Datasheet SK100EL16TCD, SK100EL16TCDT, SK100EL16TDD, SK100EL16TDDT, SK100EL16TU Datasheet (Semtech Corporation)

...
HIGH-PERFORMANCE PRODUCTS
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Revision 1/February 12, 2001
PRELIMINARY
The SK10/100EL16TA-TD are differential receivers with optional input/output terminations. The EL16TA-TD family is pin-to-pin compatible with SK10/100EL16W and Motorola’s MC10/100EL16 and MC10/100LVEL16, with added features of input/output terminations. The different options of input/output terminations of the EL16TA-TD make them ideal for use in high frequency design applications. It can also reduce the part count where board space is scarce.
The SK10/100EL16TA has a 100 resistor across its differential inputs. The output of this device has emitter follower structure and must be terminated with 50 to –2V. This device is used in applications where the driving source has terminated outputs. Please refer to Figure 1 for more details.
The SK10/100EL16TB has a 100 resistor and 8 mA current sources across its differential inputs. The latter will provide a DC path for the output currents of the driving source. The output of this device has emitter follower structure and must be terminated with 50 to –2V. This device is used in applications where the driving source may not need output termination. Please refer to Figure 2 for more details.
The SK10/100EL16TC has a 100 resistor across its differential inputs and 8 mA current sources across its differential outputs. This device is used in applications where the driving source may not need output termination. Please refer to Figure 3 for more details.
The SK10/100EL16TD has a 100 resistor across its differential inputs, 50 series resistance, and 8 mA current sources at its outputs. The outputs of this device may not need any termination because of the internal output 50 series resistor and current source. This device is used in applications where the driving source may not need output termination. Please refer to Figure 4 for more details.
The SK10/100EL16TA-TD 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 EL16TA-TD as its current sink/source capability is limited. Whenever used, the VBB pin should be bypassed to VCC via a 0.01 µF capacitor.
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
300 ps Propagation Delay
VBB Output
Internal Input Resistors: Pulldown on D, Pulldown and Pullup on D*
ESD Protection of >4000V
Specified Over Industrial Temperature Range: –40oC to 85oC
Available in 8 Pin SOIC Package
SK10/100EL16TA-TD
Differential Receiver
Description
Features
Pin Names
niPnoitcnuF
*D,DstupnIataDlaitnereffiD
*Q,Q
BBV
stuptuOataDlaitnereffiD
egatloVtuptuOecnerefeR
HIGH-PERFORMANCE PRODUCTS
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Revision 1/February 12, 2001
PRELIMINARY
SK10/100EL16TB
Input Termination with 100 Resistor and 8 mA
Current Source across the Differential Inputs and
without on chip Output Termination
SK10/100EL16TC
Input Termination with 100 Resistor
Across the Differential Inputs and
8 mA Output Source Termination
SK10/100EL16TD
Input Termination with 100 Resistor
Across the Differential Inputs and
8 mA Output Source Termination
with 50 Series Resistor
SK10/100EL16TA-TD
SK10/100EL16TA
with 100 Resistor Across
the Differential Input
VCC
VCC
VEE
VEEVEE
VBB
Q
D
Q*D*
50
W
50
W
100
W
8 mA 8 mA 8 mA
8 mA
8
VCC
7
Q
6
Q*
5
VEE
NC
1
D
2
D*
3
VBB
4
VCC
VCC
VCC
VEE
VEEVEE
VBB
Q
D
Q*D*
50
W
50
W
100
W
8 mA 8 mA 8 mA
8 mA
8
VCC
7
Q
6
Q*
5
VEE
NC
1
D
2
D*
3
VBB
4
VCC
VCC
VCC
VEE
VEEVEE
VBB
Q
D
Q*D*
50
W
50
W
100
W
8 mA 8 mA 8 mA
8 mA
8
VCC
7
Q
6
Q*
5
VEE
NC
1
D
2
D*
3
VBB
4
VCC
VCC
VCC
VEE
VEEVEE
VBB
Q
Q*
50
W
50
W
8 mA 8 mA 8 mA
8 mA
8
VCC
7
Q
6
Q*
5
VEE
NC
1
D
2
D*
3
VBB
4
VCC
D
D*
100
W
Pin Configuration
3
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HIGH-PERFORMANCE PRODUCTS
SK10/100EL16TA-TD
Revision 1/February 12, 2001
PRELIMINARY
Package Information
END VIEW
h x 45
o
C
q
L
TOP VIEW
8
5
1
4
D
E
H
e
B
A
0.25 M B M
B
C
A1
A
0.25 M C B S A S
0.10
Seating Plane
8 Pin SOIC Package
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.
SRETEMILLIM
MID NIM XAM
A53.157.1
1A01.052.0
B33.015.0
C91.052.0
D08.400.5
E08.300.4
e72.1CSB
H08.502.6
h52.005.0
L04.072.1
θ
0
o
8
o
4
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HIGH-PERFORMANCE PRODUCTS
SK10/100EL16TA-TD
Revision 1/February 12, 2001
PRELIMINARY
Circuit Description
Zo = 50
SK10/100EL16TB
Zo = 50
ECL/PECL
Driving Source
Zo = 50
SK10/100EL16TA
Zo = 50
150
150
ECL/PECL
Driving Source
Figure 1.
Figure 2.
Figure 3.
Figure 4.
NOTE: The figures above assume a low voltage power supply, VCC = 3.3V.
Zo = 50
W
SK10/100EL16TC
Zo = 50
W
Zo = 50
W
100
W
Zo = 50
W
150
W
150
W
ECL/PECL
Driving Source
ECL/PECL
Receiving Source
Zo = 50
W
SK10/100EL16TD
Zo = 50
W
Zo = 50
W
Zo = 50
W
150
W
150
W
ECL/PECL
Driving Source
ECL/PECL
Receiving Source
5
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HIGH-PERFORMANCE PRODUCTS
SK10/100EL16TA-TD
Revision 1/February 12, 2001
PRELIMINARY
DC Characteristics
lobmyScitsiretcarahCniMxaMniMxaMniMxaMniMxaMtinU
I
EE
tnerruCylppuSrewoP AT61 BT61 CT61 DT61
31 42 42 42
12 83 83 83
41 52 52 52
22 04 04 04
41 62 62 62
32 14 14 14
51 72 72 72
42 44 34 05
Am Am Am Am
V
BB
5egatloVecnerefeRtuptuO AT61 BT61 CT61 DT61
83.1-
93.1-
93.1-
93.1-
53.1-
63.1-
63.1-
63.1-
53.1-
53.1-
53.1-
53.1-
13.1-
23.1-
23.1-
23.1-
33.1-
33.1-
33.1-
33.1-
92.1-
03.1-
92.1-
92.1-
72.1-
72.1-
72.1-
72.1-
32.1-
32.1-
32.1-
32.1-
V V V V
V
CC
V
EE
egnaRegatloVylppuS0.35.50.35.50.35.50.35.5V
I
HI
tnerruCHGIHtupnI
*D,D
AT61 BT61 CT61 DT61
0.8-
0.71-
0.8-
0.8-
3.8-
3.71-
3.8-
3.8-
4.8-
0.81-
4.8-
4.8-
0.9-
0.91-
0.9-
0.9-
Am Am Am Am
I
LI
tnerruCWOLtupnI
*D,D
AT61 BT61 CT61 DT61
0.8
0.3
0.8
0.8
2.8
0.3
2.8
2.8
3.8
0.3
3.8
3.8
5.8
5.2
5.8
5.8
Am Am Am Am
SK10EL16TA-TD DC Electrical Characteristics (Note 1)
lobmyScitsiretcarahCniMxaMniMxaMniMxaMniMxaMtinU
I
EE
tnerruCylppuSrewoP
AT61
BT61 CT61 DT61
51 62 62 62
42 14 14 14
61 72 72 72
62 34 34 34
71 82 82 82
72 54 54 54
91 03 03 03
03 84 84 84
Am Am Am Am
V
BB
egatloVecnerefeRtuptuO
5
AT61
BT61 CT61 DT61
43.1-
53.1-
53.1-
53.1-
13.1-
13.1-
13.1-
13.1-
43.1-
53.1-
53.1-
53.1-
03.1-
03.1-
03.1-
03.1-
43.1-
53.1-
43.1-
43.1-
92.1-
92.1-
92.1-
92.1-
53.1-
53.1-
53.1-
53.1-
92.1-
03.1-
03.1-
03.1-
V V V V
V
CC
V
EE
egnaRegatloVylppuS0.35.50.35.50.35.50.35.5V
I
HI
tnerruCHGIHtupnI
*D,D
AT61
BT61 CT61 DT61
0.8-
2.61-
0.8-
0.8-
0.8-
0.71-
0.8-
0.8-
0.8-
0.71-
0.8-
0.8-
0.8-
3.71-
0.8-
0.8-
Am Am Am Am
I
LI
tnerruCWOLtupnI
*D,D
AT61
BT61 CT61 DT61
0.8
0.3
0.8
0.8
0.8
0.3
0.8
0.8
0.8
0.3
0.8
0.8
0.8
0.3
0.8
0.8
Am Am Am Am
TA = –40oC TA = 0oC TA = +25oC TA = +85oC
TA = –40
o
C TA = 0oC TA = +25oC TA = +85oC
SK100EL16TA-TD DC Electrical Characteristics (Note 2)
(VCC – VEE = 3.0V to 5.5V)
(VCC – VEE = 3.0V to 5.5V)
6
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HIGH-PERFORMANCE PRODUCTS
SK10/100EL16TA-TD
Revision 1/February 12, 2001
PRELIMINARY
SK10EL16TA-TD Output DC Electrical Characteristics (Note 1)
(VCC – VEE = 3.0V to 5.5V)
lobmyScitsiretcarahCniMxaMniMxaMniMxaMniMxaMtinU
V
HO
egatloVHGIHtuptuO
5 AT61 BT61 CT61 DT61
4401­4401-
799-
8611-
9101­9101-
089-
6411-
379­479­339-
3211-
359­459-
519--
7901-
929­929­398-
5901-
319­219­478-
7601-
238­238­008-
9201-
028­918­977­699-
Vm Vm Vm Vm
V
LO
egatloVWOLtuptuO
5 AT61 BT61 CT61 DT61
6971­1181­5571­0261-
8671­0871­5841­0651-
1971­4081­9371­5951-
9571­9671­7441­1351-
6871­8971­7271­9751-
2571­2671­4241­2151-
8671­9771­4961­3351-
0371­9371­6631­0641-
Vm Vm Vm Vm
OV
P-P
egatloVtuptuO
8
AT61 BT61 CT61 DT61
427 637 505 414
777 297 857 254
687 597 335 334
738 948 608 274
228 338 055 544
378 688 538 484
898 709 885 364
849 959 598 505
Vm Vm Vm Vm
V
PP
gniwStupnIlaitnereffiD
6
0510001051000105100010510001Vm
TA = –40oC TA = 0oC TA = +25oC TA = +85oC
SK100EL16TA-TD Output DC Electrical Characteristics (Note 2)
(VCC – VEE = 3.0V to 5.5V)
lobmyScitsiretcarahCniMxaMniMxaMniMxaMniMxaMtinU
V
HO
egatloVHGIHtuptuO
5 AT61 BT61 CT61 DT61
4401­4401-
699-
2611-
9101­9101-
979-
0411-
3001­8001-
079-
2511-
089­489­249-
8111-
979­489­359-
6411-
559­169­919-
4011-
569­179­949-
2611-
349­949­019-
4111-
Vm Vm Vm Vm
V
LO
egatloVWOLtuptuO
5 AT61 BT61 CT61 DT61
5771­1971­1371­1061-
2571­4671­1741­4451-
9871­6081­1471­4061-
5571­8671­6541­5351-
7971­5181­7471­7061-
7571­1771­6441­9251-
7381­3581­4871­5361-
2971­5081­3641­9451-
Vm Vm Vm Vm
OV
P-P
egatloVtuptuO
8
AT61 BT61 CT61 DT61
807 027 394 404
657 177 637
934
757 767 415 714
208
518
177 254
987 797 625 524
238 248 397
164
048 848 355 534
188 098 538 374
Vm Vm Vm Vm
V
PP
gniwStupnIlaitnereffiD
6
0510001051000105100010510001Vm
TA = –40oC TA = 0oC TA = +25oC TA = +85oC
DC Characteristics (continued)
7
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HIGH-PERFORMANCE PRODUCTS
SK10/100EL16TA-TD
Revision 1/February 12, 2001
PRELIMINARY
AC Characteristics
(VCC – VEE = 3.0V to 5.5V)
SK10/100EL16TA-TD AC Electrical Characteristics
lobmyScitsiretcarahCniMxaMniMxaMniMxaMniMxaMtinU
f
xam
elggoTmumixaM
ycneuqerF
4
0.20.20.20.2zHG
t
LHP
t
HLP
yaleDtuptuOottupnI AT61 BT61 CT61 DT61
552 062 562 072
043 003 514 573
562 072 572 572
053 013 524 083
562 572 072 582
553 023 034 583
572 582 092 582
063 533 534 093
sp sp sp sp
wekstwekSelcyCytuD
3
)FFID(02020202sp
t
,rtf
semiTesiRtuptuO
)%08ot%02(*Q,Q AT61 BT61 CT61 DT61
511
511 09 58
091 091 532
575
511
511 09 58
591 591 532 095
511
511 09 58
591 002 532 506
021
021 09 58
502 012 532 016
sp sp sp sp
V
RMC
egnaRedOMnommoC
7
VEE+
7.1
CCV
4.0
VEE+
7.1
CCV
4.0
VEE+
7.1
CCV
4.0
VEE+
7.1
CCV
4.0
V
Notes:
1. 10EL circuits are designed to meet the DC specification 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.
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 5 for typical output swing. VOL and VOH are
guaranteed at DC only.
5. Voltages referenced to VCC = 0V.
6. Minimum input swing for which parameters are guaranteed. The device has a DC gain of ~40.
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 + 1.7V.
8. VO
P-P
is obtained as follows: Voltages of Q and Q* outputs with respect to VCC are measured. The
absolute difference between a high and a low state is equal to VOpp.
9. For standard ECL DC specifications, refer to the ECL Logic Family Standard DC Specifications Data
Sheet.
10. For part ordering description, see HPP Part Ordering Information Data Sheet.
TA = –40oC TA = 0oC TA = +25oC TA = +85oC
8
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HIGH-PERFORMANCE PRODUCTS
SK10/100EL16TA-TD
Revision 1/February 12, 2001
PRELIMINARY
AC Characteristics (continued)
V
PP
Amplitude (V)
900m
800m
700m
600m
500m
400m
300m
200m
0.0 1.0G 2.0G 3.0G
4.0G
Frequency (Hz)
Input Conditions: 800 mV Peak-to-Peak
Figure 5. Typical Output VPP vs. Frequency
9
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HIGH-PERFORMANCE PRODUCTS
SK10/100EL16TA-TD
Revision 1/February 12, 2001
PRELIMINARY
Ordering Information
edoCgniredrODIegakcaPegnaRerutarepmeT
DAT61LE01KSCIOS-8lairtsudnI
DBT61LE01KSCIOS-8lairtsudnI
DCT61LE01KSCIOS-8lairtsudnI
DDT61LE01KSCIOS-8lairtsudnI
TDAT61LE01KSCIOS-8lairtsudnI
TDBT61LE01KSCIOS-8lairtsudnI
TDCT61LE01KSCIOS-8lairtsudnI
TDDT61LE01KSCIOS-8lairtsudnI
DAT61LE001KSCIOS-8lairtsudnI
DBT61LE001KSCIOS-8lairtsudnI
DCT61LE001KSCIOS-8lairtsudnI
DDT61LE001KSCIOS-8lairtsudnI
TDAT61LE001KSCIOS-8lairtsudnI
TDBT61LE001KSCIOS-8lairtsudnI
TDCT61LE001KSCIOS-8lairtsudnI
TDDT61LE001KSCIOS-8lairtsudnI
UT61LE01KSeiDD-AsnoitpO
UT61LE001KSeiDD-AsnoitpO
10
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HIGH-PERFORMANCE PRODUCTS
SK10/100EL16TA-TD
Revision 1/February 12, 2001
PRELIMINARY
Function / Voltage & Device Operation
Function Code / Part Number
H = 10 K = 100
YY: Last two digits of the Year WW: Working Week
EL
WW
YY
8 PIN SOIC PACKAGE
Assembly Lot Number
Marking Information
Division Headquarters 10021 Willow Creek Road San Diego, CA 92131 Phone: (858) 695-1808 FAX: (858) 695-2633
Marketing Group
1111 Comstock Street
Santa Clara, CA 95054
Phone: (408) 566-8776
FAX: (408) 727-8994
Semtech Corporation
High-Performance Products Division
Contact Information
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