tINYH Pad-to-Y HIGH " />
鍙冩暩(sh霉)璩囨枡
鍨嬭櫉锛� A40MX04-2PQ100I
寤犲晢锛� Microsemi SoC
鏂囦欢闋佹暩(sh霉)锛� 96/142闋�
鏂囦欢澶�?銆�?/td> 0K
鎻忚堪锛� IC FPGA MX SGL CHIP 6K 100-PQFP
妯�(bi膩o)婧�(zh菙n)鍖呰锛� 66
绯诲垪锛� MX
杓稿叆/杓稿嚭鏁�(sh霉)锛� 69
闁€鏁�(sh霉)锛� 6000
闆绘簮闆诲锛� 3 V ~ 3.6 V锛�4.5 V ~ 5.5 V
瀹夎椤炲瀷锛� 琛ㄩ潰璨艰
宸ヤ綔婧害锛� -40°C ~ 85°C
灏佽/澶栨锛� 100-BQFP
渚涙噳(y墨ng)鍟嗚ō(sh猫)鍌欏皝瑁濓細 100-PQFP锛�14x20锛�
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40MX and 42MX FPGA Families
Re vi s i on 11
1 - 53
Input Module Propagation Delays
tINYH
Pad-to-Y HIGH
1.0
1.2
1.3
1.6
2.2
ns
tINYL
Pad-to-Y LOW
0.8
0.9
1.0
1.2
1.7
ns
tINGH
G to Y HIGH
1.3
1.4
1.6
1.9
2.7
ns
tINGL
G to Y LOW
1.3
1.4
1.6
1.9
2.7
ns
Input Module Predicted Routing Delays2
tIRD1
FO = 1 Routing Delay
2.0
2.2
2.5
3.0
4.2
ns
tIRD2
FO = 2 Routing Delay
2.3
2.5
2.9
3.4
4.7
ns
tIRD3
FO = 3 Routing Delay
2.5
2.8
3.2
3.7
5.2
ns
tIRD4
FO = 4 Routing Delay
2.8
3.1
3.5
4.1
5.7
ns
tIRD8
FO = 8 Routing Delay
3.7
4.1
4.7
5.5
7.7
ns
Global Clock Network
tCKH
Input LOW to HIGH
FO = 32
FO = 256
2.4
2.7
3.0
3.4
3.6
4.0
5.0
5.5
ns
tCKL
Input HIGH to LOW
FO = 32
FO = 256
3.5
3.9
4.3
4.4
4.9
5.2
5.7
7.3
8.0
ns
tPWH
Minimum Pulse
Width HIGH
FO = 32
FO = 256
1.2
1.3
1.4
1.5
1.7
1.8
2.0
2.5
2.7
ns
tPWL
Minimum Pulse
Width LOW
FO = 32
FO = 256
1.2
1.3
1.4
1.5
1.7
1.8
2.0
2.5
2.7
ns
tCKSW
Maximum Skew
FO = 32
FO = 256
0.3
0.4
0.5
0.6
ns
tSUEXT
Input Latch
External Set-Up
FO = 32
FO = 256
0.0
ns
tHEXT
Input Latch
External Hold
FO = 32
FO = 256
2.3
2.2
2.6
2.4
3.0
3.3
3.5
3.9
4.9
5.5
ns
tP
Minimum Period
FO = 32
FO = 256
3.4
3.7
4.1
4.0
4.5
4.7
5.2
7.8
8.6
ns
fMAX
Maximum Frequency FO = 32
FO = 256
296
268
269
244
247
224
215
195
129
117
MHz
Table 1-32 A42MX09 Timing Characteristics (Nominal 5.0 V Operation) (continued)
(Worst-Case Commercial Conditions, VCCA = 4.75 V, TJ = 70掳C)
鈥�3 Speed
鈥�2 Speed
鈥�1 Speed
Std Speed
鈥揊 Speed
Units
Parameter / Description
Min. Max. Min. Max. Min. Max. Min. Max. Min. Max.
Notes:
1. For dual-module macros, use tPD1 + tRD1 + tPDn, tCO + tRD1 + tPDn, or tPD1 + tRD1 + tSUD, whichever is appropriate.
2. Routing delays are for typical designs across worst-case operating conditions. These parameters should be used for
estimating device performance. Post-route timing analysis or simulation is required to determine actual performance.
3. Data applies to macros based on the S-module. Timing parameters for sequential macros constructed from C-modules
can be obtained from the Timer utility.
4. Set-up and hold timing parameters for the input buffer latch are defined with respect to the PAD and the D input. External
setup/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.
5. Delays based on 35 pF loading.
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