SEMICONDUCTOR
SYNERGY
SINGLE SUPPLY 1:9
PECL-TO-TTL
ClockWorks™
SY10H641A
ClockWorks™
SY100H641A
SY10H641A
SY100H641A
FEATURES
s
s
s
s
s
s
Input frequencies up to 80MHz
PECL-to-TTL version of popular ECLinPS E111
Guaranteed low skew specification
Latched input
Differential ECL internal design
V
BB
output for single-ended operation
DESCRIPTION
The SY10/100H641A are single supply, low skew
translating 1:9 clock drivers. Devices in the Synergy H600
translator series utilize the 28-lead PLCC for optimal
power pinning, signal flow-through and electrical
performance.
The devices feature a 24mA TTL output stage with
AC performance specified into a 50pF load capacitance.
A latch is provided on-chip. When LEN is LOW (or left
open, in which case it is pulled LOW by the internal pull-
downs), the latch is transparent. A HIGH on the enable
pin (EN) forces all outputs LOW.
The 10H version is compatible with MECL 10KH ECL
logic levels. The 100H version is compatible with 100K
levels.
s
Single +5V supply
s
Reset/enable
s
Extra TTL and ECL power/ground pins
s
Choice of ECL compatibility: MECL 10KH (10Hxxx)
or 100K (100Hxxx)
s
ESD protection of 2000V
s
Fully compatible with Motorola MC10H641/100H641
s
Available in 28-pin PLCC package
BLOCK DIAGRAM
TTL Outputs
Q
0
PIN CONFIGURATION
Q
6
V
T
Q
7
V
T
Q
8
G
T
18
17
16
25 24 23 22 21 20 19
Q
1
Q
2
G
T
Q
5
V
T
Q
4
V
T
Q
3
G
T
26
27
28
1
2
3
4
5
6
7
8
9
10 11
G
T
V
BB
D
D
V
E
LEN
G
E
EN
TOP VIEW
PLCC
15
14
13
12
Q
3
G
T
Q
2
V
T
Q
1
V
T
Q
0
G
T
PECL Input
D
D
V
BB
Q
5
LEN
EN
Q
6
D
Q
Q
4
PIN NAMES
Pin
G
T
V
T
V
E
G
E
D, D
Function
TTL Ground (0V)
TTL V
CC
(+5.0V)
ECL V
CC
(+5.0V)
ECL Ground (0V)
Signal Input (PECL)
V
BB
Reference Output (PECL)
Signal Outputs (TTL)
Enable Input (PECL)
Latch Enable Input (PECL)
Rev.: D
Amendment: /0
Issue Date: February, 1999
Q
7
V
BB
Q
0
- Q
8
EN
Q
8
© 1999 Micrel-Synergy
LEN
5-356
SEMICONDUCTOR
SYNERGY
ClockWorks™
SY10H641A
SY100H641A
ABSOLUTE MAXIMUM RATINGS
(1)
Symbol
V
E
(ECL)
V
T
(TTL)
V
I
(ECL)
V
OUT
(TTL)
I
OUT
(ECL)
Rating
Power Supply
Voltage
Input Voltage
Disabled 3-State
Output
Output Current
- Continuous
- Surge
Storage Temperature
Operating Temperature
Value
–0.5 to +7.0
–0.5 to +7.0
0.0 to V
E
0.0 to V
T
Unit
V
V
V
mA
50
100
–65 to +150
0 to +85
˚C
˚C
TRUTH TABLE
D
L
H
X
X
LEN
L
L
H
X
EN
L
L
L
H
Q
L
H
Q
0
L
T
store
T
A
NOTE:
1. Do not exceed.
V
CC
AND C
LOAD
Ranges to meet duty cycle requirement: 0°C
≤
T
A
≤
85°C. Output duty cycle measured relative to 1.5V.
Symbol
P
W1
Parameter
Ranges of V
CC
and C
L
to meet min.
pulse width (HIGH or LOW) at
f
OUT
≤
40MHz
Ranges of V
CC
and C
L
to meet min.
pulse width (HIGH or LOW) at
f
OUT
≤
50MHz
V
CC
C
L
P
W
V
CC
C
L
P
W
Min.
4.75
10
11
4.875
15
9.0
Typ.
5.0
—
—
5.0
—
—
Max.
5.25
50
—
5.125
27
—
Unit
V
pF
ns
V
pF
ns
Condition
All Outputs
P
W2
All Outputs
DC ELECTRICAL CHARACTERISTICS
V
T
= V
E
= 5.0V
±
5%
T
A
= 0
°
C
Symbol
I
EE
I
CCH
I
CCL
Parameter
Power Supply Current
ECL
TTL
Min.
—
—
—
Max.
30
30
37
T
A
= +25
°
C
Min.
—
—
—
Max.
30
30
37
T
A
= +85
°
C
Min.
—
—
—
Max.
30
30
37
Unit
mA
Condition
V
E
Pin
Total all V
T
pins
TTL DC ELECTRICAL CHARACTERISTICS
V
T
= V
E
= 5.0V
±
5%
T
A
= 0
°
C
Symbol
V
OH
V
OL
I
OS
Parameter
Output HIGH Voltage
Output LOW Voltage
Output Short Circuit Current
Min.
2.5
—
–100
Max.
—
0.5
–225
T
A
= +25
°
C
Min.
2.5
—
–100
Max.
—
0.5
–225
T
A
= +85
°
C
Min.
2.5
—
–100
Max.
—
0.5
–225
Unit
V
V
mA
Condition
I
OH
= –15mA
I
OL
= 24mA
V
OUT
= 0V
5-357
SEMICONDUCTOR
SYNERGY
ClockWorks™
SY10H641A
SY100H641A
10H ECL DC ELECTRICAL CHARACTERISTICS
V
T
= V
E
= 5.0V
±
5%
T
A
= 0
°
C
Symbol
I
IH
I
IL
V
IH
V
IL
V
BB
Parameter
Input HIGH Current
Input LOW Current
Input HIGH Voltage
(1)
Input LOW Voltage
(1)
Output Reference Voltage
(1)
Min.
—
0.5
3.830
3.050
3.620
Max.
225
—
4.160
3.520
3.730
T
A
= +25
°
C
Min.
—
0.5
3.870
3.050
3.650
Max.
175
—
4.190
3.520
3.750
T
A
= +85
°
C
Min.
—
0.5
3.940
3.050
3.690
Max.
175
—
4.280
3.555
3.810
Unit
µA
µA
V
V
V
Condition
—
—
V
E
= 5.0V
V
E
= 5.0V
V
E
= 5.0V
NOTE:
1. V
IH
, V
IL
and V
BB
are referenced to V
E
and will vary 1:1 with the power supply. The levels shown are for V
E
= +5.0V.
100H ECL DC ELECTRICAL CHARACTERISTICS
V
T
= V
E
= 5.0V
±
5%
T
A
= 0
°
C
Symbol
I
IH
I
IL
V
IH
V
IL
V
BB
Parameter
Input HIGH Current
Input LOW Current
Input HIGH Voltage
(1)
Input LOW Voltage
(1)
Output Reference Voltage
(1)
Min.
—
0.5
3.835
3.190
3.620
Max.
225
—
4.120
3.525
3.740
T
A
= +25
°
C
Min.
—
0.5
3.835
3.190
3.620
Max.
175
—
4.120
3.525
3.740
T
A
= +85
°
C
Min.
—
0.5
3.835
3.190
3.620
Max.
175
—
4.120
3.525
3.740
Unit
µA
µA
V
V
V
Condition
—
—
V
E
= 5.0V
V
E
= 5.0V
V
E
= 5.0V
NOTE:
1. V
IH
, V
IL
and V
BB
are referenced to V
E
and will vary 1:1 with the power supply. The levels shown are for V
E
= +5.0V.
AC ELECTRICAL CHARACTERISTICS
V
T
= V
E
= 5.0V
±
5%
T
A
= 0
°
C
Symbol
t
PLH
t
PHL
t
skpp
t
skew++
t
skew– –
t
PLH
t
PHL
t
PLH
t
PHL
t
r
t
f
f
MAX
—
—
t
S
t
H
Parameter
Propagation Delay
D to Output
Part-to-Part Skew
(1,4)
Within-Device Skew
(2,4)
Within-Device Skew
(3,4)
Propagation Delay
LEN to Output
Propagation Delay
EN to Output
Output Rise/Fall Time
0.8V to 2.0V
Maximum Input Frequency
(5,6)
Pulse Width
Recovery Time
Set-up Time
Hold Time
Min.
5.0
—
—
—
4.9
5.0
—
—
80
1.5
1.25
Max.
6.0
0.5
0.3
0.3
6.9
7.0
1.7
1.6
—
—
—
T
A
= +25
°
C
Min.
5.0
—
—
—
4.9
4.9
—
—
80
1.5
1.25
Max.
6.0
0.5
0.3
0.3
6.9
6.9
1.7
1.6
—
—
—
T
A
= +85
°
C
Min.
5.0
—
—
—
5.0
5.0
—
—
80
1.5
1.25
Max.
6.0
0.5
0.3
0.3
7.0
7.0
1.7
1.6
—
—
—
Unit
ns
ns
ns
ns
ns
ns
ns
MHz
ns
ns
ns
ns
Condition
C
L
= 50pF
C
L
= 50pF
C
L
= 50pF
C
L
= 50pF
C
L
= 50pF
C
L
= 50pF
C
L
= 50pF
C
L
= 50pF
—
—
—
—
0.5 (typ.)
0.5 (typ.)
0.5 (typ.)
0.5 (typ.)
0.5 (typ.)
0.5 (typ.)
NOTES:
1. Device-to-Device Skew considering HIGH-to-HIGH transitions at common
power supply voltage.
2. Within-Device Skew considering HIGH-to-HIGH transitions at common
power supply voltage.
3. Within-Device Skew considering LOW-to-LOW transitions at common
power supply voltage.
4. All skew parameters are guaranteed but not tested.
5. Frequency at which output levels will meet a 0.8V to 2.0V minimum swing.
6. The f
MAX
value is specified as the minimum guaranteed maximum
frequency. Actual operational maximum frequency may be greater.
5-358