MICRF218AYQS Micrel Inc, MICRF218AYQS Datasheet - Page 19

IC RCVR QWIKRADIO 3.3V 16-QSOP

MICRF218AYQS

Manufacturer Part Number
MICRF218AYQS
Description
IC RCVR QWIKRADIO 3.3V 16-QSOP
Manufacturer
Micrel Inc
Datasheets

Specifications of MICRF218AYQS

Frequency
300MHz ~ 450MHz
Sensitivity
-108dBm
Data Rate - Maximum
10 kbps
Modulation Or Protocol
AM
Applications
ISM, Garage Door Openers, RKE
Current - Receiving
5.5mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Voltage - Supply
3 V ~ 3.6 V
Operating Temperature
-40°C ~ 85°C
Package / Case
16-QSOP
Receiving Current
5.5mA
Data Rate
10Kbps
Modulation Type
ASK, OOK
Frequency Range
300MHz To 450MHz
Sensitivity Dbm
-108dBm
Rf Ic Case Style
QSOP
No. Of Pins
16
Supply Voltage Range
3V To
Operating Frequency (max)
450000kHz
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Operating Temperature Classification
Industrial
Operating Supply Voltage (typ)
3.3V
Operating Supply Voltage (max)
3.6V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Memory Size
-
Lead Free Status / Rohs Status
Compliant
Other names
576-2997

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MICRF218AYQS
Manufacturer:
MICREL
Quantity:
1 100
Part Number:
MICRF218AYQS
Manufacturer:
MICREL/麦瑞
Quantity:
20 000
September 2007
Micrel
Selection of CTH and CAGC Capacitors
Capacitors C6 and C4, Cth and Cagc respectively
provide time-based reference for the data pattern
received. These capacitors are selected according to
data profile, pulse duty cycle, dead time between two
received data packets, and if the data pattern has or
does not have a preamble. See Figure 11 for an
example of a data profile.
For best results, the capacitors should always be
optimized for the data pattern used. As the baud rate
increases, the capacitor values decrease.
shows suggested values for Manchester Encoded
data, 50% duty cycle.
Other components used include C5, which is a
decoupling capacitor for the Vdd line; R4 reserved for
future use and not needed for the evaluation board;
R3 for the shutdown pin (SHDN = 0, device is
operation), which can be removed if that pin is
connected to a microcontroller or an external switch,
and R1 and R2 which form a voltage divider for the
AGC pin. One can force a voltage in this AGC pin to
purposely decrease the device sensitivity. Special
care is needed when doing this operation, as an
external control of the AGC voltage may vary from lot
to lot and may not work the same for several devices.
DO, RSSI and Shutdown Functions
Three other pins are worthy of comment. They are the
DO, RSSI, and shut down pins. The DO pin has a
driving capability of 0.6mA. This drive current is good
enough for most of the logic family ICs in the market
today. The RSSI pin provides a transfer function of the
RF signal intensity vs. voltage. It is very useful to
1
SEL0
JP1
Short
Open
Short
Open
2
Table 10. Suggested Cth and Cagc Values.
3
Figure 11. Example of a Data Profile
4
Preamble
5
SEL1
JP2
Short
Short
Open
Open
6
7
8
9
Demod.
BW
(hertz)
1625
3250
6500
13000
10
Header
PW2 = Narrowest pulse width
t1 & t2 = data period
PW1 PW2
t1
Cth
(C6)
100nF
47nF
22nF
10nF
t2
Cagc
(Cagc)
4.7µF
2.2µF
1µF
0.47µF
Table
19
determine the signal to noise ratio of the RF link,
crude range estimate from the transmitter source and
AM demodulation, which requires a low Cagc
capacitor value.
Shut Down Control
The shut down pin (SHDN) is useful to save energy.
When its level close to Vdd (SHDN = 1), the device is
not in operation. Its DC current consumption is less
than 1µA (do not forget to remove R3). When toggling
from high to low, there will be a time required for the
device to come to steady state mode, and a time for
data to show up in the DO pin. This time will be
dependent upon many things such as temperature,
choice of crystal used, and if the there is an external
oscillator with faster startup time. Normally, with the
crystal vendors suggested, the data will show up in
the DO pin around 1msec time, and 2msec over the
temperature range of the device. See Figures 12.
Figure 12. Time-to-Good Data After Shut Down Cycle,
Room Temperature
(408) 944-0800
M9999-090607
MICRF218

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