RD74LVC138B RENESAS | Alldatasheet
Document overview
- Manufacturer or author: Provided By www.digicamel.com(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 8
Technical content
Features
- VCC = 1.65 V to 5.5 V
- All inputs VIH (Max.) = 5.5 V (@VCC = 0 V to 5.5 V)
- Typical VOL ground bounce < 0.8 V (@VCC = 3.3 V, Ta = 25°C)
- Typical VOH undershoot > 2.0 V (@VCC = 3.3 V, Ta = 25°C)
- High output current ±4 mA (@V CC = 1.65 V) ±8 mA (@VCC = 2.3 V) ±12 mA (@VCC = 2.7 V) ±24 mA (@VCC = 3.0 V to 5.5 V)
- Ordering Information Part Name Package Type Package Code Package Abbreviation Taping Abbreviation (Quantity) RD74LVC138BFPEL SOP–16 pin (JEITA) FP–16DAV FP EL (2,000 pcs/reel) RD74LVC138BTELL TSSOP–16 pin TTP–16DAV T ELL (2,000 pcs/reel) Function Table Inputs Enable Select Outputs G1 G2A G2B C B A Y0 Y1 Y2 Y3 Y4 Y5 Y6 Y7 X X H X X X H H H H H H H H X H X X X X H H H H H H H H L X X X X X H H H H H H H H H L L L L L L H H H H H H H H L L L L H H L H H H H H H H L L L H L H H L H H H H H H L L L H H H H H L H H H H H L L H L L H H H H L H H H H L L H L H H H H H H L H H H L L H H L H H H H H H L H H L L H H H H H H H H H H L H: High level L: Low level X: Immaterial
Rev.2.00 Jan. 14, 2005 page 2 of 7 Pin Arrangement (Top view) VCC1 7 10 A GND 8 9 AB C G2B G2A B C G2A G2B Absolute Maximum Ratings Item Symbol Ratings Unit Conditions Supply voltage V CC –0.5 to 7.0 V Input diode current I IK –50 mA V I = –0.5 V Input voltage V I –0.5 to 7.0 V –50 V O = –0.5 V Output diode current I OK mA VO = VCC +0.5 V Output voltage V O –0.5 to V CC +0.5 V Output current I O ±50 mA VCC, GND current / pin I CC or IGND 100 mA Storage temperature Tstg –65 to +150 °C Note: The absolute maximum ratings are values, which must not individually be exceeded, and furthermore, no two of which may be realized at the same time.
Rev.2.00 Jan. 14, 2005 page 3 of 7 Recommended Operating Conditions Item Symbol Ratings Unit Conditions 1.5 to 5.5 Data retention Supply voltage V CC 1.65 to 5.5 V At operation VI 0 to 5.5 V A, B, C, G1, G2A, G2B Input / output voltage VO 0 to V CC V Y0 to Y7 Operating temperature Ta –40 to 85 °C –4 V CC = 1.65 V –8 V CC = 2.3 V –12 V CC = 2.7 V IOH –24 mA VCC = 3.0 V to 5.5 V 4 V CC = 1.65 V 8 V CC = 2.3 V 12 V CC = 2.7 V Output current IOL mA VCC = 3.0 V to 5.5 V 20 V CC = 1.65 V to 2.7 V Input rise / fall time *1 t r, tf ns/V VCC = 3.0 V to 5.5 V Notes: 1. This item guarantees maxi mum limit when one input switches. Waveform: Refer to test circuit of switching characteristics.
Rev.2.00 Jan. 14, 2005 page 4 of 7
Electrical Characteristics
Ta = –40 to 85°C Item Symbol VCC (V) Min Max Unit Test Conditions 1.65 to 1.95 V CC×0.65 — 2.3 to 2.7 1.7 — 2.7 to 3.6 2.0 — VIH 4.5 to 5.5 V CC×0.7 — V 1.65 to 1.95 — V CC×0.35 2.3 to 2.7 — 0.7 2.7 to 3.6 — 0.8 Input voltage VIL 4.5 to 5.5 — V CC×0.3 V 1.65 to 5.5 V CC–0.2 — I OH = –100 µA 1.65 1.2 — I OH = –4 mA 2.3 1.7 — I OH = –8 mA 2.7 2.2 — 3.0 2.4 — IOH = –12 mA 3.0 2.2 — VOH 4.5 3.8 — V IOH = –24 mA 1.65 to 5.5 — 0.2 I OL = 100 µA 1.65 — 0.45 I OL = 4 mA 2.3 — 0.7 I OL = 8 mA 2.7 — 0.4 I OL = 12 mA 3.0 — 0.55 Output voltage VOL 4.5 — 0.55 V IOL = 24 mA Input current I IN 0 to 5.5 — ±5.0 µA V IN = 5.5 V or GND 2.7 to 5.5 — 5.0 µA VIN = VCC or GND Quiescent supply current ∆ICC 2.7 to 3.6 — 500 µA V IN = one input at(VCC –0.6)V, other inputs at VCC or GND
Rev.2.00 Jan. 14, 2005 page 5 of 7 Switching Characteristics Ta = –40 to 85°C Item Symbol VCC (V) Min Typ Max Unit From (Input) To (Output) 2.5±0.2 1.0 — 9.9 2.7 1.0 — 7.9 3.3±0.3 1.0 — 6.7 tPLH tPHL 5.0±0.5 1.0 — 6.0 ns A, B, C Y0 to Y7 2.5±0.2 1.0 — 9.4 2.7 1.0 — 7.4 3.3±0.3 1.0 — 6.5 tPLH tPHL 5.0±0.5 1.0 — 6.0 ns G2A, G2B Y0 to Y7 2.5±0.2 1.0 — 8.4 2.7 1.0 — 6.4 3.3±0.3 1.0 — 5.8 Propagation delay time tPLH tPHL 5.0±0.5 1.0 — 5.0 ns G1 Y0 to Y7 1.8±0.15 — — — 2.5±0.2 — — — 2.7 — — — 3.3±0.3 — — 1.0 Output skew between pins*1 tOSLH tOSHL 5.0±0.5 — — 1.0 ns Input capacitance C IN 3.3 — 5.0 — pF Note: 1. This parameter is characterized but not tested. t OSLH = |tPLHm – tPLHn|, tOSHL = |tPHLm – tPHLn| Operating Characteristics Ta = 25°C Item Symbol VCC = (V) Min Typ Max Unit Test Conditions 1.8 — 25 — 2.5 — 26 — 3.3 — 27 — Power dissipation capacitance C PD 5.0 — 30 — pF f = 10 MHz
Rev.2.00 Jan. 14, 2005 page 6 of 7 Test Circuit VCCVCC See Function Table A Input Pulse Generator Z = 50out Ω C L R L Y0 to Y7B C G2A G2B Output Note: 1. C L includes probe and jig capacitance. Waveforms Input 10 % GND 90 % tr tf 90 % 10 % In phase output VOH VOL tPLH tPHL Out of phase output tPHL tPLH VOH VOL VIH Vref Vref Vref Vref VrefVref VCC (V) VIH Vref C L R Ltr/tf VCC VCC 1/2 VCC 1/2 VCC 1/2 VCCVCC INPUTS VCC = 1.8±0.15 V VCC = 2.5±0.2 V VCC = 3.3±0.3 V VCC = 5.0±0.5 V VCC = 2.7 V 2.7 V 1.5 V 1.0 kΩ 500 Ω 500 Ω 500 Ω 500 Ω 30 pF 30 pF 50 pF 50 pF 50 pF 1.5 V2.7 V ≤ 2 ns ≤ 2 ns ≤ 2.5 ns ≤ 2.5 ns ≤ 2.5 ns Note: 1. Input waveform: P RR = 10 MHz, duty cycle 50%
Rev.2.00 Jan. 14, 2005 page 7 of 7 Package Dimensions Package Code JEDEC JEITA Mass (reference value) FP-16DAV Conforms 0.24 g *Ni/Pd/Au plating *0.20 ± 0.05 *0.40 ± 0.06 0.12 0.15 M
2.20 Max
5.5 10.06
0.80 Max
10.5 Max
+ 0.20 – 0.307.80 0.70 ± 0.20 0˚ – 8˚ 0.10 ± 0.10 1.15 1.27 As of January, 2003 Unit: mm Package Code JEDEC JEITA Mass (reference value) TTP-16DAV 0.05 g *Ni/Pd/Au plating 0.50 ± 0.100˚ – 8˚ *0.15 ± 0.05 6.40 ± 0.20 0.10
1.10 Max
0.13 M 0.65 16 9 4.40 5.00
5.30 Max
0.07+0.03 –0.04
0.65 Max
1.0 *0.20 ± 0.05 As of January, 2003 Unit: mm
Keep safety first in your circuit designs! 1. Renesas Technology Corp. puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration to safety when making your circuit designs, with appropriate measures such as (i) placement of substitutive, auxiliary circuits, (ii) use of nonflammable material or (iii) prevention against any malfunction or mishap. Notes regarding these materials 1. These materials are intended as a reference to assist our customers in the selection of the Renesas Technology Corp. product best suited to the customer's application; they do not convey any license under any intellectual property rights, or any other rights, belonging to Renesas Technology Corp. or a third party. 2. Renesas Technology Corp. assumes no responsibility for any damage, or infringement of any third-party's rights, originating in the use of any product data, diagrams, charts, programs, algorithms, or circuit application examples contained in these materials. 3. All information contained in these materials, including product data, diagrams, charts, programs and algorithms represents information on products at the time of publication of these materials, and are subject to change by Renesas Technology Corp. without notice due to product improvements or other reasons. It is therefore recommended that customers contact Renesas Technology Corp. or an authorized Renesas Technology Corp. product distributor for the latest product information before purchasing a product listed herein. The information described here may contain technical inaccuracies or typographical errors. Renesas Technology Corp. assumes no responsibility for any damage, liability, or other loss rising from these inaccuracies or errors. Please also pay attention to information published by Renesas Technology Corp. by various means, including the Renesas Technology Corp. Semiconductor home page (http://www.renesas.com). 4. When using any or all of the information contained in these materials, including product data, diagrams, charts, programs, and algorithms, please be sure to evaluate all information as a total system before making a final decision on the applicability of the information and products. Renesas Technology Corp. assumes no responsibility for any damage, liability or other loss resulting from the information contained herein. 5. Renesas Technology Corp. semiconductors are not designed or manufactured for use in a device or system that is used under circumstances in which human life is potentially at stake. Please contact Renesas Technology Corp. or an authorized Renesas Technology Corp. product distributor when considering the use of a product contained herein for any specific purposes, such as apparatus or systems for transportation, vehicular, medical, aerospace, nuclear, or undersea repeater use. 6. The prior written approval of Renesas Technology Corp. is necessary to reprint or reproduce in whole or in part these materials. 7. If these products or technologies are subject to the Japanese export control restrictions, they must be exported under a license from the Japanese government and cannot be imported into a country other than the approved destination. Any diversion or reexport contrary to the export control laws and regulations of Japan and/or the country of destination is prohibited. 8. Please contact Renesas Technology Corp. for further details on these materials or the products contained therein. Sales Strategic Planning Div. Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan http://www.renesas.com Refer to "http://www.renesas.com/en/network" for the latest and detailed information. Renesas Technology America, Inc. 450 Holger Way, San Jose, CA 95134-1368, U.S.A Renesas Technology Europe Limited Dukes Meadow, Millboard Road, Bourne End, Buckinghamshire, SL8 5FH, U.K. Renesas Technology Hong Kong Ltd. 7th Floor, North Tower, World Finance Centre, Harbour City, 1 Canton Road, Tsimshatsui, Kowloon, Hong Kong Tel: <852> 2265-6688, Fax: <852> 2730-6071 Renesas Technology Taiwan Co., Ltd. 10th Floor, No.99, Fushing North Road, Taipei, Taiwan Renesas Technology (Shanghai) Co., Ltd. Unit2607 Ruijing Building, No.205 Maoming Road (S), Shanghai 200020, China Renesas Technology Singapore Pte. Ltd.
1 Harbour Front Avenue, #06-10, Keppel Bay Tower, Singapore 098632
Tel: <65> 6213-0200, Fax: <65> 6278-8001 RENESAS SALES OFFICES © 2005. Renesas Technology Corp., All rights reserved. Printed in Japan. Colophon .2.0