
TC32306FTG
2015-10-01
58
6.10.1 h’09 Software Reset
Table 6-56 Register (h’09)
D7
D6
D5
D4
D3
D2
D1
D0
Name
RESET7
RESET6
RESET5
RESET4
RESET3
RESET2
RESET1
RESET0
Initial
0
0
0
0
0
0
0
0
Type
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R/W
- Set register:[D7:D0] = b’01010101: Initialize Register
- Others: Not Initialize
After entering register:[D0] data, TC32306FTG becomes Reset status, and then the reset is released whichever faster the rising edge
of next SPI-Clock signal or the rising edge of next SPI-CS signal. Set this IC to SPI Read, this IC outputs register’s data "b'00000000".
Set this IC to SPI Confirmation Write, then this IC outputs registers’ data written just before.
6.10.2 h’0A General Settings
Table 6-57 Register (h’0A)
D7
D6
D5
D4
D3
D2
D1
D0
Name
ENB
ACT
RX_TX
FSK_ASK
TX_SW
RX_SW
BAND1
BAND0
Initial
0
1
0
0
0
0
0
0
Type
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R/W
[D7]ENB [Status Control 1]
The combinations of this register and register:[D6] result as the
right table.
In SPI Mode, ENB pin = "H" leads these settings are valid and
ENB pin = "L" leads TC32306FTG is Battery Saving Status.
[D7]ENB
[D6]ACT
Status
0
X
Battery Saving
1
0
Standby
1
1
Run
X: Don’t care
[D6]ACT [Status Control 2]
The combinations of this register and register:[D7] result as the
right table.
In SPI Mode, ENB pin = "H" leads these settings are valid and
ENB pin = "L" leads TC32306FTG is Battery Saving Status.
[D5]RX_TX [RX / TX]
0: Receiving / 1: Transmitting
[D4]FSK_ASK [Modulation & Demodulation]
0: FSK / 1: ASK
[D3]TX_SW [Antenna Switch Control (TX)]
0: TX_SW pin = “L” / 1: TX_SW pin = “H”
In SPI Mode, this register result as the right table.
In EEPROM Mode, these settings are invalid.
[D3]TX_SW
[D2]RX_SW
Status
TX_SW Pin
RX_SW Pin
X
Except Run / Standby
L
0
Run / Standby
L
1
Run / Standby
H
X: Don’t care
L: Pull Down
[D2]RX_SW [Antenna Switch Control (RX)]
0: RX_SW pin = “L” / 1: RX_SW pin = “H”
In SPI Mode, this register result as the right table.
In EEPROM Mode, these settings are invalid.
[D1:D0]BAND1..0 [RF Frequency Band]
[D1:D0] = b’00: 315 MHz
[D1:D0] = b’01: 434 MHz
[D1:D0] = b’10: 868 / 915 MHz
[D1:D0] = b’11: 868 / 915 MHz