Claims
- 1. An operational amplifier circuit comprising:
- an input stage configured to receive a differential input signal and providing a differential output, said input stage comprising:
- cascaded first and second emitter follower transistors and cascaded third and fourth emitter follower transistors, said input stage having a first input terminal connected to a base of said first emitter follower transistor, and having a second input terminal connected to a base of said third emitter follower transistor, wherein said first emitter follower transistor has an emitter coupled to a base of said second emitter follower transistor and said third emitter follower transistor has an emitter coupled to a base of said fourth emitter follower transistor; and
- cascaded fifth and sixth emitter follower transistors and cascaded seventh and eighth emitter follower transistors for developing a complementary differential output, wherein a base of said fifth emitter follower transistor is coupled to said first input terminal and wherein a base of said seventh emitter follower transistor is coupled to said second input terminal, said fifth emitter follower transistor having an emitter coupled to a base of said sixth emitter follower transistor, said seventh emitter follower transistor having an emitter coupled to a base of said eighth emitter follower transistor;
- a current mirror stage connected to a collector of said second emitter follower transistor and to a collector of said fourth emitter follower transistor so as to be coupled to receive said differential output of said input stage, and configured to a single-ended output;
- a complementary current mirror stage connected to a collector of said sixth emitter follower transistor and to a collector of said eighth emitter follower transistor so as to be coupled to receive said complementary differential output, and configured to produce a single-ended output; and
- means for commonly coupling said outputs of said current mirror and said complementary current mirror together to produce said single-ended output, wherein an emitter output terminal of said second emitter follower transistor is connected to an emitter output terminal of said sixth emitter follower transistor to form a first node, wherein an emitter output terminal of said fourth emitter follower transistor is connected to an emitter output terminal of said eighth emitter follower transistor to form a second node, said operational amplifier further comprising an impedance element coupled between said first node and said second node, said impedance element developing a current indicative of a potential difference applied between said first input terminal and said second input terminal of said circuit.
- 2. The operational amplifier circuit of claim 1 further comprising buffer amplifier means for receiving said single-ended output to provide an isolated circuit output.
- 3. The operational amplifier of claim 1 wherein said input stage and said current mirror stages include constant current elements, the conductivity of which determines the transconductance of said circuit.
- 4. The operational amplifier of claim 3 wherein said constant current elements are incorporated into a current mirror configuration in which a single constant current element determines the currents flowing in the individual constant current elements whereby said single constant current element determines said transconductance of said circuit.
- 5. The operational amplifier circuit of claim 4, wherein said circuit is fabricated in integrated circuit chip form and said single constant current element is an off chip element whereby the user of said circuit can program said transconductance.
Parent Case Info
This application is a continuation of application Ser. No. 08/010,379, filed Jan. 28, 1993, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1264302 |
Oct 1986 |
SUX |
Continuations (1)
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Number |
Date |
Country |
Parent |
10379 |
Jan 1993 |
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