ATA5428-PLQW Atmel, ATA5428-PLQW Datasheet - Page 11

IC TXRX WIDEBND 433/868MHZ 48QFN

ATA5428-PLQW

Manufacturer Part Number
ATA5428-PLQW
Description
IC TXRX WIDEBND 433/868MHZ 48QFN
Manufacturer
Atmel
Datasheets

Specifications of ATA5428-PLQW

Frequency
433MHz, 868MHz
Data Rate - Maximum
20kbps
Modulation Or Protocol
ASK, FSK
Applications
Alarm and Security Systems, RKE
Power - Output
10dBm
Sensitivity
-112.5dBm
Voltage - Supply
2.4 V ~ 3.6 V or 4.4 V ~ 6.6 V
Current - Receiving
10.5mA
Current - Transmitting
10mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Operating Temperature
-40°C ~ 85°C
Package / Case
48-VQFN Exposed Pad, 48-HVQFN, 48-SQFN, 48-DHVQFN
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Operating Temperature Classification
Industrial
Product Depth (mm)
7mm
Product Height (mm)
0.9mm
Product Length (mm)
7mm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Memory Size
-
Lead Free Status / Rohs Status
Compliant
Other names
ATA5428-PLQHCT
ATA5428-PLQHCT
ATA5428-PLQWCT

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Manufacturer
Quantity
Price
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Manufacturer:
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3.2
4841D–WIRE–10/07
Input Matching at RF_IN
A low-IF architecture is also less sensitive to second-order intermodulation (IIP2) than direct
conversion receivers, where every pulse or AM-modulated signal (especially the signals from
TDMA systems like GSM) demodulates to the receiving signal band at second-order
non-linearities.
Note:
The measured input impedances as well as the values of a parallel equivalent circuit of these
impedances can be seen in
of these impedances to the source impedance of 50
Table 3-1.
The matching of the LNA Input to 50 was done with the circuit shown in
values given in
value changes of C
measured typical FSK and ASK Manchester code sensitivities with a Bit Error Rate (BER) of 10
are shown in
tors having a quality factor according to
0.8 dB at 315 MHz, 0.8 dB at 345 MHz, 0.7 dB at 433.92 MHz, 0.7 dB at 868.3 MHz and 0.7 at
915 MHz. These losses can be estimated when calculating the parallel equivalent resistance of
the inductor with R
With an ideal inductor, for example, the sensitivity at 433.92 MHz/FSK/20 Kbit/s/
±16 kHz/Manchester can be improved from –106 dBm to –106.7 dBm. The sensitivity depends
on the control logic which examines the incoming data stream. The examination limits must be
programmed in control registers 5 and 6. The measurements in
page 12
Figure 3-1.
are based on the values of registers 5 and 6 according to
120 dBC/Hz at ±1 MHz and
f
433.92
RF
868.3
Table 3-3
315
345
915
/MHz
Measured Input Impedances of the RF_IN Pin
Input Matching to 50
Table 3-2 on page
loss
1
and L
= 2
ATA5423/ATA5425/ATA5428/ATA5429
and
1
Table 3-4 on page
may be necessary to compensate for individual board layouts. The
Table
f
12. The reflection coefficients were always 10 dB. Note that
3-1. The highest sensitivity is achieved with power matching
75 dBC at ±FREF at 433.92 MHz
L
C
1
Q
L
(44
(40
(32
Z(RF_IN)
Table
(21
(18
L
1
and the matching loss with 10 log(1 + R
-
-
-
-
-
j233)
j211)
j169)
j78)
j70)
12. These measurements were done with induc-
3-2, resulting in estimated matching losses of
4
ATA5423/ATA5425
ATA5428/ATA5429
RF_IN
Table 9-3 on page
Table 3-3
1278 //2.1 pF
1153 //2.1 pF
Figure 3-1
925 //2.1 pF
311 //2.2 pF
290 //2.3 pF
R
p
and
//C
p
Table 3-4 on
p
and with the
/R
61.
loss
).
11
-3

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