IP Library Granted Patent US 11,444,581
Granted Patent B2
US 11,444,581 · App. 16/956,948 · Granted Sep 13, 2022

Integrated circuit and light receiver

Inventor: Toshihide Oka (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
H03F1/26H03F3/087H03F2200/372
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Quick Facts
Patent No.
US 11,444,581
App. No.
16/956,948
Granted
Sep 13, 2022
Kind
B2
Abstract

An integrated circuit includes an amplifier for amplifying an electric current signal from an external light receiving element, and a low-pass filter. The low-pass filter has a resistor and a capacitor serial-connection in which multiple capacitive elements are serially connected. With respect to the resistor in the low-pass filter, one end thereof is connected to a power terminal to which the bias voltage is inputted, and the other end thereof is connected to an input terminal of the capacitor serial-connection and to a bias application electrode of the light receiving element through which the bias voltage is applied. With respect to the capacitor serial-connection in the low-pass filter, each connection terminal between two of the serially connected capacitive elements and an output terminal of the capacitor serial-connection, are connected to their respective capacitance terminals to which a ground potential as a reference for the bias voltage is connected selectively.

Claims (26)

1. An integrated circuit formed on a semiconductor substrate, for converting an electric current signal inputted from an external light receiving element, into a voltage signal, said integrated circuit comprising:

an amplifier for amplifying the electric current signal from the external light receiving element and then converting it into the voltage signal; and

a low-pass filter for performing filtering of a bias voltage to be applied to the external light receiving element;

wherein the low-pass filter has a resistor and a capacitor serial-connection in which multiple capacitive elements are serially connected;

wherein one end of the resistor is connected to a power terminal to which the bias voltage is inputted, and the other end of the resistor is connected to an input terminal of the capacitor serial-connection and to a bias application electrode of the external light receiving element through which the bias voltage is applied;

wherein each connection terminal between two of the serially connected capacitive elements in the capacitor serial-connection, and an output terminal of the capacitor serial-connection, are connected to their respective capacitance terminals to which a ground potential as a reference for the bias voltage is connected selectively; and

wherein the capacitance terminal is a wire bonding pad formed in the integrated circuit.

2. The integrated circuit of claim 1 , wherein the capacitive element is an MIM-type capacitor.

3. A light receiver comprising:

the integrated circuit of claim 1 ; and the external light receiving element for receiving an optical signal, wherein an electric current signal inputted from the external light receiving element is converted into a voltage signal.

4. The light receiver of claim 3 , wherein, when the external light receiving element is an avalanche photodiode, the ground potential is connected to the capacitance terminal corresponding to, in the capacitor serial-connection, a portion on its side nearer to the output terminal.

5. The light receiver of claim 3 , wherein, when the external light receiving element is a photodiode for which the bias voltage is lower than that for an avalanche photodiode, the ground potential is connected to the capacitance terminal corresponding to, in the capacitor serial-connection, a portion on its side nearer to the input terminal.

6. A light receiver comprising:

the integrated circuit of claim 2 ; and the external light receiving element for receiving an optical signal, wherein an electric current signal inputted from the external light receiving element is converted into a voltage signal.

7. An integrated circuit formed on a semiconductor substrate, for converting an electric current signal inputted from an external light receiving element, into a voltage signal, said integrated circuit comprising:

an amplifier for amplifying the electric current signal from the external light receiving element and then converting it into the voltage signal; and

a low-pass filter for performing filtering of a bias voltage to be applied to the external light receiving element;

wherein the low-pass filter has a resistor and a capacitor serial-connection in which multiple capacitive elements are serially connected;

wherein one end of the resistor is connected to a power terminal to which the bias voltage is inputted, and the other end of the resistor is connected to an input terminal of the capacitor serial-connection and to a bias application electrode of the external light receiving element through which the bias voltage is applied; and

wherein each connection terminal between two of the serially connected capacitive elements in the capacitor serial-connection is connected to a capacitance terminal to which a ground potential as a reference for the bias voltage is connected selectively, and an output terminal of the capacitor serial-connection is fixed at the ground potential, and the capacitance terminal is a wire bonding pad formed in the integrated circuit.

8. A light receiver comprising:

the integrated circuit of claim 7 ; and the external light receiving element for receiving an optical signal; wherein an electric current signal inputted from the external light receiving element is converted into a voltage signal, and;

wherein, when the external light receiving element is an avalanche photodiode, the ground potential is not connected to any of the capacitance terminals.

9. The integrated circuit of claim 7 , wherein the capacitive element is an MIM-type capacitor.

10. A light receiver comprising:

the integrated circuit of claim 7 ; and the external light receiving element for receiving an optical signal, wherein an electric current signal inputted from the external light receiving element is converted into a voltage signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2020
From: OKA, TOSHIHIDE
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 053003/0845 →
Continuity (1)
Related Publication 20210006209A1 · Jan 7, 2021