Quasi-permanent battery for hearing aids
A hearing aid includes a secondary battery and means for identifying the kind of battery for charging. After the battery is identified, an appropriate algorithm for charging the battery is selected and used for charging the battery. Primary batteries are not charged. The hearing aid also includes a voltage reduction circuit for supplying a constant voltage to circuitry within the hearing aid. The battery preferably has an energy density greater than 500 watt-hours per liter.
1 . A hearing aid including electronics for processing audio signals and a battery for powering said electronics characterized in that:
said battery is a silver-zinc secondary battery having an energy density greater than 500 Wh/l.
2 . The hearing aid as set forth in claim 1 and further including:
a voltage reduction circuit producing a constant voltage output;
wherein said constant voltage is the supply voltage for said electronics.
3 . The hearing aid as set forth in claim 1 and further including:
a microprocessor having an A/D conversion input coupled to said battery; and
a recharging circuit coupled to said microprocessor;
wherein said microprocessor is programmed to identify said battery and select the appropriate algorithm for charging said battery.
4 . The hearing aid as set forth in claim 3 wherein said microprocessor is programmed not to recharge primary batteries.
5 . The hearing aid as set forth in claim 4 and further including:
a voltage reduction circuit producing a constant voltage output;
wherein said constant voltage is the supply voltage for said electronics and said microprocessor.
6 . A hearing aid including electronics for processing audio signals and a battery for powering said electronics characterized in that said hearing aid includes:
a microprocessor having an A/D conversion input coupled to said battery; and
a recharging circuit coupled to said microprocessor;
wherein said microprocessor is programmed to identify said battery and select the appropriate algorithm for charging said battery.
7 . The hearing aid as set forth in claim 6 wherein said microprocessor is programmed not to recharge primary batteries.
8 . The hearing aid as set forth in claim 6 and further including:
a voltage reduction circuit producing a constant voltage output;
wherein said constant voltage is the supply voltage for said electronics and said microprocessor.
9 . The hearing aid as set forth in claim 6 wherein said battery is a secondary battery having an energy density greater than 500 Wh/l.
10 . A circuit for charging the battery for a hearing aid, said circuit comprising:
means for coupling the circuit to the battery;
a microprocessor having an A/D conversion input coupled to said battery; and
a recharging circuit coupled to said microprocessor;
wherein said microprocessor is programmed to identify said battery and select the appropriate algorithm for charging said battery.
11 . The circuit as set forth in claim 10 wherein said microprocessor is programmed not to recharge primary batteries.
12 . The circuit as set forth in claim 10 wherein said means couples the circuit to the battery while the battery is in the hearing aid.
13 . The circuit as set forth in claim 10 wherein said circuit is included in a hearing aid.
14 . The circuit as set forth in claim 10 wherein said circuit is included in a charging station.