USRE37641E

Dynamic random access memory using imperfect isolating transistors

Claim Score by NHIP

Read claim 34, the broadest

Abstract

Apparatus and methods for controlling the sensing of bit lines which facilitates the distribution of bit line charging current to be distributed any time, and facilitates the fast raising of the sense modes to full logic levels. An embodiment is comprised of a plurality of bit storage capacitors, a folded bit line for receiving charge stored on one of the capacitors, having bit line capacitance, a sense amplifier having a pair of sense nodes for sensing a voltage differential across the sense nodes, apparatus connected to the bit line and the sense nodes for imperfectly isolating the sense nodes from the bit line whereby current can leak therethrough, apparatus for enabling the sense amplifier and for disabling the isolating apparatus and thereby removing the isolation between the sense amplifier and the bit line, whereby current passing through the sense amplifier to the sense noes is enabled to charge the bit line capacitance through the isolating apparatus to predetermined logic voltage level.

Term

Term ended

Expired 8 May 2017, 9.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

36 claims: 9 independent, 27 dependent

  1. 1
    A dynamic random access memory (DRAM) comprising:(a) a plurality of bit storage capacitors, (b) a folded bit line comprised of a complementary bit line pair for receiving charge stored on one of said capacitors, having bit line capacitance, (c) a sense amplifier having a pair of sense nodes for sensing a voltage differential across said sense nodes, (d) high resistance controllable current leakage imperfect isolating means connecting said bit line to said sense nodes for receiving an enabling voltage from a first voltage supply for causing current leakage therethrough between said sense nodes and the bit line while maintaining high resistance, (e) means for applying said enabling voltage for causing effective current to leak through the imperfect isolating means, (f) means for enabling said sense amplifier and establishing full predetermined logic levels across said sense nodes, (g) means applying a voltage from a second voltage supply to the imperfect isolating means for disabling said imperfect isolating means and thereby removing isolation between said sense nodes and the bit line, whereby current passing through the sense amplifier to said sense nodes is enabled to charge said bit line capacitance through said imperfect isolating means to a predetermined logic voltage level.
  2. 16
    A method of sensing in a folded bit line type of dynamic random access memory (DRAM) having a bit storage capacitor for coupling to the bit line and a sensing amplifier having sense nodes, comprising:(a) imperfectly isolating the sense nodes of the sensing amplifier from the bit line using an imperfect isolating means enabled from a first voltage supply, (b) coupling the capacitor to the bit line, thereby dumping its charge thereon, (c) leaking said charge through the imperfect isolating means to one of the sense nodes, thereby causing a voltage differential across said sense nodes, (d) sensing said differential by said sense amplifier and applying full high and low logic voltage levels respectively to said sense nodes, (e) inhibiting isolation of said sense nodes from said bit line, by disabling the imperfect isolating means from a second voltage supply, whereby full logic levels are applied to complementary bit lines of said folded bit line.
  3. 20
    A semiconductor memory device comprising:a plurality of bit storage capacitors;a bit line comprised of a complementary bit line pair for receiving charge stored on one of said capacitors;a sense amplifier having a pair of sense nodes for sensing a voltage differential across said sense nodes and establishing full logic levels across said sense nodes;and an isolator coupled between said complementary bit line pair and said sense nodes for operatively coupling a selected complementary bit line pair to said sense nodes in response to a controlling signal, the controlling signal being provided from a voltage supply having a voltage level beyond the full logic levels to restore full logic levels to the selected complementary bit line pair during a restoring portion of an active memory cycle.
  4. 26
    A semiconductor memory device comprising:a plurality of bit storage capacitors;a bit line comprised of a complementary bit line pair for receiving charge stored on one of said capacitors;a sense amplifier having a pair of sense nodes for sensing a voltage differential across said sense nodes and establishing full logic levels across said sense nodes;and n - channel transistors coupled between said complementary bit line pair and said sense nodes for operatively coupling a selected complementary bit line pair to said sense nodes, a V pp voltage greater than the full logic levels being applied to gates of said n - channel transistors during a restoring portion of an active memory cycle.
  5. 27
    A semiconductor memory device comprising:plurality of bit storage capacitors;a bit line comprised of a complementary bit line pair for receiving charge stored on one of said capacitors;a sense amplifier having a pair of sense nodes for sensing a voltage differential across said sense nodes and establishing full logic levels across said sense nodes;and p - channel transistors coupled between said complementary bit line pair and said sense nodes for operatively coupling a selected complementary bit line pair to said sense nodes, a V bb voltage less than the full logic levels being applied to gates of said p - channel transistors during a restoring portion of an active memory cycle.
  6. 28
    A method of sensing in a dynamic random access memory ( DRAM ) having a bit line, a bit storage capacitor for coupling to the bit line, a sense amplifier having sense nodes and isolation transistors between said bit lines and sense amplifier, comprising:coupling the capacitor to the bit line, thereby dumping its charge thereon;sensing a voltage differential across said sense nodes by said sense amplifier and applying full high and low logic voltage levels respectively to said sense nodes;and restoring to the bit storage capacitor the full high and low logic voltage levels by applying to said isolation transistors a controlling signal from a voltage supply having a voltage level beyond the full high and low logic voltage levels.
  7. 34
    Broadest claimClaim Score 55, average(NHIP)A method of sensing in a dynamic random access memory ( DRAM ) having a bit line, a bit storage capacitor for coupling to the bit line, a sense amplifier having sense nodes and n - channel isolation transistors between said bit lines and sense amplifier, comprising:coupling the capacitor to the bit line, thereby dumping its charge thereon;sensing a voltage differential across said sense nodes by said sense amplifier and applying full high and low logic voltage levels respectively to said sense nodes;and restoring to the bit storage capacitor the full high and low logic by applying to said n - channel isolation transistors a V pp voltage greater than the full high logic level.
  8. 35
    A method of sensing in a dynamic random access memory ( DRAM ) having a bit line, a bit storage capacitor for coupling to the bit line, a sense amplifier having sense nodes and p - channel isolation transistors between said bit lines and sense amplifier, comprising:coupling the capacitor to the bit line, thereby dumping its charge thereon;sensing a voltage differential across said sense nodes by said sense amplifier and applying full high and low logic voltage levels respectively to said sense nodes;and restoring to the bit storage capacitor the full high and low logic voltage levels by applying to said p - channel isolation transistors a V bb voltage less than the full low logic voltage level.
  9. 36
    A semiconductor memory device comprising:a plurality of bit storage capacitors;a bit line comprised of a complementary bit line pair for receiving charge stored on one of said capacitors;a sense amplifier having a pair of sense nodes for sensing a voltage differential across said sense nodes and establishing full logic levels across said sense nodes;and isolation means coupled between said complementary bit line pair and said sense nodes for operatively coupling a selected complementary bit line pair to said sense nodes in response to a controlling signal, the controlling signal being provided from a voltage supplying having a voltage level beyond the full logic levels to restore full logic levels to the selected complementary bit line pair during a restoring portion of an active memory cycle.