74VHC245FT
1
CMOS Digital Integrated Circuits Silicon Monolithic
74VHC245FT
74VHC245FT
74VHC245FT
74VHC245FT
Start of commercial production
2013-04
1.
1.
1.
1. Functional Description
Functional Description
Functional Description
Functional Description
Octal Bus Transceiver
2.
2.
2.
2. General
General
General
General
The 74VHC245FT is an advanced high speed CMOS OCTAL BUS TRANSCEIVER fabricated with silicon gate
C2MOS technology.
It achieves the high speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS
low power dissipation.
It is intended for two-way asynchronous communication between data busses. The direction of data transmission
is determined by the level of the DIR input.
The enable input (G) can be used to disable the device so that the busses are effectively isolated.
All inputs are equipped with protection circuits against static discharge.
3.
3.
3.
3. Features (Note)
Features (Note)
Features (Note)
Features (Note)
(1) AEC-Q100 (Rev. H) (Note 1)
(2) Wide operating temperature range: Topr = -40 to 125
(3) High speed: Propagation delay time = 4.0 ns (typ.) at VCC = 5.0 V
(4) Low power dissipation: ICC = 4.0 µA (max) at Ta = 25
(5) High noise immunity: VNIH = VNIL = 28 % VCC (min)
(6) Balanced propagation delays: tPLH tPHL
(7) Wide operating voltage range: VCC(opr) = 2.0 V to 5.5 V
(8) Low noise: VOLP = 1.0 V (max)
(9) Pin and function compatible with the 74 series (74AC/HC/AHC etc.) 245 type.
Note: Do not apply a signal to any bus terminal when it is in the output mode. Damage may result.
All floating (high impedance) bus terminals must have their input levels fixed by means of pull up or pull down
resistors.
A parasitic diode is formed between the bus and VCC terminals. Therefore bus terminal can not be used to
interface 5 V to 3 V systems directly.
Note 1: This device is compliant with the reliability requirements of AEC-Q100. For details, contact your Toshiba sales
representative.
4.
4.
4.
4. Packaging
Packaging
Packaging
Packaging
TSSOP20B
2017-02-22
Rev.4.0
©2017 Toshiba Corporation
74VHC245FT
2
5.
5.
5.
5. Pin Assignment
Pin Assignment
Pin Assignment
Pin Assignment
6.
6.
6.
6. Marking
Marking
Marking
Marking
7.
7.
7.
7. IEC Logic Symbol
IEC Logic Symbol
IEC Logic Symbol
IEC Logic Symbol
2017-02-22
Rev.4.0
©2017 Toshiba Corporation
74VHC245FT
3
8.
8.
8.
8. Truth Table
Truth Table
Truth Table
Truth Table
Input G
L
L
H
Input DIR
L
H
X
A BUS
Output
Input
Z
B BUS
Input
Output
Z
Output
A = B
B = A
Z
X: Don't care
Z: High impedance
9.
9.
9.
9. Absolute Maximum Ratings (Note)
Absolute Maximum Ratings (Note)
Absolute Maximum Ratings (Note)
Absolute Maximum Ratings (Note)
Characteristics
Supply voltage
Input voltage(DIR,G)
Bus I/O voltage
Input diode current
Output diode current
Output current
VCC/ground current
Power dissipation
Storage temperature
Symbol
VCC
VIN
VI/O
IIK
IOK
IOUT
ICC
PD
Tstg
Note
(Note 1)
Rating
-0.5 to 7.0
-0.5 to 7.0
-0.5 to VCC + 0.5
-20
±20
±25
±75
180
-65 to 150
Unit
V
V
V
mA
mA
mA
mA
mW
Note: Exceeding any of the absolute maximum ratings, even briefly, lead to deterioration in IC performance or even
destruction.
Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the
significant change in temperature, etc.) may cause this product to decrease in the reliability significantly even
if the operating conditions (i.e. operating temperature/current/voltage, etc.) are within the absolute maximum
ratings and the operating ranges.
Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook
(“Handling Precautions”/“Derating Concept and Methods”) and individual reliability data (i.e. reliability test report
and estimated failure rate, etc).
Note 1: 180 mW in the range of Ta = -40 to 85 . From Ta = 85 to 125 a derating factor of -3.25 mW/ shall be
applied until 50 mW.
10.
10.
10.
10. Operating Ranges (Note)
Operating Ranges (Note)
Operating Ranges (Note)
Operating Ranges (Note)
Characteristics
Supply voltage
Input voltage(DIR,G)
Bus I/O voltage
Operating temperature
Input rise and fall times
Symbol
VCC
VIN
VI/O
Topr
dt/dv
Test Condition
VCC = 3.3 ± 0.3 V
VCC = 5.0 ± 0.5 V
Rating
2.0 to 5.5
0 to 5.5
0 to VCC
-40 to 125
0 to 100
0 to 20
Unit
V
V
V
ns/V
Note: The operating ranges are required to ensure the normal operation of the device. Unused inputs and bus inputs
must be tied to either VCC or GND. Please connect both bus inputs and the bus outputs with VCC or GND when
the I/O of the bus terminal changes by the function. In this case, please note that the output is not short-circuited.
2017-02-22
Rev.4.0
©2017 Toshiba Corporation
74VHC245FT
4
11.
11.
11.
11. Electrical Characteristics
Electrical Characteristics
Electrical Characteristics
Electrical Characteristics
11.1.
11.1.
11.1.
11.1. DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, Ta
a
a
a = 25
= 25
= 25
= 25
)
)
)
)
Characteristics
High-level input voltage
Low-level input voltage
High-level output voltage
Low-level output voltage
3-state output OFF-state
leakage current
Input leakage current
Quiescent supply current
Symbol
VIH
VIL
VOH
VOL
IOZ
IIN
ICC
Test Condition
VIN = VIH or VIL
VIN = VIH or VIL
VIN = VIH or VIL
VOUT = VCC or GND
VIN = 5.5 V or GND
VIN = VCC or GND
IOH = -50 µA
IOH = -4 mA
IOH = -8 mA
IOL = 50 µA
IOL = 4 mA
IOL = 8 mA
VCC (V)
2.0
3.0 to 5.5
2.0
3.0 to 5.5
2.0
3.0
4.5
3.0
4.5
2.0
3.0
4.5
3.0
4.5
5.5
0 to 5.5
5.5
Min
1.50
VCC
× 0.7
1.9
2.9
4.4
2.58
3.94
Typ.
2.0
3.0
4.5
0.0
0.0
0.0
Max
0.50
VCC
× 0.3
0.1
0.1
0.1
0.36
0.36
±0.25
±0.1
4.0
Unit
V
V
V
V
µA
µA
µA
11.2.
11.2.
11.2.
11.2. DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, Ta
a
a
a = -40 to 85
= -40 to 85
= -40 to 85
= -40 to 85
)
)
)
)
Characteristics
High-level input voltage
Low-level input voltage
High-level output voltage
Low-level output voltage
3-state output OFF-state
leakage current
Input leakage current
Quiescent supply current
Symbol
VIH
VIL
VOH
VOL
IOZ
IIN
ICC
Test Condition
VIN = VIH or VIL
VIN = VIH or VIL
VIN = VIH or VIL
VOUT = VCC or GND
VIN = 5.5 V or GND
VIN = VCC or GND
IOH = -50 µA
IOH = -4 mA
IOH = -8 mA
IOL = 50 µA
IOL = 4 mA
IOL = 8 mA
VCC (V)
2.0
3.0 to 5.5
2.0
3.0 to 5.5
2.0
3.0
4.5
3.0
4.5
2.0
3.0
4.5
3.0
4.5
5.5
0 to 5.5
5.5
Min
1.50
VCC × 0.7
1.9
2.9
4.4
2.48
3.80
Max
0.50
VCC × 0.3
0.1
0.1
0.1
0.44
0.44
±2.50
±1.0
40.0
Unit
V
V
V
V
µA
µA
µA
2017-02-22
Rev.4.0
©2017 Toshiba Corporation
74VHC245FT
5
11.3.
11.3.
11.3.
11.3. DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, T
DC Characteristics (Unless otherwise specified, Ta
a
a
a = -40 to 125
= -40 to 125
= -40 to 125
= -40 to 125
)
)
)
)
Characteristics
High-level input voltage
Low-level input voltage
High-level output voltage
Low-level output voltage
3-state output OFF-state
leakage current
Input leakage current
Quiescent supply current
Symbol
VIH
VIL
VOH
VOL
IOZ
IIN
ICC
Test Condition
VIN = VIH or VIL
VIN = VIH or VIL
VIN = VIH or VIL
VOUT = VCC or GND
VIN = 5.5 V or GND
VIN = VCC or GND
IOH = -50 µA
IOH = -4 mA
IOH = -8 mA
IOL = 50 µA
IOL = 4 mA
IOL = 8 mA
VCC (V)
2.0
3.0 to 5.5
2.0
3.0 to 5.5
2.0
3.0
4.5
3.0
4.5
2.0
3.0
4.5
3.0
4.5
5.5
0 to 5.5
5.5
Min
1.50
VCC × 0.7
1.9
2.9
4.4
2.40
3.70
Max
0.50
VCC × 0.3
0.1
0.1
0.1
0.55
0.55
±10.0
±2.0
80.0
Unit
V
V
V
V
µA
µA
µA
11.4.
11.4.
11.4.
11.4. AC Characteristics (Unless otherwise specified, T
AC Characteristics (Unless otherwise specified, T
AC Characteristics (Unless otherwise specified, T
AC Characteristics (Unless otherwise specified, Ta
a
a
a = 25
= 25
= 25
= 25
, Input: t
, Input: t
, Input: t
, Input: tr
r
r
r = t
= t
= t
= tf
f
f
f = 3 ns)
= 3 ns)
= 3 ns)
= 3 ns)
Characteristics
Propagation delay time
3-state output enable time
3-state output disable time
Output skew
Input capacitance
Bus I/O capacitance
Power dissipation capacitance
Symbol
tPLH,tPHL
tPZL,tPZH
tPLZ,tPHZ
tosLH,tosHL
CIN
CI/O
CPD
Note
(Note 1)
(Note 2)
Test Condition
RL = 1 k
RL = 1 k
DIR, G
An, Bn
VCC (V)
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
CL (pF)
15
50
15
50
15
50
15
50
50
50
50
50
Min
Typ.
5.8
8.3
4.0
5.5
8.5
11.0
5.8
7.3
11.5
7.0
4
8
21
Max
8.4
11.9
5.5
7.5
13.2
16.7
8.5
10.6
15.8
9.7
1.5
1.0
10
Unit
ns
ns
ns
ns
pF
pF
pF
Note 1: Parameter guaranteed by design. (tosLH = |tPLHm-tPLHn|, tosHL = |tPHLm-tPHLn|)
Note 2: CPD is defined as the value of the internal equivalent capacitance which is calculated from the operating current
consumption without load. Average operating current can be obtained by the equation.
ICC(opr) = CPD × VCC × fIN + ICC/8 (per bit)
2017-02-22
Rev.4.0
©2017 Toshiba Corporation
74VHC245FT
6
11.5.
11.5.
11.5.
11.5. AC Characteristics
AC Characteristics
AC Characteristics
AC Characteristics
(Unless otherwise specified, T
(Unless otherwise specified, T
(Unless otherwise specified, T
(Unless otherwise specified, Ta
a
a
a = -40 to 85
= -40 to 85
= -40 to 85
= -40 to 85
, Input: t
, Input: t
, Input: t
, Input: tr
r
r
r = t
= t
= t
= tf
f
f
f = 3 ns)
= 3 ns)
= 3 ns)
= 3 ns)
Characteristics
Propagation delay time
3-state output enable time
3-state output disable time
Output skew
Input capacitance
Symbol
tPLH,tPHL
tPZL,tPZH
tPLZ,tPHZ
tosLH,tosHL
CIN
Note
(Note 1)
Test Condition
RL = 1 k
RL = 1 k
DIR, G
VCC (V)
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
CL (pF)
15
50
15
50
15
50
15
50
50
50
50
50
Min
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Max
10.0
13.5
6.5
8.5
15.5
19.0
10.0
12.0
18.0
11.0
1.5
1.0
10
Unit
ns
ns
ns
ns
pF
Note 1: Parameter guaranteed by design. (tosLH = |tPLHm-tPLHn|, tosHL = |tPHLm-tPHLn|)
11.6.
11.6.
11.6.
11.6. AC Characteristics
AC Characteristics
AC Characteristics
AC Characteristics
(Unless otherwise specified, T
(Unless otherwise specified, T
(Unless otherwise specified, T
(Unless otherwise specified, Ta
a
a
a = -40 to 125
= -40 to 125
= -40 to 125
= -40 to 125
, Input: t
, Input: t
, Input: t
, Input: tr
r
r
r = t
= t
= t
= tf
f
f
f = 3 ns)
= 3 ns)
= 3 ns)
= 3 ns)
Characteristics
Propagation delay time
3-state output enable time
3-state output disable time
Output skew
Input capacitance
Symbol
tPLH,tPHL
tPZL,tPZH
tPLZ,tPHZ
tosLH,tosHL
CIN
Note
(Note 1)
Test Condition
RL = 1 k
RL = 1 k
DIR, G
VCC (V)
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
3.3 ± 0.3
5.0 ± 0.5
CL (pF)
15
50
15
50
15
50
15
50
50
50
50
50
Min
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Max
11.5
15.0
7.5
9.5
17.0
20.5
11.5
13.5
19.5
12.5
1.5
1.0
10
Unit
ns
ns
ns
ns
pF
Note 1: Parameter guaranteed by design. (tosLH = |tPLHm-tPLHn|, tosHL = |tPHLm-tPHLn|)
11.7.
11.7.
11.7.
11.7. Noise Characteristics (Unless otherwise specified, T
Noise Characteristics (Unless otherwise specified, T
Noise Characteristics (Unless otherwise specified, T
Noise Characteristics (Unless otherwise specified, Ta
a
a
a = 25
= 25
= 25
= 25
, Input: t
, Input: t
, Input: t
, Input: tr
r
r
r = t
= t
= t
= tf
f
f
f = 3 ns)
= 3 ns)
= 3 ns)
= 3 ns)
Characteristics
Quiet output maximum dynamic VOL
Quiet output minimum dynamic VOL
Minimum high-level dynamic input voltage
Maximum low-level dynamic input voltage
Symbol
VOLP
VOLV
VIHD
VILD
Test Condition
CL = 50 pF
CL = 50 pF
CL = 50 pF
CL = 50 pF
VCC (V)
5.0
5.0
5.0
5.0
Typ.
0.7
-0.7
Limit
1.0
-1.0
3.5
1.5
Unit
V
V
V
V
2017-02-22
Rev.4.0
©2017 Toshiba Corporation
74VHC245FT
7
12.
12.
12.
12. Internal Equivalent Circuit
Internal Equivalent Circuit
Internal Equivalent Circuit
Internal Equivalent Circuit
13.
13.
13.
13. Bus Terminal Equivalent Circuit
Bus Terminal Equivalent Circuit
Bus Terminal Equivalent Circuit
Bus Terminal Equivalent Circuit
2017-02-22
Rev.4.0
©2017 Toshiba Corporation
74VHC245FT
8
Package Dimensions
Package Dimensions
Package Dimensions
Package Dimensions
Unit: mm
Weight: 0.071 g (typ.)
Package Name(s)
Nickname: TSSOP20B
2017-02-22
Rev.4.0
©2017 Toshiba Corporation
74VHC245FT
9
RESTRICTIONS ON PRODUCT USE
RESTRICTIONS ON PRODUCT USE
RESTRICTIONS ON PRODUCT USE
RESTRICTIONS ON PRODUCT USE
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in this document, and related hardware, software and systems (collectively "Product") without notice.
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written permission, reproduction is permissible only if reproduction is without alteration/omission.
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for complying with safety standards and for providing adequate designs and safeguards for their hardware, software and systems which
minimize risk and avoid situations in which a malfunction or failure of Product could cause loss of human life, bodily injury or damage
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the Product into their own applications, customers must also refer to and comply with (a) the latest versions of all relevant TOSHIBA
information, including without limitation, this document, the specifications, the data sheets and application notes for Product and the
precautions and conditions set forth in the "TOSHIBA Semiconductor Reliability Handbook" and (b) the instructions for the application
with which the Product will be used with or for. Customers are solely responsible for all aspects of their own product design or applications,
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and determining the applicability of any information contained in this document, or in charts, diagrams, programs, algorithms, sample
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EXTRAORDINARILY HIGH LEVELS OF QUALITY AND/OR RELIABILITY, AND/OR A MALFUNCTION OR FAILURE OF WHICH MAY
EXTRAORDINARILY HIGH LEVELS OF QUALITY AND/OR RELIABILITY, AND/OR A MALFUNCTION OR FAILURE OF WHICH MAY
EXTRAORDINARILY HIGH LEVELS OF QUALITY AND/OR RELIABILITY, AND/OR A MALFUNCTION OR FAILURE OF WHICH MAY
EXTRAORDINARILY HIGH LEVELS OF QUALITY AND/OR RELIABILITY, AND/OR A MALFUNCTION OR FAILURE OF WHICH MAY
CAUSE LOSS OF HUMAN LIFE, BODILY INJURY, SERIOUS PROPERTY DAMAGE AND/OR SERIOUS PUBLIC IMPACT
CAUSE LOSS OF HUMAN LIFE, BODILY INJURY, SERIOUS PROPERTY DAMAGE AND/OR SERIOUS PUBLIC IMPACT
CAUSE LOSS OF HUMAN LIFE, BODILY INJURY, SERIOUS PROPERTY DAMAGE AND/OR SERIOUS PUBLIC IMPACT
CAUSE LOSS OF HUMAN LIFE, BODILY INJURY, SERIOUS PROPERTY DAMAGE AND/OR SERIOUS PUBLIC IMPACT
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("UNINTENDED USE").
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Please contact your TOSHIBA sales representative for details as to environmental matters such as the RoHS compatibility of Product.
Please use Product in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances,
including without limitation, the EU RoHS Directive. TOSHIBA ASSUMES NO LIABILITY FOR DAMAGES OR LOSSES OCCURRING
TOSHIBA ASSUMES NO LIABILITY FOR DAMAGES OR LOSSES OCCURRING
TOSHIBA ASSUMES NO LIABILITY FOR DAMAGES OR LOSSES OCCURRING
TOSHIBA ASSUMES NO LIABILITY FOR DAMAGES OR LOSSES OCCURRING
AS A RESULT OF NONCOMPLIANCE WITH APPLICABLE LAWS AND REGULATIONS.
AS A RESULT OF NONCOMPLIANCE WITH APPLICABLE LAWS AND REGULATIONS.
AS A RESULT OF NONCOMPLIANCE WITH APPLICABLE LAWS AND REGULATIONS.
AS A RESULT OF NONCOMPLIANCE WITH APPLICABLE LAWS AND REGULATIONS.
2017-02-22
Rev.4.0
©2017 Toshiba Corporation