Adv ance informa t ion, Clock characteristics and timing – Texas Instruments TMS320 User Manual

Page 35

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TMS320C25 50

SPRS010B — MAY 1987 — REVISED NOVEMBER 1990

POST OFFICE BOX 1443

HOUSTON, TEXAS 77001

35

CLOCK CHARACTERISTICS AND TIMING

The TMS320C25-50 can use either its internal oscillator or an external frequency source for a clock.

internal clock option

The internal oscillator is enabled by connecting a crystal across X1 and X2, CLKIN. The frequency of CLKOUT1

is one-fourth the crystal fundamental frequency. The crystal should be in either fundamental or overtone mode,

and parallel resonant, with an effective series resistance of 30 , a power dissipation of 1 mW, and be specified

at a load capacitance of 20 pF. Note that overtone crystals require an additional tuned LC circuit.

PARAMETER

TEST CONDITIONS

MIN

TYP

MAX

UNIT

f

x

Input clock frequency

T

A

= 0C to 70C

6.7

51.2

MHz

f

sx

Serial port frequency

T

A

= 0C to 70C

0

6.4

MHz

C1, C2

T

A

= 0C to 70C

10

pF

The serial port was tested at a minimum frequency of 1.25 MHz. However, the serial port was fully static but will properly function down to
f

sx

= 0 Hz.

X2/CLKIN

C2

C1

X1

Crystal

Figure 6. Internal Clock Option

external clock option

An external frequency source can be used by injecting the frequency directly into X2/CLK, with X1 left

unconnected. The external frequency injected must conform to specifications listed in the following table.

switching characteristics over recommended operating conditions (see Note 3)

MIN

NOM

MAX

UNIT

t

c(C)

CLKOUT1, CLKOUT2 cycle time

78.13

597

ns

t

d(CIH-C)

CLKIN high to CLKOUT1, CLKOUT2, STRB high, low

12

27

ns

t

f(C)

CLKOUT1, CLKOUT2, STRB fall time

4

ns

t

r(C)

CLKOUT1, CLKOUT2, STRB rise time

4

ns

t

w(CL)

CLKOUT1, CLKOUT2, STRB low pulse duration

2Q -- 7

2Q + 3

ns

t

w(CH)

CLKOUT1, CLKOUT2, STRB high pulse duration

2Q -- 3

2Q + 7

ns

t

d(C1-C2)

CLKOUT1 high to CLKOUT2 low,
CLKOUT2 high to CLKOUT1 high, etc.

Q -- 6

Q + 2

ns

NOTE 3: Q = 1/4 t

c(C)

ADV

ANCE

INFORMA

T

ION

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