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CMOS Static RAM 16K (16K x 1-Bit) IDT6167SA IDT6167LA x Features High-speed (equal access and cycle time) - Military: 25/35/45/55/70/85/100ns (max.) - Commercial: 15/20/25ns (max.) Low power consumption Battery backup operation -- 2V data retention voltage (IDT6167LA only) Available in 20-pin CERDIP and Plastic DIP, and 20-pin SOJ Produced with advanced CMOS high-performance technology CMOS process virtually eliminates alpha particle soft-error rates Separate data input and output Military product compliant to MIL-STD-883, Class B high reliability CMOS technology. Access times as fast as 15ns are available. The circuit also offers a reduced power standby mode. When CS goes HIGH, the circuit will automatically go to, and remain in, a standby mode as long as CS remains HIGH. This capability provides significant system-level power and cooling savings. The low-power (LA) version also offers a battery backup data retention capability where the circuit typically consumes only 1W operating off a 2V battery. All inputs and the output of the IDT6167 are TTL-compatible and operate from a single 5V supply, thus simplifying system designs. The IDT6167 is packaged in a space-saving 20-pin, 300 mil Plastic DIP or CERDIP and a Plastic 20-pin providing high board-level packing densities. Military grade product is manufactured in compliance with the latest revision of MIL-STD-883, Class B, making it ideally suited to military temperature applications demanding the highest level of performance and reliability. x x x x x x x Description The lDT6167 is a 16,384-bit high-speed static RAM organized as 16K x 1. The part is fabricated using IDT's high-performance, Functional Block Diagram A0 VCC GND ADDRESS DECODE 16,384-BIT MEMORY ARRAY A13 DIN I/O CONTROL DOUT , CS CONTROL LOGIC WE 2981 drw 01 FEBRUARY 2001 1 (c)2000 Integrated Device Technology, Inc. DSC-2981/08 IDT6167SA/LA CMOS Static RAM 16K (16K x 1-Bit) Military and Commercial Temperature Ranges Pin Configurations A0 A1 A2 A3 A4 A5 A6 DOUT WE GND 1 2 3 4 5 6 7 8 9 10 P20-1 D20-1 20 19 18 17 16 15 14 13 12 11 VCC A13 A12 A11 A10 A9 A8 A7 DIN CS 2981 drw 02 Absolute Maximum Ratings(1) Symbol VTERM Rating Terminal Voltage with Respect to GND Operating Temperature Temperature Under Bias Storage Temperature Power Dissipation DC Output Current Com'l. -0.5 to +7.0 Mil. -0.5 to +7.0 Unit V TA TBIAS TSTG PT 0 to +70 -55 to +125 -55 to +125 1.0 50 -55 to +125 -65 to +135 -65 to +150 1.0 50 o C C C o o W mA 2981 tbl 03 , IOUT DIP Top View Pin Descriptions Name A0 - A13 CS WE VCC DIN DOUT GND NOTE: 1. Stresses greater than those listed under ABSOLUTE MAXIMUM RATINGS may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability. Description Address Inputs Chip Select Write Enable Power DATAIN DATAOUT Ground 2981 tbl 01 Capacitance (TA = +25C, f = 1.0MHz) Symbol CIN COUT Parameter(1) Input Capacitance Output Capacitance Conditions VIN = 0V VOUT = 0V Max. 7 7 Unit pF pF 2981 tbl 04 NOTE: 1. This parameter is determined by device characterization, but is not production tested. Truth Table(1) Mode Standby Read Write CS H L L WE X H L Output High-Z DATAOUT High-Z Power Standby Active Active 2981 tbl 02 Recommended DC Operating Conditions Symbol VCC GND VIH VIL Parameter Supply Voltage Ground Input High Voltage Input Low Voltage Min. 4.5 0 2.2 -0.5 (1) Typ. 5.0 0 ____ Max. 5.5 0 6.0 0.8 Unit V V V V 2981 tbl 05 NOTE: 1. H = VIH, L = VIL, X = Don't Care. ____ Recommended Operating Temperature and Supply Voltage Grade Military Commercial Temperature -55OC to +125OC 0OC to +70OC GND 0V 0V Vcc 5V 10% 5V 10% 2981 tbl 06 NOTE: 1. VIL (min.) = -3.0V for pulse width less than 20ns, once per cycle. 2 IDT6167SA/LA CMOS Static RAM 16K (16K x 1-Bit) Military and Commercial Temperature Ranges DC Electrical Characteristics(1) (VCC = 5.0V 10%, VLC = 0.2V, VHC = VCC 0.2V) 6167SA/LA15 Symbol ICC1 Parameter Operating Power Supply Current CS < VIL, Outputs Open VCC = Max., f = 0(3) Dynamic Operating Current CS < VIL, Outputs Open VCC = Max., f = fMAX(3) Standby Power Supply Current (TTL Level) CS > VIH, Outputs Open VCC = Max., f = fMAX(3) Full Standby Power Supply Current (CMOS Level) CS > VHC, VCC = Max., VIN > VHC or VIN < VLC, f = 0(3) Power SA LA SA LA SA LA SA LA Com'l. 90 55 120 100 50 35 5 0.9 6167SA/LA20 Com'l. 90 55 100 80 35 30 5 0.05 6167SA/LA25 Com'l. 90 55 100 70 35 25 5 0.05 Mil. 90 60 100 75 35 25 10 0.9 2981 tbl 07 Unit mA ICC2 mA ISB mA ISB1 mA DC Electrical Characteristics(1) (con't.) (VCC = 5.0V 10%, VLC = 0.2V, VHC = VCC 0.2V) 6167SA/LA35(2) Symbol ICC1 Parameter Operating Power Supply Current CS < VIL, Outputs Open VCC = Max., f = 0(3) Dynamic Operating Current CS < VIL, Outputs Open VCC = Max., f = fMAX(3) Standby Power Supply Current (TTL Level) CS > VIH, Outputs Open VCC = Max., f = fMAX(3) Full Standby Power Supply Current (CMOS Level) CS > VHC, VCC = Max., VIN > VHC or VIN < VLC, f = 0(3) Power SA LA SA LA SA LA SA LA Mil. 90 60 100 70 35 20 10 0.9 6167SA/LA45(2) Mil. 90 60 100 65 35 20 10 0.9 6167SA/LA55(2) Mil. 90 60 100 60 35 20 10 0.9 6167SA/LA70(2) Mil. 90 60 100 60 35 15 10 0.9 2981 tbl 08 Unit mA ICC2 mA ISB mA ISB1 mA NOTES: 1. All values are maximum guaranteed values. 2. -55C to +125C temperature range only. Also available; 85ns and 100ns Military devices. 3. fMAX = 1/tRC, only address inputs cycling at fMAX. f = 0 means no address inputs change. 6.42 3 IDT6167SA/LA CMOS Static RAM 16K (16K x 1-Bit) Military and Commercial Temperature Ranges DC Electrical Characteristics (VCC = 5.0V 10%) Symbol |ILI| |ILO| VOL VOH IDT6167SA Parameter Input Leakage Current Output Leakage Current Output Low Voltage Output High Voltage Test Conditions VCC = Max., VIN = GND to VCC VCC = Max., CS = VIH, VOUT = GND to VCC IOL = 8mA, VCC = Min. IOH = -4mA, VCC = Min. MIL. COM'L. MIL. COM'L. Min. ____ ____ ____ ____ ____ IDT6167LA Min. ____ ____ ____ ____ ____ Max. 10 5 10 5 0.4 ____ Max. 5 2 5 2 0.4 ____ Unit A A V V 2981 tbl 09 2.4 2.4 Data Retention Characteristics Over All Temperature Ranges (LA Version Only) (VLC = 0.2V, VHC = VCC 0.2V) Typ.(1) VCC @ Symbol VDR ICCDR tCDR Parameter VCC for Data Retention Data Retention Current Chip Deselect to Data Retention Time Operation Recovery Time Input Leakage Current Test Condition ____ Max. VCC @ 3.0V ____ Min. 2.0 2.0V ____ 2.0V ____ 3.0V ____ Unit V A ns MIL. COM'L. CS > VHC VIN > VHC or < VLC ____ ____ 0.5 0.5 ____ 1.0 1.0 ____ 200 20 ____ 300 30 ____ 0 tRC(2) ____ tR(3) ____ ____ ____ ____ ns A 2981 tbl 10 IILII(3) ____ ____ 2 2 NOTES: 1. TA = +25C. 2. tRC = Read Cycle Time. 3. This parameter is guaranteed by device characterization, but is not production tested. Low VCC Data Retention Waveform DATA RETENTION MODE VCC 4.5V VDR 2V tCDR CS VDR tR 4.5V VIH VIH 2981 drw 03 , 4 IDT6167SA/LA CMOS Static RAM 16K (16K x 1-Bit) Military and Commercial Temperature Ranges AC Test Conditions Input Pulse Levels Input Rise/Fall Times Input Timing Reference Levels Output Reference Levels AC Test Load 5V GND to 3.0V 5ns 1.5V 1.5V See Figures 1 and 2 2981 tbl 11 5V 480 DATAOUT 255 30pF* 480 DATAOUT 255 5pF* , 2981 drw 04 , 2981 drw 05 Figure 1. AC Test Load *Includes scope and jig. Figure 2. AC Test Load (for tCLZ, tCHZ, tWHZ and tOW) AC Electrical Characteristics Symbol Parameter (VCC = 5.0V 10%, All Temperature Ranges) 6167SA15(3) Min. Max. 6167SA20(3)/25 6167LA20(3)/25 Min. Max. 6167SA35(1)/45(1) 6167LA35(1)/45(1) Min. Max. 6167SA55(1)/70(1) 6167LA55(1) /70(1) Min. Max. Unit Read Cycle tRC tAA tACS tCLZ(2) tCHZ(2) tOH tPU tPD (2) (2) Read Cycle Time Address Access Time Chip Select Access Time Chip De select to Output in Low-Z Chip Select to Output in High-Z Output Hold from Address Change Chip Select to Power-Up Time Chip Deselect to Power-Down Time 15 ____ ____ 20/25 ____ ____ 35/45 ____ ____ 55/70 ____ ____ ns ns ns ns ns ns ns ns 15 15 ____ 20/25 20/25 ____ 35/45 35/45 ____ 55/70 55/70 ____ ____ ____ ____ ____ 3 ____ 5/5 ____ 5/5 ____ 5/5 ____ 10 ____ 10/10 ____ 15/30 ____ 40/40 ____ 3 0 ____ 5/5 0/0 ____ 5/5 0/0 ____ 5/5 0/0 ____ ____ ____ ____ ____ 15 20/25 35/45 55/70 Write Cycle tWC tCW tAW tAS tWP tWR tDW tDH tWHZ(2) tOW(2) Write Cycle Time Chip Select to End-of-Write Address Valid to End-of-Write Address Set-up Time Write Pulse Width Write Recovery Time Data Valid to End-of-Write Data Hold Time Write Enable to Output in High-Z Output Active from End-of-Write 15 15 15 0 13 0 10 0 ____ ____ 20/20 15/20 15/20 0/0 15/20 0/0 12/15 0/0 ____ ____ 30/45 30/40 30/40 0/0 30/30 0/0 17/20 0/0 ____ ____ 55/70 45/55 45/55 0/0 35/40 0/0 25/30 0/0 ____ ____ ns ns ns ns ns ns ns ns ns ns 2981 tbl 12 ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ ____ 7 ____ 8/8 ____ 15/30 ____ 40/40 ____ 0 0/0 0/0 0/0 NOTES: 1. -55C to +125C temperature range only. Also available: 85ns and 100ns Military devices. 2. This parameter is guaranteed with AC Load (Figure 2) by device characterization, but is not production tested. 3. 0C to +70C temperature range only. 6.42 5 IDT6167SA/LA CMOS Static RAM 16K (16K x 1-Bit) Military and Commercial Temperature Ranges Timing Waveform of Read Cycle No. 1(1, 2) tRC ADDRESS tAA tOH PREVIOUS DATAOUT VALID DATAOUT VALID 2981 drw 06 DATAOUT , Timing Waveform of Read Cycle No. 2(1, 3) tRC CS tACS tCLZ DATAOUT HIGH IMPEDANCE DATAOUT VALID tPU ICC VCC SUPPLY CURRENT ISB 2981 drw 07 tCHZ (4) (4) HIGH IMPEDANCE tPD , NOTES: 1. WE is HIGH for Read cycle. 2. Device is continuously selected, CS is LOW. 3. Address valid prior to or coincedent with CS transition LOW. 4. Transition is measured 200mV from steady state. 6 IDT6167SA/LA CMOS Static RAM 16K (16K x 1-Bit) Military and Commercial Temperature Ranges Timing Waveform of Write Cycle No. 1 (WE Controlled Timing)(1,3) tWC ADDRESS tAW CS (2) tAS tWP tWR tCHZ (4) WE tWHZ (4) tOW (5) (4) DATAOUT PREVIOUS DATAOUT VALID DATAOUT VALID (5) tDW tDH DATAIN DATAIN VALID 2981 drw 08 , Timing Waveform of Write Cycle No. 2 (CS Controlled Timing)(1,3) tWC ADDRESS tAW CS tAS WE tDW DATAIN DATAIN VALID 2981 drw 09 tCW tWR t (2) tDH , NOTES: 1. A write occurs during the overlap of a LOW CS and a LOW WE. 2. tWR is measured from the earlier of CS or WE going HIGH to the end of the write cycle. 3. If the CS low transition occurs simultaneously with or after the WE LOW transition, the outputs remain in the high-impedance state. 4. Transition is measured 200mV from steady state. 5. During this period, the I/O pins are in the output state and the input signals must not be applied. 6.42 7 IDT6167SA/LA CMOS Static RAM 16K (16K x 1-Bit) Military and Commercial Temperature Ranges Ordering Information -- Military IDT 6167 Device Type XX Power XXX Speed XX Package X Process/ Temperature Range B Military (-55C to +125C) Compliant to MIL-STD-883, Class B D 300 mil CERDIP (D20-1) 25 35 45 55 70 85 100 Speed in nanoseconds SA LA Standard Power Low Power 2981 drw 10 Ordering Information -- Commerical IDT 6167 Device Type XX Power XXX Speed XX Package X Process/ Temperature Range Blank Commercial (0C to +70C) P 300 mil Plastic DIP (P20- 1) 15* 20 25 Speed in nanoseconds SA LA Standard Power Low Power * A vailable in standard pow er only. 2981 drw 10A 8 IDT6167SA/LA CMOS Static RAM 16K (16K x 1-Bit) Military and Commercial Temperature Ranges Datasheet Document History 1/13/2000 Pg. 7 Pg. 8 Pg. 1-3, 5, 8 Pg. 1, 2, 8 Pg. 9 Updated to new format Removed Note 1 from Write Cycle No. 1 and No. 2 drawings; renumbered notes and footnotes Added Datasheet Document History Removed speed offering 15ns and 20ns for military and 35ns for commercial temperature range. Removed SOJ package offering. Updated Datasheet History Not recommended for new designs Removed "Not recommended for new designs" 1/26/2000 08/09/00 02/01/01 CORPORATE HEADQUARTERS 2975 Stender Way Santa Clara, CA 95054 for SALES: 800-345-7015 or 408-727-6116 fax:408-492-8674 www.idt.com 6.42 9 for Tech Support: sramhelp@idt.com 800 544-7726, x4033 The IDT logo is a registered trademark of Integrated Device Technology, Inc. |
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