One-time-programmable memory
View Patent ↗Various one-time-programmable (OTP) memory cells are disclosed. An OTP memory cell includes an additional dopant region that extends at least partially under the gate of a transistor, such as an anti-fuse transistor. The additional dopant region provides an additional current path for a read current. Alternatively, an OTP memory cell includes three transistors; an anti-fuse transistor and two select transistors. The two select transistors can be configured as a cascaded select transistor or as two separate select transistors.
1 . A one-time-programmable (OTP) memory cell, comprising:
an anti-fuse transistor comprising a first gate, a first dopant region that forms a first source/drain region, and a second dopant region that forms a second source/drain region;
a select transistor connected in series with the anti-fuse transistor, the select transistor comprising a second gate, the second dopant region that forms a third source/drain region, and a third dopant region that forms a fourth source/drain region;
an additional fourth dopant region that connects to the first dopant region and extends partially under the first gate of the anti-fuse transistor, the additional fourth dopant region creating an additional current path for a read current; and
a halo region between the first and the second dopant regions and disposed adjacent to the first dopant region and the additional fourth dopant region.
2 . The OTP memory cell of claim 1 , further comprising:
a first contact to the first dopant region; and
a second contact to the second dopant region; and
a conductive element connecting the first and the second contacts.
3 . The OTP memory cell of claim 2 , wherein the additional current path is activated with a first bias voltage applied to the first contact and a second current path is activated when the bias voltage is applied to the second contact.
4 . The OTP memory cell of claim 1 , further comprising:
a first contact to the first dopant region; and
a second contact to the second dopant region; and
a conductive element connecting the first and the second contacts.
5 . The OTP memory cell of claim 1 , further comprising a halo region between the second and the third dopant regions and adjacent the second dopant region.
6 . The OTP memory cell of claim 1 , wherein the first dopant region, the second dopant region, the third dopant region, and the additional fourth dopant region are formed with a dopant or dopants having a first conductivity type.
7 . The OTP memory cell of claim 1 , wherein the OTP memory cell is included in a plurality of OTP memory cells in a memory array.
8 . A one-time-programmable (OTP) memory cell, comprising:
an anti-fuse transistor comprising a first gate, a first dopant region that forms a first source/drain region, and a second dopant region that forms a second source/drain region;
a select transistor connected in series with the anti-fuse transistor, the select transistor comprising a second gate, the second dopant region that forms a third source/drain region, and a third dopant region that forms a fourth source/drain region;
an additional fourth dopant region that connects to the first dopant region and extends partially under the first gate of the anti-fuse transistor, the additional fourth dopant region creating an additional current path for a read current; and
a halo region between the second and the third dopant regions and adjacent the second dopant region.
9 . The OTP memory cell of claim 8 , further comprising:
a first contact to the first dopant region; and
a second contact to the second dopant region; and
a conductive element connecting the first and the second contacts.
10 . The OTP memory cell of claim 9 , wherein the additional current path is activated with a first bias voltage applied to the first contact and a second current path is activated when the bias voltage is applied to the second contact.
11 . The OTP memory cell of claim 8 , further comprising:
a first contact to the first dopant region; and
a second contact to the second dopant region; and
a conductive element connecting the first and the second contacts.
12 . The OTP memory cell of claim 8 , further comprising a halo region between the first and the second dopant regions and disposed adjacent to the first dopant region and the additional fourth dopant region.
13 . The OTP memory cell of claim 8 , wherein the first dopant region, the second dopant region, the third dopant region, and the additional fourth dopant region are formed with a dopant or dopants having a first conductivity type.
14 . The OTP memory cell of claim 8 , wherein the OTP memory cell is included in a plurality of OTP memory cells in a memory array.
15 . A memory array, comprising:
a plurality of one-time-programmable (OTP) memory cells, each OTP memory cell comprising:
an anti-fuse transistor comprising a first gate, a first dopant region that forms a first source/drain region, and a second dopant region that forms a second source/drain region;
a select transistor connected in series with the anti-fuse transistor, the select transistor comprising a second gate, the second dopant region that forms a third source/drain region, and a third dopant region that forms a fourth source/drain region;
an additional fourth dopant region that connects to the first dopant region and extends partially under the first gate of the anti-fuse transistor;
a first contact electrically connected to the first dopant region;
a second contact electrically connected to the second dopant region; and
a conductive element connecting the first and the second contacts;
wherein the first dopant region, the second dopant region, the third dopant region, and the additional fourth dopant region are formed with a dopant or dopants having a first conductivity type.
16 . The memory array of claim 15 , further comprising a bit line connected to the anti-fuse transistor and the select transistor.
17 . The memory array of claim 15 , further comprising a word line program signal line connected to the first gate of the anti-fuse transistor and a word line read signal line connected to the second gate of the select transistor.
18 . The memory array of claim 15 , further comprising a halo region between the first and the second dopant regions and disposed adjacent to the first dopant region and the additional fourth dopant region.
19 . The memory array of claim 15 , further comprising a halo region between the second and the third dopant regions and adjacent the second dopant region.
20 . The memory array of claim 15 , wherein the additional fourth dopant region creates an additional current path for a read current.