PHILIPS BGB201

BGB203
Bluetooth System-in-a-Package radio with baseband controller
Rev. 1.0 — 2005 July 28
Product Shortform Datasheet
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
2 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Clocking
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
3 of 24
BGB203
Philips Semiconductors
TCK_JTAG
TDI_JTAG
TDO_JTAG
TMS_JTAG
VDDIORF
RESET_N
GPIO[2]
GPIO[4]
GPIO[5]
GPIO[3]
DP_USB
DN_USB
Bluetooth radio module with baseband controller
37
1
pin 49
13
BGB203
25
VDDIO2
VDDC
GPIO[8]
GPIO[6]
GPIO[9]
GPIO[7]
GPIO[15]
VBUS_USB
XTAL2_LPO
XTAL1_LPO
VDDIO1
GPIO[16]
VDDRF
GPIO[17]
VANLO
GPIO[1]
GPIO[0]
VDDA/VDDO
XTAL2_SYS
XTAL1_SYS
GPIO[13]
GPIO[11]
GPIO[10]
VDDC/VDDIO1
GND
ANT
GND
GND
GND
GND
GND
GND
GND
GND
GPIO[14]
GPIO[12]
Fig 1. Package outline and pinning for the BGB203; dimensions 7 x 8 mm (top view)
Table 1:
Pin description BGB203
Pin nr.
Pin name
I/O
Reset
state
Supply
domain
Description
1,3,4,5,6,
7,8,9,10,49
GND
2
ANT
I/O
11
GPIO[14]
I/O
I pull-up Vddio1
General purpose I/O 14
12
GPIO[12]
I/O
I pull-up Vddio1
General purpose I/O 12
13
VDDRF
14
GPIO[17]
I/O
15
VANLO
I/O
16
GPIO[1] / I2C_SDA
I/O
17
GPIO[0] / I2C_SCL
I/O
18
VDDA / VDDO
19
XTAL2_SYS
O
Vddo
System clock crystal oscillator output
20
XTAL1_SYS
I
Vddo
System clock crystal oscillator input
21
GPIO[13]
I/O
I pull-up Vddio1
General purpose I/O 13
22
GPIO[11]
I/O
I pull-up Vddio1
General purpose I/O 11
Product Shortform Datasheet
Ground
Antenna input / output
Positive radio supply voltage
I pull-up Vddio1
General purpose I/O 17
Vdda
Analog voltage source input
I
Vddio1
General purpose I/O 1
I2C bus serial data
I
Vddio1
General purpose I/O 0
I2C bus serial clock
Positive analogue and oscillator supply voltage
Rev. 1.0 — 2005 July 28
4 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 1:
Pin nr.
Pin description BGB203…continued
Pin name
I/O
Reset
state
I/O
O high
I/O
I pull-up Vddio1
23
GPIO[10] /
SYS_CLK_REQ
24
VDDC / VDDIO1
25
GPIO[16] /
OSC_MODE
26
VDDC / VDDIO1
27
XTAL1_LPO
I
28
XTAL2_LPO
O
29
VBUS_USB
I
30
GPIO[15]
SYS_CLK_REQ
31
Supply
domain
Vddio1
Description
General purpose I/O 10
External system clock request
Positive core and I/O1 supply voltage
General purpose I/O 16
Oscillator mode selection (GND = slave mode)
Positive core and I/O1 supply voltage
Vddio1
Low power clock crystal oscillator intput
Vddio1
Low power clock crystal oscillator output
I
Vddio2
USB Vbus detect
I/O
O high
Vddio2
General purpose I/O 15
External system clock request
GPIO[7]
FSC_IP
I/O
I pull-up Vddio2
General purpose I/O 7
PCM/IOM frame sync
32
GPIO[9]
DB_IP
I/O
I pull-up Vddio2
General purpose I/O 9
Bidirectional PCM/IOM data line B (default: input)
33
GPIO[6]
DA_IP
I/O
I pull-up Vddio2
General purpose I/O 6
Bidirectional PCM/IOM data line A (default: output)
34
GPIO[8]
DCLK_IP
I/O
I pull-up Vddio2
General purpose I/O 8
PCM/IOM data clock
35
VDDC
Positive core supply voltage
36
VDDIO2
I/O2 supply voltage
37
DN_USB
I/O
I
Vddio2
USB data N
38
DP_USB
I/O
I
Vddio2
USB data P
39
GPIO[3]
RTS_UART
CONNECT_USB
I/O
O low
Vddio2
General purpose I/O 3
UART request-to-send output
USB soft connect
40
GPIO[5]
RXD_UART
I/O
I pull-up Vddio2
General purpose I/O 5
UART receive input
41
GPIO[4]
TXD_UART
I/O
I pull-up Vddio2
General purpose I/O 4
UART transmit output
42
GPIO[2]
CTS_UART
LED_USB
CLK_EXT
I/O
I pull-up Vddio2
General purpose I/O 2
UART clear-to-send input
USB LED
12MHz Clock output
43
RESET_N
I
I pull-up Vddio2
Reset input (active LOW)
44
VDDIORF
45
TMS_JTAG
I
I pull-up Vddio1
JTAG test mode select
46
TDO_JTAG
O
O
3-state
JTAG test data output
47
TDI_JTAG
I
I pull-up Vddio1
JTAG test data input
48
TCK_JTAG
I
I pull-up Vddio1
JTAG test clock
Product Shortform Datasheet
RF-BB interface supply voltage
Vddio1
Rev. 1.0 — 2005 July 28
5 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
5. Block Diagram
GPIOs
ANT
SYS OSC
band pass
filter
Tx/Rx
switch
LPO
OSC
RC OSC
USB
SYS PLL
JTAG
ETM
RX balun
+ filter
I2C
ARM7TDMI
GPIO
RAM
BRIDGE
FLASH
PATCH
LNA
Limiter
TX
balun
+ filter
VANLO
UART
DEMOD
INT
TIMER
PA
DIV 2
VCO
MOD
BT CORE
RF synth CNTL
PCM
VCO
Regulator
Loop Filter
Fig 2. Block diagram BGB203.
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
6. Limiting values
Table 2:
Limiting values
In accordance with the Absolute Maximum Rating System (IEC 60134).
Symbol
Table 3:
Parameter
Min
Max
Unit
VDDRF
RF supply voltage
0.5
+3.6
V
VDDIORF
RF BB interface supply voltage
0.5
+2.5
V
VDDC /
VDDIO1
Core & I/O 1 supply voltage
0.5
+2.5
V
VDDIO2
I/O 2 supply voltage
0.5
+4.6
V
VDDC
Core supply voltage
0.5
+2.5
V
VDDO /
VDDA
Oscillator & Analog supply voltage
0.5
+2.5
V
VPINIOx
Input voltage on any VDDIOx pin with
respect to VSS
0.5
VDDIOx +0.5
V
VPINIO5V
Input voltage on 5V tolerant pins with
respect to VSS
0.5
6.0
V
II
Input current through any pin (except
supply pins)
1
mA
Tamb
Ambient temperature
30
+85
C
Tstg
Storage temperature
40
+125
C
AC/DC characteristics
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
Supplies
VDDRF
RF supply voltage
2.65
2.75
3.3
V
VDDIORF
RF BB interface supply voltage
1.65
1.8
1.95
V
VDDC /
VDDIO1
Core & I/O 1 supply voltage
1.65
1.8
1.95
V
VDDC
Core supply voltage
1.65
1.8
1.95
V
VDDIO2
I/O 2 supply voltage
1.65
1.8 / 3.3
3.6
V
1.65
1.8
1.95
V
VDDO / VDDA Oscillator & Analog supply
voltage
Digital IOs at VDDIO1
Vih
high level input voltage
Vil
low level input voltage
Vhyst
hysteresis voltage
Voh
high level output voltage
Ioh= 4mA
Vol
low level output voltage
Iol = 4mA
Product Shortform Datasheet
0.7
VDDIO1
0.3
VDDIO1
V
0.3
Rev. 1.0 — 2005 July 28
VDDIO1
VDDIO1
V
V
0.4
V
0.4
V
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 3:
AC/DC characteristics…continued
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
Digital IOs at VDDIO2
Vih
high level input voltage
Vil
low level input voltage
Vhyst
hysteresis voltage
Voh
high level output voltage
Ioh= 4mA
Vol
low level output voltage
Iol = 4mA
0.7
VDDIO2
0.3
VDDIO2
V
0.3
VDDIO2
VDDIO2
V
V
0.4
V
0.4
V
Power dissipation and current consumption[1]
Power
system off
oscillator is switched off
active HV3
Master[2]
15
A
Baseband consumption
All VDD=1.8V (except VDDRF)
42.88
mW
8.42
Radio
VDDRF = 2.75V
mA
10.08
mA
active HV3
Slave[2]
54.14
mW
Baseband consumption
All VDD=1.8V (except VDDRF)
Radio
VDDRF = 2.75V
8.78
mA
13.94
mA
active EV5
Master
31.5
mW
Baseband consumption
All VDD=1.8V (except VDDRF)
8.29
mA
Radio
VDDRF = 2.75V
active EV5
Slave
Baseband consumption
All VDD=1.8V (except VDDRF)
Radio
VDDRF = 2.75V
ACL Sniff, Tsniff = 1024 (1.28s)
Master
Slave
6.03
mA
45.58
mW
8.61
mA
10.94
mA
0.28
mW
0.51
mW
active ACL
ACL link Master,
VDDRF=2.75V,
Other VDDs =1.8V
14.17
mW
active ACL
ACL link Slave,
VDDRF=2.75V,
Other VDDs =1.8V
31.2
mW
Discoverable mode
VDDRF=2.75V,
Other VDDs =1.8V
2.12
mW
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
8 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 4:
Timing
Symbol
Parameter
Conditions
tosc
Xtal start up time
BGB203
tpll
lock time PLL
BGB203
tosc + tpll
Start up time with PLL locked
BGB203
trst
baseband reset delay
trc_delay
Minimal RF reset delay
tlong_reset
typical long reset duration
Min
Typ
Unit
682[1]
s
880[2]
932[1]
s
1024
ns
7.37
tVDDx
Minimal VDD rise time
tregulator_respons
Respons time to VDDRF supply
[4]
s
cycles
200
[3]
Table 5:
Max
630[2]
10
s
700
s
20
s
System and Low power oscillators
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
12
13 or 24
26
MHz
1700
mVpp
System clock input
fsys_xtal
system oscillator input frequency
Vswing_sys
Voltage input swing
slave mode [5]
VDC_sys
DC input level
slave mode [1][4]
0.8VDDO
-
VDDO
V
0
-
0.2VDDO
V
300
950
mV
VDD_sysIH
High level input voltage on Xtal1_sys pin
bypass mode
VDD_sysIL
Low level input voltage on Xtal1_sys pin
bypass mode
Ri_sys_xtal
system oscillator input impedance
slave mode [6]
63
kohm
Ci_sys_xtal
system oscillator input capacitance to
Ground
oscil. mode [2]
12
pF
Ci_tune_max
system oscillator programmable
capacitance to Ground
[3]
Ci_steps
tuning step size for programmable
capacitance
gm_sys
transconductance
21
rout_sys
output impedance on XTAL2_SYS pin
900
ohm
slave mode [6]
5
pF
25
pF
0.1
pF
40
mA/V
Low power clock input
flpo_xtal
low power osc frequency
oscil. mode
32.768
kHz
tstart,avg
LPO average start-up time
oscil. mode
6
ms
Vswing_lpo
low power input swing
slave mode [7]
VDC_lpo
DC input level
slave mode [7]
VDD_lpoIH
High level input voltage on Xtal1_lpo pin
bypass mode
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
320
1800
320
0.8VDDO
-
mVpp
mV
VDDO
V
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 5:
System and Low power oscillators…continued
Symbol
Parameter
Conditions
Min
Max
-
0.2VDDO
Unit
VDD_lpoIL
Low level input voltage on Xtal1_lpo pin
lpo_acc
LPO RC clock accuracy Calibrated
Vthl(POR)
Lower Power-on reset threshold voltage
measured on pin
VDDA/ VDDO
-
1.0
-
V
Vthu(POR)
Upper Power-on reset threshold voltage
measured on pin
VDDA/ VDDO
-
1.4
-
V
Min
Typ
Max
Unit
Table 6:
bypass mode
0
Typ
50
V
ppm
Analog AI0
Symbol
Vref
Parameter
Conditions
Voltage reference
1.4
V
D/A converter
Vanlo
DAC output Voltage
[1]
Ianlo
DAC output current
pull-up
VSS
1.4
120
pull-down
DAC resolution
V
150
A
3
mA
8
bits
ILE
DAC Integral Linearity Error
-2
2
LSB
DLE
DAC Differential Linearity Error
-1
1
LSB
VSS
1.4
V
A/D converter
[2]
Vin
Input voltage
Rin
Input resistor
1
Mohm
Radc
ADC input resistance
1
Mohm
Res
ADC Resolution
Offset
8
bit
-1
+1
LSB
ILE
Integral Linearity Error
-2
+2
LSB
DLE
Differential Linearity Error
0
+1
LSB
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 7:
Analog Bandgap
Symbol
Parameter
Conditions
Vbg
Bandgap Voltage
IddBG
Bandgap and ABV buffer consumption
IddBGOff
Bandgap and ABV buffer consumption
with buffer disabled
tBGbuffer
Bandgap buffer start-up time
Table 8:
Min
Typ
Max
Unit
1.15
1.21
1.25
V
to be measured on
VDDA
5
10
20
A
to be measured on
VDDA
-
-
25
nA
100
s
Radio [5]
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
Power consumption
IDDRF
RF supply current
RX guard space
18
RX (PLL off)
33
TX guard space
18
TX (PLL off) [4]
29
35
mA
1
2.5
A
power-down mode
mA
46
mA
mA
Frequency selection
f1 slot
carrier drift
f3, 5 slots
ICFT
initial carrier frequency tolerance
over 1 TX slot [2]
-25
0
25
kHz
over 3, 5 TX slots
(DM3, DH3, DM5,
DH5 packets) [2]
-40
0
40
kHz
[2]
-75
0
75
kHz
2480
MHz
Transmitter performance
fRF
RF frequency
over full temperature
and supply range
2402
Po
Output power
max. PA_CNTRL=7
0
+5.5
-5
0
nom. PA_CNTRL=4
dBm
+4
dBm
min. PA_CNTRL=0
[2]
Po 1 MHz
step size
[7]
adjacent channel output power
at 2 MHz offset [2] [3]
-11
dBm
3
dBm
-45
-20
-50
-40
dBm
at 3MHz offset and
more[2] [3]
frequency deviation 1111000 bit pattern
[2] [3]
BW20dB
20 dB bandwidth
[2] [3]
VSWR
voltage standing wave ratio
normalized to
Z0 50
fdev
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
kHz
140
0.7
1
MHz
2
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 8:
Radio [5]…continued
Symbol
Parameter
Conditions
Min
30 MHz to 1 GHz [2]
Typ
Max
Unit
-
36
dBm
1 GHz to 12.75 GHz
[2]
-
30
dBm
1.8 GHz to 1.9 GHz
[2]
-
47
dBm
5.15 GHz to 5.3 GHz
[2]
-
47
dBm
without carrier offset
/ hopping off
-76
88
dBm
with dirty transmitter
-76
-80
dBm
Spurious
out of band spurious emissions
(conducted)
Receiver performance
SENS
sensitivity for BER = 0.1 %
as specified in note 3
[2]
sensitivity for PER = 0.5 %
without carrier offset
/ hopping off
-76
-80
dBm
Pi max
maximum input power in one channel
BER < 0.1 % [2]
-20
-10
dBm
VSWR
voltage standing wave ratio
normalized to
Zo = 50
-
1.5
fRF
RF input frequency
[2]
2402
-
C/ I
Co-channel
+11
N+/-1
0
MHz
dBc
-10
dBc
N-2
-30
-38
dBc
N+2
-9
-30
dBc
N+3
-20
-45
dBc
-48
dBc
N-3 and lower , N+4 and beyond
OBB
2481
out of band blocking
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
12 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 9:
ESD threshold voltages
Parameter
Method
ESD threshold voltage
HBM (JESD22-A114-B)
Value
[1]
MM (JESD22-A115-A) [1]
HBM (JESD22-A114-B)
[2]
MM (JESD22-A115-A) [2]
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
Class
3500 (V) 2
300 (V)
2
250 (V)
1A
200 (V)
2
13 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 10:
ESD threshold voltages
Parameter
Rth j-a
Product Shortform Datasheet
Method
Thermal resistance from
junction to ambient
Rev. 1.0 — 2005 July 28
Value
Unit
30
K/W
14 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
10. Package outline
Fig 3.
Package outline.
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
15 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
48
37
1
36
12
25
13
Fig 4.
24
PCB Footprint outline, metal defined.
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
11. Soldering
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
17 of 24
BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Temperature
Critical Zone
TP
TL to TP
Ramp-up
TL
tL
Ts max
Ts min
tS
Ramp-down
Preheat
25
t 25°C to peak
Time
Following reflow profile and constraints are recommended for eutectic Sn/Pb and Pb-free
reflow solders.
Eutectic Sn/Pb
Pb-free
Average Ramp-Up Rate
2 °C/second max.
2 °C/second max *.
(Tsmax to Tp)
Preheat
– Temperature Min (Tsmin)
100 °C
150 °C
– Temperature Max (Tsmax)
150 °C
200 °C
– Time (tsmin to tsmax)
60-120 seconds
75-90 seconds ( 0.75°C/second)
Time maintained above:
– Temperature (TL)
183 °C
217 °C
– Time (tL)
60-90 seconds
70-90 seconds
Max. Peak Temperaure (Tp)
240 +0/-5 °C
260 +0 °C
Time within 5 °C of actual Peak
10-30 seconds
20-30 seconds
Temperature (tp)
Ramp-Down Rate
> 180 °C: 2 °C/second > 180 °C: 2 °C/second max *.
max.
< 180 °C: 6 °C/second max.
< 180 °C: 6 °C/second
max.
Minimum peak temperature
205 °C
230 °C
(Tpmin)
Time 25°C to TpTp Tp Tp Tp
4-5 minutes
4-5 minutes
*Ramp-up and -down is lower than specified in JEDEC JSTD-020C.
Fig 5. Recommended reflow temperature profile.
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Maximum peak
temperature (Tmax)
240°C
250°C
260°C
Product Shortform Datasheet
MSL
MSL3
MSL3
MSL3
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
12. Packing
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Table 11:
Rev
Revision history
Date
CPCN
1.0 20050728
Table 12:
Description
Product Shortform Datasheet
Ordering information
Type number
Package
Name
BGB203/1
SOT 863-1
Data sheet status
Description
Bluetooth radio module with baseband controler; 12 nc: 9340 592 93518
Product status
Version
S01
Definitions
Objective data
Development
This data sheet contains data from the objective specification for product
development. Philips Semiconductors reserves the right to change the
specification in any manner without notice.
Preliminary data
Qualification
This data sheet contains data from the preliminary specification. Supplementary
data will be published at a later date. Philips Semiconductors reserves the right to
change the specification without notice, in order to improve the design and supply
the best possible product.
Product data
Production
This data sheet contains data from the product specification. Philips
Semiconductors reserves the right to make changes at any time in order to improve
the design, manufacturing and supply. Changes will be communicated according to
the Customer Product/Process Change Notification (CPCN) procedure
SNW-SQ-650A.
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
Product Shortform Datasheet
Rev. 1.0 — 2005 July 28
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BGB203
Philips Semiconductors
Bluetooth radio module with baseband controller
1
2
2.1
2.2
2.3
2.3.1
2.3.2
3
4
4.1
4.2
5
5.1
6
7
7.1
7.2
7.3
8
9
10
10.1
11
12
13
14
15
16
Product Shortform Datasheet
General description . . . . . . . . . . . . . . . . . . . . . . 1
Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2
General. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2
Radio hardware . . . . . . . . . . . . . . . . . . . . . . . . 2
Baseband hardware . . . . . . . . . . . . . . . . . . . . . 2
Hardware features . . . . . . . . . . . . . . . . . . . . . . 2
Firmware features. . . . . . . . . . . . . . . . . . . . . . . 3
Applications . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
Pinning information . . . . . . . . . . . . . . . . . . . . . . 4
Pinning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
Pin description . . . . . . . . . . . . . . . . . . . . . . . . . 4
Block Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Full SiP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Limiting values. . . . . . . . . . . . . . . . . . . . . . . . . . 7
Electrical characteristics . . . . . . . . . . . . . . . . . 7
Timing characteristics. . . . . . . . . . . . . . . . . . . . 9
Analog characteristics . . . . . . . . . . . . . . . . . . . 9
Radio characteristics . . . . . . . . . . . . . . . . . . . 11
ESD precautions . . . . . . . . . . . . . . . . . . . . . . . 13
Thermal characteristics. . . . . . . . . . . . . . . . . . 14
Package outline . . . . . . . . . . . . . . . . . . . . . . . . 15
PCB footprint outline. . . . . . . . . . . . . . . . . . . . 16
Soldering . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
Packing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21
Revision history . . . . . . . . . . . . . . . . . . . . . . . . 22
Trademarks. . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
Ordering information . . . . . . . . . . . . . . . . . . . . 22
Data sheet status . . . . . . . . . . . . . . . . . . . . . . . 22
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