RF31 Hope Microelectronics co., Ltd, RF31 Datasheet - Page 51

no-image

RF31

Manufacturer Part Number
RF31
Description
Rf31 Ism Receiver
Manufacturer
Hope Microelectronics co., Ltd
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
RF3100
Manufacturer:
RFMD
Quantity:
15 520
Part Number:
RF3100
Manufacturer:
ST-ERICSS
Quantity:
4 288
Part Number:
RF3100
Manufacturer:
ERICSSON/爱立信
Quantity:
20 000
Part Number:
RF3100-2
Quantity:
2 219
Part Number:
RF3100-2
Manufacturer:
RFMD
Quantity:
1 173
Part Number:
RF3100-2
Manufacturer:
RFMD
Quantity:
20 000
Part Number:
RF3100-2SR
Manufacturer:
RFMD
Quantity:
213
Part Number:
RF3100-2TR13
Manufacturer:
RFMD
Quantity:
15 540
Part Number:
RF3100-2TR13
Manufacturer:
RFMD
Quantity:
1 985
Part Number:
RF3100-2TR13
Manufacturer:
RFMD
Quantity:
20 000
Part Number:
RF3103
Manufacturer:
RFMD
Quantity:
20 000
8.6. Wake-Up Timer
The chip contains an integrated wake-up timer which periodically wakes the chip from SLEEP mode. The wake-up
timer runs from the internal 32.768 kHz RC Oscillator. The wake-up timer can be configured to run when in SLEEP
mode. If enwt = 1 in "Register 07h. Operating Mode and Function Control 1" when entering SLEEP mode, the
wake-up timer will count for a time specified by the Wake-Up Timer Period in Registers 10h–12h. At the expiration
of this period an interrupt will be generated on the nIRQ pin if this interrupt is enabled. The microcontroller will then
need to verify the interrupt by reading the Interrupt Status Registers 03h–04h. The wake-up timer value may be
read at any time by the wtv[15:0] read only registers 13h–14h.
The formula for calculating the Wake-Up Period is the following:
Use of the D variable in the formula is only necessary if finer resolution is required than the R value gives.
There are two different methods for utilizing the wake-up timer (WUT) depending on if the WUT interrupt is enabled
in ―Register 06h. Interrupt Enable 2,‖. If the WUT interrupt is enabled then nIRQ pin will go low when the timer
expires. The chip will also change state so that the 30 M XTAL is enabled so that the microcontroller clock
output is available for the microcontroller to use process the interrupt. The other method of use is to not enable the
WUT interrupt and use the WUT GPIO setting. In this mode of operation the chip will not change state until
commanded by the microcontroller. The two different modes of operation of the WUT are demonstrated in Figure 22.
A 32 kHz XTAL may also be used for better timing accuracy. By setting the x32 ksel bit in 07h, GPIO0 is
automatically reconfigured so that an external 32 kHz XTAL may be connected to this pin. In this mode, the GPIO0
is extremely sensitive to parasitic capacitance, so only the XTAL should be connected to this pin and the XTAL
should be physically located as close to the pin as possible. Once the x32 ksel bit is set, all internal functions such
as WUT, micro-controller clock, and LDC mode will use the 32 K XTAL and not the 32 kHz RC oscillator.
Ad
14
15
16
17
18
R/W
R/W
R/W
R/W
R
R
Tel: +86-755-82973805
Function/Descri
Wake-Up Timer
Wake-Up Timer
Wake-Up Timer
Wake-Up Timer
Wake-Up Timer
Period 1
Period 2
Period 3
Value 1
Value 2
ption
Fax: +86-755-82973550
WUT Register
wtm
wtm
wtv[
wtv[
[15]
15]
D7
[7]
7]
wtm[15:0]
wtd[1:0]
wtr[3:0]
wtm[14]
wtv[14]
wtm[6]
wtv[6]
WUT =
D6
wtm[13]
wtv[13]
32 X M X 2
wtm[5]
wtv[5]
wtr[3]
D5
32.768
E-mail: sales@hoperf.com
M Value in Formula
R Value in Formula
D Value in Formula
wtm[12]
wtv[12]
wtm[4]
wtv[4]
wtr[2]
D4
Description
R
ms
wtm[11]
wtv[11]
wtm[3]
wtv[3]
wtr[1]
D3
wtm[10]
wtv[10]
wtm[2]
wtv[2]
wtr[0]
D2
http://www.hoperf.com
wtm[9]
wtm[1]
wtd[1]
wtv[9]
wtv[1]
D1
R F 3 1
wtm[8]
wtm[0]
wtd[0]
wtv[8]
wtv[0]
D0
POR
Def.
00h
00h
00h
51

Related parts for RF31