F100114 NSC | Alldatasheet

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: I S Nationa = Semiconductor * Quint Differential Line Receiver General Description The F100114 is a monolithic quint differential line receiver Active current sources provide common-mode rejection of with emitter-follower outputs. An internal reference supply _1.0V in either the positive or negative direction. A defined (Vp) is available for single-ended reception. When used in _ output state exists if both inverting and non-inverting inputs single-ended operation the apparent input threshold of the —_ are at the same potential between Veg and Vcc. The de- true inputs is 25 mV to 30 mV higher (positive) than the _ fined state is logic HIGH on the O,-O, outputs. threshold of the complementary inputs. Unlike other F100K —_ Refer to the F100314 datasheet for: ECL devices, the inputs do not have input pull-down resis- PCC packaging tors. Lower power Military versions Extended voltage specs (—4.2V to —5.7V) Ordering Code: see Sections Logic Symbol o, o [_PinNames | Description La Ly Da-De Data Inputs Da-De Inverting Data Inputs Dp Op Og-Oe Data Outputs Bp Op Oa-O6 Complementary Data Outputs De Oe De oe Dg Og Be 7 De Oe Ly LA D— vee TUF /0e81-3 Connection Diagrams 24-Pin DIP 24-Pin Quad Cerpak 3 | - wy, D Oe Vpa Vee By Dp 41 24-0, 5.42 23 by 24 23 22 21 20 19 os 2b dy Og! 18-0, ne 8 215, 04-42 177-0, Og-5 20f-0, 75 165 Og Yoo] 6 19 Vag B44 15h 0, Voca“]7 18 Vee O75 14-0, 0.48 17d, os 13F- Oy 0,49 16-0, 78 9 10112 at sho, A U Ott 14}=0, Og Od Vor Vera % % afiz ishot TUF/9841-2 TUF/s641—1 3-25

s S| Absolute Maximum Ratings © | Above which the useful life may be impaired (Note 1) It Miltary/Acrospace specitied devices are required Case Temperature under Bias (Tc) O°C to +85°C please contact the National ymiconductor les . _ Office/Distributors for availability and specifications. Vee Pin wotenvenre Ground Pin a to +0.5V Storage Temperature —65°C to + 150°C on vee a vice ee to +0.5V Maximum Junction Temperature (T,) +150°C uutput Current (DC Output HIGH) 50 mA Operating Range (Note 2) —5.7V to —4.2V Vee = ~4.5V, Voc = Voca = GND, To = 0°C to +85°C (Note 3) Symbol [Parameter [Min [Typ [Max [Units | Conditions (Note 4) Vou Output HIGH Voltage | -1025 | -955 [880 | oy | Yin =Vinimen Loading with Vou Output LOW Voltage | -1810 | ~1705 oF Vit (Min) S00 to ~2.0V Vouc Output HIGH Voltage [1095 fy Lin = Yin atiny Loading with Voc | OutputLowVottage | | =| — 1610 | OF Vit (man) 500 to = 2.0V Vee Output Reference Voltage | -1380 | -1920 | -1260 | mv | Iva = —250 yA Vin Single-Ended anes my | Guaranteed HIGH Signal for All Input HIGH Voltage Inputs (with one input tied to Vgg) Vit Single-Ended —1a75 | my | Guaranteed LOW Signal for All input LOW Voltage Inputs (with one input tied to Veg) Vee = —4.2V, Voc = Vooa = GND, To = 0°C to +85°C (Note 3) Symbol [Parameter [Min [| Typ | Max | Units | Conditions (Note 4) Vou Output HIGH Voltage | -1020 | | -870 | mv | VIN = Vin (Max) Loading with Vou. OutputLow Voltage | —te10 | | = 1605 | OF Vit (Min) 500 to = 2.0V Vouc Output HIGH Voltage | -1o90 [TC mv Vin = Vi (Min) Loading with Voie Output LOW Voltage ee ee ee Or Vit (Max) 50N to ~2.0V Vea Output Reference Voltage | —1396 | —1320 | —1244 vag = —250 wA Vin Single-Ended =4150 my | Guaranteed HIGH Signal for All Input HIGH Voltage Inputs (with one input tied to Vea) Viv Single-Ended 4475 | my | Guaranteed LOW Signal for All input LOW Voltage Inputs (with one input tied to Vea) Vee = —4.8V, Voc = Voca = GND, To = 0°C to +85°C (Note 3) Symbol | __Parameter_——|Min_ | Typ | Max | units | Conditions (Note 4) Vou Output HIGH Voltage 1035 | | 880 Ty | Vin = Vin (wan Loading with Vou Output LOW Voltage | -1830 | ——s«|- — 1620 or ViL (Min) 502 to ~2.0V Vous | OutputHiGHVottage | ~toas [Ty | Min = Vinny | Loading with Vou Output LOW Voltage rr a or Vit (Max) 50M to —2.0V Vea Output Reference Voltage =1320 | —1244 {yap = —250 pA Vin Single-Ended 1468 my | Guaranteed HIGH Signal for All Input HIGH Voltage Inputs (with one input tied to Ven) Vit Single-Ended 3490 | my | Guaranteed LOW Signal for All Input LOW Voltage Inputs (with one input tied to Vag) Note 1: Absolute maximum ratings are those values beyond which the device may be damaged or have its useful life impaired. Functional operation under these conditions is not implied. Note 2: Parametric values specified at ~4.2V to ~48. Note 3: The specified limits represent the “worst case" value for the parameter. Since these "worst case” values normally occur at the temperature extremes, additional noise immunity and guard banding can be achieved by decreasing the allowable system operating ranges. Note 4: Conditions for testing shown in the tables are chosen to guarantee operation under “worst case" conditions. 3-26

Vee = —4.2V to —4.8V unless otherwise specified, Vocg = Voca = GND, To = 0°C to +85°C z Voire Input Voltage Ditterential | 150 | | | sm_| _ Required for Full Output Swing Vom Common Mode Voltage Vv Permissible + Vom with Respect to Vag tig Input HIGH Current Vin = Vin (Max) Da~De = Ves, BA Da-De = Da-De = Vit (min) Icg0. Input Leakage Current Vin = Vee, Da-De = Ves, ~10 BA Ba Da-De = Vit (min) Ceramic Dual-In-Line Package AC Electrical Characteristics Vee = —4.2V to —4.8V, Vec = Voca = GND. 'PLH Propagation Delay oss 190 | 060 200 | o70 240 tPHL Data to Output ° ° . ” . 7 Figures 1 and 2 ttLH Transition Time tHe 20% to 80%, 80% to 20% | O55 1:90 045 «140 | ns Cerpak AC Electrical Characteristics Vee = —4.2V to —4.8V, Voc = Voca = GND corte | pam eae ae] O_o {PHL oa " Cote Figures 1 and 2 {TH transition Time tru 20% to 80%, 80% to 20% | oss 120 | 045 110 | 045 1.90 3-27