SK10/100EL16X
High Gain Differential Receiver
with Variable Output Swing
HIGH-PERFORMANCE PRODUCTS
Description
The SK10/100EL16X is a high gain differential receiver
with variable output swing. Its VCTRL input controls the
amplitude of the Q
HG
and Q
HG
* outputs. The operating
range of the EL16X control input, VCTRL, is from VBB (large
swing) to VCC (min swing), see Figure 2. Simple control
of the output swing can be obtained by a variable resistor
between the VBB and VCC pins, with wiper driving CTRL.
Typical application circuit and results are described in
Figures 1a, 1b, and 2.
The SK10/100EL16X provides a VBB output for either
single-ended use or as a DC bias for AC coupling to the
device. The VBB pin should be used only as a bias for
the EL16X as its current sink/source capability is limited.
Whenever used, the VBB pin should be bypassed to VCC
via a 0.01 µF capacitor.
Under open input conditions, the pulldown resistor on D,
pulldown and pullup resistors on D* will force the Q
HG
output LOW and Q
HG
* output HIGH. The VCTRL pin
should be bypassed to VCC via a 0.01 µF capacitor when
the pin is used.
PRELIMINARY
Features
•
Extended Supply Voltage Range: (VEE = –5.5V to
–3.0V, VCC = 0V) or (VCC = +3.0V to +5.5V, VEE =
0V)
High Bandwidth Output Transitions
350 ps Propagation Delay
VBB Output
Internal Input Resistors: Pulldown on D, Pulldown
and Pullup on D*
Q
HG
Output will Default Low with Inputs Open or
at VEE
New Differential Input Common Mode Range
ESD Protection of >4000V
Specified Over Industrial Temperature Range:
–40
o
C to 85
o
C
Available in both 8 Pin SOIC (150 mil) and MSOP
(3mm x 3mm) Packages
•
•
•
•
•
•
•
•
•
PIN Description
Pin
D, D*
Function
Differential Data Inputs
Differential Data Outputs
VBB Ref Voltage Output
Output Swing Control
Functional Block Diagram
Q
HG
, Q
HG
*
VBB
VCTRL
VCTRL
1
8
VCC
36.5K
D
2
75K
7
QHG
D*
3
6
QHG*
75K
VBB
4
5
VEE
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SK10/100EL16X
HIGH-PERFORMANCE PRODUCTS
Package Information
8 Lead SOIC Package
PRELIMINARY
PIN Descriptions
A
TOP VIEW
D
END VIEW
C
8
5
E
1
4
H
0.25 M
B M
B
e
h x 45
o
q
A
C
Seating
Plane
0.10
L
A1
B
0.25 M
C B
S
A
S
MILLIMETERS
DIM
A
A1
B
C
D
E
e
H
h
L
q
MIN
1.35
0.10
0.33
0.19
4.80
3.80
MAX
1.75
0.25
0.51
0.25
5.00
4.00
1.27 BSC
5.80
0.25
0.40
0
o
6.20
0.50
1.27
8
o
NOTES:
1. Dimensions are in millimeters.
2. Dimensions D and E do no include mold protrusion.
3. Maximum mold protrusion 0.15 per side.
4. Dimension B does not include Dambar protrusion.
Allowable Dambar protrusion shall be 0.127 total
in excess of the B dimension at maximum material
condition.
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SK10/100EL16X
HIGH-PERFORMANCE PRODUCTS
Package Information
(continued)
8 Pin MSOP Package
PRELIMINARY
TOP VIEW
8
5
BOTTOM VIEW
H
E
1
4
B
END VIEW
A
e
DETAIL A
L
D
q
See Detail A
C
Millimeters
DIM
A
B
C
D
E
e
H
L
q
MIN
0.94
0.21
0.13
2.90
2.90
MAX
1.1
0.45
0.22
3.10
3.10
0.65 BSC
4.7
0.4
0
o
5.1
0.7
6
o
NOTES:
1. Dimensions are in mm.
2. Controlling dimension: mm
3. Dimension does not include mold flash or
protrustions, either of which shall not
exceed 0.20.
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Revision 1/October 4, 2001
SK10/100EL16X
HIGH-PERFORMANCE PRODUCTS
DC Characteristics
SK10EL16X DC Electrical Characteristics (Note 1)
(V
EE
= –3.0V to –5.5V; V
CC
= 0V; V
OUT
loaded 50W to V
CC
– 2.0V)
TA = - 4 0
o
c
Symbol
V
OH
V
OL
V
IH
V
IL
V
BB
I
EE
I
IN
Characteristic
O u t p u t H I G H Vo l t a g e
O u t p u t L OW Vo l t a g e
I n p u t H I G H Vo l t a g e
I n p u t L OW Vo l t a g e
R e f e r e n c e O u t p u t Vo l t a g e
Po we r S u p p l y C u r r e n t
Input Cur rent:
D, D * ( D i f f )
VCTRL (SE)
-150
Min
- 1080
- 1950
- 1230
- 1950
-1430
Max
- 890
- 1650
- 890
- 1500
-1300
39
150
150
-150
TA = 0
o
C
Min
- 1020
- 1950
- 1170
- 1950
-1380
Max
- 840
- 1630
- 840
- 1480
-1270
39
150
150
-150
TA = + 2 5
o
C
Min
-980
- 1950
- 1130
- 1950
-1350
Max
- 810
- 1630
- 810
- 1480
-1250
39
150
150
-150
TA = + 8 5
o
C
Min
- 910
- 1950
- 1060
- 1950
-1310
Max
- 720
- 1595
- 720
- 1445
-1190
39
150
150
Unit
mV
mV
mV
mV
mV
mA
µA
µA
PRELIMINARY
SK100EL16X DC Electrical Characteristics (Note 2)
(V
EE
= –3.0V to –5.5V; V
CC
= 0V; V
OUT
loaded 50W to V
CC
– 2.0V)
TA = – 4 0
o
C
Symbol
V
O H
V
O L
V
I H
V
I L
V
B B
I
E E
I
I N
Characteristic
O u t p u t H I G H Vo l t a g e
O u t p u t L OW Vo l t a g e
I n p u t H I G H Vo l t a g e
I n p u t L OW Vo l t a g e
R e f e r e n c e O u t p u t Vo l t a g e
Po w e r S u p p l y C u r r e n t
I n p u t C u r r e n t : D, D * ( D i f f )
VCTRL (SE)
-150
Min
– 1085
– 1950
– 1165
– 1810
-1430
Max
– 880
– 1555
– 880
– 1475
-1260
45
150
150
TA = 0
o
C t o 8 5
o
C
Min
– 1025
– 1950
– 1165
– 1810
-1430
Max
– 880
– 1620
– 880
– 1475
-1260
45
-150
150
150
Unit
mV
mV
mV
mV
mV
mA
µA
µA
Condition
V
I N
= V
I H m a x
or V
I L m i n
V
I N
= V
I H m a x
or V
I L m i n
Guaranteed HIGH signal for all inputs
G u a r a n t e e d L OW s i g n a l f o r a l l i n p u t s
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SK10/100EL16X
HIGH-PERFORMANCE PRODUCTS
AC Characteristics
SK10/100EL16X AC Electrical Characteristics
(V
CC
– V
EE
= 3.0V to 5.5V; V
OUT
loaded 50W to V
CC
– 2.0V)
TA = -40
o
C
Symbol
f
max
tPLH
tPHL
A
V
t s ke w
t
r
, t
f
Character ustic
Maximum Toggle
Frequency
4
P r o p a g a t i o n D e l ay t o
Output
(Diff)
Small Signal Gain
5
D u t y C y c l e S ke w
3
( D i f f )
Output Rise/Fall Time Q
HG
(20% to 80%)
Common Mode Range
7
Differential Input Swing
6
Output Voltage
8
5
20
5
20
Min
Typ
Max
Min
PRELIMINARY
TA = 0
o
C
Typ
Max
Min
TA = +25
o
C
Typ
Max
Min
TA = +85
o
C
Typ
Max
Unit
Condition
2.5
2.5
2.5
2.5
GH
Z
290
295
350
300
305
365
305
310
46
5
375
325
330
415
ps
dB
20
5
20
ps
95
VEE+1.5
150
570
120
150
V
CC
1000
100
VEE+1.5
150
600
120
155
V
CC
1000
100
VEE+1.5
150
650
120
160
V
CC
1000
100
VEE+1.5
150
650
120
165
V
CC
1000
ps
V
mV
mV
mV
V
CTRL
= O p e n
V
CTRL
= V
CC
V
CMR
V
PP
VO
P - P
200
200
200
200
Notes:
1. 10EL circuits are designed to meet the DC specifications shown in the table after thermal equilibrium
has been established. The circuit is in a test socket or mounted on a printed circuit board and transverse
airflow greater than 500 lfpm is maintained. Outputs are terminated through a 50W resistor to VCC–2.0V.
2. 100K circuits are designed to meet the DC specification shown in the table where transverse airflow
greater than 500 lfpm is maintained.
3. Duty cycle skew is the difference between T
PLH
and T
PHL
propagation delay through a device.
4. F
max
guaranteed for functionality only. See Figure 3 for typical output swing. VO
P-P
levels are
guaranteed at DC only.
5. The device has a DC gain of
~200.
6. Minimum input swing for which parameters are guaranteed.
7. CMR range is referenced to the most positive side of the differential input signal. Normal operation is
obtained if the high level falls within the specified range and the peak-to-peak voltage lies between
VPP
(min)
and 1V. The lower end of the CMR range varies 1:1 with VEE and is equal to VEE + 1.5V.
8. VO
P-P
is obtained as follows: Voltages of Q
HG
and Q
HG
* outputs with respect to VCC are measured. The
absolute difference between a high and a low state is equal to VO
P-P
.
9. For part ordering description, see HPP Part Ordering Information Data Sheet.
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