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Scroll pdf title
titlePower supply options diagram
Scroll pdf title
titleOn-board power rails summary.

power-rail
name

nominal
voltage (V)

maximum
current (A)

power
source

system
supply

user
supply

Vb2b

4.0 to 7.0

4.0

(4 pin × 1.0 A/pin)

JM5

module

-

Vusb

5.0

0.5

J1

module

-

Vsup

4.0 to 7.0

< 0.5

Vusb

3 × DC/DC

DC/DC sync

power-fail

JM5 (≤1.0 A)

< 4

Vb2b

3.3V

3.3

3.0

Vsup â-º DC/DC

module

JM4 (≤1.0 A)

JM5 (≤1.0 A)

2.5V

2.5

3.0

Vsup â-º DC/DC

DDR SDRAM

JM5 (≤1.0 A)

1.2V

1.2

3.0

Vsup â-º DC/DC

VCCINT

JM5 (≤1.0 A)

VCCAUX

2.5

0.3

3.3V â-º LDO

VCCAUX

JM4 (≤1.0 A)

3.3

< 3.0

3.3V

VCCCIO0

2.5

< 3.0

2.5V

VCCO
(bank 0)

JM4 (≤1.0 A)

3.3

< 3.0

3.3V

JM4 (≤1.0 A)

1.10 to 3.60

2.0

(2 pin × 1.0 A/pin)

JM4

(30 + 44)

JM4

(30 / 44)


If resistors R9 and R11 are populated and R12 is not populated, then TE0320 is power supplied through JM5 (B2B connector).

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  • Vsup
    It is the main internal power rail irrespective of the external power supply. It is supplied by either Vb2b or Vusb. It manages power distribution, conversion and supervision. It is routed also to connector JM5 as a user power supply output.
  • Vb2b
    It is the main power rail when the module is supplied from B2B connector JM5.
  • Vusb
    It is the main power rail when the module is supplied from USB mini-B connector J1. The maximum current than can be provided to J1 is determined by the USB power source.
  • 3.3V
    It is converted from Vsup by a step-down DC/DC converter and can provide up to 3.0 A to the module and connectors JM4 and JM5.
  • 2.5V
    It is converted from Vsup by a step-down DC/DC converter and can provide up to 3.0 A to the DDR SDRAM and connectors JM5.
  • 1.2V
    It is converted from Vsup by a step-down DC/DC converter and can provide up to 3.0 A to the VCCINT power supply pins and connectors JM5.
  • VCCAUX
    Here there are two assembly options:
  1. if inductor L2 is not populated and the low-noise low drop-out regulator U6 is populated, VCCAUX power rail is supplied with its nominal voltage of 2.5 V. This is the recommended option for noise-sensitive circuitry such as clocking and timing infrastructures.  


    Image Removed
    Figure 8: assembly

    Scroll pdf title
    titleAssembly option for VCCAUX = 2.5 V (bottom view).
    Image Added


  2. if the ferrite bead L2 is populated and U6 is not populated, the 3.3V power rail is simply filtered to generate VCCAUX power rail. This is the recommended option for cost-sensitive applications. In this case
    • ensure the noise level on power rail VCCUAX is suitable to your application;
    • avoid the connection of noise sources to power rail VCCUAX.

...


 

Scroll pdf title
titleAssembly option for VCCAUX = 3.3 V (bottom view).
Image Modified

Image Added

Any other assembly combination of L2 and U6 is not allowed.

  • VCCCIO0
    VCCCIO0 supplies VCCO to FPGA bank 0. The following assembly options are possible:

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(warning)

Pins 30 and 44 of JM4 are power supply inputs in this case.

 

    1. if

  1.  if
    1. resistor R131 is not populated and R132 is populated, VCCCIO0 power rail is set to power rail 2.5V (nominal voltage = 2.5 V).

  2.  Image Removed

    Figure 11: assembly option for VCCAUX
    1. Scroll pdf title
      titleAssembly option for VCCIO0= 2.5 V (bottom view).
      Image Added

       

      (warning)

      Pins 30 and 44 of JM4 are power supply outputs in this case.

    2. if resistor R131 is populated and R132 is not populated, VCCCIO0 power rail is set to power rail 3.3V (nominal voltage = 3.3 V). This is the default.

      Image Modified
       

      Figure 12: assembly option for VCCCIO0 = 3.3 V (bottom view).
       

      (warning)

      Pins 30 and 44 of JM4 are power supply outputs in this case.

    3. if both resistors R131 and R132 are not populated, VCCCIO0 power can be supplied through pins 30 and 44 of B2B connector JM4.

    4. Image Added
      Figure 10: assembly option for VCCAUX = off (bottom view)  

Assembly option where both R131 and R132 are populated is not allowed.

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(warning)

Each pin of B2B connectors JM4 and JM5 is capable of a maximum current of 1.0 A.

 

 

...

.

...

power-rail
name

...

nominal
voltage (V)

...

maximum
current (A)

...

power
source

...

system
supply

...

user
supply

...

Vb2b

...

4.0 to 7.0

...

4.0

(4 pin × 1.0 A/pin)

...

JM5

...

module

...

-

...

Vusb

...

5.0

...

0.5

...

J1

...

module

...

-

...

Vsup

...

4.0 to 7.0

...

< 0.5

...

Vusb

...

3 × DC/DC

DC/DC sync

power-fail

...

JM5 (≤1.0 A)

...

< 4

...

Vb2b

...

3.3V

...

3.3

...

3.0

...

Vsup â-º DC/DC

...

module

...

JM4 (≤1.0 A)

JM5 (≤1.0 A)

...

2.5V

...

2.5

...

3.0

...

Vsup â-º DC/DC

...

DDR SDRAM

...

JM5 (≤1.0 A)

...

1.2V

...

1.2

...

3.0

...

Vsup â-º DC/DC

...

VCCINT

...

JM5 (≤1.0 A)

...

VCCAUX

...

2.5

...

0.3

...

3.3V â-º LDO

...

VCCAUX

...

JM4 (≤1.0 A)

...

3.3

...

< 3.0

...

3.3V

...

VCCCIO0

...

2.5

...

< 3.0

...

2.5V

...

VCCO
(bank 0)

...

JM4 (≤1.0 A)

...

3.3

...

< 3.0

...

3.3V

...

JM4 (≤1.0 A)

...

1.10 to 3.60

...

2.0

(2 pin × 1.0 A/pin)

...

JM4

(30 + 44)

...

JM4

(30 / 44)

 

...

Power Supervision

Power-on Reset

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