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CSY210

Infineon Technologies Corporation

GaAs MMIC


CSY210
CSY210

PDF File CSY210 PDF File


Description
GaAs MMIC Preliminary Data Sheet TX/RX- and diversity switch for mobile communications • High input power capability (36 dBm P– 1 dB @ 3 V operation, 900 MHz) www.
DataSheet4U.
com • High linearity (57 dBm IP3 @ 900 MHz) • Low insertion loss (0.
6 dB @ 900 MHz) • Positive control- and supply voltages (3 V) • Miniature package SCT-598 ESD: Electrostatic discharge sensitive device, observe handling precautions! Type CSY 210 1) CSY 210 • SCT-598 Marking on request Ordering Code (taped) on request Package1) SCT-598 Dimensions see Page 9.
Maximum Ratings Parameter Control voltage range Channel temperature Storage temperature range Total power dissipation (TS ≤ t.
b.
d.
°C)1) Input Power 1) Symbol Value t.
b.
d.
150 – 55 … + 150 t.
b.
d.
t.
b.
d.
Unit V VA /VB TCh Tstg Ptot PIN °C °C mW mW Please care for sufficient heat dissipation on the pcb! Data Sheet 1 2001-01-01 GaAs Components CSY 210 B A CSY 210 1 4 RF2 8 5 2, 7 GND EHT09014 3 6 www.
DataSheet4U.
com RF1 RFC VCC Figure 1 Functional Block Diagram Data Sheet 2 2001-01-01 GaAs Components CSY 210 Electrical Characteristics (TA = 25 °C; PIN = 10 dBm, unless otherwise stated) Parameter Symbol min.
Insertion Loss RF1 - RFC f = 0.
9 GHz www.
DataSheet4U.
com f = 1.
8 GHz Insertion Loss RF2 - RFC f = 0.
9 GHz f = 1.
8 GHz Isolation RF1 - RF2 f = 0.
9 GHz f = 1.
8 GHz Input power at 1 dB gain compression (RF1 - RFC) Pulsed: TON = 577 µs, 12.
5% duty cycle Input power at 1 dB gain compression (RF1 - RFC) 100% duty cycle Third order intercept point Two tone input power = 18 dBm each f = 0.
8 GHZ f = 1.
9 GHz VSWR (RF1 - RFC; RF2 - RFC) 0.
5 GHz - 2 GHz Control current Supply current Limit Values typ.
0.
6 0.
9 0.
6 0.
9 17 12 36 max.
dB – – – – dB – – ISO – – – – – dBm – – dB Unit Test Conditions ILRF1 VA = 0 V, VB = 3 V, VCC = 3 V VA = 3 V, VB = 0 V, VCC = 3 V VA = 0 V, VB = 3 V, VCC = 3 V VA = 0 V, VB = 3 V, VCC = 3 V f = 0.
9 GHz – ILRF2 P– 1 dB – – – 34.
5 – dBm IP3 dBm VCC = 3 V, VA,B = 0 V (3 V) – – VSWR – ...



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