Table 5. Electrical Characteristics (TC = 25°C unless otherwise noted) (continued)
Characteristic
Symbol
Min
Typ
Max
Unit
Typical Performances (In Freescale Test Fixture, 50 ohm system) VDD = 28 Vdc, IDQ1 = 160 mA, IDQ2 = 550 mA, 2700 MHz Bandwidth
Pout @ 1 dB Compression Point, CW
P1dB
—
55
—
W
IMD Symmetry @ 50 W PEP, Pout where IMD Third Order
Intermodulation ` 30 dBc
IMDsym
MHz
—
60
—
(Delta IMD Third Order Intermodulation between Upper and Lower
Sidebands > 2 dB)
VBW Resonance Point
(IMD Third Order Intermodulation Inflection Point)
VBWres
—
50
—
MHz
Gain Flatness in 200 MHz Bandwidth @ Pout = 8 W Avg.
Average Deviation from Linear Phase in 200 MHz Bandwidth
@ Pout = 50 W CW
Average Group Delay @ Pout = 50 W CW, f = 2600 MHz
Part - to - Part Insertion Phase Variation @ Pout = 50 W CW,
f = 2600 MHz, Six Sigma Window
GF
—
0.5
—
dB
Φ
—
1.1
—
°
Delay
—
2.3
—
ns
ΔΦ
—
38.7
—
°
Gain Variation over Temperature
( - 30°C to +85°C)
ΔG
—
0.037
—
dB/°C
Output Power Variation over Temperature
( - 30°C to +85°C)
ΔP1dB
—
0.005
—
dBm/°C
Typical Driver Performances (In Freescale Test Fixture, 50 ohm system) VDD = 28 Vdc, IDQ1 = 160 mA, IDQ2 = 550 mA, Pout = 4 W Avg.,
f = 2700 MHz, WiMAX Signal, 802.16d, 10 MHz Channel Bandwidth, 64 QAM 3/4, 4 Bursts, Input Signal PAR = 9.5 dB @ 0.01% Probability
on CCDF. ACPR measured in 1 MHz Channel Bandwidth @ ±8.5 MHz Offset.
Power Gain
Gps
—
26
—
dB
Power Added Efficiency
PAE
—
11
—
%
Output Peak - to - Average Ratio @ 0.01% Probability on CCDF
PAR
—
9.2
—
dB
Adjacent Channel Power Ratio
ACPR
—
- 57
—
dBc
Input Return Loss
Relative Constellation Error @ Pout = 2.5 W Avg. (1)
1. RCE = 20Log(EVM/100)
IRL
—
- 13
—
dB
RCE
—
- 39
—
dB
MW7IC2750NR1 MW7IC2750GNR1 MW7IC2750NBR1
4
RF Device Data
Freescale Semiconductor