A42MX09-1TQG176M Microsemi, A42MX09-1TQG176M Datasheet - Page 37

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A42MX09-1TQG176M

Manufacturer Part Number
A42MX09-1TQG176M
Description
Ic Fpga Mx Sgl Chip 14k 176-Tqfp
Manufacturer
Microsemi
Datasheet

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Table 1-11 • A42MX09 Timing Characteristics (Nominal 5.0V Operation)
Worst-Case Automotive Conditions, V
Parameter
Input Module Predicted Routing Delays
t
t
t
t
t
Global Clock Network
t
t
t
t
t
t
t
t
f
TTL Output Module Timing
t
t
t
Notes:
1. For dual-module macros, use t
2. Routing delays are for typical designs across worst-case operating conditions. These parameters should be used for estimating
3. Data applies to macros based on the S-module. Timing parameters for sequential macros constructed from C-modules can be
4. Setup and hold timing parameters for the input buffer latch are defined with respect to the PAD and the D input. External setup/
5. Delays based on 35 pF loading.
IRD1
IRD2
IRD3
IRD4
IRD8
CKH
CKL
PWH
PWL
CKSW
SUEXT
HEXT
P
MAX
DLH
DHL
ENZH
device performance. Post-route timing analysis or simulation is required to determine actual performance.
obtained from the Timer tool.
hold timing parameters must account for delay from an external PAD signal to the G inputs. Delay from an external PAD signal to
the G input subtracts (adds) to the internal setup (hold) time.
FO=1 Routing Delay
FO=2 Routing Delay
FO=3 Routing Delay
FO=4 Routing Delay
FO=8 Routing Delay
Input Low to HIGH
Input High to LOW
Minimum Pulse Width HIGH
Minimum Pulse Width LOW
Maximum Skew
Input Latch External Setup
Input Latch External Hold
Minimum Period
Maximum Frequency
Data-to-Pad HIGH
Data-to-Pad LOW
Enable Pad Z to HIGH
5
PD1
+ t
RD1
CCA
2
+ t
= 4.75V, T
PDn
Description
, t
CO
+ t
J
= 125°C
RD1
+ t
v3.1
PDn
, or t
PD1
+ t
RD1
+ t
40MX and 42MX Automotive FPGA Families
FO = 32
FO = 256
FO = 32
FO = 256
FO = 32
FO = 256
FO = 32
FO = 256
FO = 32
FO = 256
FO = 32
FO = 256
FO = 32
FO = 256
FO = 32
FO = 256
FO = 32
FO = 256
SUD
, whichever is appropriate.
Min.
2.0
2.2
2.0
2.2
0.0
0.0
3.9
4.4
5.3
5.8
Std. Speed
Max.
192
174
3.4
3.8
4.2
4.6
6.2
4.0
4.5
5.8
6.4
0.6
0.6
4.0
4.8
4.4
Units
MHz
MHz
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
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