SDZS009 − D3418, JANUARY 1990 • • • • • DW OR NT PACKAGE (TOP VIEW) 100K Compatible ECL Clock and TTL Control Inputs Flow-Through Architecture Optimizes PCB Layout Center Pin VCC, VEE, and GND Configurations Minimize High-Speed Switching Noise Package Options Include “Small Outline” Packages and Standard Plastic DIPs 1Q 2Q 3Q 4Q VCC GND GND GND 5Q 6Q 7Q 8Q description 1 24 2 23 3 22 4 21 5 20 6 19 7 18 8 17 9 16 10 15 1D 2D 3D 4D OE(TTL) VEE GND CLK(ECL) 5D 6D 7D 8D This octal ECL-to-TTL translator is designed to 14 11 provide efficient translation between a 100K ECL 13 12 signal environment and a TTL signal environment. This device is designed specifically to improve the performance and density of ECL-to-TTL CPU/bus-oriented functions such as memory-address drivers, clock drivers, and bus-oriented receivers and transmitters. The eight flip-flops of the SN100KT5574 are edge-triggered D-type flip-flops. On the positive transition of the clock, the Q outputs are set to the logic levels that were set up at the D inputs. A buffered output-enable input (OE) can be used to place the eight outputs in either a normal logic state (high or low logic levels) or a high-impedance state. In the high-impedance state, the outputs neither load nor drive the bus lines significantly. The high-impedance third state and increased drive provide the capability to drive bus lines without need for interface or pullup components. The output-enable input OE does not affect the internal operations of the flip-flops. Old data can be retained or new data can be entered while the outputs are off. The SN100KT5574 is characterized for operation from 0°C to 85°C. FUNCTION TABLE OUTPUT (TTL) INPUTS OE CLK D Q L ↑ L L L ↑ H H L L X Qo H X X Z Copyright 1990, Texas Instruments Incorporated !"# $ %&'# "$ (&)*%"# +"#', +&%#$ %! # $('%%"#$ (' #-' #'!$ '."$ $#&!'#$ $#"+"+ /""#0, +&%# (%'$$1 +'$ # '%'$$"*0 %*&+' #'$#1 "** (""!'#'$, POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 1 logic symbol† CLK 17 20 OE 1D 2D 3D 4D 5D 6D 7D 8D logic diagram (positive logic) 24 ECL/TTL C1 OE EN 1D CLK ECL/TTL 1 23 2 22 3 21 4 16 9 15 10 14 11 13 12 1Q 1D 20 17 ECL/TTL 24 ECL/TTL C1 1D 1 C1 2 2Q 3Q 4Q 2D 23 ECL/TTL 5Q 6Q 3D ECL/TTL 8Q 4D 5D 6D 7D 16 15 14 ECL/TTL C1 8D POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 4 9 ECL/TTL 1D 10 ECL/TTL C1 1D C1 11 ECL/TTL ECL/TTL 3Q 4Q 1D 5Q 6Q 7Q 1D C1 13 3 1D C1 21 2Q 1D C1 22 7Q † This symbol is in accordance with ANSI/IEEE Std 91-1984 and IEC Publication 617-12. 2 1Q 1D 12 8Q absolute maximum ratings over operating temperature range (unless otherwise noted)† Supply voltage range, VCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −0.5 V to 7 V Supply voltage range, VEE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −8 V to 0 V Input voltage range: TTL (see Note 1) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −1.2 V to 7 V ECL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . VEE to 0 V Voltage applied to any output in the disabled or power-off state . . . . . . . . . . . . . . . . . . . . . . . . −0.5 V to 5.5 V Voltage applied to any output in the high state . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −0.5 V to VCC Input current range, TTL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −30 mA to 5 mA Current into any output in the low state . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 96 mA Operating free-air temperature range . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0°C to 85°C Storage temperature range . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −65°C to 150°C † Stresses beyond those listed under “absolute maximum ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under “recommended operating conditions” is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. NOTE 1: The TTL input voltage ratings may be exceeded provided the input current ratings are observed. recommended operating conditions MIN NOM MAX UNIT VCC VEE TTL supply voltage 4.5 5 5.5 V ECL supply voltage −4.2 −4.5 −4.8 V VIH VIL TTL high-level input voltage TTL low-level input voltage 0.8 V IIK VIH TTL input clamp current −18 mA −1150 −840 mV −1810 −1490 mV −15 mA VIL IOH 2 ECL high-level input voltage‡ ECL low-level input voltage‡ High-level output current V IOL Low-level output current 48 mA TA Operating temperature range 0 85 °C ‡ The algebraic convention, in which the least positive (most negative) value is designated minimum, is used in this data sheet for logic levels only. POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 3 electrical characteristics over recommended operating free-air temperature range (unless otherwise noted) PARAMETER VIK OE only TEST CONDITIONS MIN VCC = 4.5 V, VCC = 4.5 V, VEE = − 4.2 V, VEE = − 4.5 V ± 0.3 V, II = − 18 mA IOH = − 3 mA VCC = 4.5 V, VCC = 4.5 V, VEE = − 4.5 V ± 0.3 V, VEE = − 4.5 V ± 0.3 V, IOH = − 15 mA IOL = 48 mA VCC = 5.5 V, VCC = 5.5 V, VEE = − 4.8 V, VEE = − 4.8 V, VI = 7 V VI = 2.7 V VCC = 5.5 V, VCC = 5.5 V, VEE = − 4.8 V, VEE = − 4.8 V, VI = 0.5 V VIH = − 840 mV VCC = 5.5 V, VCC = 5.5 V, VEE = − 4.8 V, VEE = − 4.8 V, VIL = − 1810 mV VO = 2.7 V VCC = 5.5 V, VCC = 5.5 V, VEE = − 4.8 V, VEE = − 4.8 V, VO = 0.5 V VO = 0 V ICCH ICCL VCC = 5.5 V, VCC = 5.5 V, VEE = − 4.8 V VEE = − 4.8 V ICCZ IEE VCC = 5.5 V, VCC = 5.5 V, VEE = − 4.8 V VEE = − 4.8 V Ci VCC = 5.5 V, VCC = 5.5 V, VEE = − 4.5 V VEE = − 4.5 V VOH VOL II OE only IIH IIL OE only IIH IIL Data inputs and CLK OE only Data inputs and CLK IOZH IOZL IOS‡ TYP† 2.4 3.3 2 3.1 0.38 MAX UNIT −1.2 V V 0.55 V 0.1 mA 20 µA −0.5 mA 350 µA µA 0.50 50 µA −225 mA 66 95 mA 76 110 mA 74 106 mA −43 −61 mA −100 Co † All typical values are at VCC = 5 V, VEE = − 4.5 V, TA = 25°C. ‡ Not more than one output should be tested at a time, and the duration of the test should not exceed 10 ms. µA −50 5 pF 7 pF timing requirements VCC = 4.5 V to 5.5 V, VEE = − 4.2 V to − 4.8 V, TA = MIN to MAX§ MIN tw Pulse duration th Hold time after CLK↑ tsu Setup time before CLK↑ CLK high 4 CLK low 4 Data high 1 Data low 1 Data high 1 Data low 1 § For conditions shown as MIN or MAX, use the appropriate value specified under recommended operating conditions. 4 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 UNIT MAX ns ns ns switching characteristics over recommended ranges of operating free-air temperature and supply voltage (see Figure 1) PARAMETER fmax tPLH tPHL tPZH tPZL tPHZ FROM TO (INPUT) (OUTPUT) CLK Q OE Q OE tPLZ † All typical values are at VCC = 5 V, VEE = − 4.5 V, TA = 25°C. POST OFFICE BOX 655303 Q • DALLAS, TEXAS 75265 CL = 50 pF, R1 = 500 Ω, R2 = 500 Ω MIN TYP† MAX UNIT 200 300 MHz 2.3 4.1 7 2.9 4.6 7.4 1.9 3.6 6.3 2.7 4.8 7.7 2.1 3.9 6.1 0.5 3.4 6.3 ns ns ns 5 PARAMETER MEASUREMENT INFORMATION 7V Open SWITCH POSITION TABLE S1 From Output Under Test Test Point CL (See Note A) S1 Open Open Open Closed Open Closed TEST tPLH tPHL tPZH tPZL tPHZ tPLZ R1 R2 LOAD CIRCUIT tf tr ECL Input (See Note C) 80% 80% 50% 20% −950 mV 50% 20% 1.5 V Low-Level Input VOLTAGE WAVEFORMS PULSE DURATION tPHL 1.5 V 1.5 V VOL tr tf 80% 80% 50% 50% 20% 1.5 V 0 tPLZ Output Waveform 1 (See Note D) 80% 80% 50% −950 mV 50% 20% tr Output Waveform 2 (See Note D) tPHZ VOL 0.3 V VOH 1.5 V 0.3 V 0 −1690 mV tf 3.5 V 1.5 V −1690 mV th 1.5 V tPZL tPZH tsu Data Input 20% −950 mV 3V Output Control (Low-Level Enabling) VOLTAGE WAVEFORMS ECL-INPUT PROPAGATION DELAY TIMES 20% 50% −1690 mV VOL VOH Timing Input 50% 1.5 V tPLH In-Phase TTL Output −1690 mV tw −950 mV VOH Out-of-Phase TTL Output 50% 50% −1690 mV tPLH tPHL −950 mV High-Level Input VOLTAGE WAVEFORMS TTL ENABLE AND DISABLE TIMES VOLTAGE WAVEFORMS SETUP AND HOLD TIMES NOTES: A.CL includes probe and jig capacitance. B. For TTL inputs, input pulses are supplied by generators having the following characteristics PRR ≤ 10 MHz, Zo = 50 Ω, tr ≤ 2.5 ns, tf ≤ 2.5 ns. C. For ECL inputs, input pulses are supplied by generators having the following characteristics: PRR ≤ 10 MHz, Zo = 50 Ω, tr ≤ 0.7 ns, tf ≤ 0.7 ns. D. Waveform 1 is for an output with internal conditions such that the output is low except when disabled by the output control. Waveform 2 is for an output with internal conditions such that the output is high except when disabled by the output control. E. The outputs are measured one at a time with one transition per measurement. figure 1. load circuit and voltage waveforms 6 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 IMPORTANT NOTICE Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should obtain the latest relevant information before placing orders and should verify that such information is current and complete. All products are sold subject to TI’s terms and conditions of sale supplied at the time of order acknowledgment. TI warrants performance of its hardware products to the specifications applicable at the time of sale in accordance with TI’s standard warranty. Testing and other quality control techniques are used to the extent TI deems necessary to support this warranty. Except where mandated by government requirements, testing of all parameters of each product is not necessarily performed. TI assumes no liability for applications assistance or customer product design. Customers are responsible for their products and applications using TI components. To minimize the risks associated with customer products and applications, customers should provide adequate design and operating safeguards. TI does not warrant or represent that any license, either express or implied, is granted under any TI patent right, copyright, mask work right, or other TI intellectual property right relating to any combination, machine, or process in which TI products or services are used. Information published by TI regarding third-party products or services does not constitute a license from TI to use such products or services or a warranty or endorsement thereof. Use of such information may require a license from a third party under the patents or other intellectual property of the third party, or a license from TI under the patents or other intellectual property of TI. Reproduction of TI information in TI data books or data sheets is permissible only if reproduction is without alteration and is accompanied by all associated warranties, conditions, limitations, and notices. Reproduction of this information with alteration is an unfair and deceptive business practice. TI is not responsible or liable for such altered documentation. Information of third parties may be subject to additional restrictions. Resale of TI products or services with statements different from or beyond the parameters stated by TI for that product or service voids all express and any implied warranties for the associated TI product or service and is an unfair and deceptive business practice. TI is not responsible or liable for any such statements. TI products are not authorized for use in safety-critical applications (such as life support) where a failure of the TI product would reasonably be expected to cause severe personal injury or death, unless officers of the parties have executed an agreement specifically governing such use. Buyers represent that they have all necessary expertise in the safety and regulatory ramifications of their applications, and acknowledge and agree that they are solely responsible for all legal, regulatory and safety-related requirements concerning their products and any use of TI products in such safety-critical applications, notwithstanding any applications-related information or support that may be provided by TI. Further, Buyers must fully indemnify TI and its representatives against any damages arising out of the use of TI products in such safety-critical applications. TI products are neither designed nor intended for use in military/aerospace applications or environments unless the TI products are specifically designated by TI as military-grade or "enhanced plastic." Only products designated by TI as military-grade meet military specifications. Buyers acknowledge and agree that any such use of TI products which TI has not designated as military-grade is solely at the Buyer's risk, and that they are solely responsible for compliance with all legal and regulatory requirements in connection with such use. TI products are neither designed nor intended for use in automotive applications or environments unless the specific TI products are designated by TI as compliant with ISO/TS 16949 requirements. Buyers acknowledge and agree that, if they use any non-designated products in automotive applications, TI will not be responsible for any failure to meet such requirements. Following are URLs where you can obtain information on other Texas Instruments products and application solutions: Products Amplifiers Data Converters DSP Clocks and Timers Interface Logic Power Mgmt Microcontrollers RFID RF/IF and ZigBee® Solutions amplifier.ti.com dataconverter.ti.com dsp.ti.com www.ti.com/clocks interface.ti.com logic.ti.com power.ti.com microcontroller.ti.com www.ti-rfid.com www.ti.com/lprf Applications Audio Automotive Broadband Digital Control Medical Military Optical Networking Security Telephony Video & Imaging Wireless www.ti.com/audio www.ti.com/automotive www.ti.com/broadband www.ti.com/digitalcontrol www.ti.com/medical www.ti.com/military www.ti.com/opticalnetwork www.ti.com/security www.ti.com/telephony www.ti.com/video www.ti.com/wireless Mailing Address: Texas Instruments, Post Office Box 655303, Dallas, Texas 75265 Copyright © 2008, Texas Instruments Incorporated