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MC10H116 Datasheet(PDF) 1 Page - ON Semiconductor |
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MC10H116 Datasheet(HTML) 1 Page - ON Semiconductor |
1 / 4 page MOTOROLA SEMICONDUCTOR TECHNICAL DATA 2–219 REV 6 © Motorola, Inc. 1996 9/96 Triple Line Receiver The MC10H116 is a functional/pinout duplication of the MC10116, with 100% improvement in propagation delay and no increase in power– supply current. • Propagation Delay, 1.0 ns Typical • Power Dissipation 85 mW Typ/Pkg (same as MECL 10K) • Improved Noise Margin 150 mV (Over Operating Voltage and Temperature Range) • Voltage Compensated • MECL 10K–Compatible MAXIMUM RATINGS Characteristic Symbol Rating Unit Power Supply (VCC = 0) VEE –8.0 to 0 Vdc Input Voltage (VCC = 0) VI 0 to VEE Vdc Output Current — Continuous — Surge Iout 50 100 mA Operating Temperature Range TA 0 to +75 °C Storage Temperature Range — Plastic — Ceramic Tstg –55 to +150 –55 to +165 °C °C ELECTRICAL CHARACTERISTICS (VEE = –5.2 V ±5%) (2) 0 ° 25 ° 75 ° Characteristic Symbol Min Max Min Max Min Max Unit Power Supply Current IE — 23 — 21 — 23 mA Input Current High IinH — 150 — 95 — 95 µA Input Leakage Current ICBO — 1.5 — 1.0 — 1.0 µA Reference Voltage VBB –1.38 –1.27 –1.35 –1.25 –1.31 –1.19 Vdc High Output Voltage VOH –1.02 –0.84 –0.98 –0.81 –0.92 –0.735 Vdc Low Output Voltage VOL –1.95 –1.63 –1.95 –1.63 –1.95 –1.60 Vdc High Input Voltage (1) VIH –1.17 –0.84 –1.13 –0.81 –1.07 –0.735 Vdc Low Input Voltage (1) VIL –1.95 –1.48 –1.95 –1.48 –1.95 –1.45 Vdc Common Mode Range (3) VCMR — — –2.85 to –0.8 — — Vdc Input Sensitivity (4) VPP — — 150 typ — — mVPP AC PARAMETERS Propagation Delay tpd 0.4 1.3 0.4 1.3 0.45 1.45 ns Rise Time tr 0.5 1.5 0.5 1.6 0.5 1.7 ns Fall Time tf 0.5 1.5 0.5 1.6 0.5 1.7 ns NOTES: 1. When VBB is used as the reference voltage. 2. Each MECL 10H series circuit has been designed to meet the specifications shown in the test table, after thermal equilibrium has been established. The circuit is in a test socket or mounted on a printed circuit board and transverse air flow greater than 500 linear fpm is maintained. Outputs are terminated through a 50–ohm resistor to –2.0 volts. 3. Differential input not to exceed 1.0 Vdc. 4. 150 mVp–p differential input required to obtain full logic swing on output. MC10H116 LOGIC DIAGRAM DIP PIN ASSIGNMENT VCC1 AOUT AOUT AIN AIN BOUT BOUT VEE VCC2 COUT COUT CIN CIN VBB BIN BIN 16 15 14 13 12 11 10 9 1 2 3 4 5 6 7 8 5 4 11 3 2 10 9 7 6 13 12 15 14 *VBB to be used to supply bias to the MC10H116 only and bypassed (when used) with 0.01 µF to 0.1 µF capacitor to ground (0 V). VBB can source < 1.0 mA. The MC10H116 is designed to be used in sensing differential signals over long lines. The bias supply (VBB) is made available to make the device useful as a Schmitt trigger, or in other applications where a stable reference voltage is necessary. Active current sources provide these receivers with excellent common–mode noise rejection. If any amplifi- er in a package is not used, one input of that amplifier must be connected to VBB to prevent unbalancing the current–source bias network. The MC10H116 does not have internal–input pull- down resistors. This provides high impedance to the amplifier input and facilitates differential connections. Applications: • Low Level Receiver • Voltage Level • Schmitt Trigger Interface When input pin with bubble goes positive it’s respective output pin with bubble goes positive. VCC1 = Pin 1 VCC2 = Pin 16 VEE = Pin 8 VBB* L SUFFIX CERAMIC PACKAGE CASE 620–10 P SUFFIX PLASTIC PACKAGE CASE 648–08 D SUFFIX PLASTIC SOIC CASE 751B–05 FN SUFFIX PLCC CASE 775–02 Pin assignment is for Dual–in–Line Package. For PLCC pin assignment, see the Pin Conversion Tables on page 6–11 of the Motorola MECL Data Book (DL122/D). |
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