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 5V/3.3V QUAD DIFFERENTIAL RECEIVER
FEATURES
s s s s 3.3V and 5V power supply options High bandwidth output transitions Internal 75K input pull down resistors Available in 20-pin SOIC package
SY100EL17V FINAL
DESCRIPTION
The SY100EL17V is a quad differential receiver. The device is functionally equivalent to the E116 device with the capability of operation from either a ECL supply voltage (-3.3V or -5V) or PECL supply voltage (+3.3V or +5V). The EL17V 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 EL17V as its current sink/source capability is limited. Whenever used, the VBB pin should be bypassed to ground via a 0.01f capacitor. Under open input conditions, the /D input will be biased at VCC/2 and the D input will be pulled down to VEE. This operation will force the Q output LOW and ensure stability.
PIN CONFIGURATION/BLOCK DIAGRAM
VCC 1 D0 2 D0 3 D1 4 D1 5 D2 6 D2 7 D3 8 D3 9 VBB 10
20 VCC 19 18 17 16 15 14 13 12 11
Q0 Q0 Q1 Q1 Q2 Q2 Q3 Q3 VEE
Dn Qn VBB
PIN NAMES
Pin Data Inputs Data Outputs Reference Voltage Output Function
SOIC TOP VIEW
Rev.: D
Amendment: /0
1
Issue Date: February 2003
Micrel
SY100EL17V
ECL/LVECL DC ELECTRICAL CHARACTERISTICS
ECL: VEE = -4.2V to -5.5V; VCC = GND; LVECL: VEE = -3.0V to -3.8V; VCC = GND
TA = -40C Symbol VIH VIL IEE IIH IIL VBB VOH VOL Parameter Input HIGH Voltage Input LOW Voltage Power Supply Current Input HIGH Current Input LOW Current Dn /Dn Output Reference Voltage Output HIGH Voltage Output LOW Voltage Min. -1165 -1810 -- -- 0.5 -300 -1.38 Typ. -- -- 26 -- -- -- -- Max. Min. TA = 0C Typ. -- -- 26 -- -- -- -- -- -- Max. TA = +25C Min. Typ. -- -- 26 -- -- -- -- Max. -880 31 150 -- -- -1.26 -880 TA = +85C Min. -1165 -- -- 0.5 -300 -1.38 -1025 Typ. -- -- 27 -- -- -- -- -- -- Max. -880 33 150 -- -- -1.26 -880 Unit mV mA A A V mV
-880 -1165 -1475 -1810 31 150 -- -- -- -- 0.5 -300
-880 -1165 -1475 -1810 31 150 -- -- -- -- 0.5 -300
-1475 -1810
-1475 mV
-1.26 -1.38
-1.26 -1.38
-1085 -1005 -880 -1025 -1830 -1695 -1555 -1810
-880 -1025 -955
-1620 -1810 -1705 -1620 -1810
-1620 mV
PECL DC ELECTRICAL CHARACTERISTICS
VCC = +4.2V to +5.5V; VEE = GND
TA = -40C Symbol VIH VIL ICC IIH IIL VBB VOH VOL Parameter Input HIGH Voltage(1) Input LOW Voltage(1) Power Supply Current Input HIGH Current Input LOW Current Dn /Dn Min. 3835 3190 -- -- 0.5 -300 3.62 Typ. -- -- 26 -- -- -- -- -- -- Max. 4120 3525 31 150 -- -- 3.74 4120 3445 TA = 0C Min. 3835 3190 -- -- 0.5 -300 3.62 3975 3190 Typ. -- -- 26 -- -- -- -- -- -- Max. 4120 3525 31 150 -- -- 3.74 4120 3380 TA = +25C Min. 3835 3190 -- -- 0.5 -300 3.62 3975 3190 Typ. -- -- 26 -- -- -- -- 4050 3300 Max. 4120 3525 31 150 -- -- 3.74 4120 3380 TA = +85C Min. 3835 3190 -- -- 0.5 -300 3.62 3975 3190 Typ. -- -- 27 -- -- -- -- -- -- Max. 4120 3525 33 150 -- -- 3.74 4120 3380 Unit mV mV mA A A V mV mV
Output Reference(1) Voltage Output LOW Voltage(1)
Output HIGH Voltage(1) 3915 3170
NOTE: 1. These levels are for VCC = 5.0V. Level specifications will vary 1:1 with VCC.
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Micrel
SY100EL17V
LVPECL DC ELECTRICAL CHARACTERISTICS
VCC = +3.0V to +3.8V; VEE = GND
TA = -40C Symbol VIH VIL ICC IIH IIL VBB VOH VOL Parameter Input HIGH Voltage(1) Input LOW Voltage(1) Power Supply Current Input HIGH Current Min. 2135 1490 -- -- Typ. -- -- 26 -- -- -- -- -- -- Max. 2420 1825 31 150 -- -- 2.04 2420 1745 TA = 0C Min. 2135 1490 -- -- 0.5 -300 1.92 2275 1490 Typ. -- -- 26 -- -- -- -- -- -- Max. 2420 1825 31 150 -- -- 2.04 2420 1680 TA = +25C Min. 2135 1490 -- -- 0.5 -300 1.92 2275 1490 Typ. 2350 -- 26 -- -- -- -- 2350 1600 Max. 2420 1825 31 150 -- -- 2.04 2420 1680 TA = +85C Min. 2135 1490 -- -- 0.5 -300 1.92 2275 1490 Typ. -- -- 27 -- -- -- -- -- -- Max. 2420 1825 33 150 -- -- 2.04 2420 1680 Unit mV mV mA A A V mV mV
Input LOW Current Dn 0.5 /Dn -300 Output Reference(1) Voltage Output HIGH Voltage(1) Output LOW Voltage(1) 1.92 2215 1470
NOTE: 1. These levels are for VCC = 3.3V. Level specifications will vary 1:1 with VCC.
AC ELECTRICAL CHARACTERISTICS(1)
TA = -40C Symbol tPLH tPHL tskew Parameter Propagation Delay D to Q Within-Device Skew Output-to-Output(2) Part-to-Part (Diff.)(2) Duty Cycle (Diff.)(3) Minimum Input Swing(4) Common Mode Range(5)
ECL/LVECL VPP < 500mV VEE+1.3 VPP 500mV VEE+1.5 PECL/LVPECL VPP < 500mV 1.3 VPP 500mV 1.5
TA = 0C Min. 340 290 -- -- -- 150
VEE+1.2 VEE+1.4
TA = +25C Min. 350 300 -- -- -- 150
VEE+1.2 VEE+1.4
TA = +85C Min. Typ. Max. Unit 360 310 -- -- -- 150
VEE+1.2 VEE+1.4
Min. Diff. S.E. 330 280 -- -- -- 150
Typ. -- -- -- -- -- -- -- -- -- -- --
Max. 530 580 75 200 25 -- -0.4 -0.4
VCC-0.4 VCC-0.4
Typ. -- -- -- -- -- -- -- -- -- -- --
Max. 540 590 75 200 25 -- -0.4 -0.4
VCC-0.4 VCC-0.4
Typ. Max. -- -- -- -- -- -- -- -- -- -- -- 550 600 75 200 25 -- -0.4 -0.4
VCC-0.4 VCC-0.4
-- -- -- -- -- -- -- -- -- -- --
560 610 75 200 25 -- -0.4 -0.4
VCC-0.4 VCC-0.4
ps ps
VPP VCMR
mV V
1.2 1.4 220
1.2 1.4 220
1.2 1.4 220
tr tf
Output Rise/Fall Times (20% to 80%)
220
420
420
420
420
ps
NOTES: 1. Power supply requirement applies as indicated in the DC electrical characteristics tables. 2. Skews are valid across specified voltage range. 3. Duty cycle skew is the difference between a tPLH and tPHL propagation delay through a device. 4. Minimum input swing for which AC parameters are guaranteed. The device has a DC gain of ~40. 5. The VCMR is referenced to the most positive side of the differential input signal. Normal operation is obtained if the HIGH levels falls within the specified range and the peak-to-peak voltage lies between VPP min and 1V.
PRODUCT ORDERING CODE
Ordering Code SY100EL17VZC SY100EL17VZCTR* Package Type Z20-1 Z20-1 Operating Range Commercial Commercial Marking Code XEL17V XEL17V Ordering Code SY100EL17VZI(1) SY100EL17VZITR*(1)
*Tape and Reel
Package Type Z20-1 Z20-1
Operating Range Industrial Industrial
Marking Code XEL17V XEL17V
*Tape and Reel Note 1. Recommended for new designs.
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Micrel
SY100EL17V
20 LEAD SOIC .300" WIDE (Z20-1)
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. (c) 2003 Micrel, Incorporated.
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