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28C04A 4K (512 x 8) CMOS EEPROM FEATURES * Fast Read Access Time--150 ns * CMOS Technology for Low Power Dissipation - 30 mA Active - 100 A Standby * Fast Byte Write Time--200 s or 1 ms * Data Retention >200 years * Endurance - Minimum 104 Erase/Write Cycles - Automatic Write Operation - Internal Control Timer - Auto-Clear Before Write Operation - On-Chip Address and Data Latches * Data Polling * Chip Clear Operation * Enhanced Data Protection - VCC Detector - Pulse Filter - Write Inhibit * 5-Volt-Only Operation * Organized 512x8 JEDEC standard pinout - 24-pin Dual-In-Line Package - 32-pin PLCC Package * Available for Extended Temperature Ranges: - Commercial: 0C to +70C - Industrial: -40C to +85C PACKAGE TYPES DIP A7 A6 A5 A4 A3 A2 A1 A0 I/O0 I/O1 I/O2 VSS *1 2 3 4 5 6 7 8 9 10 11 12 24 23 22 21 20 19 18 17 16 15 14 13 Vcc A8 NC WE OE NC CE I/O7 I/O6 I/O5 I/O4 I/O3 32 Vcc 31 WE 18 19 28C04A 2 NC 1 NU 4 A7 3 NC PLCC A6 A5 A4 A3 A2 A1 A0 NC I/O0 5 6 7 8 9 10 11 12 13 30 NC 29 A8 28 NC 27 NC 26 NC 25 OE 24 NC 23 CE 22 I/O7 21 I/O6 20 28C04A 14 15 16 * Pin 1 indicator on PLCC on top of package BLOCK DIAGRAM I/O0 I/O7 DESCRIPTION The Microchip Technology Inc. 28C04A is a CMOS 4K non-volatile electrically Erasable and Programmable Read Only Memory (EEPROM). The 28C04A is accessed like a static RAM for the read or write cycles without the need of external components. During a "byte write", the address and data are latched internally, freeing the microprocessor address and data bus for other operations. Following the initiation of write cycle, the device will go to a busy state and automatically clear and write the latched data using an internal control timer. To determine when a write cycle is complete, the 28C04A uses Data polling. Data polling allows the user to read the location last written to when the write operation is complete. CMOS design and processing enables this part to be used in systems where reduced power consumption and reliability are required. A complete family of packages is offered to provide the utmost flexibility in applications. VSS VCC CE OE WE Data Protection Circuitry Chip Enable/ Output Enable Control Logic Auto Erase/Write Timing I/O1 I/O2 Vss NU I/O3 I/O4 I/O5 17 Data Poll Input/Output Buffers Program Voltage Generation A0 L a t c h e s A8 Y Decoder Y Gating X Decoder 4K bit Cell Matrix (c) 1996 Microchip Technology Inc. DS11126F-page 1 This document was created with FrameMaker 4 0 4 28C04A 1.0 1.1 ELECTRICAL CHARACTERISTICS MAXIMUM RATINGS* TABLE 1-1: Name A0 - A8 CE OE WE I/O0 - I/O7 VCC VSS NC NU PIN FUNCTION TABLE Function Address Inputs Chip Enable Output Enable Write Enable Data Inputs/Outputs +5V Power Supply Ground No Connect; No Internal Connection Not Used; No External Connection is Allowed VCC and input voltages w.r.t. VSS ....... -0.6V to + 6.25V Voltage on OE w.r.t. VSS...................... -0.6V to +13.5V Output Voltage w.r.t. VSS .................-0.6V to VCC+0.6V Storage temperature .......................... -65C to +125C Ambient temp. with power applied ....... -50C to +95C *Notice: Stresses above those listed under "Maximum Ratings" may cause permanent damage to the device. This is a stress rating only and functional operation of the device at those or any other conditions above those indicated in the operation listings of this specification is not implied. Exposure to maximum rating conditions for extended periods may affect device reliability. TABLE 1-2: READ/WRITE OPERATION DC CHARACTERISTICS VCC = +5V 10% Commercial (C): Tamb = Industrial (I): Tamb = 0C to +70C -40C to +85C Conditions Parameter Input Voltages Input Leakage Input Capacitance Output Voltages Output Leakage Output Capacitance Power Supply Current, Active Power Supply Current, Standby Status Logic `1' Logic `0' Symbol VIH VIL ILI CIN Min 2.0 -0.1 -10 Max VCC+1 0.8 10 10 Units V V A pF V V A pF mA mA mA A VIN = -0.1V to VCC+1 VIN = 0V; Tamb = 25C; f = 1 MHz IOH = -400 A IOL = 2.1 mA VOUT = -0.1V TO VCC + 0.1V VIN = 0V; TAMB = 25C; f = 1 MHz f = 5 MHz (Note 1) VCC = 5.5V CE = VIH (0C to +70C) CE = VIH (-40C to +85C) CE = VCC-0.3 to Vcc+1 Logic `1' Logic `0' VOH VOL ILO COUT 2.4 0.45 -10 10 12 30 2 3 100 TTL input ICC TTL input ICC(S)TTL TTL input ICC(S)TTL CMOS input ICC(S)CMOS Note 1: AC power supply current above 5 MHz; 1 mA/MHz. DS11126F-page 2 (c) 1996 Microchip Technology Inc. 28C04A TABLE 1-3: READ OPERATION AC CHARACTERISTICS AC Testing Waveform: Output Load: Input Rise and Fall Times: Ambient Temperature: 28C04A-15 Parameter Address to Output Delay CE to Output Delay OE to Output Delay CE to OE High Output Float Output Hold from Address, CE or OE, whichever occurs first Endurance Sym Min tACC tCE tOE tOFF tOH -- 0 0 1M -- Max 150 150 70 50 0 0 1M -- Min Max 200 200 80 55 0 0 1M -- Min Max 250 250 100 70 ns ns ns ns ns cycles 25C, Vcc = 5.0V, Block Mode (Note) OE = CE = VIL OE = VIL CE = VIL VIH = 2.4V; VIL = 0.45V; VOH = 2.0V; VOL = 0.8V 1 TTL Load + 100 pF 20 ns Commercial (C): Tamb = 0C to +70C Industrial (I): Tamb = -40C to +85C 28C04A-20 28C04A-25 Units Conditions Note: This parameter is not tested but guaranteed by characterization. For endurance estimates in a specific application, please consult the Total Endurance Model which can be obtained on our BBS or website. FIGURE 1-1: VIH Address VIL VIH CE VIL READ WAVEFORMS Address Valid tCE(2) VIH OE VIL VOH Data VOL WE VIH VIL Notes: (1) tOFF is specified for OE or CE, whichever occurs first (2) OE may be delayed up to t CE - t OE after the falling edge of CE without impact on tCE (3) This parameter is sampled and is not 100% tested tACC tOE(2) High Z tOFF(1,3) tOH Valid Output High Z (c) 1996 Microchip Technology Inc. DS11126F-page 3 28C04A TABLE 1-4: BYTE WRITE AC CHARACTERISTICS AC Testing Waveform: Output Load: Input Rise/Fall Times: Ambient Temperature: Parameter Address Set-Up Time Address Hold Time Data Set-Up Time Data Hold Time Write Pulse Width Write Pulse High Time OE Hold Time OE Set-Up Time Data Valid Time Write Cycle Time (28C04A) Write Cycle Time (28C04AF) Symbol tAS tAH tDS tDH tWPL tWPH tOEH tOES tDV tWC tWC Min 10 50 50 10 100 50 10 10 1000 1 200 VIH = 2.4V; VIL = 0.45V; VOH = 2.0V; VOL = 0.8V 1 TTL Load + 100 pF 20 nsec Commercial (C): Tamb= 0C to 70C Industrial (I): Tamb= -40C to 85C Max Units ns ns ns ns ns ns ns ns ns ms s Note 2 0.5 ms typical 100 s typical Note 1 Remarks Note 1: A write cycle can be initiated be CE or WE going low, whichever occurs last. The data is latched on the positive edge of CE or WE, whichever occurs first. 2: Data must be valid within 1000ns max. after a write cycle is initiated and must be stable at least until tDH after the positive edge of WE or CE, whichever occurs first. FIGURE 1-2: PROGRAMMING WAVEFORMS VIH Address VIL VIH CE, WE VIL tDV Data In VIH VIL tOES VIH OE VIL tOEH tDS tAS tAH tWPL tDH DS11126F-page 4 (c) 1996 Microchip Technology Inc. 28C04A FIGURE 1-3: DATA POLLING WAVEFORMS VIH Address VIL Address Valid t ACC t CE t WPH Last Written Address Valid VIH CE VIL VIH WE VIL t WPL t OE VIH OE VIL t DV VIH Data VIL Data In Valid t WC I/O7 Out True Data Out FIGURE 1-4: CHIP CLEAR WAVEFORMS VIH CE VIL VH OE VIH VIH WE VIL tW = 10ms tS = tH = 1s VH = 12.0V 0.5V tS tW tH (c) 1996 Microchip Technology Inc. DS11126F-page 5 28C04A 2.0 DEVICE OPERATION 2.4 Write Mode The Microchip Technology Inc. 28C04A has four basic modes of operation--read, standby, write inhibit, and byte write--as outlined in the following table. Operation Mode Read Standby Write Inhibit Write Inhibit Write Inhibit Byte Write Byte Clear X = Any TTL level. CE L H H X X L IE L X X L X H WE H X X X H L I/O DOUT High Z High Z High Z High Z DIN The 28C04A has a write cycle similar to that of a Static RAM. The write cycle is completely self-timed and initiated by a low going pulse on the WE pin. On the falling edge of WE, the address information is latched. On rising edge, the data and the control pins (CE and OE) are latched. 2.5 Data Polling Automatic Before Each "Write" The 28C04A features Data polling to signal the completion of a byte write cycle. During a write cycle, an attempted read of the last byte written results in the data complement of I/O7 (I/O0 to I/O6 are indeterminable). After completion of the write cycle, true data is available. Data polling allows a simple read/compare operation to determine the status of the chip eliminating the need for external hardware. 2.6 Chip Clear 2.1 Read Mode The 28C04A has two control functions, both of which must be logically satisfied in order to obtain data at the outputs. Chip enable (CE) is the power control and should be used for device selection. Output Enable (OE) is the output control and is used to gate data to the output pins independent of device selection. Assuming that addresses are stable, address access time (tACC) is equal to the delay from CE to output (tCE). Data is available at the output tOE after the falling edge of OE, assuming that CE has been low and addresses have been stable for at least tACC-tOE. All data may be cleared to 1's in a chip clear cycle by raising OE to 12 volts and bringing the WE and CE low. This procedure clears all data. 2.2 Standby Mode The 28C04A is placed in the standby mode by applying a high signal to the CE input. When in the standby mode, the outputs are in a high impedance state, independent of the OE input. 2.3 Data Protection In order to ensure data integrity, especially during critical power-up and power-down transitions, the following enhanced data protection circuits are incorporated: First, an internal VCC detect (3.3 volts typical) will inhibit the initiation of non-volatile programming operation when VCC is less than the VCC detect circuit trip. Second, there is a WE filtering circuit that prevents WE pulses of less than 10 ns duration from initiating a write cycle. Third, holding WE or CE high or OE low, inhibits a write cycle during power-on and power-off (VCC). DS11126F-page 6 (c) 1996 Microchip Technology Inc. 28C04A 28C04A Product Identification System To order or to obtain information, e.g., on pricing or delivery, please use the listed part numbers, and refer to the factory or the listed sales offices. 28C04A F T - 15 I /P Package: Temperature Range: Access Time: L = Plastic Leaded Chip Carrier (PLCC) P = Plastic DIP (600mill) Blank = 0C to +70C I = -40C to +85C 15 20 25 Blank T 150 ns 200 ns 250 ns Tube Tape and Reel "L" only Shipping: Option: Device: Blank = twc = 1ms F = twc = 200 s 28C04A 512 x 8 CMOS EEPROM (c) 1996 Microchip Technology Inc. DS11126F-page 7 WORLDWIDE SALES & SERVICE AMERICAS Corporate Office Microchip Technology Inc. 2355 West Chandler Blvd. Chandler, AZ 85224-6199 Tel: 602 786-7200 Fax: 602 786-7277 Technical Support: 602 786-7627 Web: http://www.microchip.com Atlanta Microchip Technology Inc. 500 Sugar Mill Road, Suite 200B Atlanta, GA 30350 Tel: 770 640-0034 Fax: 770 640-0307 Boston Microchip Technology Inc. 5 Mount Royal Avenue Marlborough, MA 01752 Tel: 508 480-9990 Fax: 508 480-8575 Chicago Microchip Technology Inc. 333 Pierce Road, Suite 180 Itasca, IL 60143 Tel: 708 285-0071 Fax: 708 285-0075 Dallas Microchip Technology Inc. 14651 Dallas Parkway, Suite 816 Dallas, TX 75240-8809 Tel: 972 991-7177 Fax: 972 991-8588 Dayton Microchip Technology Inc. Suite 150 Two Prestige Place Miamisburg, OH 45342 Tel: 513 291-1654 Fax: 513 291-9175 Los Angeles Microchip Technology Inc. 18201 Von Karman, Suite 1090 Irvine, CA 92612 Tel: 714 263-1888 Fax: 714 263-1338 New York Microchip Technmgy Inc. 150 Motor Parkway, Suite 416 Hauppauge, NY 11788 Tel: 516 273-5305 Fax: 516 273-5335 San Jose Microchip Technology Inc. 2107 North First Street, Suite 590 San Jose, CA 95131 Tel: 408 436-7950 Fax: 408 436-7955 Toronto Microchip Technology Inc. 5925 Airport Road, Suite 200 Mississauga, Ontario L4V 1W1, Canada Tel: 905 405-6279 Fax: 905 405-6253 ASIA/PACIFIC China Microchip Technology Unit 406 of Shanghai Golden Bridge Bldg. 2077 Yan'an Road West, Hongiao District Shanghai, Peoples Republic of China Tel: 86 21 6275 5700 Fax: 011 86 21 6275 5060 Hong Kong Microchip Technology RM 3801B, Tower Two Metroplaza 223 Hing Fong Road Kwai Fong, N.T. Hong Kong Tel: 852 2 401 1200 Fax: 852 2 401 3431 India Microchip Technology No. 6, Legacy, Convent Road Bangalore 560 025 India Tel: 91 80 526 3148 Fax: 91 80 559 9840 Korea Microchip Technology 168-1, Youngbo Bldg. 3 Floor Samsung-Dong, Kangnam-Ku, Seoul, Korea Tel: 82 2 554 7200 Fax: 82 2 558 5934 Singapore Microchip Technology 200 Middle Road #10-03 Prime Centre Singapore 188980 Tel: 65 334 8870 Fax: 65 334 8850 Taiwan, R.O.C Microchip Technology 10F-1C 207 Tung Hua North Road Taipei, Taiwan, ROC Tel: 886 2 717 7175 Fax: 886 2 545 0139 EUROPE United Kingdom Arizona Microchip Technology Ltd. Unit 6, The Courtyard Meadow Bank, Furlong Road Bourne End, Buckinghamshire SL8 5AJ Tel: 44 1628 850303 Fax: 44 1628 850178 France Arizona Microchip Technology SARL Zone Industrielle de la Bonde 2 Rue du Buisson aux Fraises 91300 Massy - France Tel: 33 1 69 53 63 20 Fax: 33 1 69 30 90 79 Germany Arizona Microchip Technology GmbH Gustav-Heinemann-Ring 125 D-81739 Muenchen, Germany Tel: 49 89 627 144 0 Fax: 49 89 627 144 44 Italy Arizona Microchip Technology SRL Centro Direzionale Colleone Pas Taurus 1 Viale Colleoni 1 20041 Agrate Brianza Milan Italy Tel: 39 39 6899939 Fax: 39 39 689 9883 JAPAN Microchip Technology Intl. Inc. Benex S-1 6F 3-18-20, Shin Yokohama Kohoku-Ku, Yokohama Kanagawa 222 Japan Tel: 81 45 471 6166 Fax: 81 45 471 6122 9/3/96 All rights reserved. (c) 1996, Microchip Technology Incorporated, USA. 9/96 Printed on recycled paper. Information contained in this publication regarding device applications and the like is intended through suggestion only and may be superseded by updates. No representation or warranty is given and no liability is assumed by Microchip Technology Incorporated with respect to the accuracy or use of such information, or infringement of patents or other intellectual property rights arising from such use or otherwise. Use of Microchip's products as critical components in life support systems is not authorized except with express written approval by Microchip. No licenses are conveyed, implicitly or otherwise, under any intellectual property rights. The Microchip logo and name are registered trademarks of Microchip Technology Inc. All rights reserved. All other trademarks mentioned herein are the property of their respective companies. DS11126F-page 8 (c) 1996 Microchip Technology Inc. |
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