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1 DatasheetArchive.com Request For Quotation Order the parts you need from our real-time inventory database. Simply complete a request for quotation form with your part information and a sales representative will respond to you with price and availability. Request For Quotation Your free datasheet starts on the next page. More datasheets and data books are available from our homepage: This datasheet has been downloaded from
2 Order this document by /D The monolithic quad line receivers are designed to interface data terminal equipment with data communications equipment in conformance with the specifications of EIA Standard No. EIA22D. Input Resistance. k to 7. kω Input Signal Range ± V Input Threshold Hysteresis Built In Control a) Logic Threshold Shifting b) Input Noise Filtering QUAD MDTL LINE RECEIVERS EIA22D SEMICONDUCTOR TECHNICAL DATA P SUFFIX CASE 646 Device ORDERING INFORMATION Operating Temperature Range Package D SUFFIX CASE 7A (SO4) P, AP D, AD TA = to + 7 C Plastic SO4 PIN CONNECTIONS Line Driver MC488 Simplified Application Interconnecting Cable Line Receiver Input A Control A Output A Input D Control D Input B 4 Output D Control B Input C Output B 6 9 Control C MDTL Logic Input Interconnecting Cable MDTL Logic Output Ground 7 8 Output C Representative Schematic Diagram (/4 of Circuit Shown) 4 9. k. k.7 k Control 2 R F Output Input.8 k A k R F 6.7 kω.6 kω 7 GND Motorola, Inc. 99 MOTOROLA ANALOG IC DEVICE DATA
3 , A MAXIMUM RATINGS (TA = + 2 C, unless otherwise noted) Rating Symbol Value Unit Power Supply Voltage VCC Vdc Input Voltage Range VIR ± Vdc Output Load Current IL 2 ma Power Dissipation (Package Limitation, SO4 and Plastic Dual InLine Package) Derate above TA = + 2 C PD /θja 6.7 mw mw/ C Operating Ambient Temperature Range TA to + 7 C Storage Temperature Range Tstg 6 to + 7 C ELECTRICAL CHARACTERISTICS ( control pin is open.) (VCC = +. Vdc ± %, TA = to + 7 C, unless otherwise noted) Positive Input Current Negative Input Current Input TurnOn Threshold Voltage (TA = + 2 C, VOL.4 V) Input TurnOff Threshold Voltage (TA = + 2 C, VOH 2. V, IL =. ma) Output Voltage High Characteristics Symbol Min Typ Max Unit (VIH = + 2 Vdc) (VIH = +. Vdc) (VIH = 2 Vdc) (VIH =. Vdc) A A (VIH =.7 V, IL =. ma) (Input Open Circuit, IL =. ma) IIH.6.4 IIL.6.4 VIH VIL VOH Output Voltage Low (VIL =. V, IL = ma) VOL.2.4 Vdc Output ShortCircuit Current IOS. 4. ma Power Supply Current (All Gates on, Iout = ma, VIH = +. Vdc) ICC 6 26 ma Power Consumption (VIH = +. Vdc) PC 8 mw SWITCHING CHARACTERISTICS (VCC =. Vdc ± %, TA = + 2 C, See Figure.) Propagation Delay Time (RL =.9 kω) tplh 2 8 ns Rise Time (RL =.9 kω) ttlh 2 7 ns Propagation Delay Time (RL = 9 kω) tphl 2 ns Fall Time (RL = 9 kω) tthl 2 ns ma ma Vdc Vdc Vdc TEST CIRCUITS Figure. Switching Figure 2. Control Node. Vdc R L V R All diodes N64 or equivalent R E in E o. V C L C E in E O % % t PLH t TLH and t THL measured % 9% V in /4 A Node V O t THL. V. V t TLH C, capacitor is for noise filtering. R, resistor is for threshold shifting. C L = pf = total parasitic capacitance which includes probe and wiring capacitances 2 MOTOROLA ANALOG IC DEVICE DATA
4 , A TYPICAL CHARACTERISTICS (VCC =. Vdc, TA = +2 C, unless otherwise noted) I, INPUT CURRENT (ma) L Figure. Input Current II VI Vin, INPUT VOLTAGE (V) V O, OUTPUT VOLTAGE (Vdc) k. V Figure 4. Input Threshold Voltage Adjustment 2.. k. V VILH VIHL. k. V 2.. VI, INPUT VOLTAGE (V) VI EO V O, OUTPUT VOLTAGE (Vdc) k. V Figure. A Input Threshold Voltage Adjustment 2.. VILH VIHL k. V VI, INPUT VOLTAGE (V) Vin EO V IH, INPUT THRESHOLD VOLTAGE (Vdc) Figure 6. Input Threshold Voltage versus Temperature VIL T, TEMPERATURE ( C) A VIH VIH + 6 A VIL + 2 INPUT THRESHOLD VOLTAGE (Vdc) 2... Figure 7. Input Threshold versus Power Supply Voltage VIH A VIH VIL VIL A VCC, POWER SUPPLY VOLTAGE (V) MOTOROLA ANALOG IC DEVICE DATA
5 , A APPLICATIONS INFORMATION General Information The Electronic Industries Association (EIA) has released the EIA22D specification detailing the requirements for the interface between data processing equipment and data communications equipment. This standard specifies not only the number and type of interface leads, but also the voltage levels to be used. The MC488 quad driver and its companion circuit, the quad receiver, provide a complete interface system between DTL or TTL logic levels and the EIA22D defined levels. The EIA22D requirements as applied to receivers are discussed herein. The required input impedance is defined as between Ω and 7 Ω for input voltages between. and 2 V in magnitude; and any voltage on the receiver input in an open circuit condition must be less than 2. V in magnitude. The circuits meet these requirements with a maximum open circuit voltage of one VBE. The receiver shall detect a voltage between. and 2 V as a Logic and inputs between. and 2 V as a Logic. On some interchange leads, an open circuit of power OFF condition ( Ω or more to ground) shall be decoded as an OFF condition or Logic. For this reason, the input hysteresis thresholds of the circuits are all above ground. Thus an open or grounded input will cause the same output as a negative or Logic input. Device Characteristics The interface receivers have internal feedback from the second stage to the input stage providing input hysteresis for noise rejection. The input has typical turnon voltage of.2 V and turnoff of. V for a typical hysteresis of 2 mv. The A has typical turnon of.9 V and turnoff of.8 V for typically. V of hysteresis. Each receiver section has an external response control node in addition to the input and output pins, thereby allowing the designer to vary the input threshold voltage levels. A resistor can be connected between this node and an external power supply. Figures 2, 4 and illustrate the input threshold voltage shift possible through this technique. This response node can also be used for the filtering of high frequency, high energy noise pulses. Figures 8 and 9 show typical noise pulse rejection for external capacitors of various sizes. These two operations on the response node can be combined or used individually for many combinations of interfacing applications. The circuits are particularly useful for interfacing between MOS circuits and MDTL/MTTL logic systems. In this application, the input threshold voltages are adjusted (with the appropriate supply and resistor values) to fall in the center of the MOS voltage logic levels (see Figure ). The response node may also be used as the receiver input as long as the designer realizes that he may not drive this node with a low impedance source to a voltage greater than one diode above ground or less than one diode below ground. This feature is demonstrated in Figure where two receivers are slaved to the same line that must still meet the EIA22D impedance requirement. E in, AMPLITUDE (V) Figure 8. Typical Turn On Threshold versus Capacitance from Control Pin to GND pf pf pf pf E in, AMPLITUDE (V) Figure 9. Typical Turn On Threshold versus Capacitance from Control Pin to GND 6 A pf pf pf pf PW, INPUT PULSE WIDTH (ns), PW, INPUT PULSE WIDTH (ns), 4 MOTOROLA ANALOG IC DEVICE DATA
6 , A Figure. Typical Translator Application MOS to DTL or TTL +. Vdc R MOS Logic DTL or TTL V GG V DD +. Vdc +. Vdc Figure. Typical Paralleling of Two, A Receivers to Meet EIA22D Input Control Pin 8. k /2 Output Input 8. k Output Control Pin MOTOROLA ANALOG IC DEVICE DATA
7 , A OUTLINE DIMENSIONS B P SUFFIX CASE 6466 ISSUE L NOTES:. LEADS WITHIN. (.) RADIUS OF TRUE POSITION AT SEATING PLANE AT MAXIMUM MATERIAL CONDITION. 2. DIMENSION L TO CENTER OF LEADS WHEN FORMED PARALLEL.. DIMENSION B DOES NOT INCLUDE MOLD FLASH. 4. ROUNDED CORNERS OPTIONAL. A F H G D N SEATING PLANE C K L M J INCHES MILLIMETERS DIM MIN MAX MIN MAX A B C D F G. BSC 2.4 BSC H J K L. BSC 7.62 BSC M N A B P 7 PL D SUFFIX CASE 7A (SO4) ISSUE F.2 (.) M B M NOTES:. DIMENSIONING AND TOLERANCING PER ANSI Y4.M, CONTROLLING DIMENSION: MILLIMETER.. DIMENSIONS A AND B DO NOT INCLUDE MOLD PROTRUSION. 4. MAXIMUM MOLD PROTRUSION. (.6) PER SIDE.. DIMENSION D DOES NOT INCLUDE DAMBAR PROTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL BE.27 (.) TOTAL IN EXCESS OF THE D DIMENSION AT MAXIMUM MATERIAL CONDITION. T SEATING PLANE G D 4 PL K C.2 (.) M T B S A S R X 4 M J F MILLIMETERS INCHES DIM MIN MAX MIN MAX A B C D F G.27 BSC. BSC J K M 7 7 P R Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. Typical parameters can and do vary in different applications. All operating parameters, including Typicals must be validated for each customer application by customer s technical experts. Motorola does not convey any license under its patent rights nor the rights of others. Motorola products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury or death may occur. Should Buyer purchase or use Motorola products for any such unintended or unauthorized application, Buyer shall indemnify and hold Motorola and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that Motorola was negligent regarding the design or manufacture of the part. Motorola and are registered trademarks of Motorola, Inc. Motorola, Inc. is an Equal Opportunity/Affirmative Action Employer. How to reach us: USA / EUROPE: Motorola Literature Distribution; JAPAN: Nippon Motorola Ltd.; TatsumiSPDJLDC, Toshikatsu Otsuki, P.O. Box 292; Phoenix, Arizona F SeibuButsuryuCenter, 42 Tatsumi KotoKu, Tokyo, Japan. 28 MFAX: RMFAX@ .sps.mot.com TOUCHTONE (62) HONG KONG: Motorola Semiconductors H.K. Ltd.; 8B Tai Ping Industrial Park, INTERNET: Ting Kok Road, Tai Po, N.T., Hong Kong MOTOROLA ANALOG IC DEVICE /D DATA
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