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PDF MC10H640 Data sheet ( Hoja de datos )

Número de pieza MC10H640
Descripción PECL to TTL Clock Driver
Fabricantes Motorola Semiconductors 
Logotipo Motorola Semiconductors Logotipo



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No Preview Available ! MC10H640 Hoja de datos, Descripción, Manual

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MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
68030/040
PECL-TTL Clock Driver
MC10H640
MC100H640
The MC10H/100H640 generates the necessary clocks for the 68030,
68040 and similar microprocessors. It is guaranteed to meet the clock
specifications required by the 68030 and 68040 in terms of part–to–part
skew, within–part skew and also duty cycle skew.
The user has a choice of using either TTL or PECL (ECL referenced to
+5.0V) for the input clock. TTL clocks are typically used in present MPU
systems. However, as clock speeds increase to 50MHz and beyond, the
inherent superiority of ECL (particularly differential ECL) as a means of
clock signal distribution becomes increasingly evident. The H640 also
uses differential PECL internally to achieve its superior skew
characteristic.
The H640 includes divide–by–two and divide–by–four stages, both to
achieve the necessary duty cycle skew and to generate MPU clocks as
required. A typical 50MHz processor application would use an input clock
running at 100MHz, thus obtaining output clocks at 50MHz and 25MHz
(see Logic Symbol).
The 10H version is compatible with MECL 10HECL logic levels,
while the 100H version is compatible with 100K levels (referenced
to +5.0V).
Generates Clocks for 68030/040
Meets 030/040 Skew Requirements
TTL or PECL Input Clock
Extra TTL and PECL Power/Ground Pins
Asynchronous Reset
Single +5.0V Supply
68030/040
PECL–TTL CLOCK
DRIVER
FN SUFFIX
PLASTIC PACKAGE
CASE 776–02
Function
Reset (R): LOW on RESET forces all Q outputs LOW and all Q outputs HIGH.
Power–Up: The device is designed to have the POS edges of the ÷2 and ÷4 outputs synchronized at power up.
Select (SEL): LOW selects the ECL input source (DE/DE). HIGH selects the TTL input source (DT).
The H640 also contains circuitry to force a stable state of the ECL input differential pair, should both sides be left open. In this
case, the DE side of the input is pulled LOW, and DE goes HIGH.
VT VT Q1 GT GT Q0 VT
25 24 23 22 21 20 19
Q2 26
18 VBB
GT 27
17 DE
GT 28
Q3 1
VT 2
Pinout: 28–Lead PLCC
(Top View)
16
15
14
DE
VE
R
VT 3
13 GE
Q0 4
12 DT
5 6 7 8 9 10 11
Q1 GT GT Q4 Q5 VT SEL
11/93
© Motorola, Inc. 1996
2–1
REV 3

1 page




MC10H640 pdf
MC10H640 MC100H640
11 11
5.25 VCC
5 VCC
4.75 VCC
10 10
99
4.75 VCC
5 VCC
5.25 VCC
0 25 50 75 85
LOAD (pF)
Figure 1. Positive Pulse Width at
25°C Ambient and 50 MHz Out
0 25 50 75
LOAD (pF)
Figure 2. Negative Pulse Width @ 50 MHz
Out and 25°C Ambient
85
11 11
5.125 VCC
5 VCC
4.875 VCC
10 10
99
4.875 VCC
5 VCC
5.125 VCC
0 25 50 75 85
LOAD (pF)
Figure 3. Positive Pulse Width at
25°C Ambient at 50 MHz Out
0 25 50 75
LOAD (pF)
Figure 4. Negative Pulse Width @ 50 MHz
Out and 25°C Ambient
85
11
50 pF
11
25 pF
10 10
10 pF
99
10 pF
25 pF
0° 25° 50° 75° 85°
TEMPERATURE (°C)
Figure 5. Temperature versus Positive Pulse Width
for 100H640 at 50 MHz and +5.0 V VCC
0° 25° 50° 75° 85°
TEMPERATURE (°C)
Figure 6. Temperature versus Negative Pulse Width
for MC100H640 @ 50 MHz and +5.0 V VCC
MECL Data
DL122 — Rev 6
2–5
MOTOROLA

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