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Micrel 5V/3.3V DIFFERENTIAL AND/NAND ECL ProTM SY10EP05V SY10EP05V FINAL ECL ProTM FEATURES s s s s 3.3V or 5V power supply options 180ps typical propagation delay Maximum frequency >3GHz typical Internal input resistors: pulldown on D, pulldown and pullup on /D s Q output will default LOW with inputs open or at VEE s Transistor count: 126 s Available in 8-pin MSOP and SOIC packages ECL ProTM DESCRIPTION The SY10EP05V is a 2-input differential AND/NAND gate. The device is functionally equivalent to the EL05 device. With AC performance much faster that the EL05 device, the EP05V is ideal for applications requiring the fastest AC performance available. PIN CONFIGURATION/BLOCK DIAGRAM PIN NAMES Pin Function ECL Data Inputs ECL Data Outputs D0 1 /D0 2 D1 3 /D1 4 8 VCC 7Q 6 /Q 5 VEE D0, D1, /D0, /D1 Q, /Q TRUTH TABLE D0 L L H H D1 L H L H /D0 H H L L /D1 H L H L Q L L L H /Q H H H L Available in 8-Pin SOIC and MSOP Packages ECL Pro is a trademark of Micrel, Inc. Rev.: C Amendment: /0 1 Issue Date: March 2003 Micrel ECL ProTM SY10EP05V ABSOLUTE MAXIMUM RATINGS(1) Symbol VCC -- VEE VIN IOUT TA Tstore JA Power Supply Voltage Input Voltage (VCC = 0V, VI not more negative than VEE) Input Voltage (VEE = 0V, VI not more positive than VCC) Output Current Operating Temperature Range Storage Temperature Range Package Thermal Resistance (Junction-to-Ambient) -Still-Air (SOIC) -500lfpm (SOIC) -Still-Air (MSOP) -500lfpm (MSOP) JC Note 1. Rating Value 6V -6.0 to 0 +6.0 to 0 50 100 -40 to +85 -65 to +150 160 109 206 155 39 39 Unit V V V mA C C C/W C/W C/W -Continuous -Surge Package Thermal Resistance (Junction-to-Case) (SOIC) (MSOP) Permanent device damage may occur if ABSOLUTE MAXIMUM RATINGS are exceeded. This is a stress rating only and functional operation is not implied at conditions other than those detailed in the operational sections of this data sheet. Exposure to ABSOLUTE MAXIMUM RATlNG conditions for extended periods may affect device reliability. PECL DC ELECTRICAL CHARACTERISTICS(1) VCC = 4.5V to 5.5V; VEE = 0V(2) TA = -40C Symbol IEE VOH VOL VIH VIL VIHCMR IIH IIL Note 1. Note 2. Note 3. Note 4. TA = +25C Min. -- 3930 3050 3855 3130 2.0 -- 0.5 -150 Typ. 24 4055 3255 -- -- -- -- -- -- Max. 29 4180 3380 4180 3455 VCC 150 -- -- Min. -- 3990 3050 3915 3190 2.0 -- 0.5 -150 29 TA = +85C Typ. 22 4115 3315 -- -- -- -- -- -- Max. 29 4240 3440 4240 3515 VCC 150 -- -- Unit mA mV mV mV mV V A A Parameter Power Supply Current(3) Output HIGH Voltage(4) Outuput LOW Voltage(4) Input HIGH Voltage Input LOW Voltage Input HIGH Voltage Common Mode Range Input HIGH Current Input LOW Current D /D Min. -- 3865 3050 3790 3065 2.0 -- 0.5 -150 Typ. 22 3940 3190 -- -- -- -- -- -- Max. 4115 3315 4115 3390 VCC 150 -- -- 10EP circuits are designed to meet the DC specifications shown in the above table after thermal equilibrium has been established. The circuit is in a test socket or mounted on a printed circuit board and traverse airflow greater than 500lfpm is maintained. Input and output parameters vary 1:1 with VCC. VCC = 0V, VEE = VEE(min) to VEE(max), all other pins floating. All loading with 50 to VCC -2.0V. 2 Micrel ECL ProTM SY10EP05V LVPECL DC ELECTRICAL CHARACTERISTICS(1) VCC = 3.0V to 3.6V; VEE = 0V(2) TA = -40C Symbol IEE VOH VOL VIH VIL VIHCMR IIH IIL Note 1. Note 2. Note 3. Note 4. TA = +25C Min. -- 2230 1350 2155 1430 2.0 -- 0.5 -150 Typ. 22 2355 1555 -- -- -- -- -- -- Max. 29 2480 1680 2480 1755 VCC 150 -- -- Min. -- 2290 1350 2215 1490 2.0 -- 0.5 -150 29 TA = +85C Typ. 24 2415 1615 -- -- -- -- -- -- Max. 29 2540 1740 2540 1815 VCC 150 -- -- Unit mA mV mV mV mV V A A Parameter Power Supply Current(3) Output HIGH Voltage(4) Outuput LOW Voltage(4) Min. -- 2165 1350 2090 1365 2.0 -- D /D 0.5 -150 Typ. 22 2240 1490 -- -- -- -- -- -- Max. 2415 1615 2415 1690 VCC 150 -- -- Input HIGH Voltage Input LOW Voltage Input HIGH Voltage Common Mode Range Input HIGH Current Input LOW Current 10EP circuits are designed to meet the DC specifications shown in the above table after thermal equilibrium has been established. The circuit is in a test socket or mounted on a printed circuit board and traverse airflow greater than 500lfpm is maintained. Input and output parameters vary 1:1 with VCC. VCC = 0V, VEE = VEE(Min) to VEE(Max), all other pins floating. All loading with 50 to VCC -2.0V. ECL/LVECL DC ELECTRICAL CHARACTERISTICS(1) VCC = 0V, VEE = -5.5V to -3.0V(2) TA = -40C Symbol IEE VOH VOL VIH VIL VIHCMR IIH IIL Note 1. Note 2. Note 3. Note 4. TA = +25C Min. -- -1070 -1950 -1145 -1870 Typ. 22 -945 -1745 -- -- Max. 29 -820 -1620 -820 -1545 VCC 150 -- -- Min. -- -1010 -1950 -1085 -1810 29 TA = +85C Typ. 22 -885 -1685 -- -- Max. 29 -760 -1560 -760 -1485 VCC 150 -- -- Unit mA mV mV mV mV V A A Parameter Power Supply Output HIGH Current(3) Voltage(4) Voltage(4) Min. -- -1135 -1950 -1210 -1935 Typ. 22 -1060 -1810 -- -- Max. -885 -1685 -885 -1610 VCC 150 -- -- Outuput LOW Input HIGH Voltage Input LOW Voltage Input HIGH Voltage Common Mode Range Input HIGH Current Input LOW Current D /D VEE+2.0 -- 0.5 -150 -- -- -- VEE+2.0 -- 0.5 -150 -- -- -- VEE+2.0 -- 0.5 -150 -- -- -- 10EP circuits are designed to meet the DC specifications shown in the above table after thermal equilibrium has been established. The circuit is in a test socket or mounted on a printed circuit board and traverse airflow greater than 500lfpm is maintained. Input and output parameters vary 1:1 with VCC. VCC = 0V, VEE = VEE(min) to VEE(max), all other pins floating. All loading with 50 to VCC -2.0V. 3 Micrel ECL ProTM SY10EP05V AC ELECTRICAL CHARACTERISTICS VCC = 0V, VEE = -5.5V to -3.0V; VCC = 3.0V to 5.5V, VEE = 0V TA = -40C Symbol fMAX tPLH tPHL tJITTER VPP tr tf Note 1. TA = +25C Max. -- 260 -- 1200 170 Min. -- 160 -- 150 80 Typ. 3.0 180 TBD 800 130 Max. -- 260 -- 1200 180 Min. -- 160 -- 150 100 TA = +85C Typ. 3.0 180 -- 800 -- Max. -- 260 -- 1200 200 Unit GHz ps ps mV ps Parameter Maximum Toggle Frequency(1) Propagation Delay to Output Differential D Q, /Q Cycle-to-Cycle Jitter Input Voltage Swing (Diff.) Output Rise/Fall Times (20% to 80%) Q Min. -- 160 -- 150 70 Typ. 3.0 180 -- 800 -- fMAX guaranteed for functionality only. VOL and VOH levels are guaranteed at DC only. PRODUCT ORDERING CODE Ordering Code SY10EP05VZC SY10EP05VZCTR(1) SY10EP05VKC SY10EP05VKCTR(1) Note 1. Note 2. Tape and Reel. Recommended for new designs. Package Type Z8-1 Z8-1 K8-1 K8-1 Operating Range Commercial Commercial Commercial Commercial Package Marking HEP05V HEP05V HP05 HP05 Ordering Code SY10EP05VZI(2) SY10EP05VZITR(1,2) SY10EP05VKI(2) SY10EP05VKITR(1,2) Package Type Z8-1 Z8-1 K8-1 K8-1 Operating Range Industrial Industrial Industrial Industrial Package Marking HEP05V HEP05V HP05 HP05 4 Micrel ECL ProTM SY10EP05V 8 LEAD MSOP (K8-1) Rev. 01 5 Micrel ECL ProTM SY10EP05V 8 LEAD PLASTIC 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. (c) 2003 Micrel, Incorporated. 6 |
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