Claims
- 1. A carry propagating device comprising a group of first switching elements which are switch-controlled on a basis of a logic function performed on a plurality of digital signals, a group of second switching elements which are switch-controlled on a basis of a different logic function performed on said digital signals, a third switching element responding to a carry signal, a bipolar transistor, and first and second impedance elements, wherein:
- said bipolar transistor has a collector serving as an output terminal and is connected to a first power supply terminal, included in said device, through said first impedance element, an emitter connected to a second power supply terminal, included in said device, through said second impedance element, and a base connected to a fixed potential source;
- said first switching elements are connected in series to one another, the series connection of said first switching elements having one of two ends thereof connected to the emitter of said bipolar transistor and having the second of said two ends thereof connected to said second power supply terminal through said third switching element; and
- one of said second switching elements is connected in parallel to said second impedance element and each one of the remaining said second switching elements is connected between a common connection of a respective pair of adjacent ones of said first switching elements and said second power supply terminal.
- 2. A carry propagating device according to claim 1,
- wherein the groups of said first and second switching elements, said third switching element, said bipolar transistor and said first and second impedance elements are formed on one substrate; and
- wherein there are provided, on said substrate, digital signal lines which are divided into two groups depending on the magnitude of a voltage amplitude being applied thereto, the group of signal lines applied with a smaller one of voltage amplitudes are located between a pair of parallel-directioned power supply wiring lines, and the group of signal lines being applied with a second, larger voltage amplitude are located between adjacent groups of signal lines applied with the smaller voltage amplitude.
- 3. A carry propagating device according to claim 1,
- wherein the groups of said first and second switching elements, said third switching element, said bipolar transistor and said first and second impedance elements are formed on one substrate; and
- wherein there are provided, on said substrate, signal lines for digital transmission which are divided into two groups depending on the magnitude of a voltage amplitude being applied thereto, a wiring layer constituted by a group of signal lines applied with a smaller one of voltage amplitudes is interposed between a pair of wiring layers on which the power supply lines are wired, and another wiring layer constituted by a group of signal lines applied with a larger voltage amplitude is laminated on the layers, the wiring layer having power supply lines being disposed between wiring layers having a group of signal lines applied with the smaller voltage amplitude.
- 4. A carry propagating device comprising a group of first switching elements which are switch-controlled on a basis of an exclusive OR of a plurality of digital signals, a group of second switching elements which are switch-controlled on a basis of a logic AND of said digital signals, a third switching element responding to a carry signal, a bipolar transistor, and first and second impedance elements, wherein:
- said bipolar transistor has a collector serving as an output terminal and is connected to a first power supply terminal, included in said device, through said first impedance element, an emitter connected to a second power supply terminal, included in said device, through said second impedance element, and a base connected to a fixed potential source;
- said first switching elements are connected in series to one another, the series connection of said first switching elements having one of two ends thereof connected to the emitter of said bipolar transistor and having the second of said two ends thereof connected to said second power supply terminal through said third switching element; and
- one of said second switching elements is connected in parallel to said second impedance element and each one of the remaining said second switching elements is connected between a common connection of a respective pair of adjacent ones of said first switching elements and said second power supply terminal.
- 5. A carry propagating device comprising a group of first MOS transistors which are controlled on a basis of an exclusive OR of a plurality of digital signals, a group of second MOS transistors which are controlled on a basis of a logic AND of said digital signals, a third MOS transistor responding to a carry signal, a bipolar transistor, and first and second impedance elements, wherein:
- said bipolar transistor has a collector serving as an output terminal and is connected to a first power supply terminal, included in said device, through said first impedance element, an emitter connected to a second power supply terminal, included in said device, through said second impedance element and a base connected to a fixed potential source;
- said first MOS transistors are connected in series to one another, the series connection of said first MOS transistors having one of two ends thereof connected to the emitter of said bipolar transistor and having the second of said two ends thereof connected to said second power supply terminal through said third MOS transistor; and
- one of said second MOS transistors is connected in parallel to said second impedance element and each one of the remaining said second MOS transistors is connected between a common connection of a respective pair of adjacent ones of said first MOS transistors and said second power supply terminal.
- 6. A carry propagating device comprising a group of first MOS transistors which are controlled on a basis of an exclusive OR of a plurality of digital signals, a group of second MOS transistors which are controlled on a basis of a logic AND of said digital signals, a third MOS transistor responding to a carry signal, first and second bipolar transistors, and first, second, third and fourth impedance elements, wherein:
- said bipolar transistor has a collector serving as an output terminal and is connected to a first power supply terminal, included in said device, through said first impedance element, an emitter connected to a second power supply terminal, included in said device, through said second impedance element and a base connected to a base and a collector of said second bipolar transistor;
- said second bipolar transistor has the collector thereof connected to said first power supply terminal through said third impedance element and has an emitter connected to said second power supply terminal through said fourth impedance element, said first and second bipolar transistors constituting a current mirror circuit;
- said first MOS transistors are connected in series to one another, the series connection of said first MOS transistors having one of two ends thereof connected to the emitter of said first bipolar transistor and having the second of said two ends thereof connected to said second power supply terminal through said third MOS transistor; and
- one of said second MOS transistors is connected in parallel to said second impedance element, and each one of the remaining said second MOS transistors is connected between a common connection of a respective pair of adjacent ones of said first MOS transistors and said second power supply terminal.
- 7. A carry propagating device comprising a group of first MOS transistors which are controlled on a basis of a logic OR of a plurality of digital signals, a group of second MOS transistors which are controlled on a basis of a logic AND of said digital signals, a third MOS transistor responding to a carry signal, a bipolar transistor, first and second impedance elements; and a reference voltage generator, wherein:
- said bipolar transistor has a collector serving as an output terminal and is connected to a first power supply terminal, included in said device, through said first impedance element, an emitter connected to a second power supply terminal, included in said device, through said second impedance element, and a base to which a reference voltage is applied from said reference voltage generator;
- said first MOS transistors are connected in series to one another, the series connection of said first MOS transistors having one of two ends thereof connected to the emitter of said bipolar transistor and having the second of said two ends thereof connected to said second power supply terminal through said third MOS transistor; and
- one of said second MOS transistors is connected in parallel to said second impedance element, and each one of the remaining said second MOS transistors is connected between a common connection of a respective pair of adjacent ones of said first MOS transistors and said second power supply terminal.
- 8. A carry propagating device comprising a group of first MOS transistors which are controlled on a basis of an exclusive OR of a plurality of digital signals, a group of second MOS transistors which are controlled on a basis of a logic AND of said digital signals, a third MOS transistor responding to a carry signal, first and second bipolar transistors, first and second impedance elements, and a reference voltage generator for generating first and second reference voltages, wherein:
- said bipolar transistor has a collector serving as an output terminal and is connected to a first power supply terminal, included in said device, through said first impedance element, an emitter connected to a second power supply terminal, included in said device, through said second impedance element, and a base to which said first reference voltage is applied from said reference voltage generator;
- said second bipolar transistor has a collector-emitter current path connected in parallel to said first impedance element, and a base to which said second reference voltage is applied from said reference voltage generator;
- said first MOS transistors are connected in series to one another, the series connection of said first MOS transistors having one of two ends thereof connected to the emitter of said first bipolar transistor and having the second of said two ends thereof connected to said second power supply terminal through said third MOS transistor; and
- one of said second MOS transistors is connected in parallel to said second impedance element and each one of the remaining said second MOS transistors is connected between a common connection of a respective pair of adjacent ones of said first MOS transistors and said second power supply terminal.
- 9. A carry propagating device according to claim 8, wherein said reference voltage generator includes a series arrangement of diodes in which the forward voltage drop across two diodes thereof constitutes said first reference voltage and the forward voltage drop across three diodes thereof constitutes said second reference voltage.
- 10. A carry propagating device according to claim 9, wherein the series arranged diodes are comprised of a diode-connected bipolar transistor, respectively.
Priority Claims (2)
Number |
Date |
Country |
Kind |
3-065999 |
Mar 1991 |
JPX |
|
4-032211 |
Feb 1992 |
JPX |
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Parent Case Info
This is a continuation of application Ser. No. 07/860,442, filed Mar. 30, 1992, now U.S. Pat. No. 5,363,332.
US Referenced Citations (5)
Foreign Referenced Citations (3)
Number |
Date |
Country |
59-28726 |
Feb 1984 |
JPX |
61-20346 |
Jan 1986 |
JPX |
61-94529 |
Aug 1986 |
JPX |
Non-Patent Literature Citations (1)
Entry |
N. Weste, et al., "Principles", Chapter 8 CMOS Subsystem Design, pp. 320-325. |
Continuations (1)
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Number |
Date |
Country |
Parent |
860442 |
Mar 1992 |
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