devices are functionally equivalent to the E116 devices,
with higher performance capabilities. With output
transition times significantly faster than the E116, the
EL16V is ideally suited for interfacing with high-frequency
sources.
The EL16V provides a V
BB
output for either single-
ended use or as a DC bias for AC coupling to the device.
The V
BB
pin should be used only as a bias for the EL16V
as its current sink/source capability is limited. Whenever
used, the V
BB
pin should be bypassed to ground via a
0.01µf capacitor.
Under open input conditions (pulled to V
EE
), internal
input clamps will force the Q output LOW.
s
Replaces SY10/100EL16
s
Improved output waveform characteristics
s
Available in 8-pin (3mm) MSOP and SOIC package
PIN CONFIGURATION/BLOCK DIAGRAM
PIN NAMES
Pin
D
Q
V
BB
Data Inputs
Data Outputs
Reference Voltage Output
Function
MSOP and SOIC
Rev.: F
Amendment: /I
1
Issue Date: January 2003
Micrel
SY10EL16V
SY100EL16V
DC ELECTRICAL CHARACTERISTICS
(Note 1, 2)
V
EE
= V
EE
(Min.) to V
EE
(Max.); V
CC
= GND
T
A =
–40
°
C
Symbol
I
EE
Parameter
Power Supply Current
10EL
100EL
Output Reference
Voltage
10EL
100EL
Input HIGH Current
Parametric values specified at:
specification for packaged product only.
T
A =
0
°
C
Min.
9
9
Typ.
18
18
—
—
—
Max.
22
22
T
A =
+25
°
C
Min.
9
9
Typ.
18
18
—
—
—
Max.
22
22
T
A =
+85
°
C
Min.
9
9
Typ.
18
21
—
—
—
Max.
22
26
V
–1.19
–1.26
150
µA
Unit
mA
Min.
—
—
–1.43
–1.38
—
Typ.
18
18
—
—
—
Max.
22
22
V
BB
–1.30 –1.38
–1.26 –1.38
150
—
–1.27 –1.35
–1.26 –1.38
150
—
–1.25 –1.31
–1.26 –1.38
150
—
I
IH
Note 1.
Note 2.
10/100EL16V Series:
-3.0V to -5.5V.
AC ELECTRICAL CHARACTERISTICS
(Note 1, 5)
V
EE
= V
EE
(Min.) to V
EE
(Max.); V
CC
= GND
T
A =
–40
°
C
Symbol
t
PLH
t
PHL
t
skew
V
PP
V
CMR
t
r
t
f
Note 1.
Note 2.
Note 3.
Note 4.
T
A =
0
°
C
Min.
175
125
—
150
–1.4
100
Typ.
250
250
5
—
—
225
Max.
325
375
20
—
–0.4
350
T
A =
+25
°
C
Min.
175
125
—
150
–1.4
100
Typ.
250
250
5
—
—
225
Max.
325
375
20
—
–0.4
350
T
A =
+85
°
C
Min.
205
155
—
150
–1.4
100
Typ.
280
280
5
—
—
225
Max. Unit
ps
355
405
20
—
–0.4
350
ps
mV
V
ps
Parameter
Propagation Delay to
Output
D (Diff)
D (SE)
Duty Cycle Skew
(2)
(Diff)
Minimum Input Swing
(3)
Common Mode Range
(4)
Output Rise/Fall Times Q
(20% to 80%)
Min.
125
75
—
150
–1.3
100
Typ.
250
250
5
—
—
225
Max.
375
425
—
—
–0.4
350
Parametric values specified at:
10/100EL16V Series:
-3.0V to -5.5V.
Duty cycle skew is the difference between a tPLH and tPHL propagation delay through a device.
Minimum input swing for which AC parameters are guaranteed. The device has a DC gain of
≈40.
The 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.
The numbers in the spec table assume a nominal VEE = –3.3V. Note for PECL operation, the VCMR (min) will be fixed at 3.3V – |VCMR
(min)|.
Specification for packaged product only.
Note 5.
PRODUCT ORDERING CODE
Ordering
Code
SY10EL16VKCTR*
SY100EL16VKCTR*
SY10EL16VZC
SY10EL16VZCTR*
SY100EL16VZC
SY100EL16VZCTR*
*Tape and Reel
Note 1.
Recommended for new designs.
Package
Type
K8-1
K8-1
Z8-1
Z8-1
Z8-1
Z8-1
Operating
Range
Commercial
Commercial
Commercial
Commercial
Commercial
Commercial
Marking
Code
HL16V
XL16V
HEL16V
HEL16V
XEL16V
XEL16V
Ordering
Code
SY10EL16VKITR*
(1)
SY100EL16VKITR*
(1)
SY10EL16VZI
(1)
SY10EL16VZITR*
(1)
SY100EL16VZI
(1)
SY100EL16VZITR*
(1)
Package
Type
K8-1
K8-1
Z8-1
Z8-1
Z8-1
Z8-1
Operating
Range
Industrial
Industrial
Industrial
Industrial
Industrial
Industrial
Marking
Code
HL16V
XL16V
HEL16V
HEL16V
XEL16V
XEL16V
2
Micrel
SY10EL16V
SY100EL16V
8 LEAD MSOP (K8-1)
Rev. 01
3
Micrel
SY10EL16V
SY100EL16V
8 LEAD SOIC(Z8-1)
Rev. 03
MICREL, INC.
TEL
1849 FORTUNE DRIVE SAN JOSE, CA 95131
FAX
USA
+ 1 (408) 944-0800
+ 1 (408) 944-0970
WEB
http://www.micrel.com
The information furnished by Micrel in this datasheet is believed to be accurate and reliable. However, no responsibility is assumed by Micrel for its use.
Micrel reserves the right to change circuitry and specifications at any time without notification to the customer.
Micrel Products are not designed or authorized for use as components in life support appliances, devices or systems where malfunction of a product can
reasonably be expected to result in personal injury. Life support devices or systems are devices or systems that (a) are intended for surgical implant into
the body or (b) support or sustain life, and whose failure to perform can be reasonably expected to result in a significant injury to the user. A Purchaser’s
use or sale of Micrel Products for use in life support appliances, devices or systems is at Purchaser’s own risk and Purchaser agrees to fully indemnify
Micrel for any damages resulting from such use or sale.