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ABM Logic Gates Equivalent Circuit
U1: AND2_ABM U5: INV_ABM
IN+
IN-
OUT+
OUT-
E1
IF(V(1)>1.08 & V(2)>1.08, {VOH}, {VOL})
EVALUE
R1
10
C1
10p
000
3
1
2
PARAMETERS:
VOL = 0VOH = 2.5
IN+
IN-
OUT+
OUT-
E2
IF(V(1)>1.08, {VOL}, {VOH})
EVALUE
R2
10
C2
10p
000
1 2
PARAMETERS:
VOL = 0VOH = 2.5
V1
TD = {1/FREQ}
TF = 1n
PW = {D/FREQ}
PER = {1/FREQ}
V1 = 0
TR = 1n
V2 = 1.709
PARAMETERS:
FREQ = 152kHz
D = 0.36
tdly = 80n
0
Rdly 1
1k
N4
CHDR
1nCdly 1
{tdly /1k}
0
0
Rdly 2
1k
N3
0
Cdly 2
{tdly /1k}
HDR
LDR
N1
U1
AND2_ABM
VOH = 12
VOL = 0
Dclmp
DHDR1
U2
AND2_ABM
VOH = 8
VOL = 0
N2
N5
Dclmp
DHDR2
N7
RHDR1
0.01
U5
INV_ABM
VOH = 1.709
VOL = 0
RHDR2
0.01
N6

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ABM Logic Gates Equivalent Circuit

  • 1. ABM Logic Gates Equivalent Circuit U1: AND2_ABM U5: INV_ABM IN+ IN- OUT+ OUT- E1 IF(V(1)>1.08 & V(2)>1.08, {VOH}, {VOL}) EVALUE R1 10 C1 10p 000 3 1 2 PARAMETERS: VOL = 0VOH = 2.5 IN+ IN- OUT+ OUT- E2 IF(V(1)>1.08, {VOL}, {VOH}) EVALUE R2 10 C2 10p 000 1 2 PARAMETERS: VOL = 0VOH = 2.5 V1 TD = {1/FREQ} TF = 1n PW = {D/FREQ} PER = {1/FREQ} V1 = 0 TR = 1n V2 = 1.709 PARAMETERS: FREQ = 152kHz D = 0.36 tdly = 80n 0 Rdly 1 1k N4 CHDR 1nCdly 1 {tdly /1k} 0 0 Rdly 2 1k N3 0 Cdly 2 {tdly /1k} HDR LDR N1 U1 AND2_ABM VOH = 12 VOL = 0 Dclmp DHDR1 U2 AND2_ABM VOH = 8 VOL = 0 N2 N5 Dclmp DHDR2 N7 RHDR1 0.01 U5 INV_ABM VOH = 1.709 VOL = 0 RHDR2 0.01 N6