SK10EL16XWGD [SEMTECH]

Line Receiver, 1 Func, 1 Rcvr, ECL10K, PDSO8, SOIC-8;
SK10EL16XWGD
型号: SK10EL16XWGD
厂家: SEMTECH CORPORATION    SEMTECH CORPORATION
描述:

Line Receiver, 1 Func, 1 Rcvr, ECL10K, PDSO8, SOIC-8

文件: 总10页 (文件大小:202K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
SK10/100EL16TA-TD  
Differential Receiver  
PRELIMINARY  
HIGH-PERꢀORMANCE PRODUCTS  
ꢀeatures  
Description  
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  
Motorolas 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.  
• 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  
The SK10/100EL16TA has a 100resistor across its  
differential inputs. The output of this device has emitter  
follower structure and must be terminated with 50to  
–2V. This device is used in applications where the driving  
source has terminated outputs. Please refer to Figure 1  
for more details.  
• Available in 8 Pin SOIC Package  
The SK10/100EL16TB has a 100resistor 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  
50to –2V. This device is used in applications where  
the driving source may not need output termination.  
Please refer to Figure 2 for more details.  
Pin Names  
Pin  
ꢀunction  
D, D*  
Q, Q*  
Differential Data Inputs  
Differential Data Outputs  
The SK10/100EL16TC has a 100resistor 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.  
VBB  
Reference Output Voltage  
The SK10/100EL16TD has a 100resistor across its  
differential inputs, 50series resistance, and 8 mA current  
sources at its outputs. The outputs of this device may not  
need any termination because of the internal output 50Ω  
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.  
Revision 1/February 12, 2001  
www.semtech.com  
1
SK10/100EL16TA-TD  
PRELIMINARY  
HIGH-PERꢀORMANCE PRODUCTS  
Pin Configuration  
NC  
8
1
VCC  
NC  
8
1
VCC  
VCC  
VCC  
VCC  
VCC  
VCC  
VCC  
D
7
D
7
2
Q
2
Q
100  
100  
50  
50  
D
D
Q
Q
D*  
Q*  
D*  
Q*  
50  
50  
D*  
6
3
Q*  
D*  
6
3
Q*  
8 mA  
8 mA  
8 mA  
8 mA  
8 mA  
8 mA  
8 mA  
8 mA  
VEE  
VBB  
VEE  
VBB  
VEE  
VEE  
VEE  
VEE  
VBB  
5
4
VEE  
VBB  
5
4
VEE  
SK10/100EL16TC  
SK10/100EL16TA  
Input Termination with 100Resistor  
Across the Differential Inputs and  
8 mA Output Source Termination  
with 100Resistor Across  
the Differential Input  
NC  
8
NC  
8
1
VCC  
1
VCC  
VCC  
VCC  
VCC  
VCC  
VCC  
VCC  
D
7
2
Q
D
7
2
Q
100  
100  
50  
50  
D
Q
D
Q
D*  
Q*  
D*  
Q*  
50  
50  
D*  
6
3
Q*  
D*  
6
3
Q*  
8 mA  
8 mA  
8 mA  
8 mA  
8 mA  
8 mA  
8 mA  
8 mA  
VEE  
VBB  
VEE  
VBB  
VEE  
VEE  
VEE  
VEE  
VBB  
5
4
VEE  
VBB  
5
4
VEE  
SK10/100EL16TD  
SK10/100EL16TB  
Input Termination with 100Resistor and 8 mA  
Current Source across the Differential Inputs and  
without on chip Output Termination  
Input Termination with 100Resistor  
Across the Differential Inputs and  
8 mA Output Source Termination  
with 50Series Resistor  
Revision 1/February 12, 2001  
www.semtech.com  
2
SK10/100EL16TA-TD  
PRELIMINARY  
HIGH-PERꢀORMANCE PRODUCTS  
Package Information  
8 Pin SOIC Package  
END VIEW  
TOP VIEW  
D
A
C
8
5
0.25  
M
B
M
H
E
1
4
h x 45o  
B
e
A
Seating  
Plane  
C
L
0.10  
A1  
B
0.25 M C  
B
S
A
S
MILLIMETERS  
DIM  
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  
A
A1  
B
C
D
E
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.  
e
1.27 BSC  
H
h
5.80  
0.25  
0.40  
0o  
6.20  
0.50  
1.27  
8o  
L
θ
3
www.semtech.com  
Revision 1/February 12,2001  
SK10/100EL16TA-TD  
HIGH-PERꢀORMANCE PRODUCTS  
PRELIMINARY  
Circuit Description  
ECL/PECL  
Driving Source  
SK10/100EL16TA  
Zo = 50  
Zo = 50 Ω  
150 Ω  
150 Ω  
Figure 1.  
ECL/PECL  
Driving Source  
SK10/100EL16TB  
Zo = 50  
Zo = 50 Ω  
Figure 2.  
ECL/PECL  
ECL/PECL  
Driving Source  
SK10/100EL16TC  
Receiving Source  
Zo = 50  
Zo = 50  
Zo = 50  
Zo = 50  
100  
150  
150  
Figure 3.  
ECL/PECL  
ECL/PECL  
Driving Source  
SK10/100EL16TD  
Receiving Source  
Zo = 50  
Zo = 50  
Zo = 50  
Zo = 50  
150  
150  
Figure 4.  
NOTE: The figures above assume a low voltage power supply, VCC = 3.3V.  
Revision 1/February 12, 2001  
www.semtech.com  
4
SK10/100EL16TA-TD  
PRELIMINARY  
HIGH-PERꢀORMANCE PRODUCTS  
DC Characteristics  
SK10EL16TA-TD DC Electrical Characteristics (Note 1)  
(V – V = 3.0V to 5.5V)  
CC  
EE  
TA = –40oC  
TA = 0oC  
TA = +25oC  
TA = +85oC  
Symbol  
Characteristic  
Min  
Max  
Min  
Max  
Min  
Max  
Min  
Max  
Unit  
Power Supply Current  
16TA  
16TB  
16TC  
16TD  
13  
24  
24  
24  
21  
38  
38  
38  
14  
25  
25  
25  
22  
40  
40  
40  
14  
26  
26  
26  
23  
41  
41  
41  
15  
27  
27  
27  
24  
44  
43  
50  
mA  
mA  
mA  
mA  
I
EE  
Output Reference Voltage5  
16TA  
16TB  
16TC  
16TD  
-1.38 -1.35 -1.35 -1.31 -1.33 -1.29 -1.27 -1.23  
-1.39 -1.36 -1.35 -1.32 -1.33 -1.30 -1.27 -1.23  
-1.39 -1.36 -1.35 -1.32 -1.33 -1.29 -1.27 -1.23  
-1.39 -1.36 -1.35 -1.32 -1.33 -1.29 -1.27 -1.23  
V
V
V
V
V
BB  
V V  
CC – EE  
Supply Voltage Range  
3.0  
5.5  
3.0  
5.5  
3.0  
5.5  
3.0  
5.5  
V
Input HIGH Current  
D, D*  
16TA  
16TB  
16TC  
16TD  
-8.0  
-17.0  
-8.0  
-8.3  
-17.3  
-8.3  
-8.4  
-18.0  
-8.4  
-9.0  
-19.0  
-9.0  
mA  
mA  
mA  
mA  
I
IH  
-8.0  
-8.3  
-8.4  
-9.0  
Input LOW Current  
D, D*  
16TA  
16TB  
16TC  
16TD  
8.0  
3.0  
8.0  
8.0  
8.2  
3.0  
8.2  
8.2  
8.3  
3.0  
8.3  
8.3  
8.5  
2.5  
8.5  
8.5  
mA  
mA  
mA  
mA  
I
IL  
SK100EL16TA-TD DC Electrical Characteristics (Note 2)  
(V – V = 3.0V to 5.5V)  
CC  
EE  
TA = –40oC  
TA = 0oC  
TA = +25oC  
TA = +85oC  
Symbol  
Characteristic  
Min  
Max  
Min  
Max  
Min  
Max  
Min  
Max  
Unit  
Power Supply Current  
16TA  
16TB  
16TC  
16TD  
15  
26  
26  
26  
24  
41  
41  
41  
16  
27  
27  
27  
26  
43  
43  
43  
17  
28  
28  
28  
27  
45  
45  
45  
19  
30  
30  
30  
30  
48  
48  
48  
mA  
mA  
mA  
mA  
I
EE  
5
Output Reference Voltage  
16TA  
16TB  
16TC  
16TD  
-1.34 -1.31 -1.34 -1.30 -1.34 -1.29 -1.35 -1.29  
-1.35 -1.31 -1.35 -1.30 -1.35 -1.29 -1.35 -1.30  
-1.35 -1.31 -1.35 -1.30 -1.34 -1.29 -1.35 -1.30  
-1.35 -1.31 -1.35 -1.30 -1.34 -1.29 -1.35 -1.30  
V
V
V
V
V
BB  
V V  
CC – EE  
Supply Voltage Range  
3.0  
5.5  
3.0  
5.5  
3.0  
5.5  
3.0  
5.5  
V
Input HIGH Current  
D, D*  
16TA  
16TB  
16TC  
16TD  
-8.0  
-16.2  
-8.0  
-8.0  
-17.0  
-8.0  
-8.0  
-17.0  
-8.0  
-8.0  
-17.3  
-8.0  
mA  
mA  
mA  
mA  
I
IH  
-8.0  
-8.0  
-8.0  
-8.0  
Input LOW Current  
D, D*  
16TA  
16TB  
16TC  
16TD  
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  
8.0  
mA  
mA  
mA  
mA  
I
IL  
5
www.semtech.com  
Revision 1/February 12,2001  
SK10/100EL16TA-TD  
HIGH-PERꢀORMANCE PRODUCTS  
PRELIMINARY  
DC Characteristics (continued)  
SK10EL16TA-TD Output DC Electrical Characteristics (Note 1)  
(V – V = 3.0V to 5.5V)  
CC  
EE  
TA = –40oC  
TA = 0oC  
TA = +25oC  
TA = +85oC  
Symbol  
Characteristic  
Min  
Max  
Min  
Max  
Min  
Max  
Min  
Max  
Unit  
5
Output HIGH Voltage  
16TA  
-1044  
-1044  
-997  
-1019  
-1019  
-980  
-973  
-974  
-953  
-954  
-929  
-929  
-913  
-912  
-832  
-832  
-820  
-819  
-779  
-996  
mV  
mV  
mV  
mV  
16TB  
16TC  
16TD  
V
OH  
-933  
--915  
-1097  
-893  
-874  
-800  
-1168  
-1146  
-1123  
-1095  
-1067  
-1029  
5
Output LOW Voltage  
16TA  
-1796  
-1811  
-1755  
-1620  
-1768  
-1780  
-1485  
-1560  
-1791  
-1804  
-1739  
-1595  
-1759  
-1769  
-1447  
-1531  
-1786  
-1798  
-1727  
-1579  
-1752  
-1762  
-1424  
-1512  
-1768  
-1779  
-1694  
-1533  
-1730  
-1739  
-1366  
-1460  
mV  
mV  
mV  
mV  
16TB  
16TC  
16TD  
V
OL  
8
Output Voltage  
16TA  
16TB  
16TC  
16TD  
724  
736  
505  
414  
777  
792  
758  
452  
786  
795  
533  
433  
837  
849  
806  
472  
822  
833  
550  
445  
873  
886  
835  
484  
898  
907  
588  
463  
948  
959  
895  
505  
mV  
mV  
mV  
mV  
VO  
P-P  
6
V
PP  
Differential Input Swing  
150  
1000  
150  
1000  
150  
1000  
150  
1000  
mV  
SK100EL16TA-TD Output DC Electrical Characteristics (Note 2)  
(V – V = 3.0V to 5.5V)  
CC  
EE  
TA = –40oC  
TA = 0oC  
TA = +25oC  
TA = +85oC  
Symbol  
Characteristic  
Min  
Max  
Min  
Max  
Min  
Max  
Min  
Max  
Unit  
5
Output HIGH Voltage  
16TA  
-1044  
-1044  
-996  
-1019  
-1019  
-979  
-1003  
-1008  
-970  
-980  
-984  
-979  
-984  
-955  
-961  
-965  
-971  
-943  
-949  
mV  
mV  
mV  
mV  
16TB  
16TC  
16TD  
V
OH  
-942  
-953  
-919  
-949  
-910  
-1162  
-1140  
-1152  
-1118  
-1146  
-1104  
-1162  
-1114  
5
Output LOW Voltage  
16TA  
-1775  
-1791  
-1731  
-1601  
-1752  
-1764  
-1471  
-1544  
-1789  
-1806  
-1741  
-1604  
-1755  
-1768  
-1456  
-1535  
-1797  
-1815  
-1747  
-1607  
-1757  
-1771  
-1446  
-1529  
-1837  
-1853  
-1784  
-1635  
-1792  
-1805  
-1463  
-1549  
mV  
mV  
mV  
mV  
16TB  
16TC  
16TD  
V
OL  
8
Output Voltage  
16TA  
16TB  
16TC  
16TD  
708  
720  
493  
404  
756  
771  
736  
439  
757  
767  
514  
417  
802  
815  
771  
452  
789  
797  
526  
425  
832  
842  
793  
461  
840  
848  
553  
435  
881  
890  
835  
473  
mV  
mV  
mV  
mV  
VO  
P-P  
6
V
PP  
Differential Input Swing  
150  
1000  
150  
1000  
150  
1000  
150  
1000  
mV  
Revision 1/February 12, 2001  
www.semtech.com  
6
SK10/100EL16TA-TD  
PRELIMINARY  
HIGH-PERꢀORMANCE PRODUCTS  
AC Characteristics  
SK10/100EL16TA-TD AC Electrical Characteristics  
(V – V = 3.0V to 5.5V)  
CC  
EE  
TA = –40oC  
TA = 0oC  
TA = +25oC  
TA = +85oC  
Symbol  
Characteristic  
Min  
Max  
Min  
Max  
Min  
Max  
Min  
Max  
Unit  
Maximum Toggle  
4
f
2.0  
2.0  
2.0  
2.0  
GHz  
max  
ꢀrequency  
Input to Output Delay  
16TA  
16TB  
16TC  
16TD  
255  
260  
265  
270  
340  
300  
415  
375  
265  
270  
275  
275  
350  
310  
425  
380  
265  
275  
270  
285  
355  
320  
430  
385  
275  
285  
290  
285  
360  
335  
435  
390  
ps  
ps  
ps  
ps  
t
PHL  
t
PLH  
3
tskew  
Duty Cycle Skew  
(DIꢀꢀ)  
20  
20  
20  
20  
ps  
Output Rise Times  
Q, Q* (20% to 80%)  
16TA  
16TB  
16TC  
16TD  
115  
115  
90  
190  
190  
235  
575  
115  
115  
90  
195  
195  
235  
590  
115  
115  
90  
195  
200  
235  
605  
120  
120  
90  
205  
210  
235  
610  
ps  
ps  
ps  
ps  
t t  
r, f  
85  
85  
85  
85  
V
+
VCC –  
0.4  
V
+
VCC –  
0.4  
V
+
VCC –  
0.4  
V
+
VCC –  
0.4  
EE  
1.7  
EE  
1.7  
EE  
1.7  
EE  
1.7  
7
V
CMR  
Common MOde Range  
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.  
4.  
Duty cycle skew is the difference between T  
and T  
propagation delay through a device.  
PLH  
PHL  
F
guaranteed for functionality only. See Figure 5 for typical output swing. VOL and VOH are  
MAX  
guaranteed at DC only.  
5.  
6.  
7.  
Voltages referenced to VCC = 0V.  
Minimum input swing for which parameters are guaranteed. The device has a DC gain of ~40.  
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  
and 1V. The lower end of the CMR range varies 1:1 with VEE and is equal to VEE + 1.7V.  
is obtained as follows: Voltages of Q and Q* outputs with respect to VCC are measured. The  
(min)  
8.  
9.  
VO  
P-P  
absolute difference between a high and a low state is equal to VO .  
pp  
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.  
7
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Revision 1/February 12,2001  
SK10/100EL16TA-TD  
HIGH-PERꢀORMANCE PRODUCTS  
PRELIMINARY  
AC Characteristics (continued)  
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 V vs. Frequency  
PP  
Revision 1/February 12, 2001  
www.semtech.com  
8
SK10/100EL16TA-TD  
PRELIMINARY  
HIGH-PERꢀORMANCE PRODUCTS  
Ordering Information  
Ordering Code  
SK10EL16TAD  
SK10EL16TBD  
SK10EL16TCD  
SK10EL16TDD  
SK10EL16TADT  
SK10EL16TBDT  
SK10EL16TCDT  
SK10EL16TDDT  
SK100EL16TAD  
SK100EL16TBD  
SK100EL16TCD  
SK100EL16TDD  
SK100EL16TADT  
SK100EL16TBDT  
SK100EL16TCDT  
SK100EL16TDDT  
SK10EL16TU  
Package ID  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
8-SOIC  
Die  
Temperature Range  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Industrial  
Options A - D  
Options A - D  
SK100EL16TU  
Die  
9
www.semtech.com  
Revision 1/February 12,2001  
SK10/100EL16TA-TD  
HIGH-PERꢀORMANCE PRODUCTS  
PRELIMINARY  
Marking Information  
8 PIN SOIC PACKAGE  
Function / Voltage &  
Device Operation  
Function Code / Part Number  
H = 10  
K = 100  
E
L
Assembly  
Lot Number  
W
W
Y
Y
YY: Last two digits of the Year  
WW: Working Week  
Contact Information  
Semtech Corporation  
High-Performance Products Division  
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  
Revision 1/February 12, 2001  
www.semtech.com  
10  

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