1. Stresses greater than those listed under ABSOLUTE MAXIMUM RATINGS may cause
permanent damage to the device. This 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 specification is not implied. Exposure to absolute maximum rating conditions for
extended periods may affect reliability.
CAPACITANCE
(1)
Symbol
C
IN
Parameter
Input Capacitance
(T
A
= +25°C, F = 1.0MHz)
Min
Typ.
6
Max.
Unit
pF
—
—
NOTE:
1. This parameter is measured at characterization but not tested.
TSSOP
TOP VIEW
RECOMMENDED OPERATING RANGE
Symbol
T
A
V
DD
Description
Ambient Operating Temperature
Internal Power Supply Voltage
Min.
–40
2.3
Typ.
+25
2.5
Max.
+85
2.7
Unit
°C
V
2.5V SINGLE DATA RATE
1:10 CLOCK BUFFER
TERABUFFER™ JR.
2
REVISION A 4/14/15
5T9070 DATA SHEET
PIN DESCRIPTION
Symbol
A
G1
G2
GL
Qn
V
DD
GND
I/O
I
I
I
I
O
Type
LVTTL
LVTTL
LVTTL
LVTTL
LVTTL
PWR
PWR
Description
Clock input
Gate for outputs Q
1
through Q
5
. When
G1
is LOW, these outputs are enabled. When
G1
is HIGH, these outputs are asynchro-
nously disabled to the level designated by GL
(1)
.
Gate for outputs Q
6
through Q
10
. When
G2
is LOW, these outputs are enabled. When
G2
is HIGH, these outputs are asyn-
chronously disabled to the level designated by GL
(1)
.
Specifies output disable level. If HIGH, the outputs disable HIGH. If LOW, the outputs disable LOW.
Clock outputs
Power supply for the device core, inputs, and outputs
Power supply return for power
NOTE:
1. Because the gate controls are asynchronous, runt pulses are possible. It is the user's responsibility to either time the gate control signals to minimize the possibility of runt pulses or
be able to tolerate them in down stream circuitry.
DC ELECTRICAL CHARACTERISTICS OVER OPERATING RANGE
Symbol
I
IH
I
IL
V
IK
V
IN
V
IH
V
IL
V
OH
V
OL
Parameter
Input HIGH Current
Input LOW Current
Clamp Diode Voltage
DC Input Voltage
DC Input HIGH
(2)
DC Input LOW
(3)
Output HIGH Voltage
Output LOW Voltage
Test Conditions
V
DD
= 2.7V
V
I
= V
DD
/GND
V
DD
= 2.7V
V
I
= GND/V
DD
V
DD
= 2.3V, I
IN
= -18mA
Min.
—
—
—
- 0.3
1.7
—
V
DD
- 0.4
V
DD
- 0.1
—
—
Typ.
(4)
—
—
- 0.7
(1)
I
OH
= -12mA
I
OH
= -100μA
I
OL
= 12mA
I
OL
= 100μA
Max
±5
±5
- 1.2
+3.6
—
0.7
—
—
0.4
0.1
Unit
μA
V
V
V
V
V
V
V
V
NOTES:
1. See RECOMMENDED OPERATING RANGE table.
2. Voltage required to maintain a logic HIGH.
3. Voltage required to maintain a logic LOW.
4. Typical values are at V
DD
= 2.5V, +25°C ambient.
REVISION A 4/14/15
3
2.5V SINGLE DATA RATE
1:10 CLOCK BUFFER
TERABUFFER™ JR.
5T9070 DATA SHEET
POWER SUPPLY CHARACTERISTICS
Symbol
I
DDQ
I
DDD
I
TOT
Parameter
Quiescent V
DD
Power Supply Current
Dynamic V
DD
Power Supply
Current per Output
Total Power V
DD
Supply Current
Test Conditions
(1)
V
DD
= Max., Reference Clock = LOW
Outputs enabled, All outputs unloaded
V
DD
= Max., V
DD
= Max., C
L
= 0pF
V
DD
= 2.5V., F
REFERENCE CLOCK
= 100MHz, C
L
= 15pF
V
DD
= 2.5V., F
REFERENCE CLOCK
= 200MHz, C
L
= 15pF
Typ.
1.5
150
70
100
Max
2
200
90
150
Unit
mA
μA/MHz
mA
NOTE:
1. The termination resistors are excluded from these measurements.
INPUT AC TEST CONDITIONS
Symbol
V
IH
V
IL
V
TH
t
R
, t
F
Parameter
Input HIGH Voltage
Input LOW Voltage
Input Timing Measurement Reference Level
(1)
Input Signal Edge Rate
(2)
Value
V
DD
0
V
DD
/2
2
Units
V
V
V
V/ns
NOTES:
1. A nominal 1.25V timing measurement reference level is specified to allow constant, repeatable results in an automatic test equipment (ATE) environment.
2. The input signal edge rate of 2V/ns or greater is to be maintained in the 10% to 90% range of the input waveform.
AC ELECTRICAL CHARACTERISTICS OVER OPERATING RANGE
(4)
Symbol
Skew Parameters
t
SK
(
O
)
t
SK
(
P
)
t
SK
(
PP
)
Propagation Delay
t
PLH
t
PHL
t
R
Output Rise Time (20% to 80%)
350
350
—
—
—
—
—
—
—
—
850
850
200
3.5
3
ps
ps
MHz
ns
ns
t
F
Output Fall Time (20% to 80%)
f
O
Frequency Range
Output Gate Enable/Disable Delay
t
PGE
t
PGD
Output Gate Enable to Qn
Output Gate Enable to Qn Driven to GL Designated Level
Parameter
Same Device Output Pin-to-Pin Skew
(1)
Pulse Skew
(2)
Min.
—
—
—
—
Typ.
—
—
—
—
Max
125
300
300
2
Unit
ps
ps
ps
ns
Part-to-Part Skew
(3)
Propagation Delay A to Qn
NOTES:
1. Skew measured between all outputs under identical input and output transitions and load conditions on any one device.
2. Skew measured is the difference between propagation delay times t
PHL
and t
PLH
of any output under identical input and output transitions and load conditions on any one device.
3. Skew measured is the magnitude of the difference in propagation times between any outputs of two devices, given identical transitions and load conditions at identical V
DD
levels and
temperature.
4. Guaranteed by design.
2.5V SINGLE DATA RATE
1:10 CLOCK BUFFER
TERABUFFER™ JR.
4
REVISION A 4/14/15
5T9070 DATA SHEET
AC TIMING WAVEFORMS
Propagation and Skew Waveforms
NOTE:
Pulse Skew is calculated using the following expression:
t
SK
(
P
) = | t
PHL
- t
PLH
|
where t
PHL
and t
PLH
are measured on the controlled edges of any one output from rising and falling edges of a single pulse. Please note that the t
PHL
and t
PLH
shown are not valid
measurements for this calculation because they are not taken from the same pulse.
Gate Disable/Enable Runt Pulse Generation
NOTE:
As shown, it is possible to generate runt pulses on gate disable and enable of the outputs. It is the user's responsibility to time their
I have finally finished the first draft of this pocket oscilloscope operation interface evaluation demonstration program that can be simulated and run on a PC. I am now handing it over for your commen...
TI is the source of logic ICs, including switches, conversions, IC, interfaces, small-size logic devices, gates, inverters, flip-flops, and FIFOs. What logic devices are used in tablet solutions? TI e...
I have a question: I want to use MSP30F149 to collect signals and use the on-chip AD. I only want to collect 40ms and then turn off the collection after 40ms. What method should I use? Should I use a ...
I've been writing a program recently, using MSP430 to send AT commands to the GPRS module. The GPRS module will return an "OK" value when it receives the AT commands. Now I've compiled it and run it, ...
I made a DC-DC step-down circuit using tps563200, with an input voltage of 12V and an output voltage of 5V. The circuit diagram is shown in Figure 1. Phenomena: 1. The inductor whistles, and a 100pf c...
According to foreign media reports, Ford Motor has applied to the U.S. Patent and Social Security Administration (USPTO) for a patent for a remote vehicle control system that may be used in future ...[Details]
If the ultimate form of a car is a silicon-based life form, then in
the field of
intelligent driving
, it has gradually taken on the appearance of a "veteran driver." In
the field of
the ...[Details]
In recent years, the government has increasingly supported electric vehicles, and the number of electric vehicles has increased. Observant drivers will notice that there are many more green license...[Details]
For healthcare professionals, accurate diagnosis and treatment are crucial for a clear picture of a person's health. However, healthcare professionals often rely on tests at medical facilities, cli...[Details]
Gross profit margin jumped from 13.6% in the first half of last year to 25.9%, almost doubling year-on-year.
On August 21, RoboSense released its interim performance report, in which the...[Details]
On August 22, South Korean media Nate reported on the 20th local time that Samsung Electronics is introducing Hyper Cell technology into its most advanced 2nm process technology, striving to improv...[Details]
As AI accelerates across industries, the demand for data center infrastructure is also growing rapidly.
Keysight Technologies, in collaboration with Heavy Reading, released the "Beyo...[Details]
In the electronics manufacturing industry, surface mount technology (SMT) placement machines are core equipment for production lines. However, with many different models available on the market, ch...[Details]
PowiGaN achieves 95% efficiency at both light and full loads, meeting critical operational and safety requirements.
DARWIN, Australia and SAN JOSE, Calif.,
August 22, 2025 – Powe...[Details]
1. Fault phenomenon and cause analysis
1. During the operation of the equipment, the expansion sleeve is subjected to a large torque, and the mating surfaces of the shaft and the sleeve move...[Details]
In the field of communications power supplies, AC/DC rectifier power supplies are called primary power supplies or basic power supplies, while DC/DC converters are called secondary power supplies. ...[Details]
There are more and more electric vehicles. Recently, I have heard some news about electric vehicles performing poorly in winter. I would like to briefly introduce whether heat pump technology is mo...[Details]
Renesas Electronics' new ultra-low-power RA4C1 MCU features advanced security and a dedicated peripheral set, making it ideal for metering and other applications.
The new product mee...[Details]
Puttshack's Trackaball uses the Nordic nRF54L15 system-on-chip (SoC) to monitor sensors and enable Bluetooth low energy connectivity, while the nPM2100 power management integrated circuit (PMIC) ...[Details]
When American cartoonist Chester Gould sketched the watch on Dick Tracy's wrist, he had no idea that science fiction would become reality 70 years later. As a comic strip artist, Gould imagined fut...[Details]