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XR-T3590 *%+ ) FEATURES # # # %) ,-. % / , , , & #,, - %' - 0 # # 1 # 1 %# , % - # - %2%-% # , 345 - % $- % / 678 , - %# # +0 1 # 1 %# , / #+ # # # 1- #+ %# -- # 9): GENERAL DESCRIPTION ) # / # % # +. , -,, %% # # 0 =-# , , $ #0 ) . # - %- %# , -# 1 # 1 1 +0 -# + 1 # 1 %# %%# # + # %# +0 %%# 4 0 # # # +0 #- # %# ,- + 0# +. . < & Table 1.' $ / %% ,2+. , # # + # - #/ %# $ / . ORDERING INFORMATION Part No. ) 65 ) 61 32%-% / # %; & %#' 32%-% / -% (%; & # ##' - -% #- - #/ %# APPLICATIONS 4# # - 3#% 1 7 &17' 3-2 91< # 1< =-% 6 3-2 ;0 =-# # + #+# # 1- #+ %# -- # # 9): #,, -- # , # %%# - - %# . # %%> -%+ , 2 =-# 1- / / =-# - %# , % . , - # %%># % # /-# =- 2 /0 , , % # # =- . ## / $ #- ## / - 6 # #- -%+ , 2 % /0 + -# > + # # % Package <# ( 3 5165 <# 3 @1 A6 Operating Temperature Range ) ? ) ? ! " # $% & ' (()! & ' (()!! XR-T3590 ? ! 6 B*1 8 A? A8 6? 68 A? A8 A 6 6? 68 ( A 6 ( A? A8 6? 68 ! ( ( ! A < < < ! Control Block Figure 1. XR*T3590 Block Diagram XR-T3590 PIN CONFIGURATIONS B*1 6 6 6 < < A A A < ( ! ! ( A? A) A? A) A? A) 6? 6) 6? 6) 6? 6) B*1 6 6 6 < < A A A < ( ! ! ( A? A) A? A) A? A) 6? 6) 6? 6) 6? 6) 24 Lead PDIP (0.600") 24 Lead SOIC (0.300") PIN DESCRIPTION Pin # ( ! ( ! Symbol B*1 6 6 6 < < A A A < 6) 6? 6) 6? 6) 6? A) A? A) A? A) A? 6 6 6 6 6 A A A 6 6 6 6 6 6 6 A A A A A A < < < < < < < < < Type Signal Description ? & ' ) & ' B-# % - % - % - 3# & Table 1 , #' 3# & Table 1 , #' -- -- -- 3# & Table 1 , #' - - - - - - % -- % -- % -- % -- % -- % -- XR-T3590 DC ELECTRICAL CHARACTERISTICS #C D +5.0V ? E D-5.0V ? E D 25C# # +# - / ,# & Figure 2. ' Symbol . A1. A 6A9 6A< 6A: A 9 9H 66* 6* A9 A< 6A 6A: 69 6< 66* 6 6 Parameter % 1,, A-- % %%)3# A-- % A-- 9 - % A-- - % A-- <0 - % A-- 6%# 1,, 6- # 6- 9. 6- - 6- 6%# 1,, A-- 9 A-- A-- )- - ) A-- - < 6- 9 < 6- < 6- - -. - -. - +2.5 ( 8 8 2 0.8 +10 50 *50 3 +10 0.8 +0.4 Min. 0.44 -0.3 -12.6 9.4 Typ. ) ? 150 Max. 0.66 +0.3 -9.4 12.6 ? Unit % % * " % % % " % * * % * % * $D 3+ AD ) G 6? 6)G ) G 6? 6)G 6A9D) % 6A 1+# G AG 6 <) 6 <) 6 <) A <## $D3+ A,, A A,, A? D ? A 8 D ? ; # #+# Conditions ) G AG? A D Notes 1 All currents flowing into the device pins are marked positive. All current flowing out of the device pins are marked negative. Bold face parameters are covered by production test and guaranteed over the operating temperature range. Italicized parameters are guaranteed over the full operating temperature range. Specifications are subject to change without notice XR-T3590 AC ELECTRICAL CHARACTERISTICS Test Conditions: D +5.0V ? E D-5.0V ? E D 25C # # +# - ) / ,# Symbol $ 5<9 59< A"; 5<9 59< 6"; :< :9 <: 9: Parameter % $ % % 6- A-- 5 1. % 6- A-- 5 1. % A-- A-- 0/ 6- A-- 5 1. &' 6- A-- 5 1. &,' 1,, 0/ &5<9 8 59<' + A-- + A-- 9 1+ A-- 1+ A-- 9 Min. Typ. ! 3 ! 2 ! ! 50 50 Max. 30 40 40 Unit AD AD AD AD AD AD AD Conditions Notes 1 All currents flowing into the device pins are marked positive. All current flowing out of the device pins are marked negative. Bold face parameters are covered by production test and guaranteed over the operating temperature range. Italicized parameters are guaranteed over the full operating temperature range. Specifications are subject to change without notice ABSOLUTE MAXIMUM RATINGS %- )( ? A %- ) ? -. ?! XR-T3590 SEL2 SEL1 SEL0 Drivers On Receivers On Description ,, 1 %# 1 %# / %# +0 1 %# 1 %# / %# +0 # Note: The driver and receiver outputs which are not on, are placed in Hi-Z state. Table 1. Function Table A7 36*6A* 6*57 36*6A* A? 6 A) $D1 A1 A 6? 6) A AD& A?? A)'I Figure 2. XR-T3590 Test Circuit ( XR-T3590 &A ?' 8 &A 8' 8 E E E 16$$D & A?' 8 & A8' E E $ E 5<9 ,D39>C GD C ,GD 59< 6 A 8 A ? A1 A"; I A1 A"; Figure 3. V.35 Transmitter Propagation Delays 6 &6?' 8 &68' 8 6 5<9 A 8 A757 59< ,D39>C GD C ,GD 6*57 Figure 4. V.35 Receiver Propagation Delays ! XR-T3590 Cable Termination $ #,, - # -- , ) %- + . %# =-% - ,- # , ,/ #% # % ,-C A7 36*6A* 6*57 36*6A* Figure 5. Proposed Source And Input Terminations Note: In order to implement the terminations proposed above, standard 1/8W surface mount or through hole 5% resistors can be used. Furthermore, appropriate resistor networks can be used as well. 1 8 &1 3A1' ( ! : H H H : : H 1 H 1 : 8 &1 3A1' : ( 1 1 1 ( Figure 6. Typical V.35 Clock And Data Configuration XR-T3590 8 &1 3A1' 1 ( ! 8 &1 3A1' 1 H 1 : H H : H : : H : ( 1 1 1 ( Figure 7. Typical V.35 Configuration During DCE Mirrored Loop Back 8 &1 3A1' 1 ( ! 8 &1 3A1' 1 H 1 : H H : H : : H : ( 1 1 1 ( Figure 8. Typical V.35 Configuration During DTE Mirrored Loop Back XR-T3590 ( * ( * A? A8 ! @ @ @ @ @ @( A56A*< 6*57 36*6A* " < < < ! ( ( $ 6 6 6 A A A $ 6* 6* 6* A7 A7 A7 A? A8 U1 XR*T3590 A? A8 6? 68 ( < ! < < 6? 68 ! ( ( * ( 6? 68 B*1 ! A$$ ? $ B*1 $ 8 @735 $A A56A* ;69A7 1 A$$ $ * Figure 9. XR-T3590 Demo Board XR-T3590 24 LEAD PLASTIC DUAL-IN-LINE (600 MIL PDIP) Rev. 1.00 E1 D E A2 C A1 Seating Plane A L B e B1 eA eB INCHES SYMBOL 4 4 1 4 < MIN ( ( MAX ! ! ( MILLIMETERS MIN ( ( !( MAX ( ! ( ! !! ! 4 4 !! 4 ( 4 ( ! Note: The control dimension is the inch column XR-T3590 24 LEAD SMALL OUTLINE (300 MIL JEDEC SOIC) Rev. 1.00 D E H C Seating Plane e B A1 L A INCHES SYMBOL 4 1 9 < MIN ( MAX ( MILLIMETERS MIN ! MAX ( ( !( ( ! 4 ! 4 Note: The control dimension is the millimeter column XR-T3590 Notes XR-T3590 Notes XR-T3590 Notes XR-T3590 *A6 %0 #- # -+ # %) # ,% +. -% +. , - , . - #) +# . -# . # %0 - , , ,% # #- . , - - # %. . ## - -J , ; ,% -+ + ,-. 0#K +. / -%# , - # %%# - , . , #- , - / ,- %,- , #- +. + 2# - ,- , , - .% ,. ,, ,. ,, 5#- -># , - - - / - , C &' 0 , L-. #% + %%>#K &+' - -% - 0K &' +. , #=-. # -# -%) . 1 *%+ #- / /- / , +# ( |
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