; Rev 0; 9/00 ± ± ± µ ± PART TEMP. RANGE PIN-PACKAGE MAX3080ECSD 0 C to +70 C 14 SO MAX3080ECPD 0 C to +70 C 14 Plastic DIP MAX3080EESD -40 C t
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1 19-1; ev ; 9/ ± ± µ ± PT TEMP. NGE PIN-PCKGE MX3ECS C to +7 C SO MX3ECP C to +7 C Plastic P MX3EES - C to + C SO MX3EEP - C to + C Plastic P Part Half/Full uplex ata ate (Mbps) Slew- ate Limited Low- Power Shutdown eceiver/ river Enable Quiescent Current (µ) Traceivers On us (µ) Pin Count Industry- Standard Pinout MX3E Full MX31E Full.11 No No MX3E Half MX33E Full MX3E Full. No No MX3E Half MX36E Full 1 No 6 71 MX37E Full 1 No No No MX3E Half 1 No MX39E Selectable Selectable Selectable 6 71* *Pin compatible with 71, with additional features implemented using pi 1, 6,, and 13. Maxim Integrated Products 1
2 SOLUTE MXIMUM TINGS Supply Voltage ( )...+7V Control Input Voltage (, )...-.3V to ( +.3V) Special Input Voltage (H/F, SL, TXP, XP)...-.3V to ( +.3V) river Input Voltage ()...-.3V to ( +.3V) river Output Voltage (,,, )...±13V eceiver Input Voltage (, )...±13V eceiver Input Voltage, Full uplex (, )...±V eceiver Output Voltage ()...-.3V to ( +.3V) Stresses beyond those listed under bsolute Maximum atings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditio beyond those indicated in the operational sectio of the specificatio is not implied. Exposure to absolute maximum rating conditio for extended periods may affect device reliability. C ELECTICL CHCTEISTICS Continuous Power issipation -Pin Plastic P (derate 9.9mW/ C above +7 C)...77mW -Pin SO (derate.mw/ C above +7 C)...71mW -Pin Plastic P (derate 1.mW/ C above +7 C)...mW -Pin SO (derate.33mw/ C above +7 C)...667mW Operating Temperature anges MX3_EC... C to +7 C MX3_EE...- C to + C Storage Temperature ange...-6 C to +1 C Lead Temperature (soldering, 1s)...+3 C ( = +V ±%, T = T MIN to T MX, unless otherwise noted. Typical values are at = +V and T = + C.) (Note 1) PMETE IVE ifferential river Output (No Load) ifferential river Output Change-in-Magnitude of ifferential Output Voltage (Note ) river Common-Mode Output Voltage Change-in-Magnitude of Common-Mode Voltage (Note ) Input High Voltage Input Low Voltage Input Hysteresis SL Input Current Input High Voltage Input Middle Voltage Input Low Voltage SL Input Current Input Current ( and ) Output Leakage ( and ) Full uplex river Short-Circuit Output Current (Note ) SMOL V O1 V O V O V OC V OC CONTIONS Figure, = Ω (S-). Figure, = 7Ω (S-) 1. Figure, = Ω or = 7Ω Figure, = Ω or = 7Ω Figure, = Ω or = 7Ω V IH1,,, H/F, TXP, XP. V V IL1,,, H/F, TXP, XP. V V HS MX3E MX3E, and MX39E with SL = or unconnected 1 mv I IN1,, ± I IN H/F, TXP, XP, internal pulldown 1 µ V IH SL -. V V IM SL (Note 3)..6 V V IL SL. V I IN3 SL = 7 SL = GN (Note 3) -7 µ I IN = GN, V IN = 1V 1 = GN or.v V IN = -7V -7 µ I O V O1 Figure = GN, = GN or.v V IN = 1V V IN = -7V -1-7V V OUT - V V OUT 1V V V OUT ± MIN TP MX UNITS V V V V V µ m
3 C ELECTICL CHCTEISTICS (continued) ( = +V ±%, T = T MIN to T MX, unless otherwise noted. Typical values are at = +V and T = + C.) (Note 1) CEIVE PMETE SMOL CONTIONS MIN TP MX UNITS eceiver ifferential Threshold Voltage eceiver Input Hysteresis V TH mv eceiver Output High Voltage V OH I O = -m, V I = -mv -1. V eceiver Output Low Voltage V OL I O = m, V I = -mv. V Three-State Output Current at eceiver I O.V V O.V ±1 µ eceiver Input esistance IN -7V V CM 1V 96 kω eceiver Output Short-Circuit Current SUPPL CUNT Supply Current Supply Current in Shutdown Mode V TH -7V V CM 1V mv I OS V V ±7 ±9 m I CC No load, = = GN or, SL = No load, = = GN or, SL = GN = = GN = = GN I SHN = GN, V =.1 1 µ ES Protection for,,, Human ody Model ±1 kv µ µ Note 1: ll currents into the device are positive; all currents out of the device are negative. ll voltages are referred to device ground unless otherwise noted. Note : V O and V OC are the changes in V O and V OC, respectively, when the input changes state. Note 3: The SL pin is internally biased to / by a 1kΩ/1kΩ resistor-divider. It is guaranteed to be / if left unconnected. Note : Maximum current level applies to peak current just prior to foldback-current limiting; minimum current level applies during current limiting. 3
4 SWITCHING CHCTEISTICSMX3E/MX31E/MX3E, and MX39E with SL = Unconnected ( = +V ±%, T = T MIN to T MX, unless otherwise noted. Typical values are at = +V and T = + C.) PMETE SMOL CONTIONS MIN TP MX UNITS t PLH Figures 7 and 9, river Input-to-Output FF = Ω, 3 6 t PHL C L1 = C L = 1pF 3 6 river Output Skew Figures 7 and 9, t FF = Ω, t PLH - t SKEW -3 ± PHL C L1 = C L = 1pF river ise or Fall Time t, t F Figures 7 and 9, FF = Ω, C L1 = C L = 1pF Maximum ata ate f MX 11 kbps river Enable to Output High t H Figures and 1, C L = 1pF, S closed 3 river Enable to Output Low t L Figures and 1, C L = 1pF, S1 closed 3 river isable Time from Low t L Figures and 1, C L = 1pF, S1 closed 1 river isable Time from High t H Figures and 1, C L = 1pF, S closed 1 eceiver Input to Output t PLH, Figures 11 and 13; V I.V; 17 t PHL rise and fall time of V I 1 t PLH - t PHL ifferential Figures 11 and 13; t V I.V; SK eceiver Skew rise and fall time of V I 1 3 ±3 eceiver Enable to Output Low t L Figures 6 and 1, C L = 1pF, S1 closed eceiver Enable to Output High t H Figures 6 and 1, C L = 1pF, S closed eceiver isable Time from Low t L Figures 6 and 1, C L = 1pF, S1 closed eceiver isable Time from High t H Figures 6 and 1, C L = 1pF, S closed Time to Shutdown t SHN (Note ) 6 river Enable from Shutdown to Output High river Enable from Shutdown to Output Low eceiver Enable from Shutdownto-Output High eceiver Enable from Shutdownto-Output Low t H(SHN) Figures and 1, C L = 1pF, S closed 6 t L(SHN) Figures and 1, C L = 1pF, S1 closed 6 t H(SHN) Figures 6 and 1, C L = 1pF, S closed 3 t L(SHN) Figures 6 and 1, C L = 1pF, S1 closed 3
5 SWITCHING CHCTEISTICSMX33E/MX3E/MX3E, and MX39E with SL = VCC ( = +V ±%, T = T MIN to T MX, unless otherwise noted. Typical values are at = +V and T = + C.) PMETE river Input-to-Output river Output Skew t PLH - t PHL Maximum ata ate river Enable to Output Low river isable Time from High eceiver Input to Output t PLH - t PHL ifferential eceiver Skew eceiver Enable to Output Low t L Figures 6 and 1, C L = 1pF, S1 closed eceiver Enable to Output High t H Figures 6 and 1, C L = 1pF, S closed eceiver isable Time from Low t L Figures 6 and 1, C L = 1pF, S1 closed eceiver isable Time from High SMOL CONTIONS MIN TP MX t PLH Figures 7 and 9, FF = Ω, 7 1 t PHL C L1 = C L = 1pF 7 1 t SKEW Figures 7 and 9, FF = Ω, C L1 = C L = 1pF -3 ±1 river ise or Fall Time t, t F Figures 7 and 9, FF = Ω, C L1 = C L = 1pF f MX river Enable to Output High t H Figures and 1, C L = 1pF, S closed t L river isable Time from Low t L Figures and 1, C L = 1pF, S1 closed 1 t H t PLH, t PHL t SK t H Figures and 1, C L = 1pF, S1 closed Figures and 1, C L = 1pF, S closed Figures 11 and 13; V I.V; rise and fall time of V I 1 Figures 11 and 13; V I.V; rise and fall time of V I 1 Figures 6 and 1, C L = 1pF, S closed ±3 Time to Shutdown t SHN (Note ) 6 river Enable from Shutdown-to-Output High t H(SHN) Figures and 1, C L = 1pF, S closed 1 UNITS kbps river Enable from Shutdown-to-Output Low eceiver Enable from Shutdown-to-Output High eceiver Enable from Shutdown-to-Output Low t L(SHN) Figures and 1, C L = 1pF, S1 closed t H(SHN) Figures 6 and 1, C L = 1pF, S closed 3 t L(SHN) Figures 6 and 1, C L = 1pF, S1 closed 3
6 SWITCHING CHCTEISTICSMX36E/MX37E/MX3E, and MX39E with SL = GN ( = +V ±%, T = T MIN to T MX, unless otherwise noted. Typical values are at = +V and T = + C.) PMETE river Input-to-Output river Output Skew t PLH - t PHL SMOL CONTIONS t PLH Figures 7 and 9, FF = Ω, t PHL C L1 = C L = 1pF t SKEW Figures 7 and 9, FF = Ω, C L1 = C L = 1pF river ise or Fall Time t, t F Figures 7 and 9, FF = Ω, C L1 = C L = 1pF MIN TP MX ±1 UNITS Maximum ata ate f MX 1 Mbps river Enable to Output High t H Figures and 1, C L = 1pF, S closed 1 river Enable to Output Low t L Figures and 1, C L = 1pF, S1 closed 1 river isable Time from Low t L Figures and 1, C L = 1pF, S1 closed 1 river isable Time from High t H Figures and 1, C L = 1pF, S closed 1 eceiver Input-to-Output t PLH - t PHL ifferential eceiver Skew eceiver Enable to Output Low eceiver Enable to Output High eceiver isable Time from Low t PLH, t PHL Figures 11 and 13; V I.V; rise and fall time of V I Figures 11 and 13; V I.V; rise and fall time of V I 1 ±1 t L Figures 6 and 1, C L = 1pF, S1 closed t H Figures 6 and 1, C L = 1pF, S closed Figures 6 and 1, C L = 1pF, S1 closed t SK t L eceiver isable Time from High t H Figures 6 and 1, C L = 1pF, S closed Time to Shutdown t SHN (Note ) 6 river Enable from Shutdown-to-Output High t H(SHN) Figures and 1, C L = 1pF, S closed river Enable from Shutdown-to-Output Low t L(SHN) Figures and 1, C L = 1pF, S1 closed eceiver Enable from Shutdown-to-Output High t H(SHN) Figures 6 and 1, C L = 1pF, S closed 3 eceiver Enable from Shutdown-to-Output Low t L(SHN) Figures 6 and 1, C L = 1pF, S1 closed 3 Note : The device is put into shutdown by bringing high and low. If the enable inputs are in this state for less than, the device is guaranteed not to enter shutdown. If the enable inputs are in this state for at least 6, the device is guaranteed to have entered shutdown. 6
7 ( = +V, T = + C, unless otherwise noted.) NO-LO SUPPL CUNT (µ) SHUTOWN CUNT (n) NO-LO SUPPL CUNT vs. TEMPETU : MX36E/MX37E/MX3E, MX39E WITH SL = GN = : MX3E MX3E, MX39E WITH SL = OPEN O TEMPETU ( C) SHUTOWN CUNT vs. TEMPETU = GN TEMPETU ( C) MX3/39 TOC-16 MX3/39 TOC-1 OUTPUT CUNT (m) OUTPUT LOW VOLTGE (V) OUTPUT CUNT vs. CEIVE OUTPUT LOW VOLTGE 1 3 OUTPUT LOW VOLTGE (V) CEIVE OUTPUT LOW VOLTGE vs. TEMPETU I = m TEMPETU ( C) MX3/39 TOC- MX3/39 TOC- OUTPUT CUNT (m) OUTPUT VOLTGE (V) OUTPUT CUNT vs. CEIVE OUTPUT HIGH VOLTGE 1 3 OUTPUT HIGH VOLTGE (V) CEIVE OUTPUT HIGH VOLTGE vs. TEMPETU I = m TEMPETU ( C) MX3/39 TOC-3 MX3/39 TOC- PPGTION L () CEIVE PPGTION L (kbps MO) vs. TEMPETU C LO = 1pF MX3/39 TOC-7 PPGTION L () CEIVE PPGTION L (1Mbps MO) vs. TEMPETU C LO = 1pF MX3/39 TOC- PPGTION L (µs) IVE PPGTION L (11kbps MO) vs. TEMPETU t = Ω MX3/39 TOC TEMPETU ( C) TEMPETU ( C) TEMPETU ( C) 7
8 ( = +V, T = + C, unless otherwise noted.) PPGTION L () OUTPUT CUNT (m) IVE PPGTION L (kbps MO) vs. TEMPETU t = Ω TEMPETU ( C) IVE OUTPUT CUNT vs. FFENTIL OUTPUT VOLTGE 1 3 FFENTIL OUTPUT VOLTGE (V) MX3/39 TOC-1 MX3 TOC-1 PPGTION L () OUTPUT CUNT (m) IVE PPGTION L (1Mbps MO) vs. TEMPETU t = Ω TEMPETU ( C) OUTPUT CUNT vs. IVE OUTPUT LOW VOLTGE OUTPUT LOW VOLTGE (V) MX3/39 TOC-11 MX3- OUTPUT VOLTGE (V) OUTPUT CUNT (m) IVE FFENTIL OUTPUT VOLTGE vs. TEMPETU TEMPETU ( C) OUTPUT HIGH VOLTGE (V) t = Ω OUTPUT CUNT vs. IVE OUTPUT HIGH VOLTGE 6 MX3/39 TOC-13 MX3/39 TOC-7
9 (T = + C, unless otherwise noted.) V - V CEIVE PPGTION L MX36E/MX37E/MX3E N MX39E WITH SL = GN /div MX3/39 TP-1 V/div V/div V - V IVE PPGTION L MX3E/MX31E/MX3E N MX39E WITH SL = OPEN MX3/39 TP- CEIVE PPGTION L MX3E MX3E N MX39E WITH SL = OPEN O /div MX3/39 TP-17 V/div V/div V/div V - V.V/div µs/div IVE PPGTION L MX33E/MX3E/MX3E N MX39E WITH SL = MX3/39 TP-1 IVE PPGTION L MX36E/MX37E/MX3E N MX39E WITH SL = GN MX3/39 TP- V/div V/div V - V.V/div V - V.V/div /div /div 9
10 MX3E MX33E MX36E MX31E MX3E MX37E 3 3 MX3E MX3E MX3E MX39E 1 3 NME H/F F 6 6 SL 6, GN TXP * * * 7 1
11 MX3E MX33E MX36E 1 1,, 13 MX31E MX3E MX37E 1 MX3E MX3E MX3E MX39E 1 13 XP N.C. * * MX3E/MX33E/MX36E INPUTS TNSMITTING OUTPUTS X X 1 1 X High- High- 1 X Shutdown INPUTS CEIVING OUTPUT - X -.V 1 X -.V X Open/shorted X High- 1 X Shutdown MX31E/MX3E/MX37E INPUT TNSMITTING OUTPUTS INPUTS - CEIVING OUTPUT -.V 1 -.V Open/shorted 1 11
12 MX3E/MX3E/MX3E INPUTS TNSMITTING OUTPUTS / / X X 1 1 X High- High- 1 X Shutdown INPUTS CEIVING OUTPUT - X -.V 1 X -.V X Open/shorted X High- 1 X Shutdown MX39E INPUTS TNSMITTING OUTPUTS TXP X X X X 1 1 X X High- High- X 1 X Shutdown INPUTS OUTPUT H/F XP - - X -.V X 1 X -.V X 1 X -.V X 1 X -.V X 1 1 X -.V 1 1 X -.V 1 1 X -.V 1 1 X -.V 1 X CEIVING Open/ shorted X 1 1 X Open/ shorted 1 1 X Open/ shorted X 1 1 X Open/ shorted X X 1 1 X X High- X X 1 X X Shutdown 1
13 TOP VIEW TOP VIEW N.C. GN GN P/SO N.C. N.C. 3 1,, 13 NC , 7 GN 6.1µF t.1µf MX3E MX33E MX36E MX31E MX3E MX37E t t GN 7 GN t P/SO GN GN TOP VIEW GN t 6 GN.1µF MX3E MX3E MX3E t P/SO NOTE: PIN LELS N ON TIMING, TEST, N WVEFOM GMS. FE TO PINS N WHEN IS HIGH. 13
14 ± F ± ±
15 TOP VIEW H/F 1 3 SL 6 GN 7 MX39E P/SO XP TXP XP H/F TXP MX39E NOTE: SWITCH POSITIONS INCTE FO H/F = GN GN SL V O TEST POINT CEIVE OUTPUT C L 1pF 1k S1 1k V OC S ± Ω 1
16 3V V O C L1 FF C L V 1.V t PLH t PHL 1.V 1/ V O OUTPUT UN TEST C L Ω V 1.V 1.V S1 S V O, V OL t L(SHN), t L t L.3V OUTPUT NOMLL LOW V OL +.V V FF V O -V O 1/ V O t 1% V FF = V () - V () 9% 9% t F t SKEW = t PLH - t PHL 1%, OUTPUT NOMLL HIGH.3V t H(SHN), t H t H V OH -.V V 1.V 1.V V OH V OL 1V -1V 1.V OUTPUT 1.V t PHL t PLH INPUT t L(SHN), t L t L 1.V OUTPUT NOMLL LOW OUTPUT NOMLL HIGH V OL +.V 1.V V OH -.V t H(SHN), t H t H 16
17 TE V I I P 1% 9% Ir CEIVE OUTPUT PEK-TO-PEK INGING (NOT WN TO SCLE) HIGH- VOLTGE C SOUCE C 1MΩ CHGE-CUNT LIMIT SISTO Cs 1pF 1Ω SCHGE SISTNCE STOGE CPCITO VICE UN TEST MX3/39 FIG- MPES 36.% d/div 1% t L TIME t L CUNT WVEFOM Hz 1kHz/div 1MHz MX3/39 FIG-1 MX3/39 FIG-16 d/div d/div Hz 1kHz/div 1MHz Hz 1kHz/div 1MHz 17
18 MX3E/MX31E/MX33E/ MX3E/MX36E/MX37E/ MX39E (FULL UPLEX) 1Ω 1Ω T IN T OUT NOTE: N ON MX3E/MX33E/MX36E/MX39E ONL. Ω Ω V - V µs/div MX3/39 FIG-1 V/div 1V/div V/div = t ISE / (1 x 1./ft) 1
19 V - V µs/div MX3/39 FIG-19 V/div 1V/div V/div 1Ω V - V 1µs/div MX3/39 FIG- V/div 1V/div V/div 1Ω MX3E MX3E MX3E MX39E (HLF-UPLEX) Ω 19
20 1Ω 1Ω NOTE: N ON MX3E/MX33E/MX36E/MX39E ONL. 1Ω 1Ω MX3E MX31E MX33E MX3E MX36E MX37E MX39E (FULL-UPLEX) PT MX31ECS MX31ECP MX31EES MX31EEP MX3ECS MX3ECP MX3EES MX3EEP MX33ECS MX33ECP MX33EES MX33EEP MX3ECS MX3ECP MX3EES MX3EEP MX3ECS MX3ECP MX3EES MX3EEP TEMP. NGE C to +7 C C to +7 C - C to + C - C to + C C to +7 C C to +7 C - C to + C - C to + C C to +7 C C to +7 C - C to + C - C to + C C to +7 C C to +7 C - C to + C - C to + C C to +7 C C to +7 C - C to + C - C to + C PIN-PCKGE SO Plastic P SO Plastic P SO Plastic P SO Plastic P SO Plastic P SO Plastic P SO Plastic P SO Plastic P SO Plastic P SO Plastic P PT TEMP. NGE PIN-PCKGE MX36ECS C to +7 C SO MX36ECP C to +7 C Plastic P MX36EES - C to + C SO MX36EEP - C to + C Plastic P MX37ECS C to +7 C SO MX37ECP C to +7 C Plastic P MX37EES - C to + C SO MX37EEP - C to + C Plastic P MX3ECS C to +7 C SO MX3ECP C to +7 C Plastic P MX3EES - C to + C SO MX3EEP - C to + C Plastic P MX39ECS C to +7 C SO MX39ECP C to +7 C Plastic P MX39EES - C to + C SO MX39EEP - C to + C Plastic P Maxim Integrated Products, 1 San Gabriel rive, Sunnyvale, C Maxim Integrated Products is a registered trademark of Maxim Integrated Products.
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