1461153471-f260206c-8829-4fc0-b472-db6d3c43a6f4

1. A circuit for audio amplification, comprising:
an input differential pair including a first bipolar transistor having at least a base, a collector, and an emitter; and a second bipolar transistor having at least a base, a collector, and an emitter;
a bias current duplicator transistor having at least a base, a collector, and an emitter;
a plurality of translinear elements that are arranged such that a voltage between the collector and the emitter of the bias current duplicator transistor is substantially the same as a voltage between the collector and the emitter of the first bipolar transistor; and
a current mirror having at least an input that is coupled to the base of the bias current duplicator transistor, a first output that is coupled to the base of the first bipolar transistor, and a second output that is coupled to the base of the second bipolar transistor, wherein
the plurality of translinear elements include:
N translinear elements arranged to provide N diode drops down from the emitter of the first transistor to a first node;
N translinear elements arranged to provide N diode drops up from the first node to the emitter of the bias current duplicator transistor;
M translinear elements arranged to provide M diode drops down from the collector of the first transistor to a second node; and
M translinear elements arranged to provide M diode drops up from the second node to the collector of the bias current duplicator transistor.
2. The circuit of claim 1, wherein each of the translinear elements is at least one of a diode, a base-emitter junction of a bipolar transistor, or a gate-source junction of a field effect transistor.
3. The circuit of claim 1, wherein the input differential pair is arranged to source a bias current at the base of the first and second transistors, and wherein the current mirror is arranged to sink a duplicate bias current at the base of the first and second transistor, wherein the duplicate bias current is substantially equal to the bias current, whereby the bias current is substantially cancelled.
4. The circuit of claim 1, wherein the input differential pair is arranged to sink a bias current at the base of the first and second transistors, and wherein the current mirror is arranged to source a duplicate bias current at the base of the first and second transistor, wherein the duplicate bias current is substantially equal to the bias current.
5. The circuit of claim 1, further comprising:
a current source that is arranged to provide a first emitter current to a common emitter of the input differential pair; and
a duplicate current source that is arranged to provide a second emitter current to the emitter of the bias current duplicator transistor such that the second emitter current is about half of the first emitter current.
6. The circuit of claim 1, further comprising an audio operational amplifier, wherein the input differential pair is a first stage of the audio operational amplifier.
7. A circuit for audio amplification, comprising:
an input differential pair including a first bipolar transistor having at least a base, a collector, and an emitter; and a second bipolar transistor having at least a base, a collector, and an emitter;
a bias current duplicator transistor having at least a base, a collector, and an emitter;
a plurality of translinear elements that are arranged such that a voltage between the collector and the emitter of the bias current duplicator transistor is substantially the same as a voltage between the collector and the emitter of the first bipolar transistor; and
a current mirror having at least an input that is coupled to the base of the bias current duplicator transistor, a first output that is coupled to the base of the first bipolar transistor, and a second output that is coupled to the base of the second bipolar transistor wherein
the plurality of translinear elements include:
N translinear elements arranged to provide N diode drops up from the emitter of the first transistor to a first node;
N translinear elements arranged to provide N diode drops down from the first node to the emitter of the bias current duplicator transistor;
M translinear elements arranged to provide M diode drops up from the collector of the first transistor to a second node; and
M translinear elements arranged to provide M diode drops down from the second node to the collector of the bias current duplicator transistor.
8. The circuit of claim 1, wherein each of the diode drops is a base-emitter voltage of a bipolar transistor.
9. The circuit of claim 1, wherein the N translinear elements that are arranged to provide N diode drops up from the first node to the emitter of the first bias current duplicator transistor include: N\u22121 translinear elements that are arranged to provide N\u22121 diode drops up from the first node to the base of the bias current duplicator transistor, and the base-emitter junction of the bias current duplicator transistor.
10. The circuit of claim 9, wherein the N\u22121 translinear elements are part of the current mirror.
11. The circuit of claim 1, wherein
the current mirror is approximately a 1:1:1 current mirror, and wherein the current mirror includes:
a first current mirror transistor having at least a base that is coupled to the base of the current duplicator transistor, a collector that is coupled to the base of the first current mirror transistor, and an emitter that is coupled to a node;
a second current mirror transistor having at least a base that is coupled to the base of the first current mirror transistor, a collector that is coupled to the base of the first bipolar transistor, and an emitter that is coupled to the node; and
a third current mirror transistor having at least a base that is coupled to the base of the first current mirror transistor, a collector that is coupled to the base of the second bipolar transistor, and an emitter that is coupled to the node.
12. A circuit for audio amplification, comprising:
an input differential pair including a first bipolar transistor having at least a base, a collector, and an emitter; and a second bipolar transistor having at least a base, a collector, and an emitter;
a bias current duplicator transistor having at least a base, a collector, and an emitter;
a plurality of translinear elements that are arranged such that a voltage between the collector and the emitter of the bias current duplicator transistor is substantially the same as a voltage between the collector and the emitter of the first bipolar transistor; and
a current mirror having at least an input that is coupled to the base of the bias current duplicator transistor, a first output that is coupled to the base of the first bipolar transistor, and a second output that is coupled to the base of the second bipolar transistor, wherein
the current mirror is approximately a 1:1:1 current mirror, and wherein the current mirror includes:
a first current mirror transistor having at least a base that is coupled to the base of the current duplicator transistor, a collector that is coupled to the base of the first current mirror transistor, and an emitter that is coupled to a node;
a second current mirror transistor having at least a base that is coupled to the base of the first current mirror transistor, a collector that is coupled to the base of the first bipolar transistor, and an emitter that is coupled to the node;
a third current mirror transistor having at least a base that is coupled to the base of the first current mirror transistor, a collector that is coupled to the base of the second bipolar transistor, and an emitter that is coupled to the node; and

the current mirror further includes:
a resistor that is coupled between the emitter of the first current mirror transistor and the node.
13. The circuit of claim 12, wherein the resistor has a resistance such that the base-emitter junctions of the second and third current mirror transistor are such that the collector currents of the second and third transistors are each substantially the same as the base current of the bias current duplicator transistor, compensating for the base current of each of the transistors in the current mirror.
14. A method for audio amplification, comprising:
providing an emitter current to a bias current duplicator transistor such that the emitter current of the bias current duplicator transistor is substantially the same as the emitter current of each transistor of an input differential pair;
providing emitter and collector voltages of the bias current duplicator transistor such that the collector-emitter voltage of the bias current duplicator transistor is substantially the same as each of the transistors in the input differential pair;
mirroring a base current of the bias current duplicate transistor to a base of first transistor of the input differential pair and to a base of the second transistor of the input differential pair, wherein
providing the emitter and collector voltage of the bias current duplicator transistor includes:
providing N diode drops down from the emitter of the first transistor to a first node;
providing N diode drops up from the first node to the emitter of the bias current duplicator transistor;
providing M diode drops down from the collector of the first transistor to a second node; and
providing M diode drops up from the second node to the collector of the bias current duplicator transistor.
15. The method of claim 14, wherein the input differential pair sources a bias current at the base of the first and second transistors, and wherein mirroring the base current includes sinking a duplicate bias current to the base of the first and second transistors, wherein the duplicate bias current is substantially equal to the bias current.
16. The method of claim 14, wherein the input differential pair sinks a bias current at the base of the first and second transistors, and wherein mirroring the base current includes sourcing a duplicate bias current to the base of the first and second transistors, wherein the duplicate bias current is substantially equal to the bias current.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1.-7. (canceled)
8. A computer program product residing on a computer readable storage medium having a plurality of instructions stored thereon which, when executed by a processor, cause the processor to perform operations comprising:
receiving a selection of a set of records to edit in a multi-record update operation;
receiving a selection of at least one record of the set of records on which to capture one or more changes;
capturing at least one aspect of the at least one record of the set of records; and
playing back the at least one aspect on one or more remaining records of the set of records.
9. The computer program product of claim 8 wherein the at least one record of the set of records includes a template record.
10. The computer program product of claim 9 wherein the at least one aspect includes a change to the template record.
11. The computer program product of claim 9 wherein the at least one aspect includes an action performed on the template record.
12. The computer program product of claim 8 wherein capturing the at least one aspect of the at least one record of the set of records includes capturing at least one aspect of at least one related record that is related to the at least one record of the set of records.
13. The computer program product of claim 12 wherein playing back the at least one aspect on one or more remaining records of the set of records includes playing back the at least one aspect of the at least one related record.
14. The computer program product of claim 13 wherein the at least one aspect on the one or more remaining records of the set of records is played back in a same order in which each aspect is captured.
15. A computing system including a processor and a memory configured to perform operations comprising:
receiving a selection of a set of records to edit in a multi-record update operation;
receiving a selection of at least one record of the set of records on which to capture one or more changes;
capturing at least one aspect of the at least one record of the set of records; and
playing back the at least one aspect on one or more remaining records of the set of records.
16. The computer program product of claim 15 wherein the at least one record of the set of records includes a template record.
17. The computer program product of claim 16 wherein the at least one aspect includes a change to the template record.
18. The computer program product of claim 16 wherein the at least one aspect includes an action performed on the template record.
19. The computer program product of claim 15 wherein capturing the at least one aspect of the at least one record of the set of records includes capturing at least one aspect of at least one related record that is related to the at least one record of the set of records.
20. The computer program product of claim 19 wherein playing back the at least one aspect on one or more remaining records of the set of records includes playing back the at least one aspect of the at least one related record.