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UPG2008TK Datasheet, PDF (1/2 Pages) California Eastern Labs – NECs L,S BAND ULTRA SMALL SPDT GaAs MMIC SWITCH
PRELIMINARY DATA SHEET
NEC's L,S BAND ULTRA SMALL
SPDT GaAs MMIC SWITCH UPG2008TK
FEATURES
• ULTRA SMALL 6 PIN RECESSED LEAD
MINI-MOLD PACKAGE:
Size: 1.5 x 1.1 x 0.55 mm
• LOW INSERTION LOSS:
LINS = 0.40 dB TYP at f = 1 GHz
LINS = 0.60 dB TYP at f = 2.5 GHz
• HIGH ISOLATION:
ISOL = 25 dB TYP at f = 2.5 GHz
DESCRIPTION
NEC's UPG2008TK is a Single Pole Double Throw (SPDT)GaAs
MMIC switch, developed for applications in the 0.5 to 2.5 GHz
frequency range. This device is housed in NEC's ultra small
"TK" plastic surface mount package. This 6 pin recessed lead
mini mold package has a footprint that is over 50% smaller than
conventional small size SOT-363 package types. Package
height is also reduced by 39% by incorporating a flat lead style.
These tremendous size reductions make this switch an ideal
device for small size portable applications and modules.
NEC's stringent quality assurance and test procedures assure
the highest performance. consistency and reliability.
APPLICATION
• L, S band digital cellular or cordless handsets
• PCS, Bluetooth, WLAN, and WLL applications
OUTLINE DIMENSIONS (Units in mm)
PACKAGE OUTLINE TK
ELECTRICAL CHARACTERISTICS (Unless Otherwise Specified, TA = 25°C, VCONT1 = 2.8 V and VCONT2 = 0 V or
VCONT1 = 0V and VCONT2 = 2.8 V, ZO = 50Ω, off chip DC blocking capacitor value, 51pF)
SYMBOLS
LINS
ISOL
RLIN
RLOUT
PIN(0.1dB)
PIN(1dB)
tsw
ICONT
PART NUMBER
PACKAGE OUTLINE
PARAMETERS AND CONDITIONS
Insertion Loss
f = 0.5 to 1.0 GHz
f = 1.0 to 2.0 GHz
f = 2.0 to 2.5 GHz
Isolation
f = 0.5 to 2.5 GHz
Input Return Loss
f = 0.5 to 2.5 GHz
Output Return Loss f = 0.5 to 2.5 GHz
Input Power at 0.1 dB Compression f = 1.0 GHz1
Input Power at 1 dB Compression
f = 1.0 GHz1
Switching Speed
Control Current, at VCONT = 2.8 V/0 V, no RF signal
UNITS
dB
dB
dB
dB
dB
dB
dBm
dBm
ns
µA
UPG2008TK
TK
MIN TYP
MAX
0.40
0.70
0.50
0.80
0.60
0.85
22
25
13
20
13
20
20
20
25
50
0.5
10
Note:
1. PIN(0.1dB) or PIN(1dB) measured the input power level when the insertion loss increases to more than that of the linear range. All other
characterisitics are measured in the the linear range.
California Eastern Laboratories