Photoelectric sphygmograph measurement device
First Claim
1. A photoelectric sphygmograph measurement device comprising:
- a light emitting circuit configured to emit light pulses;
a light receiving circuit configured to have a light receiving element that receives the light pulses emitted by the light emitting circuit, to produce an output signal corresponding to the light pulses received by the receiving element, and to output the output signal; and
a control circuit configured to drive the light emitting circuit to emit the light pulses and perform a pulse wave measurement based on the output signal of the light receiving circuit,wherein the control circuit is configured to;
determine whether a signal level of the output signal of the light receiving circuit becomes less than a predetermined level while emission of the light pulses from the light emitting circuit is stopped by the control circuit; and
drive the light emitting circuit to emit the light pulses until the signal level of the output signal of the light receiving circuit becomes equal to or greater than the predetermined level and less than a first signal level, which is obtained when the light pulses emitted by the light emitting circuit are received directly by the light receiving element, when the control circuit has determined that the signal level of the output signal of the light receiving circuit becomes less than the predetermined level,wherein the control circuit is configured to;
determine whether the light receiving element changes to a first state from a second state, the light receiving element being capable of receiving the light pulses in the first state, the light receiving element being incapable of receiving the light pulses in the second state; and
drive the light emitting circuit to emit the light pulses until the signal level of the output signal of the light receiving circuit reaches the predetermined level.
1 Assignment
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Accused Products
Abstract
A photoelectric sphygmograph measurement device includes a light emitting part emitting light pulses, a light receiving part having a light receiving element that receives the light pulses and producing a corresponding output signal, and a control part driving the light emitting part to emit the light pulses and performing a pulse wave measurement by using the output signal. The control part drives the light emitting part so that a charge accumulated in the light emitting element converges on a predetermined amount in a case where the charge accumulated in the light receiving element decreases to the predetermined amount or less during a time when driving of the light emitting part is stopped and/or in a case where the light receiving element changes to a first state in which the light receiving element is capable of receiving the light pulses from a second state in which the light receiving element is not capable of receiving the light pulses.
5 Citations
4 Claims
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1. A photoelectric sphygmograph measurement device comprising:
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a light emitting circuit configured to emit light pulses; a light receiving circuit configured to have a light receiving element that receives the light pulses emitted by the light emitting circuit, to produce an output signal corresponding to the light pulses received by the receiving element, and to output the output signal; and a control circuit configured to drive the light emitting circuit to emit the light pulses and perform a pulse wave measurement based on the output signal of the light receiving circuit, wherein the control circuit is configured to; determine whether a signal level of the output signal of the light receiving circuit becomes less than a predetermined level while emission of the light pulses from the light emitting circuit is stopped by the control circuit; and drive the light emitting circuit to emit the light pulses until the signal level of the output signal of the light receiving circuit becomes equal to or greater than the predetermined level and less than a first signal level, which is obtained when the light pulses emitted by the light emitting circuit are received directly by the light receiving element, when the control circuit has determined that the signal level of the output signal of the light receiving circuit becomes less than the predetermined level, wherein the control circuit is configured to; determine whether the light receiving element changes to a first state from a second state, the light receiving element being capable of receiving the light pulses in the first state, the light receiving element being incapable of receiving the light pulses in the second state; and drive the light emitting circuit to emit the light pulses until the signal level of the output signal of the light receiving circuit reaches the predetermined level. - View Dependent Claims (2, 3, 4)
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Specification