EX256-CS100 ACTEL [Actel Corporation], EX256-CS100 Datasheet - Page 18

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EX256-CS100

Manufacturer Part Number
EX256-CS100
Description
eX Automotive Family FPGAs
Manufacturer
ACTEL [Actel Corporation]
Datasheet
5 V Tolerance of 3.3 V LVTTL I/Os Using a Tristate Buffer
Input: 3.3 V LVTTL I/Os are 5-V-input tolerant only if the non-PCI mode is used (no clamp diode).
Output: To configure an Actel eX device to drive 5 V with V
the I/O cell with an array inverter cell and an external pull-up resistor to 5 V. The recommended configuration is
illustrated in
recommended resistor value in a specific application, please contact Actel Technical Support. For more details, refer to
the Design Tips section of the
Figure 1-14 • Open-Drain Configuration for eX
Power Dissipation
Power consumption for eX devices can be divided into
two components: static and dynamic.
Static Power Component
The power due to standby current is typically a small
component of the overall power. Typical standby current
for eX devices is listed in
example, the typical static power for eX128 at 3.3 V V
is:
I
Dynamic Power Component
Power dissipation in CMOS devices is usually dominated
by the dynamic power dissipation. This component is
frequency-dependent and a function of the logic and the
external I/O. Dynamic power dissipation results from
charging internal chip capacitance. An additional
component of the dynamic power dissipation is the
totem pole current in the CMOS transistor pairs. The net
effect can be associated with an equivalent capacitance
that can be combined with frequency and voltage to
represent dynamic power dissipation.
Dynamic power dissipation = CEQ * V
1 -1 4
CC
eX Automotive Family FPGAs
* V
CCA
= 795 µA x 2.5 V = 1.99 mW
Figure
1-14. The I/O configuration must be set to LVTTL to disable the PCI clamp diode. For the
User Internal Signal
Table 1-10 on page
Actel eX, SX-A and RT54SX-S I/Os
CCA
2
x F
1-12. For
Actel Open Drain Configuration
CCI
v3.2
CCI
TRIBUFF
CEQ = Equivalent capacitance
F
Equivalent capacitance is calculated by measuring I
a specified frequency and voltage for each circuit
component of interest. Measurements have been made
over a range of frequencies at a fixed value of V
Equivalent capacitance is frequency-independent, so the
results can be used over a wide range of operating
conditions. Equivalent capacitance values are shown
below.
CEQ Values for eX Devices
Combinatorial modules (Ceqcm) 1.70 pF
Sequential modules (Ceqsm)
Input buffers (Ceqi)
Output buffers (Ceqo)
Routed array clocks (Ceqcr)
The variable and fixed capacitance of other device
components must also be taken into account when
estimating the dynamic power dissipation.
= 3.3 V, users can utilize an Open Drain configuration of
application note.
E
= switching frequency
PAD
5 V
1.70 pF
1.30 pF
7.40 pF
1.05 pF
CCA
CCA
at
.

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