Motherboard B59 Main Board User Manual
- June 3, 2024
- Motherboard
Table of Contents
Motherboard B59 Main Board
Jumper Location Diagram for “B59 V1.X ” Pentium main board
Memory configuration for “B59 V1.X” main board
- System Memory Configuration
Capacity| 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 - External Cache RAM Configuration.
Capacity| SDRAM
Type
| Quantity| Location
---|---|---|---
256KB| 32k x 64| 1pcs| U15
512KB| 64k x 64| 1pcs| U15
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.
- CPU type selection: J4, J10
CPU| JP4| JP10
---|---|---
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
- CPU Voltage selection:****
Vcore| JP2
---|---
1-2| 3-4| 5-6| 7-8| 9-10
1.5| Open| Open| Close| Open| Close
1.6| Open| Close| Close| Open| Close
1.7| Open| Open| Open| Close| Close
1.8| Open| Close| Open| Close| Close
1.9| Open| Open| Close| Close| Close
2.0| Open| Close| Close| Close| Close
2.1| Close| Open| Open| Open| Open
2.2| Open| Close| 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| Close| Close| Close| Open - CMOS data clean function: JP9
CMOS data| JP9
---|---
Clean| 2-3
Normal (default)| 1-2 - Disk On Chip address selection: JP12, JP13
Address| JP12| JP13
---|---|---
0 C C 0 0 H – 0 C D F F H| 1-2| 1-2
0D000H – 0D1FF H| 1-2| 3-4
0D400H – 0D5FF H| 3-4| 3-4
0D800H – 0D9FF H| 1-2| 5-6
0DC00H – 0DDFF H| 3-4| 5-6 - 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 - Digital I/O (4 Output & 4 Input): J5
-
This main board provide the basic digital I/O signal controller, user 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 ASSIGNMENT1| 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
-
Digital output programming
The output is TTL Level. The output signal must be TTL compatible.
Output | Address | Bit |
---|---|---|
Out 0 | 206 | 0 |
Out 1 | 206 | 1 |
Out 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”
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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