DE10-Agilex board modifycation item from rev.A to rev.B

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#Change the core power IC (U15) from LT4680('''Rev.A''') to LT4700('''Rev.B''') , the output current of the core power can be increased from 60A('''Rev.A''') to 100A('''Rev.B''')
#Change the core power IC (U15) from LT4680('''Rev.A''') to LT4700('''Rev.B''') , the output current of the core power can be increased from 60A('''Rev.A''') to 100A('''Rev.B''')
#:
#:
-
#Modify the DDR4 reference clock source frequency. In version B, the DDR4 clock source frequency is fixed at 333.33Mhz (clock switch SW5 is not installed ). In version A, using SW5 can select 266.66Mhz or 300Mhz.
+
#Modify the DDR4 reference clock source frequency. In version B, the DDR4 clock source frequency is fixed at 33.33Mhz (clock switch SW5 is not installed ). In version A, using SW5 can select 266.66Mhz or 300Mhz.
#:
#:
-
#Change the orientation of the external 2x4 pin power connector from up to down.
+
#Change the orientation of the external 2x4 pin power connector from up to right.
#:
#:
#A slight modification of the heatsink due to the Layout modifucation.
#A slight modification of the heatsink due to the Layout modifucation.
#:
#:
-
#Modify pin assignments  
+
#Modify pin assignments (Please see Table 2)
The following table shows the summary of the changes:  
The following table shows the summary of the changes:  
Line 40: Line 40:
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | <span style="color:#000000;">QSPI Flash (For </span><span style="color:#000000;">storing </span><span style="color:#000000;">user data</span><span style="color:#000000;"> or NIOS software code</span><span style="color:#000000;">)</span>
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | <span style="color:#000000;">QSPI Flash (For </span><span style="color:#000000;">storing </span><span style="color:#000000;">user data</span><span style="color:#000000;"> or NIOS software code</span><span style="color:#000000;">)</span>
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | <span style="color:#000000;">Not Support</span>
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | <span style="color:#000000;">Not Support</span>
-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | <span style="color:#000000;">Supp</span>
+
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | <span style="color:#000000;">Support</span>
|-
|-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | '''3'''
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | '''3'''
-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" |  
+
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | OCXO Oscillators for  CPRI application
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | <span style="color:#000000;">Not Support</span>
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | <span style="color:#000000;">Not Support</span>
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | Reserved
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | Reserved
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| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | Core Power IC
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | Core Power IC
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | LT4680 (60A)
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | LT4680 (60A)
-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | LR4700 (100A)
+
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | LT4700 (100A)
|-
|-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | '''6'''
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | '''6'''
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | DDR4&nbsp;reference clock source frequency
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | DDR4&nbsp;reference clock source frequency
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | 266.66Mhz or 300Mhz (select by SW5)
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | 266.66Mhz or 300Mhz (select by SW5)
-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | 333.33Mhz (Fixed)
+
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | 33.333Mhz (Fixed)
|-
|-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | '''7'''
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | '''7'''
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | The orientation of the external 2x4 pin power connector
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | The orientation of the external 2x4 pin power connector
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | Up
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | Up
-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | Down
+
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | Right
|-
|-
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | '''8'''
| style="border:0.5pt solid #000000;padding-top:0cm;padding-bottom:0cm;padding-left:0.191cm;padding-right:0.191cm;" | '''8'''

Latest revision as of 17:30, 18 November 2020

  1. Add power protection switch (SW1) feature on Rev. B board. This switch can avoid damage to the components on the board due to insufficient power supply of the board.When the switch is switched to "ON" position, the board will detect whether the external power is connected to the 2x4 power connector. If it is not connected, the DE10-Agilex board will not power on when the user turns on the power of the Host. This can avoid DE10-Agilex Insufficient power supply of board occurs.
  2. Add QSPI Flash on Rev. B board for storing user data and nios code
  3. Add a System MAX10 Jtag bypass dip switch (SW9) that allow the System MAX10 FPGA can be bypass in the JTAG chain of the DE10-Agilex board. This can increase the JTAG scan speed.
  4. Reserve an OCXO Oscillators (Not installed, reserved for CPRI application)
  5. Change the reference clock of the si5340, from crystall(Rev.A) to TCXO Oscillator(Rev.B)
  6. Change the core power IC (U15) from LT4680(Rev.A) to LT4700(Rev.B) , the output current of the core power can be increased from 60A(Rev.A) to 100A(Rev.B)
  7. Modify the DDR4 reference clock source frequency. In version B, the DDR4 clock source frequency is fixed at 33.33Mhz (clock switch SW5 is not installed ). In version A, using SW5 can select 266.66Mhz or 300Mhz.
  8. Change the orientation of the external 2x4 pin power connector from up to right.
  9. A slight modification of the heatsink due to the Layout modifucation.
  10. Modify pin assignments (Please see Table 2)

The following table shows the summary of the changes:


Table 1 summary of the changes from Rev.A to Rev.B


Function Rev. A Rev. B
1 Power protection switch (SW1) feature Not Support Support
2 QSPI Flash (For storing user data or NIOS software code) Not Support Support
3 OCXO Oscillators for CPRI application Not Support Reserved
4 Reference clock of the SI5340 Crystal TCXO Oscillator
5 Core Power IC LT4680 (60A) LT4700 (100A)
6 DDR4 reference clock source frequency 266.66Mhz or 300Mhz (select by SW5) 33.333Mhz (Fixed)
7 The orientation of the external 2x4 pin power connector Up Right
8 Heat sink solution Modify the heat sink of the core power IC
9 Modify pin assignment See the Table 2 See the Table 2


Table 2 Pin Assignments modify list from Rev.A to Rev.B


Net Rev.A Pin Assignment Rev.B Pin Assignment
PCIE_SMBCLK F59 G50
PCIE_CLKREQ_n J58 F55
PCIE_WAKE_n G58 J50
DDR4B_SDA H57 B19
GPIO_CLK0 CU24 DA22
GPIO_P0 DA22 CY21
INFO_SPI_MISO CY21 CU26
CLK_30M72 (*1) -- CU24
EXP_EN(*1) -- A20
QSPI_CLK(*1) -- CT53
QSPI_nCSO(*1) -- CV53
QSPI_DATA0(*1) -- CT55
QSPI_DATA1(*1) -- CV57
QSPI_DATA2(*1) -- DC56
QSPI_DATA3(*1) -- DA56
(*1) New net in Rev.B