SEMICONDUCTOR TECHNICAL DATA
2–316
REV 2
Motorola, Inc. 1996
9/96
The MC10H/100H607 is a 6–bit, registered PECL to TTL translator.
The device features differential PECL inputs for both data and clock. The
TTL outputs feature 48mA sink, 24mA source drive capability for driving
high fanout loads or transmission lines. The asynchronous master reset
control is an ECL level input.
With its differential PECL inputs and TTL outputs the H607 device is
ideally suited for the receive function of a HPPI bus type board–to–board
interface application. The on chip registers simplify the task of
synchronizing the data between the two boards.
The device is available in either ECL standard: the 10H device is
compatible with MECL 10H logic levels, with a VCC of +5.0 volts, while
the 100H device is compatible with 100K logic levels, with a VCC of +5.0
volts.
• Differential ECL Data and Clock Inputs
• 48mA Sink, 15mA Source TTL Outputs
• Single Power Supply
• Multiple Power and Ground Pins to Minimize Noise
Pinout: 28–Lead PLCC (Top View)
1
EGND
Q3V
CCTQ4
TGND Q5V
CCT
MR
D
5
D
5
D
4
D
4
V
CCE
D
3
D
3
D
2
D
2
D
1
D
1
D
0
D
0
V
BB
CLK
CLK
TGND
Q
0
Q
1
Q
2
4
3
2
28
27
26
25
24
23
22
21
20
19
18
17
16
15
14
13
12
11109
7
8
6
5
MECL 10H is a trademark of Motorola, Inc.
FN SUFFIX
PLASTIC PACKAGE
CASE 776–02
MC10H607 MC100H607
2–317 MOTOROLAMECL Data
DL122 — Rev 6
D
n
D
n
LOGIC DIAGRAM
Q
n
MR
CLK
CLK
V
BB
1 OF 6 BITS
D
CLK
R
Q
PIN NAMES
Pin Function
D0 – D
5
D
0
– D
5
CLK, CLK
MR
Q0 – Q
5
True PECL Data Inputs
Inverted PECL Data Inputs
Differential PECL Clock Input
PECL Master Reset Input
TTL Outputs
V
CCE
V
CCT
TGND
EGND
PECL V
CC
TTL V
CC
TTL Ground
PECL Ground
TRUTH TABLE
D
n
MR TCLK/CLK Qn + 1
L
H
X
L
L
H
Z
Z
X
L
H
L
Z = LOW to HIGH Transition
DC CHARACTERISTICS (V
CCT
= V
CCE
= 5.0V ±5%)
TA = 0°C TA = + 25°C TA = + 85°C
Symbol Characteristic Min Typ Max Min Typ Max Min Typ Max Unit Condition
I
EE
ECL Power Supply Current
10H
100H
70
65
85
80
70
70
85
85
70
75
85
95
mA
I
CCL
TTL Supply Current 100 120 100 120 100 120 mA
I
CCH
TTL Supply Current 100 120 100 120 100 120 mA