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Tap timing tap ac switching characteristics – Cypress CY7C1383F User Manual

Page 13

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CY7C1381D, CY7C1381F

CY7C1383D, CY7C1383F

Document #: 38-05544 Rev. *F

Page 13 of 29

(Q-bus) pins, when the EXTEST is entered as the current

instruction. When HIGH, it will enable the output buffers to

drive the output bus. When LOW, this bit will place the output

bus into a High-Z condition.
This bit can be set by entering the SAMPLE/PRELOAD or

EXTEST command, and then shifting the desired bit into that

cell, during the Shift-DR state. During Update-DR, the value

loaded into that shift-register cell will latch into the preload

register. When the EXTEST instruction is entered, this bit will

directly control the output Q-bus pins. Note that this bit is

preset HIGH to enable the output when the device is powered

up, and also when the TAP controller is in the Test-Logic-Reset

state.

Reserved
These instructions are not implemented but are reserved for

future use. Do not use these instructions.

TAP Timing

TAP AC Switching Characteristics

Over the Operating Range

[10, 11]

Parameter

Description

Min

Max

Unit

Clock
t

TCYC

TCK Clock Cycle Time

50

ns

t

TF

TCK Clock Frequency

20

MHz

t

TH

TCK Clock HIGH time

20

ns

t

TL

TCK Clock LOW time

20

ns

Output Times
t

TDOV

TCK Clock LOW to TDO Valid

10

ns

t

TDOX

TCK Clock LOW to TDO Invalid

0

ns

Setup Times
t

TMSS

TMS Setup to TCK Clock Rise

5

ns

t

TDIS

TDI Setup to TCK Clock Rise

5

ns

t

CS

Capture Setup to TCK Rise

5

ns

Hold Times
t

TMSH

TMS Hold after TCK Clock Rise

5

ns

t

TDIH

TDI Hold after Clock Rise

5

ns

t

CH

Capture Hold after Clock Rise

5

ns

t

TL

Test Clock

(TCK)

1

2

3

4

5

6

Test Mode Select

(TMS)

tTH

Test Data-Out

(TDO)

tCYC

Test Data-In

(TDI)

tTMSH

tTMSS

tTDIH

tTDIS

tTDOX

tTDOV

DON’T CARE

UNDEFINED

Notes:

10. t

CS

and t

CH

refer to the setup and hold time requirements of latching data from the boundary scan register.

11. Test conditions are specified using the load in TAP AC test conditions. t

R

/t

F

= 1 ns.

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