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3

3. Jumper Setting

In order to set up the correct configuration, here is the description about how to set the
jumpers to enable/disable or change functions. All jumpers location please refer to jumper
location diagram.

l

 

CPU type selection :J4, J10

JP4

JP10

CPU

1-2

3-4

5-6

1-2

3-4

5-6

7-8

Pentium 100MHz

Open

Open

Open Close

Open

Open

Open

Pentium 120MHz

Close

Open

Open

Open

Open

Open

Open

Pentium 133MHz

Close

Open

Open Close Open

Open

Open

Pentium 150MHz

Close Close Open

Open

Open

Open

Open

Pentium 166MHz

Close Close Open Close Open

Open

Open

IDT C6 180MHz

Open

Close Open

Open

Open

Open

Open

IDT C6 200MHz

Open

Close Open Close Open

Open

Open

Pentium 200MHz MMX

Open

Close Open Close Open

Open

Open

Pentium 233MHz MMX

Open

Open

Open Close Open

Open

Open

AMD K6/233MHz(AFR)

Open

Open

Open Close Open

Open

Open

AMD K6/266MHz(AFR)
AMD K6-2/266MHz

Close

Open Close Close Open

Open

Open

AMD K6-2/300MHz

Open

Close Open Close Close Close Open

AMD K6-2/350MHz

Open

Open

Open Close Close Close Open

AMD K6-2/400MHz
AMD K6-3/400MHz

Close

Open Close Close Close Close Open

AMD K6-3/450MHz
AMD K6 -2/450MHZ

Close Close Close Close Close Close Open

AMD K6-2/500MHZ
AMD-K6-3/500MHZ

Open

Close Close Close Close Close Open

Summary of Contents for B59

Page 1: ... USER S MANUAL B59 MAIN BOARD 482B5901 ...

Page 2: ... Printed in Taiwan 2000 ...

Page 3: ...ical information please refer to CDs attached with PC system unit Table of Contents Page Technical details 1 Jumpers location diagram for B59 main board 1 2 Memory configuration 2 3 Jumper setting 3 7 All other registered and unregistered trademarks are trademarks of their respective holders ...

Page 4: ... 3 1 3 3 1 1 2 9 10 2 1 6 5 2 1 9 10 1 6 1 6 2 1 1 6 2 1 6 5 3 1 2 4 VT8501 VT82C686A CN1 CN13 J4 J6 J10 J18 J21 J23 CN11 J7 J8 J11 J12 J20 J19 CN12 JP15 JP16 J1 CN3 CN5 CN10 CN2 CN7 IR JP5 JP6 JP8 JP10 J13 JP7 JP3 J5 JP4 JP2 JP9 U20 U19 JP12 JP13 J17 J15 JP14 CN9 JP11 PCI SLOT PCI SLOT CPU U10 CN14 CN4 CN6 JP1 J22 1 8 8 1 1 2 10 9 9 10 2 1 1 2 40 39 2 1 39 40 2 1 34 33 2 1 26 25 1 2 7 8 J16 J14 1...

Page 5: ...DIMM 1 DIMM 2 16MB 16MB None 32MB 16MB 16MB 32MB 32MB None 64MB 32MB 32MB 64MB 64MB None 80MB 16MB 64MB 80MB 64MB 16MB 128MB 64MB 64MB 128MB 128MB None 256MB 128MB 128MB l External Cache RAM Configuration Capacity SDRAM Type Quantity Location 256KB 32k x 64 1pcs U15 512KB 64k x 64 1pcs U15 ...

Page 6: ...Hz Close Close Open Close Open Open Open IDT C6 180MHz Open Close Open Open Open Open Open IDT C6 200MHz Open Close Open Close Open Open Open Pentium 200MHz MMX Open Close Open Close Open Open Open Pentium 233MHz MMX Open Open Open Close Open Open Open AMD K6 233MHz AFR Open Open Open Close Open Open Open AMD K6 266MHz AFR AMD K6 2 266MHz Close Open Close Close Open Open Open AMD K6 2 300MHz Open ...

Page 7: ...Open Open Open 2 3 Close Close Open Open Open 2 4 Open Open Close Open Open 2 5 Close Open Close Open open 2 6 Open Close Close Open Open 2 7 Close Close Close Open Open 2 8 Open Open Open Close Open 2 9 Close Open Open Close Open 3 0 Open Close Open Close Open 3 1 Close Close Open Close Open 3 2 Open Open Close Close Open 3 3 Close Open Close Close Open 3 4 Open Close Close Close Open 3 5 Close C...

Page 8: ...H 0 C D F F H 1 2 1 2 0 D 0 0 0 H 0 D 1 F F H 1 2 3 4 0 D 4 0 0 H 0 D 5 F F H 3 4 3 4 0 D 8 0 0 H 0 D 9 F F H 1 2 5 6 0DC00H 0DDFFH 3 4 5 6 l RS232 Select Jumper JP5 JP6 JP15 JP16 RS232 Select JP5 JP6 JP15 JP16 Normal default 1 2 RS232 pin1 use 5V 3 4 RS232 pin1 use 12V 5 6 ...

Page 9: ...ser can develop the program and extra controller to open and sense of the cash drawer based on the digital I O function on this main board PIN ASSIGNMENT 1 GND 6 Out 1 2 VDC 12V 7 IN 2 3 IN 0 8 Out 2 4 Out 0 9 IN 3 5 IN 1 10 Out 3 1 2 3 4 5 6 7 8 9 10 IN3 IN2 IN1 IN0 GND OUT3 OUT1 OUT2 OUT0 V DC 12V ...

Page 10: ... 2 206 2 Out 3 206 3 Example 0 off 1 on Data 00 Out 0 and Out 1 0 Data 01 Out 0 1 Data 02 Out 1 1 Data 03 Out 0 and Out 1 1 ν Digital input programming The input signal must be TTL compatible In put Address Bit IN 0 206 0 IN 1 206 1 IN 2 206 2 IN 3 206 3 Example If input 206 is 0111 then input 3 is 0 If input 206 is 0011 then input 3 4 are 0 ...

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