EP0051533A2

MOS battery backup controller for microcomputer random access memory.

Abstract

MOS control circuitry for incorporation on a microcomputer IC chip for assuring adequate power to maintain the data in an associated static random access memory. A rechargeable battery provides standby power, and the voltage level of the battery is compared with the microcomputer Vcc supply. Whenever Vcc drops below a predetermined level, such as the standby battery voltage level, the circuitry disconnects the Vcc from the memory input power and replaces it with standby battery power. When Vcc is returned to the system, a gate applies a trickle charge to the battery.

EP0051533A2, drawing sheet 1
Sheet 1 of 1

Term

Term ended

Projected expiry passed 28 October 2001, 24.9 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

9 claims: 5 independent, 4 dependent

  1. 1
    A voltage comparator for an MOS microprocessor circuit, said comparator being coupled to a Vcc conductor and to a source of standby power for generating an output signal when the Vcc level drops below a predetermined voltage level of said standby power, said comparator being characterized by:a voltage divider including first and second MOS transistors coupled in series between said V cc conductor and ground reference, the gates of said transistors being coupled together and to the interconnection of said first and second transistors;an inverter circuit including third and fourth MOS transistors coupled in series, said third transistor being coupled to said standby source and said fourth transistor being coupled to ground reference, the gate of said third transistor being coupled to the interconnection of said third and fourth transistors and the gate of said fourth transistor being coupled to the interconnection of said first and second transistors;anda buffer circuit including fifth and sixth series MOS transistors, said fifth transistor being coupled to said standby source and said sixth transistor being coupled to ground reference, the gate of said fifth transistor being coupled to V cc and the gate of said sixth transistor being coupled to the interconnection of said third and fourth transistors, the output of said buffer circuit being at the intersection of said fifth and sixth series transistors.
  2. 4
    MOS microcomputer control circuitry for maintaining memory sustaining voltage to a static random access memory upon failure of the system to maintain a Vcc level, said control circuitry beinq characterized bv:input means for connecting an external battery to said control circuitry;a MOS voltage comparator coupled to said inout means and to a Vcc conductor, said comparator generating an output signal when the Vcc level drops by a predetermined amount;andMOS gating circuitry coupled to said input means, to said vcc conductor, and to the output conductor and responsive to the output signal of said comparator for coupling said Vcc conductor to said output conductor when the voltage level-on said V conductor remains at cc least as high as the voltage level of said input means, and for disconnecting the coupling to said Vcc conductor and coupling said input means to said output conductor upon a lowering of said Vcc by a predetermined amount.
  3. 6
    The control circuitry of claims 4 or 5 characterized in that said gating circuitry includes a MOS charge pump coupled to said V cc conductor and to a two-phase clock source, said charge pump generating an output voltage more positive than said V cc level for turning on MOS gates coupled between said Vcc conductor and said output conductor.
  4. 7
    The control circuitry of anv one of claims 4-6 characterized in that said battery is a rechargable battery
  5. 9
    The control circuitry of claims 7 or 8 characterized by switch means responsive to a signal indicative of the existence of input power, said switch means coupled between the output of said charge pump and ground reference for grounding said output upon the removal of said input power.