HEF40098BT,653 NXP Semiconductors, HEF40098BT,653 Datasheet - Page 5

IC INVERTER DL 4,2-INPUT 16SOIC

HEF40098BT,653

Manufacturer Part Number
HEF40098BT,653
Description
IC INVERTER DL 4,2-INPUT 16SOIC
Manufacturer
NXP Semiconductors
Series
4000Br
Datasheet

Specifications of HEF40098BT,653

Package / Case
16-SOIC (3.9mm Width)
Logic Type
Inverter
Number Of Inputs
4, 2
Number Of Circuits
2
Current - Output High, Low
10mA, 20mA
Voltage - Supply
4.5 V ~ 15.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Logic Family
HEF4000
Number Of Channels Per Chip
6
Polarity
Inverting
Supply Voltage (max)
15 V
Supply Voltage (min)
3 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
High Level Output Current
- 12.5 mA (Min)
Input Bias Current (max)
16 uA
Low Level Output Current
25 mA (Min)
Minimum Operating Temperature
- 40 C
Output Type
3-State
Propagation Delay Time
160 ns @ 5 V or 70 ns @ 10 V or 50 ns @ 15 V
Number Of Lines (input / Output)
6 / 6
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
933373410653
HEF40098BTD-T
HEF40098BTD-T
NXP Semiconductors
11. Dynamic characteristics
Table 7.
V
[1]
Table 8.
P
HEF40098B_6
Product data sheet
Symbol
t
t
t
t
t
t
t
t
Symbol
P
PHL
PLH
THL
TLH
PHZ
PLZ
PZH
PZL
SS
D
D
can be calculated (in W) from the formulas shown. V
= 0 V; T
The typical value of the propagation delay and transition times are calculated from the extrapolation formula as shown (C
Parameter
HIGH to LOW
propagation delay
LOW to HIGH
propagation delay
HIGH to LOW output
transition time
LOW to HIGH output
transition time
HiGH to OFF-state
propagation delay
LOW to OFF-state
propagation delay
OFF-state to HIGH
propagation delay
OFF-state to LOW
propagation delay
Dynamic characteristics
Dynamic power dissipation P
Parameter
dynamic power
dissipation
amb
= 25 C; for test circuit see
V
10 V
15 V
5 V
DD
Conditions
nAn to nYn;
see
nAn to nYn;
see
see
see
nOE, to nYn;
see
nOE, to nYn;
see
nOE, to nYn;
see
nOE, to nYn;
see
Figure 4
Figure 4
Figure 4
Figure 4
Figure 5
Figure 5
Figure 5
Figure 5
Typical formula for P
P
P
P
Figure
D
D
D
D
= 5000
= 22800
= 81000
6; unless otherwise specified.
Rev. 06 — 24 June 2009
V
10 V
15 V
10 V
15 V
10 V
15 V
10 V
15 V
10 V
15 V
10 V
15 V
10 V
15 V
10 V
15 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
DD
f
i
SS
f
f
+ (f
i
i
+ (f
+ (f
= 0 V; t
o
o
o
Extrapolation formula
70 ns + (0.20 ns/pF) C
31 ns + (0.08 ns/pF) C
22 ns + (0.06 ns/pF) C
50 ns + (0.30 ns/pF) C
24 ns + (0.13 ns/pF) C
23 ns + (0.05 ns/pF) C
15 ns + (0.30 ns/pF) C
10 ns + (0.11 ns/pF) C
10 ns + (0.50 ns/pF) C
7 ns + (0.07 ns/pF) C
8 ns + (0.24 ns/pF) C
6 ns + (0.18 ns/pF) C
D
C
C
C
r
( W)
L
)
= t
L
L
)
)
f
V
V
V
DD
20 ns; T
DD
DD
2
2
2
amb
where:
f
f
C
V
= 25 C.
L
L
L
L
L
L
L
L
L
L
L
L
i
o
(C
[1]
DD
= input frequency in MHz,
L
= output frequency in MHz,
= output load capacitance in pF,
L
= supply voltage in V,
Hex inverting buffer; 3-state
Min
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
f
o
) = sum of the outputs.
HEF40098B
Typ
80
35
25
65
30
25
30
15
10
35
20
15
45
35
30
65
40
35
70
35
30
90
40
35
© NXP B.V. 2009. All rights reserved.
Max
160
130
135
140
185
70
50
60
50
60
30
20
70
40
30
85
65
60
80
70
75
65
85
70
L
in pF).
Unit
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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