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CD40174BMS Datasheet(PDF) 4 Page - Renesas Technology Corp

Part # CD40174BMS
Description  CMOS Hex ‘D’-Type Flip-Flop
PDF  8 Pages
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Manufacturer  RENESAS [Renesas Technology Corp]
Direct Link  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

CD40174BMS Datasheet(HTML) 4 Page - Renesas Technology Corp

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CD40174BMS
Rev X.00
Page 4 of 8
Jan 13, 2017
Specifications CD40174BMS
Output Current (Source)
IOH15
VDD =15V, VOUT = 13.5V
1, 2
+125oC-
-2.4
mA
-55oC-
-4.2
mA
Input Voltage Low
VIL
VDD = 10V, VOH > 9V,
VOL < 1V
1, 2
+25oC, +125oC,
-55oC
-3
V
Input Voltage High
VIH
VDD = 10V, VOH > 9V,
VOL < 1V
1, 2
+25oC, +125oC,
-55oC
+7
-
V
Propagation Delay
Clock to Output
TPHL1
TPLH1
VDD = 10V
1, 2, 3
+25oC
-
140
ns
VDD = 15V
1, 2, 3
+25oC
-
100
ns
Propagation Delay
CLEAR to Output
TPHL2
VDD = 10V
1, 2, 3
+25oC
-
100
ns
VDD = 15V
1, 2, 3
+25oC
-
80
ns
Transition Time
TTHL
TTLH
VDD = 10V
1, 2, 3
+25oC
-
100
ns
VDD = 15V
1, 2, 3
+25oC
-
80
ns
Maximum Clock Input
Frequency
FCL
VDD = 10V
1, 2, 3
+25oC6
-
MHz
VDD = 15V
1, 2, 3
+25oC8
-
MHz
Minimum Data Setup
Time
TS
VDD = 5V
1, 2, 3
+25oC
-
40
ns
VDD = 10V
1, 2, 3
+25oC
-
20
ns
VDD = 15V
1, 2, 3
+25oC
-
10
ns
Minimum Data Hold Time
TH
VDD = 5V
1, 2, 3
+25oC
-
80
ns
VDD = 10V
1, 2, 3
+25oC
-
40
ns
VDD = 15V
1, 2, 3
+25oC
-
30
ns
Minimum Clock Pulse
Width
TW
VDD = 5V
1, 2, 3
+25oC
-
130
ns
VDD = 10V
1, 2, 3
+25oC
-
60
ns
VDD = 15V
1, 2, 3
+25oC
-
40
ns
Maximum Clock Rise and
Fall Time
TRCL
TFCL
VDD = 5V
1, 2, 3, 4
+25oC15
-
s
VDD = 10V
1, 2, 3, 4
+25oC15
-
s
VDD = 15V
1, 2, 3, 4
+25oC15
-
s
Minimum CLEAR
Removal Time
TREM
VDD = 5V
1, 2, 3
+25oC-
0
ns
VDD = 10V
1, 2, 3
+25oC-
0
ns
VDD = 15V
1, 2, 3
+25oC-
0
ns
Minimum CLEAR Pulse
Width
TW
VDD = 5V
1, 2, 3
+25oC
-
100
ns
VDD = 10V
1, 2, 3
+25oC
-
50
ns
VDD = 15V
1, 2, 3
+25oC
-
40
ns
Input Capacitance
CIN
CLEAR
1, 2
+25oC
-
40
pF
All others
1, 2
+25oC-
7.5
pF
NOTES:
1. All voltages referenced to device GND.
2. The parameters listed on Table 3 are controlled via design or process and are not directly tested. These parameters are characterized on
initial design release and upon design changes which would affect these characteristics.
3. CL = 50pF, RL = 200K, Input TR, TF < 20ns.
4. If more than one unit is cascaded, TRCL should be made less than or equal to the sumof the transition time and the fixed propagation
delay of the output of the driving stage for the estimated capacitive load.
TABLE 3. ELECTRICAL PERFORMANCE CHARACTERISTICS
(Continued)
PARAMETER
SYMBOL
CONDITIONS
NOTES
TEMPERATURE
LIMITS
UNITS
MIN
MAX



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