Freelance Electronics Components Distributor
Closed Dec 25th-26th
800-300-1968
We Stock Hard to Find Parts

PI90LV179WE

Part # PI90LV179WE
Description SINGLE LVDS TRANSCEIVER PAIR- Rail/Tube
Category IC
Availability In Stock
Qty 37
Qty Price
1 - 7 $3.61135
8 - 15 $2.87266
16 - 23 $2.70851
24 - 31 $2.51700
32 + $2.24341
Manufacturer Available Qty
PERICOM
  • Shipping Freelance Stock: 3
    Ships Immediately
PERICOM
  • Shipping Freelance Stock: 16
    Ships Immediately
PERICOM
  • Shipping Freelance Stock: 13
    Ships Immediately
PERICOM
  • Shipping Freelance Stock: 5
    Ships Immediately



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.

1
All trademarks are property of their respective owners. www.pericom.com 09/25/15
Features
Signaling Rates >660 Mbps (330 MHz)
Single 3.3V Power Supply Design
Driver:
— ±350mV Differential Swing into a 100-ohm load
— Propogation Delay of 1.5ns Typ.
— Low Voltage TTL (LVTTL) Inputs are 5V Tolerant
Receiver:
Accepts ±50mV (min.) Differential Swing with up to 2.0V
ground potential difference
— Propagation Delay of 3.3ns Typ.
— Low Voltage TTL (LVTTL) Outputs
— Open, Short, and Terminated Fail Safe
Industrial Temperature Operating Range: –40°C to 85°C
Meets or Exceeds IEEE 1596.3 SCI Standard
Meets or Exceeds ANSI/TIA/EIA-644 LVDS Standard
Bus terminal ESD = 2KV HBM
Packaging (Pb-free & Green available):
— 8-pin SOIC or MSOP
Pin Diagram & Block Diagram
V
CC
R
OUT
R
IN+
R
IN–
D
OUT–
D
OUT+
D
IN
GND
D
IN
R
OUT
D
OUT+
D
OUT-
R
IN+
R
IN-
8-Pin
U, W
Description
The PI90LV179is a differential line driver and receiver (trans-
ceiver) that is compliant with the IEEE 1596.3 SCI and ANSI/
TIA/EIA-644 LVDS standards. This device uses low-voltage
differential signaling (LVDS) to achieve data rates in excess of
660 Mbps while being less susceptible to noise than single-ended
transmission.
The driver translates a low-voltage TTL/CMOS input into a low-
voltage (350mV typical) differential output signal. The receiver
translates a differential 350mV input signal to a 3V CMOS out-
put level.
Applications
Applications include point-to-point and multidrop baseband data
transmission over a controlled impedance media of approxi-
mately 100 ohms. These include intra-system connections via
printed circuit board traces or cables, hubs and routers for data
communi- cations; PBXs, switches, repeaters and base stations
for telecommunications and other applications such as digital
cameras, printers and copiers.
PI90LV179
3.3V LVDS High-Speed Dierential
Line Driver and Receiver
15-0116
2
PI90LV179
3.3V LVDS High-Speed Dierential Line Drivers and Receivers
All trademarks are property of their respective owners. www.pericom.com 09/25/15
Function Tables
Pin Descriptions
PI90LV179 Receiver
Input Output
D
IN
D
OUT+
D
OUT–
L L H
H H L
open L H
Pin Name Description
D
IN
TTL/CMOS driver input pin
D
OUT+
Non-inverting driver output pin
D
OUT-
Inverting driver output pin
R
OUT
TTL/CMOS receiver output pin
R
IN+
Non-inverting receiver input pin
R
IN–
Inverting receiver input pin
GND Ground pin
V
CC
Positive power supply pin, +3.3V ±10%
Inputs Output
V
ID
= V
RIN+
– V
RIN–
H
V
ID
50mV H
–50mV < V
ID
< 50mV ?
V
ID
≤ –50mV L
open H
PI90LV179 Driver
Notes:
H = High Level, L = Low Level, ? = Indeterminate,
Z = High-Impedance, X = Don’t Care
15-0116
3
PI90LV179
3.3V LVDS High-Speed Dierential Line Drivers and Receivers
www.pericom.com 09/25/15 All trademarks are property of their respective owners.
Parameter Test Condition Min. Typ.
(1)
Max. Units
I
CC
(2)
Supply
Current
No receiver load, Driver R
L
= 100 ohms 8.0 10.8 mA
Electrical Characteristics
(Over recommended operating conditions
unless otherwise noted).
Electrical Characteristics
(Over recommended operating conditions
unless otherwise noted).
Parameter Test Conditions Min. Typ. Max. Units
|
V
OD
|
Differential output voltage magnitude
R
L
= 100 ohms
See Figures 1 and 2
247 390 470
mV
D|
V
OD
|
Change in differential output voltage magnitude between
logic states
–50 50
V
OC(SS)
Steady-state common-mode output voltage
See Figure 3
1.125 1.25 1.375 V
D
V
OC(SS)
Change in steady-state common-mode output voltage
between logic states
–50 50
mV
V
OC(PP)
Peak-to-peak common-mode output voltage 50 150
Notes:
1. All typical values are at 25°C with a 3.3V supply
2. I
CC
measured with all TTL input. V
IN
= V
CC
or GND.
Absolute Maximum Ratings
Supply Voltage (V
CC
) ....................................... –0.5V to +4.0V
Driver
Input Voltage (D
IN
) .......................... –0.3V to (Vcc + 0.3V)
Output Voltage (D
OUT+
, D
OUT-
) ....................... –0.3V to +3.9V
Short Circuit Duration (D
OUT+
, D
OUT-
) ..................Continuous
Receiver
Input Voltage (R
IN+
, R
IN-
) .............................. –0.3V to +3.9V
Output Voltage (R
OUT
) ........................–0.3V to (V
CC
+ 0.3V)
Storage Temperature Range ......................... –65°C to +150°C
ESD Rating.............................................................. 2kV HBM
Min. Typ. Max. Units
Supply Voltage (V
CC
) 3 3.3 3.6
V
High Level Input Voltage, V
IH
2
Low Level Input Voltage, V
IL
0.8
Magnitude of Differential Inpu
t
Voltage V
ID
0.1 0.6
Common-mode Input Voltage,
V
IC
(Fig 5)
|V
ID
|
/2
2.4
– |V
ID
|
/2
V
CC
–0.8
Operating Free Air Temperature
T
A
–40 85 °C
Recommended Operating Conditions
Note: Stresses greater than those listed under MAXIMUM
RATINGS may cause permanent damage to the device. is is a
stress rating only and functional operation of the device at these
or any other conditions above those indicated in the operational
sections of this specication is not implied. Exposure to absolute
maximum rating conditions for extended periods may aect
reliability.
15-0116
1234NEXT