Isolation system with digital communication across a capacitive barrier
First Claim
1. A capacitive isolation system for providing a digital communication channel across one or more isolation capacitors between a data input terminal and a data output terminal, the isolation system comprising:
- an encoder circuit connected to receive digital data input signals from the input terminal, the encoder circuit including logic circuitry for combining the data input signals with control signals, the encoder circuit providing a digital encoded signal at an encoder output;
a driver circuit connected to the encoder output and to a first side of the isolation capacitors. the driver circuit adapted to receive the encoded signal and to apply it to the first side of the isolation capacitors;
a clock recovery circuit connected to the second side of the isolation capacitors to receive an isolated encoded signal therefrom, the clock recovery circuit providing a clock signal synchronized with the isolated encoded signal on the second side of the isolation capacitors;
a data latch connected to the second side of the isolation capacitors and to the clock signal, the data latch comprising a clocked latch circuit and adapted to provide a synchronized encoded data signal synchronized with the clock signal; and
a decoder circuit connected to receive (a) the synchronized encoded data signal from the data latch and (b) the clock signal, the decoder circuit adapted to separate the synchronized encoded data signal into control signals and isolated digital data signals, the isolated digital data signals being presented at the output terminal of the system.
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Abstract
An isolation system is provided that is suitable for use in telephony, medical instrumentation, industrial process control and other applications. Preferred embodiments of the invention comprise a capacitive isolation barrier across which a digital signal is communicated. The system provides a means of communication across the isolation barrier that is highly immune to amplitude and phase noise interference. Clock recovery circuitry may be employed on one side of the isolation barrier to extract timing information from the digital signal communicated across the barrier, and to filter the effects of phase noise introduced at the barrier. Delta-sigma converters may be disposed on both sides of the isolation barrier to convert signals between analog and digital domains. An isolated power supply may also be provided on the isolated side of the barrier, whereby direct current is generated in response to the digital data received across the isolation barrier. Finally, a bidirectional isolation system is provided whereby bidirectional communication of digital signals is accomplished using a single pair of isolation capacitors. In preferred embodiments, the digital data communicated across the barrier consists of digital delta-sigma data signals multiplexed in time with other digital control, signaling and framing information.
13 Citations
32 Claims
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1. A capacitive isolation system for providing a digital communication channel across one or more isolation capacitors between a data input terminal and a data output terminal, the isolation system comprising:
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an encoder circuit connected to receive digital data input signals from the input terminal, the encoder circuit including logic circuitry for combining the data input signals with control signals, the encoder circuit providing a digital encoded signal at an encoder output;
a driver circuit connected to the encoder output and to a first side of the isolation capacitors. the driver circuit adapted to receive the encoded signal and to apply it to the first side of the isolation capacitors;
a clock recovery circuit connected to the second side of the isolation capacitors to receive an isolated encoded signal therefrom, the clock recovery circuit providing a clock signal synchronized with the isolated encoded signal on the second side of the isolation capacitors;
a data latch connected to the second side of the isolation capacitors and to the clock signal, the data latch comprising a clocked latch circuit and adapted to provide a synchronized encoded data signal synchronized with the clock signal; and
a decoder circuit connected to receive (a) the synchronized encoded data signal from the data latch and (b) the clock signal, the decoder circuit adapted to separate the synchronized encoded data signal into control signals and isolated digital data signals, the isolated digital data signals being presented at the output terminal of the system. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
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9. A bidirectional isolation system for providing an isolated communication channel for digital signals in a forward direction and in a reverse direction across a capacitive isolation barrier, the system comprising:
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an isolation barrier comprising one or more capacitors;
a powered system on a first side of the isolation barrier, the powered system comprising;
a powered driver circuit connected to at least one of the capacitors for driving a forward direction signal across the isolation barrier, a powered encoder circuit having an input terminal for receiving a digital signal to be transmitted in the forward direction across the barrier and having an output connected to the powered driver circuit, and a powered decoder circuit having an input connected to at least one of the capacitors, the powered decoder circuit adapted for receiving and decoding signals transmitted in the reverse direction across the isolation barrier; and
an isolated system on a second side of the isolation barrier, the isolated system comprising;
a clock recovery circuit having an input connected to at least one of the barrier capacitors and an output providing an isolated clock signal to circuitry in the isolated system;
an isolated decoder circuit connected to at least one of the capacitors and providing a decoded digital data signal;
an isolated driver circuit connected to at least one of the capacitors for driving signals in the reverse direction across the isolation barrier; and
an isolated encoder circuit having an input for receiving a digital signal to be transmitted in the reverse direction across the barrier and having an output connected to the isolated driver circuit. - View Dependent Claims (10, 11)
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12. An isolation system for transmitting a digital data signal across a capacitive isolation barrier comprising:
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one or more isolation capacitors;
means for providing a digital signal to a first side of the capacitive isolation barrier;
means for receiving a corresponding isolated signal from a second side of the isolation barrier;
clock recovery means for recovering a clock signal from the isolated signal; and
means for synchronizing the isolated signal with the clock signal. - View Dependent Claims (13, 14)
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15. A method of transmitting a digital data signal across a capacitive isolation barrier, comprising:
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combining the digital data signal with control information to form a digital encoded signal;
driving the digital encoded signal across the capacitive isolation barrier;
receiving an isolated encoded signal from the isolation barrier;
recovering a clock signal from the isolated encoded signal;
synchronizing the isolated encoded signal with the clock signal; and
separating the isolated encoded signal into an isolated digital data signal and isolated control information. - View Dependent Claims (16)
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17. An isolation system for providing a digital communication channel between a powered circuit and an isolated circuit. the isolation system comprising:
- an isolation barrier and a clock recovery circuit located on an isolated side of the isolation barrier, the clock recovery circuit adapted to provide a recovered clock signal based on isolated signals received from the powered circuit across the isolation barrier, the recovered clock signal being that is substantially free of phase noise.
- View Dependent Claims (18, 19, 20, 21, 22, 23)
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24. A bidirectional isolation system for providing an isolated communication channel for data signals in a forward direction and in a reverse direction across an isolation barrier comprised of isolation elements, the system comprising:
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(a) a powered system on a first side of the isolation barrier, the powered system comprising a first driver circuit connected to the isolation barrier for driving a forward direction digital signal across the isolation barrier; and
(b) an isolated system on a second side of the isolation barrier, the isolated system comprising an second driver circuit connected to the isolation barrier for driving a reverse direction digital signal across the isolation barrier;
wherein the forward direction digital signal and the reverse direction digital signal are both driven through the same isolation elements. - View Dependent Claims (25, 26, 27, 28)
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29. An isolation system for providing a digital communication channel for data signals and control signals, the isolation system comprising:
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an isolation barrier;
a multiplexer located on one side of the isolation barrier and connected to receive the data signals and the control signals and providing a multiplexed digital signal that is connected to the isolation barrier;
a demultiplexer located on the other side of the isolation barrier and connected to receive the multiplexed digital signal from the isolation barrier, the demultiplexer having a data signal output and a control signal output. - View Dependent Claims (30, 31, 32)
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Specification