Patents by Inventor John A. Schoeff

John A. Schoeff has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 4962341
    Abstract: Digital logic circuitry designed to operate on a low voltage power supply without substantial transistor saturation thereby achieving lower power and higher opeational speeds. A non-saturating inverter with a low voltage swing can be made with one transistor using standard bipolar production processes and without clamp diodes. The novel circuitry uses logic units which can be modularly combined to form various other logical functions such as inverters, gates, flip-flops, etc. The preferred logic units use a transistor with the base connected by a load resistor to a first current network. The logical input is between the load resistor and base. The emitter is connected either directly or via one or more resistors to a second current network. The first and second power networks are constructed and arranged to provide a voltage-varying profile across both networks which are preferably complementary to provide nearly constant differential voltages across the logic units.
    Type: Grant
    Filed: February 2, 1988
    Date of Patent: October 9, 1990
    Inventor: John A. Schoeff
  • Patent number: 4292625
    Abstract: A digital-to-analog converter is provided which converts a series of digital binary numbers into an analog signal having an amplitude proportional to the values of the binary numbers. The disclosed embodiment of this invention includes a segment generator having input terminals coupled to receive the most significant digits of the binary numbers to be converted, wherein the segment generator provides a first signal proportional to the values of the most significant digits of the binary numbers. A step generator is also included which receives the remaining lesser significant digits of the binary number and provides a second signal proportional to the values of these lesser significant digits of the same binary numbers. Additionally, means for combining the first and second signals is provided to form an analog signal proportional to the value of the binary number to be converted.
    Type: Grant
    Filed: July 12, 1979
    Date of Patent: September 29, 1981
    Assignee: Advanced Micro Devices, Inc.
    Inventor: John A. Schoeff
  • Patent number: 4195235
    Abstract: An analog subsystem is disclosed which can be included in a single monolithic, integrated circuit chip and which is for use with a digital subsystem to form a dual ramp analog-to-digital converter. A current steering network included in the analog subsystem is connected to a reference current source and to an input voltage-to-current converter. An integrator is connected to the output of the current steering network, and a comparator is connected to the output of the integrator. The current steering network selectively conducts the current from the converter to charge the integrator for a predetermined period of time, which is terminated by the application of a signal to the current steering network by the digital subsystem. The network then conducts the current from the constant reference current source to discharge the integrator which ultimately triggers the comparator.
    Type: Grant
    Filed: November 14, 1977
    Date of Patent: March 25, 1980
    Assignee: Motorola, Inc.
    Inventor: John A. Schoeff
  • Patent number: 4138671
    Abstract: The outputs of individual stages in a digital to analog converter are each trimmed by independent circuitry which includes a plurality of transistors connected to a common output terminal, the physical dimensions of each transistor being scaled in proportion to desired levels of current flow, and selectable switches connected in circuit with each of the transistors. Selectable switches are actuable to produce an output trimming current of a desired magnitude, which current is used to correct the untrimmed stage output. The invention includes circuitry for controlling the polarity of the trimming current relative to the stage, and for selectively expanding or contracting the trimming range to optimize the trimming currents for the particular characteristics of the converter. A favorable balance between trimming accuracy and the area occupied by the trimming circuitry is attained by the use of both emitter-scaled and multicollector transistors in the trimming circuits.
    Type: Grant
    Filed: February 14, 1977
    Date of Patent: February 6, 1979
    Assignee: Precision Monolithics, Inc.
    Inventors: Donald T. Comer, Daniel J. Dooley, John A. Schoeff
  • Patent number: 4092639
    Abstract: A digital to analog converter is disclosed wherein two current outputs are provided, one the complement of the other. The digital to analog converter includes a novel two branched, symmetric, transistor switching circuit as well as an improved electrical n-bit weighting network which has ports for communicating weighted signal segments to connected transistor switching circuits. Logic inputs to the switching circuits determine whether an output signal is to be supplied in a first output summing line or a second, complementary, output summing line, both of which have high output impedance and high output voltage compliance which defines true current output.
    Type: Grant
    Filed: January 6, 1976
    Date of Patent: May 30, 1978
    Assignee: Precision Monolithics, Inc.
    Inventor: John A. Schoeff
  • Patent number: 4092726
    Abstract: An analog subsystem is disclosed which can be included in a single monolithic, integrated circuit chip and which is for use with a digital subsystem to form a dual ramp analog-to-digital converter. A current steering network included in the analog subsystem is connected to a reference current source and to an input voltage-to-current converter. An integrator is connected to the output of the current steering network, and a comparator is connected to the output of the integrator. The current steering network selectively conducts the current from the converter to charge the integrator for a predetermined period of time, which is terminated by the application of a signal to the current steering network by the digital subsystem. The network then conducts the current from the constant reference current source to discharge the integrator which ultimately triggers the comparator.
    Type: Grant
    Filed: April 23, 1975
    Date of Patent: May 30, 1978
    Assignee: Motorola, Inc.
    Inventor: John A. Schoeff
  • Patent number: 4056740
    Abstract: A symmetric, two-branched transistor switching circuit is disclosed wherein steering current is fed to a node between the two branches. A logic input signal controls the electrical balance between the two branches controlling the flow of steering current from one branch to the other and back, depending upon two discrete logic input levels. The two-branched circuit is connected to a pair of loads, one associated with each circuit branch as well as to a common node which may be connected to an auxiliary circuit. By a balanced circuit configuration and supplying properly regulated bias during a logic input transition, the effects of parasitic capacitance, which normally delays switching times, may be reduced, thereby permitting the switching of very low levels of current, i.e. on the order of 1 or 2 microamperes at speeds comparable to those obtained when switching 1 or 2 ma. An auxiliary circuit which may be connected to the common node of the circuit is an electrical ladder which decrements current.
    Type: Grant
    Filed: January 6, 1976
    Date of Patent: November 1, 1977
    Assignee: Precision Monolithics, Inc.
    Inventor: John A. Schoeff
  • Patent number: 4055773
    Abstract: Disclosed is a multistage resistor and transistor network for use in forming a plurality of weighted signals and which utilizes a conventional R-2R ladder network connected to a single reference means for decrementing the reference signal into weighted signals and a remainder signal. Rather than terminating the remainder, as in the prior art, at least one slave ladder network is connected for receiving the remainder signal and decrementing the remainder signal into a plurality of decrementally weighted signals to be taken in parallel with the decrementally weighted signal segments of a master ladder.
    Type: Grant
    Filed: December 22, 1975
    Date of Patent: October 25, 1977
    Assignee: Precision Monolithics, Inc.
    Inventor: John A. Schoeff