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74LVX161284

Part # 74LVX161284
Description
Category IC
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Fairchild Semiconductor
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

© 2005 Fairchild Semiconductor Corporation DS500202 www.fairchildsemi.com
January 1999
Revised June 2005
74LVX161284 Low Voltage IEEE 161284 Translating Transceiver
74LVX161284
Low Voltage IEEE 161284 Translating Transceiver
General Description
The LVX161284 contains eight bidirectional data buffers
and eleven control/status buffers to implement a full
IEEE 1284 compliant interface. The device supports the
IEEE 1284 standard and is intended to be used in an
Extended Capabilities Port mode (ECP). The pinout allows
for easy connection from the Peripheral (A-side) to the
Host (cable side).
Outputs on the cable side can be configured to be either
open drain or high drive (
14 mA) and are connected to a
separate power supply pin (V
CC
-cable) to allow these out-
puts to be driven by a higher supply voltage than the A-
side. The pull-up and pull-down series termination resis-
tance of these outputs on the cable side is optimized to
drive an external cable. In addition, all inputs (except HLH)
and outputs on the cable side contain internal pull-up resis-
tors connected to the V
CC
-cable supply to provide proper
termination and pull-ups for open drain mode.
Outputs on the Peripheral side are standard low-drive
CMOS outputs designed to interface with 3V logic. The DIR
input controls data flow on the A
1
–A
8
/B
1
–B
8
transceiver
pins.
Features
Supports IEEE 1284 Level 1 and Level 2 signaling
standards for bidirectional parallel communications
between personal computers and printing peripherals
Translation capability allows outputs on the cable side to
interface with 5V signals
All inputs have hysteresis to provide noise margin
B and Y output resistance optimized to drive external
cable
B and Y outputs in high impedance mode during power
down
Inputs and outputs on cable side have internal pull-up
resistors
Flow-through pin configuration allows easy interface
between the “Peripheral and Host”
Replaces the function of two (2) 74ACT1284 devices
Ordering Code
Device also available in Tape and Reel. Specify by appending suffix letter X to the ordering code.
Connection Diagram Pin Descriptions
Order Number Package Number Package Description
74LVX161284MEA MS48A 48-Lead Small Shrink Outline Package (SSOP), JEDEC MO-118, 0.300" Wide
74LVX161284MTD MTD48 48-Lead Thin Shrink Small Outline Package (TSSOP), JEDEC MO-153, 6.1mm Wide
Pin Names Description
HD High Drive Enable Input (Active HIGH)
DIR Direction Control Input
A
1
A
8
Inputs or Outputs
B
1
B
8
Inputs or Outputs
A
9
A
13
Inputs
Y
9
Y
13
Outputs
A
14
A
17
Outputs
C
14
C
17
Inputs
PLH
IN
Peripheral Logic HIGH Input
PLH Peripheral Logic HIGH Output
HLH
IN
Host Logic HIGH Input
HLH Host Logic HIGH Output
www.fairchildsemi.com 2
74LVX161284
Logic Symbol
Truth Table
Note 1: Y
9
Y
13
Open Drain Outputs
Note 2: B
1
B
8
Open Drain Outputs
Logic Diagram
Inputs Outputs
DIR HD
LLB
1
B
8
Data to A
1
A
8
, and
A
9
A
13
Data to Y
9
Y
13
(Note 1)
C
14
C
17
Data to A
14
A
17
PLH Open Drain Mode
LHB
1
B
8
Data to A
1
A
8
, and
A
9
A
13
Data to Y
9
Y
13
C
14
C
17
Data to A
14
A
17
HLA
1
A
8
Data to B
1
B
8
(Note 2)
A
9
A
13
Data to Y
9
Y
13
(Note 1)
C
14
C
17
Data to A
14
A
17
PLH Open Drain Mode
HHA
1
A
8
Data to B
1
B
8
A
9
A
13
Data to Y
9
Y
13
C
14
C
17
Data to A
14
A
17
3 www.fairchildsemi.com
74LVX161284
Absolute Maximum Ratings(Note 3) Recommended Operating
Conditions
Note 3: Absolute maximum ratings are values beyond which the device
may be damaged or have its useful life impaired. Fairchild does not recom-
mend operation outside the databook specifications.
Note 4: Either voltage limit or current limit is sufficient to protect inputs.
DC Electrical Characteristics
Supply Voltage
V
CC
0.5V to 4.6V
V
CCCable
0.5V to 7.0V
V
CCCable
Must Be V
CC
Input Voltage (V
I
)(Note 4)
A
1
A
13
, PLH
IN
, DIR, HD 0.5V to V
CC
0.5V
B
1
B
8
, C
14
C
17
, HLH
IN
0.5V to 5.5V (DC)
B
1
B
8
, C
14
C
17
, HLH
IN
2.0V to 7.0V*
*40 ns Transient
Output Voltage (V
O
)
A
1
A
8
, A
14
A
17
, HLH 0.5V to V
CC
0.5V
B
1
B
8
, Y
9
Y
13
, PLH 0.5V to 5.5V (DC)
B
1
B
8
, Y
9
Y
13
, PLH 2.0V to 7.0V*
*40 ns Transient
DC Output Current (I
O
)
A
1
A
8
, HLH 25 mA
B
1
B
8
, Y
9
Y
13
50 mA
PLH (Output LOW) 84 mA
PLH (Output HIGH)
50 mA
Input Diode Current (I
IK
)(Note 4)
DIR, HD, A
9
A
13
, PLH, HLH, C
14
C
17
20 mA
Output Diode Current (I
OK
)
A
1
A
8
, A
14
A
17
, HLH 50 mA
B
1
B
8
, Y
9
Y
13
, PLH 50 mA
DC Continuous V
CC
or Ground
Current
200 mA
Storage Temperature
65 C to 150 C
ESD (HBM) Last Passing Voltage 2000V
Supply Voltage
V
CC
3.0V to 3.6V
V
CCCable
3.0V to 5.5V
DC Input Voltage (V
I
)0V to V
CC
Open Drain Voltage (V
O
) 0V to 5.5V
Operating Temperature (T
A
) 40 C to 85 C
Symbol Parameter
V
CC
(V)
V
CC—Cable
(V)
T
A
0 CT
A
40 C
Units Conditions
to 70 Cto 85 C
Guaranteed Limits
V
IK
Input Clamp 3.0 3.0 1.2 1.2 V I
i
18 mA
Diode Voltage
V
IH
Minimum A
n
, B
n
, PLH
IN
, DIR, HD 3.03.6 3.05.5 2.0 2.0
VHIGH Level C
n
3.03.6 3.05.5 2.3 2.3
Input Voltage HLH
IN
3.03.6 3.05.5 2.6 2.6
V
IL
Maximum A
n
, B
n
, PLH
IN
, DIR, HD 3.03.6 3.05.5 0.8 0.8
VLOW Level C
n
3.03.6 3.05.5 0.8 0.8
Input Voltage HLH
IN
3.03.6 3.05.5 1.6 1.6
V
T
Minimum Input A
n
, B
n
, PLH
IN
, DIR, HD 3.3 5.0 0.4 0.4
V
V
T
V
T
Hysteresis C
n
3.3 5.0 0.8 0.8 V
T
V
T
HLH
IN
3.3 5.0 0.2 0.2 V
T
V
T
V
OH
Minimum HIGH A
n
, HLH 3.0 3.0 2.8 2.8
V
I
OH
50 A
Level Output 3.0 3.0 2.4 2.4 I
OH
4 mA
Voltage B
n
, Y
n
3.0 3.0 2.0 2.0 I
OH
14 mA
B
n
, Y
n
3.0 4.5 2.23 2.23 I
OH
14 mA
PLH 3.15 3.15 3.1 3.1 I
OH
500 A
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