CIC hearing device
CIC Hearing device ( 50, 1000, 1100 ) comprising electronics configured to receive an electrical signal as an input signal and generate an output signal provided to a receiver, the electronics including a variable gain amplifier with input buffering circuitry including a compound transistor, the electronics being configured to bias the compound transistor such that a quiescent current associated with the output signal is limited or controlled.
1. A hearing device, comprising:
a hearing device core including
an acoustic-to-electric transducer or sensor that converts sound into an electrical signal,
a receiver,
electronics configured to receive the electrical signal as an input signal, the electronics including a variable gain amplifier configured to generate an output signal provided to the receiver, the variable gain amplifier having an input stage including a Sziklai pair that receives the input signal, the Sziklai pair being configured to amplify and buffer the input signal, the electronics being configured to bias the Sziklai pair such that a quiescent current associated with the output signal is limited or controlled, and
a battery that is one or more of rechargeable and constituted of a single battery or a single cell battery.
2. The hearing device of claim 1 , wherein the receiver or receiver winding is a high impedance type, with a DC impedance greater than 1 kΩ.
3. The hearing device of claim 1 , wherein the Sziklai pair is combined with a variable resistor and a high pass filter directly in the input stage.
4. The hearing device of claim 1 , wherein the Sziklai pair includes only two biased transistors.
5. The hearing device of claim 1 , wherein the electronics include a current controlled resistor coupled to the Sziklai pair.
6. The hearing device of claim 5 , wherein the current controlled resistor includes only one biased transistor.
7. The hearing device of claim 1 , wherein the electronics include an adjustable resistance component or circuitry, the adjustable resistance component or circuitry being configured to facilitate adjusting gain compression and limiting for the variable gain amplifier.
8. The hearing device of claim 7 , wherein the adjustable resistance component or circuitry includes
a zero biased bipolar transistor,
a MOSFET operating in the linear regime, or
a feedback circuit emulating a resistor.
9. The hearing device of claim 1 , wherein the electronics include a feedback loop that includes
a DC servo loop configured to set a DC bias of the Sziklai pair.
10. The hearing device of claim 1 , wherein the Sziklai pair generates a current, and the electronics include circuitry including a current mode circuit configured for analog processing of the current.
11. The hearing device of claim 1 , wherein the Sziklai pair generates a current, and the electronics include
a transistor configured to mirror the current to generate a current output, and
a transimpedance amplifier configured to convert the current output into a voltage at a high open loop gain.
12. A hearing device, comprising:
a hearing device core including
an acoustic-to-electric transducer or sensor that converts sound into an electrical signal,
a receiver, and
electronics configured to receive the electrical signal as an input signal, the electronics including a variable gain amplifier configured to generate an output signal provided to the receiver, the variable gain amplifier having an input stage including a Sziklai pair that receives the input signal, the Sziklai pair being configured to amplify and buffer the input signal, the electronics being configured to bias the Sziklai pair such that a quiescent current associated with the output signal is limited or controlled.
13. The hearing device of claim 12 , wherein the hearing device core includes a rechargeable battery.
14. The hearing device of claim 13 , wherein the receiver is a low impedance type, with a DC impedance less than 1 kΩ.
15. The hearing device of claim 12 , wherein the hearing device core includes a nonrechargeable battery and the receiver or receiver winding is a high impedance type, with a DC impedance greater than 1 kΩ.
16. The hearing device of claim 12 , wherein the hearing device core includes a battery that is one or more of rechargeable and constituted of a single battery or a single cell battery.
17. A hearing device, comprising:
a hearing device core including
an acoustic-to-electric transducer or sensor that converts sound into an electrical signal,
a receiver, and
electronics configured to receive the electrical signal as an input signal, the electronics including a variable gain amplifier configured to generate an output signal provided to the receiver, the variable gain amplifier having input buffering circuitry including a Sziklai pair that receives the input signal, the Sziklai pair being configured to amplify and buffer the input signal, the electronics being configured to bias the Sziklai pair such that a quiescent current associated with the output signal is limited or controlled.
18. The hearing device of claim 17 , wherein the electronics include a variable resistance component electrically coupled to the input buffering circuitry.
19. The hearing device of claim 18 , wherein the electronics include a capacitor or a filter between the variable resistance component and the input buffering circuitry.
20. The hearing device of claim 17 , wherein the hearing device core includes a battery that is one or more of rechargeable and constituted of a single battery or a single cell battery.