MC68160C Motorola, MC68160C Datasheet - Page 27

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MC68160C

Manufacturer Part Number
MC68160C
Description
ENHANCED ETHERNET INTERFACE TRANSCEIVER
Manufacturer
Motorola
Datasheet

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Selection of Crystal and External Components
the main determinants of crystal choice. Specifications for a
suitable crystal are tabulated below.
PLL Filter Components
adequate pull–range but with a emphasis on stability. It is not
foreseeable that a design would need to change the
components, but for the sake of completeness, relevant
values are provided here.
filter impedance function is;
10BASE–T Filter and Transformer Choice
impedance voltage sources. Therefore, external series
resistors must be used in order to match the characteristic
impedance of twisted pair. Since the output resistance of
each leg of the transmitter is about 10 , a 39
used in series as shown in the applications schematic. So the
impedance presented from the source to the isolation
transformer is then very nearly 100 . The following is a list of
some 10BASE–T filter module vendors and their products.
A suitable crystal is the MTRON
HC49 MP–1, 20.000 MHz crystal.
20 pF for C4 and C5 have been
shown to work reliably.
Frequency
Mode
Tolerance
Stability
Aging
Shunt Capacitance
Load Capacitance
Series Fundamental Resistance (ESR)
Drive Level
MOTOROLA ANALOG IC DEVICE DATA
VCO Gain
Phase Detector Gain
Z(j
Accuracy of frequency and stability over temperature are
The filter components at Pin 12 were chosen to assure
The MC68160, B and C differential outputs are low
w
)
[
j
w
+
(j
C5 (j
24
w
)
Volt
w
1 C6)
MHz
+
)
1 C5)
100
p
sec
2
and,
rad
m
(for C6
A
C 5
and the
MC68160 MC68160B MC68160C
X1
uu
APPLICATIONS INFORMATION
Fundamental
1
20.000 MHz
C5)
18–20 pF
500 W
100 ppm
100 ppm
5 ppm/yr
7.0 pF
25
resistor is
2
X2
C 4
AUI Transformer Choice
are low impedance sources and capable of meeting the IEEE
802.3 waveform requirements when a coupling transformer
is used. Some AUI transformer vendors and their products
are provided below.
Application Notes:
MC68160, MC68160B and MC68160C. References to the
MC68160 includes all the versions.
may not be able to transmit or receive data. This is usually
caused by the LOOP and TPFULDL control lines being active
at the same time. This is an illegal condition during normal
operation, it places the MC68160 into the production test
mode.
TPFULDL high and TPSQEL low. Then, while keeping
TPSQEL low, raise LOOP after 300 ms lower TPFULDL. This
will put the MC68160 into test mode but also resets the
MC68160. After 500 ms lower LOOP to get out of the test
mode. TPFULDL may then be de–asserted if desired.
pull down resistor on the TPSQEL pin. Even if test mode is
entered by accident, this ensures that zero’s will be written to
the test register. The hardware implementation will solve the
problem if the test mode is entered because of noise on the
TPSQEL pin. If the controller is toggling the MC68160 lines
while it is booting up, the reset procedure must be followed.
Vendor
FEE Fil–Mag
Valor Electronics
Valor Electronics
Pulse Engineering
TOKO
Vendor
Coilcraft
FEE Fil–Mag
Valor Electronics
Pulse Engineering
TOKO
TOKO
Like the 10BASE–T outputs, the AUI differential outputs
The following procedure is applicable to all three versions
Resetting the MC68160 after power up.
In some applications, after initial power up, the MC68160
To exit the test mode and return to normal: Set LOOP low,
The MC68160 is now ready for operation.
A hardware implementation of this fix would be to place a
Part #
78Z1120B–01, 78Z1122B/D–01,
78Z1122 F–01
78Z1122 F–01
PT3877, FL1012, FL1066
PT3877, FL1012, FL1066
PE–65434, PE65424, PE65433
PM01–00, PM02–00, PM05–00
Part #
LAX–ET304
23Z90, 23Z91/ 23Z92
LT6032, LT6033
PE64502, PE6103
Q30ALQ8 1AA3 Q30ALQ9 1AA3
Q30ALQ8–1AA3, Q30ALQ9–1AA3
27

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