UPC2708TB-E3 CALIFORNIA EASTERN LABS, UPC2708TB-E3 Datasheet - Page 6

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UPC2708TB-E3

Manufacturer Part Number
UPC2708TB-E3
Description
Manufacturer
CALIFORNIA EASTERN LABS
Datasheet

Specifications of UPC2708TB-E3

Manufacturer's Type
RFIC Amplifier
Number Of Channels
1
Supply Current
33@5VmA
Frequency (max)
2900(Typ)MHz
Operating Supply Voltage (min)
4.5V
Operating Supply Voltage (typ)
5V
Operating Supply Voltage (max)
5.5V
Package Type
Super Mini-Mold
Mounting
Surface Mount
Pin Count
6
Noise Figure (typ)
6.5@1000MHzdB
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Lead Free Status / Rohs Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
UPC2708TB-E3
Manufacturer:
RENESAS/瑞萨
Quantity:
20 000
Company:
Part Number:
UPC2708TB-E3
Quantity:
175
Part Number:
UPC2708TB-E3-A
Manufacturer:
RENESAS/瑞萨
Quantity:
20 000
PIN DESCRIPTIONS
SYSTEM APPLICATION EXAMPLE
EXAMPLE OF DBS CONVERTERS
EXAMPLE OF 2.4 GHz BAND RECEIVER
Pin No.
1
4
6
2
3
5
Parabola
Antenna
TX
SW
RX
Symbol
Output
Input
GND
V
PA
CC
BS Antenna
(DBS ODU)
Voltage (V)
Applied
4.5 to 5.5
UPC2708TB
0
Driver
Voltage (V)
Pin
RF Amp.
1.16
Signal input pin. An internal matching circuit,
configured with resistors, enables 50 Ω connection
over a wide bandwidth. A multi-feedback circuit is
designed to cancel the deviations of h
resistance. This pin must be coupled to the signal
source with a blocking capacitor.
Signal output pin. Connect an inductor between
this pin and V
output transistors.
Power supply pin. This pin should be externally
equipped with a bypass capacitor to minimize
ground impedance.
Ground pins. These pins should be connected to
system ground with minimum inductance. Ground
pattern on the board should be formed as wide as
possible. All the ground pins must be connected
together with wide ground pattern to minimize
impedance difference.
PLL
Oscillator
CC
Mixer
Description
to supply current to the internal
UPC2711TB
UPC2712TB
φ
90˚
FE
PLL
and
UPC2708TB
DEMO
IN
IF Amp.
1
Internal Equivalent
Circuit
Q
I
I
Q
IDU
To
2, 3, 5
6
4
V
OUT
CC

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