speed:...
  • Page 4 ODP300 Technical Manual 3) Print Format: 7 X 9 Dots 9 X 9 Dots FONT 7 X 9 0.397 1.19 1.49 1.998 0.352 2.11 2.46 9 X 9 0.397 1.588 1.888 2.382 0.352 2.11 2.46...
  • Page 5: Auto Cutter

    ODP300 Technical Manual 1.3 Auto Cutter Partial cut: Cutting with one point center uncut NOTE: To prevent dot displacement, after cutting, paper must be fed approximately 1mm(14/360 inches) or more before printing. 1.4 Paper Roll Supply Device 1) Supply method:...
  • Page 6: Printable Area

    ODP300 Technical Manual 1.6 Printable Area (Blank Area) (Paper Width) (Printable Area) Left Right 76.2 mm 63.2 mm (200dots,400positon) 7 mm 6 mm 69.5 mm 56.8 mm (180dots,360position) 7 mm 5.7 mm 57.5 mm 47.4 mm (150dot,300position) 6 mm 4.1 mm...
  • Page 7: Printing And Cutting Positions

    ODP300 Technical Manual 1.7 Printing and Cutting Positions Figure 1.7.1 Printing and Cutting Positions NOTE: Numeric values used here are center values to be used in designing. The values may vary slightly as a result of paper slack or variations in the paper. Take this into account when setting the cutting position of the autocutter.
  • Page 8: Electrical Characteristics

    ODP300 Technical Manual 1.8 Internal Buffer 1) Data buffer: 16kbyte 1.9 Electrical Characteristics 1) 형태: 외부 아답터 2) 입력: 120VAC, 230VAC 3) 출력: 24VDC ⅹ 2.5A 1.10 EMI and Safety Standards Applied 1) Europe: EMI – EN55022 CLASS A EMS – EN61000-3-2, EN61000-3-3, EN50082-1...
  • Page 9: Specifications

    ODP300 Technical Manual 2. Configuration 2.1 Interface 2.1.1 RS-232 serial interface 2.1.2 Specifications Data transmission: Serial Synchronization: Asynchronous Handshaking: DTR/DSR or XON/XOFF control Signal levels: MARK= -3 to –15V: Logic “1” SPACE= +3 to +15V: Logic “0” Baud rage: 4800, 9600, 19200, 38400 bps...
  • Page 10 ODP300 Technical Manual 2.1.5 Serial interface connection example Host side Printer side TXD ………………………………… RXD DSR ………………………………… DTR RXD ………………………………… TXD DTR ………………………………… DSR FG ………………………………… FG SG ………………………………… SG DETAILS: ◦Set the handshaking so that the transmit data can be received.
  • Page 11 ODP300 Technical Manual 2.1.6 Centronics parallel interface SIGNAL DESCRIPTION STROBE- Input Synchronize signal Data received DATA0-7 Input Data bit Transmitted 0-7 ACK- Output Data receiving competed BUSY Output Impossible to printer data receiving Output Paper empty SELECT Output Printer’s status for ON/OFF line...
  • Page 12 ODP300 Technical Manual 2.1.7 Data Receiving Timing (Compatibility Mode) Specifications Characteristics Symbol Min [ns] Max [ns] Data Hold Time (host) tHold Data Setup Time tSetup STROBE Pulse Width tSTB READY Cycle Idle Time tReady BUSY Output Delay Time tBUSY Data Processing Time...
  • Page 13 ODP300 Technical Manual 2.1.9 Interface Connector...
  • Page 14 ODP300 Technical Manual 3. Connectors 3.1 Interface Connectors Refer to Section 2.1, Interface 3.2 Electrical Characteristics 1) Input Voltage: DC 24V ± 10% 2) Current Consumption: Operating: Approx. 1.5 A (at ASC∥ printing) Peak: Approx. 10 A (at print duty 100%, For 10 seconds or less) Stand-by: Approx.
  • Page 15 ODP300 Technical Manual CAUTION: To avoid an overcurrent, the resistance of the drawer kick-out solenoid must be 24 Ω or more. Output waveform: Outputs the waveforms in Figure 3.2 to the points A and B in Figure 3.3 t1 (ON time) and t2 (OFF time) are specified by ESC p or DLE DC4.

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