To our customers, Old Company Name in Catalogs and Other Documents On April 1st, 2010, NEC Electronics Corporation merged with Renesas Technology Corporation, and Renesas Electronics Corporation took over all the business of both companies. Therefore, although the old company name remains in this document, it is a valid Renesas Electronics document. We appreciate your understanding. Renesas Electronics website: http://www.renesas.com April 1st, 2010 Renesas Electronics Corporation Issued by: Renesas Electronics Corporation (http://www.renesas.com) Send any inquiries to http://www.renesas.com/inquiry. Notice 1. 2. 3. 4. 5. 6. 7. All information included in this document is current as of the date this document is issued. Such information, however, is subject to change without any prior notice. Before purchasing or using any Renesas Electronics products listed herein, please confirm the latest product information with a Renesas Electronics sales office. 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Renesas Electronics assumes no liability for damages or losses occurring as a result of your noncompliance with applicable laws and regulations. This document may not be reproduced or duplicated, in any form, in whole or in part, without prior written consent of Renesas Electronics. Please contact a Renesas Electronics sales office if you have any questions regarding the information contained in this document or Renesas Electronics products, or if you have any other inquiries. (Note 1) “Renesas Electronics” as used in this document means Renesas Electronics Corporation and also includes its majorityowned subsidiaries. (Note 2) “Renesas Electronics product(s)” means any product developed or manufactured by or for Renesas Electronics. HD74LV2G53A 2–channel Analog Multiplexer / Demultiplexer REJ03D0094–0400Z (Previous ADE-205-567C (Z)) Rev.4.00 Sep.25.2003 Description The HD74LV2G53A has 2–channel analog multiplexer / demultiplexer in an 8 pin package. Applications include signal gating, chopping, modulation, or demodulation (modem), and signal multiplexing for analog to digital and digital to analog conversion systems. Low voltage and high-speed operation is suitable for the battery powered products (e.g., notebook computers), and the low power consumption extends the battery life. Features • The basic gate function is lined up as Renesas uni logic series. • Supplied on emboss taping for high-speed automatic mounting. • Electrical characteristics equivalent to the HD74LV4053A Supply voltage range : 1.65 to 5.5 V Operating temperature range : –40 to +85°C • Control inputs VIH (Max.) = 5.5 V (@VCC = 0 V to 5.5 V) • Control inputs have hysteresis voltage for the slow transition. • Ordering Information Part Name Package Type Package Code Package Abbreviation Taping Abbreviation (Quantity) HD74LV2G53AUSE SSOP-8 pin TTP-8DBV US E (3,000 pcs/reel) Rev.4.00, Sep.25.2003, page 1 of 11 HD74LV2G53A Outline and Article Indication • HD74LV2G53A Index band Lot No. Y M W L 5 3 SSOP–8 Marking Function Table Control inputs On channel INH A H X None L H Y1 L L Y0 H : High level L : Low level X : Immaterial Rev.4.00, Sep.25.2003, page 2 of 11 Y : Year code (the last digit of year) M : Month code W : Week code HD74LV2G53A Pin Arrangement COM 1 INH 2 O GND 3 O GND 4 C C 8 VCC I 7 Y0 I 6 Y1 5 A (Top view) Absolute Maximum Ratings Item Symbol Ratings Unit Supply voltage range VCC –0.5 to 7.0 V Input voltage range *1 VI –0.5 to 7.0 V VO –0.5 to VCC + 0.5 V Output : H or L Input clamp current IIK –20 mA VI < 0 Output clamp current IOK ±50 mA VO < 0 or VO > VCC Continuous output current IO ±25 mA VO = 0 to VCC Continuous current through VCC or GND ICC or IGND ±50 mA Maximum power dissipation *3 at Ta = 25°C (in still air) PT 200 mW Storage temperature Tstg –65 to 150 °C Output voltage range Notes: *1, 2 Test Conditions 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. 1. The input and output voltage ratings may be exceeded if the input and output clamp-current ratings are observed. 2. This value is limited to 5.5 V maximum. 3. The maximum package power dissipation was calculated using a junction temperature of 150°C. Rev.4.00, Sep.25.2003, page 3 of 11 HD74LV2G53A Recommended Operating Conditions Item Symbol Min Max Unit Supply voltage range VCC 1.65 5.5 V Input voltage range VI 0 5.5 V Input / output voltage range VI/O 0 VCC V 0 300 ns / V 0 200 VCC = 2.3 to 2.7 V 0 100 VCC = 3.0 to 3.6 V 0 20 VCC = 4.5 to 5.5 V –40 85 Input transition rise or fall rate ∆t / ∆v Operating free-air temperature Ta Note: Unused or floating control inputs must be held high or low. Rev.4.00, Sep.25.2003, page 4 of 11 °C Conditions VCC = 1.65 to 1.95 V HD74LV2G53A Electrical Characteristic Item Symbol VCC (V) * Ta = 25°C Ta = –40 to 85°C Min Typ Max Min Input voltage VIH VIL Hysteresis voltage VH On-state switch RON resistance Peak on resistance Difference of on- state resistance between switches RON (P) ∆RON Typ Max 1.65 to 1.95 — — — VCC×0.75 — — 2.3 to 2.7 — — — VCC×0.7 — — 3.0 to 3.6 — — — VCC×0.7 — — 4.5 to 5.5 — — — VCC×0.7 — — 1.65 to 1.95 — — — — — VCC×0.25 2.3 to 2.7 — — — — — VCC×0.3 3.0 to 3.6 — — — — — VCC×0.3 VCC×0.3 4.5 to 5.5 — — — — — 1.8 — — — — 0.25 — 2.5 — — — — 0.30 — 3.3 — — — — 0.35 — 5.0 — — — — 0.45 — 1.65 — 120 360 — — 450 2.3 — 60 180 — — 225 3.0 — 50 150 — — 190 4.5 — 40 75 — — 100 1.65 — 400 1100 — — 1400 2.3 — 200 500 — — 600 3.0 — 90 180 — — 225 4.5 — 50 100 — — 125 1.65 — 40 120 — — 160 2.3 — 20 30 — — 40 3.0 — 10 20 — — 30 Unit Test Conditions V Control input only V VT+ – VT– Ω VIN = VCC or GND VINH = VIL IT = 2 mA Ω VIN = VCC to GND VINH = VIL IT = 2 mA Ω VIN = VCC to GND VINH = VIL IT = 2 mA 4.5 — 7 15 — — 20 Off-state switch Is (OFF) leakage current 5.5 — — ±0.1 — — ±1.0 µA VIN = VCC, VOUT = GND or VIN = GND, VO = VCC, VINH = VIH On-state switch Is (ON) leakage current 5.5 — — ±0.1 — — ±1.0 µA VIN = VCC or GND VINH = VIL Input current IIN 0 to 5.5 — — ±0.1 — — ±1.0 µA VIN = 5.5 V or GND Quiescent supply current ICC 5.5 — — — — — 10 µA VIN = VCC or GND Control input capacitance CIC — — 3.5 — — — — pF Switch terminal CIN / OUT — capacitance — 6.0 — — — — pF Feed through capacitance — 0.5 — — — — pF CIN–OUT — Rev.4.00, Sep.25.2003, page 5 of 11 HD74LV2G53A Switching Characteristics • VCC = 1.8 ± 0.15 V Item Symbol Ta = 25°C Ta = –40 to 85°C Min Typ Max Min Max Propagation delay time tPLH tPHL — 4.5 13.0 — 19.0 — 11.0 23.0 — 29.0 Enable time tZH tZL — 13.0 30.0 — 35.0 — 18.0 47.0 — 54.0 tHZ tLZ — 13.0 25.0 — 30.0 — 20.0 38.0 — 45.0 Disable time Unit Test FROM Conditions (Input) ns CL = 15 pF ns CL = 15 pF CL = 50 pF COM or Yn or Yn COM INH COM or Yn INH COM or Yn CL = 50 pF ns CL = 15 pF TO (Output) CL = 50 pF • VCC = 2.5 ± 0.2 V Item Symbol Ta = 25°C Ta = –40 to 85°C Min Typ Max Min Max Propagation delay time tPLH tPHL — 2.5 10.0 — 16.0 — 5.0 12.0 — 18.0 Enable time tZH tZL — 7.0 18.0 — 23.0 — 9.0 28.0 — 35.0 tHZ tLZ — 9.0 18.0 — 23.0 — 13.0 28.0 — 35.0 Disable time Unit Test FROM Conditions (Input) ns CL = 15 pF CL = 50 pF ns CL = 15 pF COM or Yn or Yn COM INH COM or Yn INH COM or Yn CL = 50 pF ns CL = 15 pF TO (Output) CL = 50 pF • VCC = 3.3 ± 0.3 V Item Symbol Ta = 25°C Ta = –40 to 85°C Min Typ Max Min Max Propagation delay time tPLH tPHL — 2.0 6.0 — 10.0 — 4.0 9.0 — 12.0 Enable time tZH tZL — 5.0 12.0 — 15.0 — 7.0 20.0 — 25.0 tHZ tLZ — 7.0 12.0 — 15.0 — 10.0 20.0 — 25.0 Disable time Rev.4.00, Sep.25.2003, page 6 of 11 Unit Test FROM Conditions (Input) ns CL = 15 pF CL = 50 pF ns CL = 15 pF COM or Yn or Yn COM INH COM or Yn INH COM or Yn CL = 50 pF ns CL = 15 pF CL = 50 pF TO (Output) HD74LV2G53A Switching Characteristics (cont) • VCC = 5.0 ± 0.5 V Item Symbol Ta = 25°C Ta = –40 to 85°C Min Typ Max Min Max Propagation delay time tPLH tPHL — 1.5 4.0 — 7.0 — 3.0 6.0 — 8.0 Enable time tZH tZL — 4.0 8.0 — 10.0 — 5.0 14.0 — 18.0 tHZ tLZ — 5.0 8.0 — 10.0 — 8.0 14.0 — 18.0 Disable time Unit Test FROM Conditions (Input) ns CL = 15 pF CL = 50 pF ns CL = 15 pF COM or Yn or Yn COM INH COM or Yn INH COM or Yn CL = 50 pF ns CL = 15 pF TO (Output) CL = 50 pF Operating Characteristics • CL = 50 pF Item Power dissipation capacitance Symbol CPD VCC (V) Ta = 25°C Min Typ Max 3.3 — 7.5 — 5.0 — 8.0 — Rev.4.00, Sep.25.2003, page 7 of 11 Unit Test Conditions pF f = 10 MHz HD74LV2G53A Test Circuit • R ON VCC VINH =VIL VCC VIN =VCC (ON) VOUT R ON = GND 2.0 mA + V VIN–OUT 2 × 10 -3 (Ω) – VIN–OUT • I S (off), I S (on) VCC VCC VINH =VIL VINH =VIH VCC A VIN =VCC or GND VCC A (OFF) GND Rev.4.00, Sep.25.2003, page 8 of 11 VOUT =GND or VCC VIN =VCC or GND (ON) GND VOUT OPEN HD74LV2G53A • t PLH ,t PHL VCC VINH =VIL tf tr VIN (ON) VOUT CL= 15 or 50 pF GND VCC 90% 90% 50% 50% VIN VCC 10% 10% t PHL t PLH VOUT 50% GND VOH 50% VOL Notes: 1. Input waveform : PRR ≤ 1 MHz, Zo = 50 Ω, tr ≤ 3 ns, tf ≤ 3 ns. 2. The output are measured one at a time with one transition per measurement. • t ZH ,t ZL / t HZ ,t LZ VCC VINH S1 VIN R L= 1kΩ VCC VOUT GND Item t ZH t ZL t HZ t LZ S1 VCC GND VCC GND CL=15 or 50 pF S2 GND VCC tf VINH S2 tr 90% 50% 10% t ZH R L= 1kΩ 10% 90% 50% GND t HZ VOH –0.3 V 50% VOUT VOH GND t ZL t LZ 50% VCC VOL +0.3 V GND VCC Notes: 1. Input waveform : PRR ≤ 1 MHz, Zo = 50 Ω, tr ≤ 3 ns, tf ≤ 3 ns. 2. Waveform – A is for an output with internal conditions such that the output is low except when disabled by the output control. 3. Waveform – B is for an output with internal conditions such that the output is high except when disabled by the output control. 4. The output are measured one at a time with one transition per measurement. Rev.4.00, Sep.25.2003, page 9 of 11 VCC VOL HD74LV2G53A • C IN/OUT , C IN–OUT CIN–OUT VINH = VIH VCC VCC (OFF) CIN/OUT Rev.4.00, Sep.25.2003, page 10 of 11 GND CIN/OUT HD74LV2G53A Package Dimensions 2.0 ± 0.2 1.5 ± 0.2 + 0.1 (0.17) 8 − 0.2 − 0.05 Package Code JEDEC JEITA Mass (reference value) Rev.4.00, Sep.25.2003, page 11 of 11 + 0.1 0.13 − 0.05 0 − 0.1 0.7 ± 0.1 (0.4) 2.3 ± 0.1 (0.5) (0.5) (0.5) 3.1 ± 0.3 (0.4) Unit: mm TTP–8DBV 0.010 g Sales Strategic Planning Div. Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan 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. 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