gf180mcu_fd_sc_mcu9t5v0__latsnq_2

gf180mcu_fd_sc_mcu9t5v0__latsnq_2 symbol

gf180mcu_fd_sc_mcu9t5v0__latsnq_2 symbol

gf180mcu_fd_sc_mcu9t5v0__latsnq_2 schematic

gf180mcu_fd_sc_mcu9t5v0__latsnq_2 schematic

gf180mcu_fd_sc_mcu9t5v0__latsnq_2 layout

gf180mcu_fd_sc_mcu9t5v0__latsnq_2 layout
LATSNQ_X2 is a positive D-latch with active low set and 2X drive strength

Attributes

Attribute

Value

area

62.092800 µm2


TRUTH TABLE

Input

Output

SETN

D

E

Q

H

L

H

L

H

H

H

H

H

X

L

Q

L

X

X

H


FUNCTIONAL SCHEMATIC
../../../../../_images/gf180mcu_fd_sc_mcu9t5v0__latsnq_2.png
CONSTRAINTS

Constraint Pin

Related Pin

setup(ns)

hold(ns)

D(HL)

E(HL)

0.3490

-0.3030

D(LH)

E(HL)

0.2630

-0.2180


Constraint Pin

Related Pin

recovery(ns)

removal(ns)

SETN(LH)

E(HL)

-0.0230

0.1030


Constraint Pin

Related Pin

Minimum Pulse Width(ns)

E(LHL)

E(LH)

0.3980

E(LHL)

E(LH)

0.2320

SETN(HLH)

SETN(HL)

0.2120

SETN(HLH)

SETN(HL)

0.2120


PIN CAPACITANCE (pf)

Pin

Type

Capacitance (pf)

E

input

0.0098

D

input

0.0040

SETN

input

0.0070


DELAY AND OUTPUT TRANSITION TIME corresponding to min slew and load

Input Pin

Output

When Condition

Tin (ns)

Out Load (pf)

Delay (ns)

Tout (ns)

E(LH)

Q(LH)

D&SETN

0.0100

0.0010

0.4351

0.0254

E(LH)

Q(HL)

!D&SETN

0.0100

0.0010

0.6310

0.0262

D(LH)

Q(LH)

E&SETN

0.0100

0.0010

0.4666

0.0254

D(HL)

Q(HL)

E&SETN

0.0100

0.0010

0.5939

0.0262

SETN(LH)

Q(HL)

!D&E

0.0100

0.0010

0.2722

0.0259

SETN(HL)

Q(LH)

!D&!E

0.0100

0.0010

0.2568

0.0250

SETN(HL)

Q(LH)

D&!E

0.0100

0.0010

0.2568

0.0250

SETN(HL)

Q(LH)

!D&E

0.0100

0.0010

0.2561

0.0251


DYNAMIC ENERGY

Input Pin

When Condition

Tin (ns)

Output

Out Load (pf)

Energy (uW/MHz)

SETN

!D&E

0.0100

Q(HL)

0.0010

0.5154

SETN

!D&!E

0.0100

Q(LH)

0.0010

0.7875

SETN

D&!E

0.0100

Q(LH)

0.0010

0.7876

SETN

!D&E

0.0100

Q(LH)

0.0010

0.6404

E

D&SETN

0.0100

Q(LH)

0.0010

0.7502

E

!D&SETN

0.0100

Q(HL)

0.0010

0.8441

D

E&SETN

0.0100

Q(LH)

0.0010

0.7448

D

E&SETN

0.0100

Q(HL)

0.0010

0.8810

SETN(HL)

!D&!E

0.0100

n/a

n/a

0.0669

SETN(HL)

D&!E

0.0100

n/a

n/a

0.0669

SETN(HL)

D&E

0.0100

n/a

n/a

0.0669

D(HL)

!E&!SETN

0.0100

n/a

n/a

0.0321

D(HL)

E&!SETN

0.0100

n/a

n/a

0.2437

D(HL)

!E&SETN

0.0100

n/a

n/a

0.0344

E(LH)

!D&!SETN

0.0100

n/a

n/a

0.2014

E(LH)

D&!SETN

0.0100

n/a

n/a

0.0059

E(LH)

!D&SETN

0.0100

n/a

n/a

-0.0019

E(LH)

D&SETN

0.0100

n/a

n/a

-0.0028

D(LH)

!E&!SETN

0.0100

n/a

n/a

-0.0276

D(LH)

E&!SETN

0.0100

n/a

n/a

0.0782

D(LH)

!E&SETN

0.0100

n/a

n/a

-0.0315

SETN(LH)

!D&!E

0.0100

n/a

n/a

-0.0464

SETN(LH)

D&!E

0.0100

n/a

n/a

-0.0464

SETN(LH)

D&E

0.0100

n/a

n/a

-0.0464

E(HL)

!D&!SETN

0.0100

n/a

n/a

0.3140

E(HL)

D&!SETN

0.0100

n/a

n/a

0.2001

E(HL)

D&SETN

0.0100

n/a

n/a

0.2001

E(HL)

!D&SETN

0.0100

n/a

n/a

0.2007


LEAKAGE POWER

When Condition

Power (nW)

!D&!E&!SETN

0.2672

!D&E&!SETN

0.2711

D&!E&!SETN

0.2672

D&E&!SETN

0.2683

D&E&SETN

0.3084

!D&!E&SETN

0.3485

D&!E&SETN

0.3697

!D&E&SETN

0.3002