QM55001SR [QORVO]
Mid-Band Low-Band NB-IoT TxM;型号: | QM55001SR |
厂家: | Qorvo |
描述: | Mid-Band Low-Band NB-IoT TxM |
文件: | 总24页 (文件大小:874K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
QM55001
Mid-Band Low-Band NB-IoT TxM
Product Overview
QM55001 is a hybrid, multi-band multi-chip RF front-end (RFFE)
module supporting for NB-IoT and Cat-M1 application. The
module supports LB (663MHz – 915MHz) and MB (1695MHz –
1980MHz). It has integrated harmonic rejection LPF, antenna
switch and auxillary TX/RX path for B11 and B31. QM55001
band select and bias are programmed through a Mobile Industry
Processor Interface (MIPI).
Package: Module, 24-Pin 5.00 x 4.00 x 0.64 mm
Functional Block Diagram
Key Features
• Integrated Switch Supports Multiple TX and RX paths
• MIPI RFFE Digital Control Interface
• Integrated harmonic reject LPF
• AUX TX/RX paths for B11/B31
• 1.8V supplies
• Optimized use with DC/DC Converter Operation
• Average Power Tracking
• Optimized for Narrow-Band IoT and Cat-M1
• Programmable Bias Level Control
Functional Block Diagram
Applications
Ordering Information
• LTE mid-bands: 1, 2, 3, 4, 25, 39, 66, 70
• LTE low-bands: 5, 8, 12, 13, 14, 17, 18, 19, 20, 26, 27, 28,
71, 85
Part Number
QM55001PCK
QM55001SB
QM55001SQ
QM55001SR
QM55001TR13
Description
Evaluation Board Sample Kit
5-Piece Sample Bag
• Narrow-Band IoT and Cat-M1
25-Piece Sample Bag
100-Piece 7inch Sample Reel
5000-Piece 13inch Reel
Design Kit: QM55001PCK
+RD2000 Communication Board
QM55001DK
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QM55001
Mid-Band Low-Band NB_IoT TxM
Absolute Maximum Ratings
Parameter
Conditions
Rating
6V
Supply Voltage, VCC
Supply Voltage, Vbatt
Standby, Idle, Operating Mode
Standby, Idle, Operating Mode
6V
VIO and Digital control signals
(SCLK, SDATA)
2.0 V
RF Input Power
10dBm
Ruggedness is guaranteedwith open loop condition,
Pin adjusted for Pout = Max Prated into 50Ω load,
Vcc = Vbat = 4.5V, over temperature
Output Load VSWR (Ruggedness)
20:1
Operating Temperature
-40 to +105ꢀ°C
-50 to 150ꢀ°C
1500V
Storage Temperature
ESD
ESD
HBM
CDM
1000V
Exceeding any one or a combination of the Absolute Maximum Rating conditions may cause permanent damage to the device. Extended application of the Absolute
Maximum Rating conditions to the device may reduce device reliability. Specified typical performance or functional operation of the device under Absolute Maximum Rating
conditions is not implied.
Recommended Operating Conditions
Parameter
Min.
1.65
0.5(1)
1.65
0
Typ.
1.8
Max.
4.5
Units
V
Supply Voltage, Vbatt
Supply Voltage, Vcc
1.8
4.5
V
Supply Voltage, VIO
1.8
1.95
0.3*VIO
VIO
V
MIPI RFFE logic low (SCLK,SDATA)
MIPI RFFE logic high (SCLK,SDATA)
Leakage Current
V
0.7*VIO
0
V
0.3
25
3(2)
uA
VIO Rise Time (required for device
reset)
0
400
+85
us
°C
Operating Ambient Temperature
-40
Note 1: Vcc down to 0.5V may be used for backed-off power when using DC/DC converter to reduce low power current drain. Refer to Look-up Table (LUT, supplied
separately) for recommended Vcc settings for each output power level.
Note 2: Device in Power Down Mode, VIO = Vbatt = Vcc = 1.8V.
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QM55001
Mid-Band Low-Band NB_IoT TxM
Power vs NB-IoT Modulation Table
Subcarrier
Spacing (KHz)
Number of
Tones
Tone
Positions
Rated Pout
(dBm)
ID
Modulation
MPR (dB)
1tone@positon0
15
15
1
3
0
0
0.5
0
23.5
23
3tone@position0..2
3tone@position3..5
3tone@position9..11
6tone@position0..5
6tone@position6..11
12tone@position0..11
1tone@positon0
0..2
3..5
9..11
0..5
6..11
0..11
0
15
3
23.5
23
QPSK
15
3
0.5
1
15
6
22.5
22.5
21.5
23.5
23.5
15
6
1
15
12
1
2
3.75
3.75
0
BPSK
1tone@positon47
1
47
0
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QM55001
Mid-Band Low-Band NB_IoT TxM
Electrical Specifications: NB-IoT : Band 1, 2, 3, 4, 25, 66, 70
(Temp = +25°C, Vbatt = VCC = VIO= +1.8V, 50 Ω system, Modulation used: QPSK 1tone@position0, 15 KHz subcarrier spacing,
1 tone with MPR=0, unless otherwise specified.)
Parameter
Conditions
Band 1
Min.
1920
1850
1710
1710
1695
23.5
-
Typ.
1950
1882.5
1747.5
1732.5
1702.5
-
Max.
1980
1915
1785
1755
1710
-
Units
Band 2, 25
Band 3, 66
Band 4
Frequency Range
MHz
Band 70
HPM
Maximum Linear Output Power
Band 1
Gain
dBm
dB
25.5
-
HPM, Pout = Prated
Band 2, 3, 4, 25,
66, 70
-
-
-
26
-37
-39
-
Band 1
HPM, Prated – 2dB (MPR), Vcc = 1.8V,
Modulation = QPSK
12tone@positon0..11, 15 KHz SC
GSM ACLR
-29
dBc
Band 2, 3, 4, 25,
66, 70
UTRA ACLR
PA Total Current
PAE
-
-
-
-
-
-64
330
102
36
-46
HPM, Pout = Prated
-
-
-
-
mA
%
HPM, Pout = 10.5dBm, Vcc = 0.7V
HPM, Pout = Prated
Band 1
7.3
HPM, Prated – 2dB (MPR), Vcc = 1.8V,
Modulation = QPSK
12tone@positon0..11, 15 KHz SC
Band 2, 25, 3, 4,
66
-
-
6.4
5.3
-
-
EVM
SEM
%
Band 70
Pout ≦ Prated, +/- 100kHz
Pout ≦ Prated, +/- 150kHz
Pout ≦ Prated, +/- 300kHz
Pout ≦ Prated, +/- 500 to 1700kHz
-
-
-32
-45
-
-
dBm/30
kHz
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-49
-58
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
Band 1
-53
Harmonic
suppression,
2fo
Band 2, 25
Band 3, 4, 66, 70
Band 1
Pout ≦ Prated
Pout ≦ Prated
-48
-42
dBm
-59
Harmonic
suppression,
3fo
Band 2, 25
Band 3, 4, 66, 70
Band 1 Rx
-55
-49
RX frequency 2110 – 2170 MHz
RX frequency 1930 – 1995 MHz
RX frequency 1805 – 1880 MHz
RX frequency 2110 – 2155 MHz
RX frequency 2110 – 2200 MHz
RX frequency 1995 – 2020 MHz
Pout = Prated, 2400 – 2495MHz,
Pout = Prated, 5150 – 5850MHz,
Pout = Prated, 1574 – 1577MHz,
-142
-126
-127
-151
-141
-142
-146
-160
-137
Band 2/25 Rx
Band 3 Rx
Rx Band Noise
Band 4 Rx
Band 66 Rx
Band 70 Rx
dBm/Hz
WiFi Band Noise
GPS band noise power
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QM55001
Mid-Band Low-Band NB_IoT TxM
Electrical Specifications: NB-IoT: Band 1, 2, 3, 4, 25, 66, 70 - continued
(Temp = +25°C, Vbatt = VCC = VIO= +1.8V, 50 Ω system, Modulation used: QPSK 1tone@position0, 15 KHz subcarrier spacing,
1 tone with MPR=0, unless otherwise specified.)
Parameter
Conditions
Min.
Typ.
Max.
Units
Input VSWR
No external matching
-
2.5:1
-
-
Time required for output power to settle to
within ±1dB of the final output power for
any given mode transistion.
Gain Switching Time
-
-
-
-
10
uSec
dBm
Load VSWR = 10:1, all phase angles, Pin
adjusted for Pout = 23.5dBm into 50Ω
load
Stability, Spurious Output Levels
-36
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QM55001
Mid-Band Low-Band NB_IoT TxM
Electrical Specifications: Cat-M1 : Band 1, 2, 3, 4, 25, 39, 66, 70
(Temp = +25°C, Vbatt = VIO= +1.8V, Vcc = 2.5V, 50 Ω system, Modulation used: LTE QPSK, 1.4MHz channel, 1 Resource Block
with MPR=0, Band39 is TDD, other bands are FDD, unless otherwise specified.)
Parameter
Conditions
Band 1
Min.
1920
1850
1710
1710
1880
1695
23.5
-
Typ.
1950
1882.5
1747.5
1732.5
1900
1702.5
-
Max.
1980
1915
1785
1755
1920
1710
-
Units
Band 2, 25
Band 3, 66
Band 4
Frequency Range
MHz
Band 39
Band 70
HPM
Maximum Linear Output Power
Band 1
Gain
dBm
dB
25.3
-
HPM, Pout = Prated
Bands 2, 3, 4,
25, 39, 66, 70
-
-
-
26
-39
-42
-
Bands 1, 2, 25,
39
ACLR1 -
EUTRA
-33
Bands 3, 4, 66,
70
HPM, Prated – 2dB (MPR), Vcc = 2.5V,
Modulation = 1.4MHz 6RB QPSK
dBc
ACLR1 - UTRA
ACLR2 - UTRA
-
-
-42
-66
-36
-39
Bansd 1, 2, 25,
39
-
-
322
339
-
-
PA Total
Current
HPM, Pout = Prated
mA
Bands 3, 4, 66,
70
PAE
EVM
HPM, Pout = Prated
-
-
-
-
27
5
-
-
-
-
%
%
HPM, Pout ≦ Prated
Band 1
-48
-46
Harmonic
suppression, 2fo
Bands 2, 25, 39
Pout ≦ Prated
Pout ≦ Prated
Bands 3, 4, 66,
70
-
-41
-
dBm
Band 1
-
-
-61
-53
-
Harmonic
suppression, 3fo
Bands 2, 25, 39
-
Bands 3, 4, 66,
70
-
-46
-
ISM noise power
Rx Band Noise
2400 – 2447 MHz
-
-
-
-
-
-
-
-
-149
-140
-126
-127
-142
-142
-141
-136
-
-
-
-
-
-
-
-
Band 1 Rx
Band 2/25 Rx
Band 3 Rx
Band 4 Rx
Band 66 Rx
Band 70 Rx
RX frequency 2110 – 2170 MHz
RX frequency 1930 – 1995 MHz
RX frequency 1805 – 1880 MHz
RX frequency 2110 – 2155 MHz
RX frequency 2110 – 2200 MHz
RX frequency 1995 – 2020 MHz
Pout = Prated, 1574 – 1577MHz
dBm/Hz
GPS band noise power
Load VSWR = 10:1, all phase angles, Pin
adjusted for Pout = 23.5dBm into 50Ω
load
Stability, Spurious Output Levels
-
-
-36
dBm
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QM55001
Mid-Band Low-Band NB_IoT TxM
Electrical Specifications: NB-IoT : Band 5, 8, 12, 13, 14, 17, 18, 19, 20, 26, 28, 71,
85
(Temp = +25°C, Vbatt = VCC = VIO= +1.8V, 50 Ω system, Modulation used: 1tone@position0, NB-IoT, QPSK, 15 KHz subcarrier
spacing, 1tone with MPR=0, unless otherwise specified)
Parameter
Conditions
Band 12
Band 28, 17
Band 13
Band 14
Band 26, 18, 19
Band 20
Band 8
Min.
699
703
777
788
814
832
880
824
663
668
23.5
Typ.
707.5
725.5
782
Max.
716
748
787
798
849
862
915
849
698
716
-
Units
793
831.5
847
Frequency Range
MHz
897.5
836.5
680.5
707
Band 5
Band 71
Band 85
HPM
Maximum Linear Output Power
-
dBm
dB
Bands 5,8,20,13,14,
-
-
-
27
26
-
-
26,18,19
HPM, Pout = Prated
Gain
Bands 12,17,28,71,85
Bands 5,8,20,26,
18,19
-39
HPM, Prated – 2dB (MPR), Vcc =
1.8V, Modulation = QPSK
12tone@positon0..11, 15 KHz SC
GSM ACLR
UTRA ACLR
-29
dBc
mA
Bands
12,13,14,17,28,71,85
-
-41
-
-
-61
-46
-
Band 8
400
Bands 5,13,14,
18,19, 20, 26, 28
Bands 12, 17, 71, 85
All bands
HPM, Pout = Prated
-
386
-
PA Total
Current
-
-
-
361
100
31
-
-
-
HPM, Pout = 10.5dBm, Vcc = 0.7V
HPM, Pout ≦ Prated
Band 8
Bands 5,13,14,
PAE
EVM
-
32
-
%
%
18,19, 20, 26, 28
Bands 12, 17, 71, 85
-
-
-
-
-
-
35
-
-
-
-
-
-
HPM, Pout ≦ Prated
5.5
-35
-46
-49
-54
Pout ≦ Prated, +/- 100kHz
Pout ≦ Prated, +/- 150kHz
Pout ≦ Prated, +/- 300kHz
Pout ≦ Prated, +/- 500 to 1700kHz
dBm/30
kHz
SEM
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QM55001
Mid-Band Low-Band NB_IoT TxM
Electrical Specifications: NB-IoT : Band 5, 8, 12, 13, 14, 17, 18, 19, 20, 26, 27, 28,
71, 85 - continued
(Temp = +25°C, Vbatt = VCC = VIO= +1.8V, 50 Ω system, Modulation used: 1tone@position0, NB-IoT, QPSK, 15 KHz subcarrier
spacing, 1tone with MPR=0, unless otherwise specified)
Parameter
Conditions
Min.
Typ.
-48
Max.
Units
Bands 12, 17, 71,
85
-
-
-
-
-
-
Band 8
-51
Harmonic
suppression, 2fo
Bands 5, 14, 18,
19, 20, 26
Pout ≦ Prated
-50
Band 28
-
-
-48
-58
-
-
dBm
Bands 13
Bands 12, 17, 28,
71, 85
-
-
-42
-46
-
Harmonic
suppression, 3fo
Bands 5, 13, 14,
18, 19, 20, 26
Pout ≦ Prated
-
Band 8
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-52
-123
-125
-125
-131
-125
-125
-125
-128
-128
-156
-150
-166
2.5:1
-
-
-
-
-
-
-
-
-
-
-
-
-
-
Band 71 Rx
Band 85 Rx
Band 12 Rx
Band 13 Rx
Band 14 Rx
Band 28 Rx
Band 26 Rx
Band 20 Rx
Band 8 Rx
617 -652 MHz
728 -- 746 MHz
729 – 746 MHz
746 – 756 MHz
Rx Band Noise
758 – 768 MHz
758 – 803 MHz
dBm/Hz
859 – 894 MHz
791 – 821 MHz
925 – 960 MHz
Pout = Prated, 2400 – 2495MHz
Pout = Prated, 5150 – 5850MHz
Pout = Prated, 1574 – 1577MHz
No external matching
WiFi Band Noise
GPS band noise power
Input VSWR
-
Time required for output power to settle
to within ±1dB of the final output power
for any given mode transistion.
Gain Switching Time
-
-
-
-
10
uSec
Load VSWR = 10:1, all phase angles,
Pin adjusted for Pout = 23.5dBm into
50Ω load
Stability, Spurious Output Levels
-36
dBm
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8 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Electrical Specifications: Cat-M1 : Band 5, 8, 12, 13, 14, 17, 18, 19, 20, 26, 27, 28,
71, 85
(Temp = +25°C, Vbatt = VIO= +1.8V, Vcc = 2.5V, 50 Ω system, Modulation used: FDD-LTE QPSK, 1.4MHz channel, 1 Resource
Block with MPR=0, unless otherwise specified.)
Parameter
Conditions
Band 12
Band 28, 17
Band 13
Band 14
Band 26, 18, 19
Band 27
Band 20
Band 8
Min.
699
703
777
788
814
807
832
880
824
663
668
23.5
Typ.
707.5
725.5
782
Max.
716
748
787
798
849
824
862
915
849
698
716
-
Units
793
831.5
815.5
847
Frequency Range
MHz
897.5
836.5
680.5
707
Band 5
Band 71
Band 85
HPM
Maximum Linear Output Power
-
dBm
dB
Bands 5, 8, 13, 14, 18,
19, 20, 26, 27
-
-
-
26.5
26
-
-
Gain
HPM, Pout = Prated
Bands 12, 17, 28, 71, 85
Bands 5, 13, 14, 18, 19,
20, 26, 27
-39
ACLR1 –
EUTRA
-33
-36
Band 8
-
-
-43
-41
Bands 12, 17, 28, 71, 85
HPM, Prated – 2dB (MPR), Vcc =
2.5V, Modulation = 1.4MHz 6RB
QPSK
dBc
Bands 5, 13, 14, 18, 19,
20, 26, 27
-
-42
ACLR1 -
UTRA
Band 8
-
-
-
-
-43
-45
-66
390
Bands 12, 17, 28, 71, 85
ACLR2 – UTRA
-39
-
Band 8
PA Total
Current
Bands 5, 13, 14, 18, 19,
20, 26, 27, 28
-
375
-
mA
HPM, Pout = Prated
Bands 12, 17, 71, 85
Band 8
-
-
342
23
-
-
Bands 5, 13, 14, 18, 19,
20, 26, 27, 28
PAE
EVM
HPM, Pout ≦ Prated
HPM, Pout ≦ Prated
-
24
-
%
%
Bands 12, 17, 71, 85
-
-
-
-
26
5
-
-
-
-
Bands 12, 17, 71, 85
Band 8
-42
-41
Harmonic
suppression,
2fo
Bands 5, 14, 18, 19, 20,
26, 27
HPM, Pout ≦ Prated
-
-54
-
dBm
Band 28
Band 13
-
-
-43
-54
-
-
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QM55001
Mid-Band Low-Band NB_IoT TxM
Electrical Specifications: Cat-M1 : Band 5, 8, 12, 13, 17, 18, 19, 20, 26, 28, 71, 85 -
continued
(Temp = +25°C, Vbatt = VIO= +1.8V, 50 Ω system, Modulation used: FDD-LTE QPSK, 1.4MHz channel, 1 Resource Block with
MPR=0, unless otherwise specified.)
Parameter
Conditions
Min.
Typ.
-43
Max.
Units
Bands 12, 17, 28, 71, 85
Band 8
-
-
-
-
Harmonic
suppression,
3fo
-53
Pout ≦ Prated
dBm
Bands 5, 13, 14,
18, 19, 20, 26, 27
-
-46
-
ISM noise power
2400 – 2447 MHz
617 -652 MHz
-
-
-
-
-
-
-
-
-
-
-
-
-163
-124
-126
-126
-132
-127
-127
-126
-127
-126
-125
-166
-
-
-
-
-
-
-
-
-
-
-
-
Band 71 Rx
Band 85 Rx
Band 12 Rx
Band 13 Rx
Band 14 Rx
Band 28 Rx
Band 27 Rx
Band 26 Rx
Band 20 Rx
Band 8 Rx
728 -- 746 MHz
729 – 746 MHz
746 – 756 MHz
758 – 768 MHz
758 – 803 Mhz
Rx Band
Noise
dBm/Hz
852 – 869 MHz
859 – 894 MHz
791 – 821 MHz
925 – 960 MHz
Pout = Prated, 1574 – 1577MHz
GPS band noise power
Load VSWR = 10:1, all phase angles,
Pin adjusted for Pout = 23.5dBm into
50Ω load
Stability, Spurious Output Levels
-
-
-36
dBm
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QM55001
Mid-Band Low-Band NB_IoT TxM
Electrical Specifications: Switch And Port Isolation
(Temp = +25°C, Nominal test conditions unless otherwise specified. All unused ports terminated in 50Ω. Logic state given in
register table.)
Parameter
Conditions
Min.
Typ.
Max.
Units
ANT to TRX1, 450 – 2200MHz
-
0.7
-
ANT to TRX2, 450 – 2200MHz
ANT to TRX3, 450 – 2200MHz
ANT to TRX4, 450 – 2200MHz
ANT to TRX1, 450 – 2200MHz
ANT to TRX2, 450 – 2200MHz
ANT to TRX3, 450 – 2200MHz
ANT to TRX4, 450 – 2200MHz
-
-
-
-
-
-
-
0.7
0.7
0.7
23
-
-
-
-
-
-
-
Insertion Loss, IL
dB
26
Isolation, ISO
26
26
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QM55001
Mid-Band Low-Band NB_IoT TxM
Table 1: RFFE MIPI Register Map (1 of 4)
Register Details
This section displays each register in table form. Table headers described here:
TRIG. – Indicates whether the Write Command can be triggered. The value in the Trig. Column indicates which trigger
causes the Bit Field to be loaded from the shadow register. “T012” means that any or all triggers will cause a load from
shadow register.
Register 0 (0x00) – PA_CTRL0
B/
G
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W
TRIG.
This is a read-only bit that is reserved and yields a
value of 0 at readback
7:6
Reserved[1:0]
0b00
R
No
PA Band
000: off
001: TRX4
010: TRX3
5:3
PA_BAND[2:0]
0b000
011: TRX1
100: LB_TX
R/W
R/W
T012
101: Reserved
110: MB_TX
111: TRX2
Transmit Enable
No
0 = Transmit mode disabled
1 = Transmit mode enabled
Set this bit to 1 to turn on the module’s PA for LB or
MB transmit or to use one of the four TRX ports in
transmit mode.
TX_EN[2]
2
0b0
T012
PA Power Control Mode
0 = HPM
1
0
PA_MODE[1]
Reserved[0]
0b0
0b0
R/W
R/W
No
No
1 = LPM
This is a read-only bit that is reserved and yields a
value of 0 at readback.
Register 1 (0x01) – PA_CTRL1
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G TRIG.
7:4
3:0
PA_BIAS2[3:0]
PA_BIAS1[3:0]
0b0000
0b0000
PA Bias – power stage
PA Bias – driver stage
R/W No
R/W No
T012
T012
Register 2 (0x02) – PA_CTRL2
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G TRIG.
These are a read-only bits that are reserved and yield
a value of 0 at readback.
7:4
3:0
Reserved[3:0]
PA_TUNE[3:0]
0b0000
0b0000
R/W No
R/W No
No
PA Tuning Cap
T012
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12 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Table 1: RFFE MIPI Register Map (2 of 4)
Register 26 (0x1A) – RFFE_STATUS
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G TRIG.
0: Normal operation
7
SW_RESET[7]
0b0
1: Software reset (reset of all configurable registers to
default values, except for USID&GSID)
Command sequence received with parity error –
discard command.
6
CMD_FRAME_P_ERR[6]
CMD_LEN_ERR[5]
0b0
0b0
5
4
3
2
1
0
Command length error
R/W No
No
ADDR_FRAME_P_ERR[4] 0b0
DATA_FRAME_P_ERR[3] 0b0
Address frame parity error = 1
Data Frame received with a parity error
Read Command to an invalid address
Write command to an invalid address
Read command with a Broadcast_ID or GROUP_ID
READ_UNUSED_REG[2]
WRITE_UNUSED_REG[1] 0b0
BID_GID_ERR[0] 0b0
0b0
Register 27 (0x1B) – GROUP_ID
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G TRIG.
R/W No No
7:4
3:0
GSID0[3:0]
GSID1[3:0]
0b0000
0b0000
Group Slave ID 0
Group Slave ID 1
Register 28 (0x1C) – PM_TRIG
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G TRIG.
0: Normal operation (ACTIVE)
7
PWR_MODE_MSB[7]
0b1
R/W Yes No
1: Secondary mode (LOW POWER)
RFFE State machine vector.
0: active mode
1: in reset state
6
PWR_MODE_LSB[6]
0b0
R/W Yes No
Writing a 1 to this bit forces a reset. All registers
including USID and GSID are reset to default values.
This bit always reads as 0.
Setting these bits to '1' will cause the corresponding
triggers to be masked (disabled), and RFFE writes to
corresponding registers will change configuration
immediately (no trigger command necessary).
TriggerMask[2] = TriggerMask_2, TriggerMask[1] =
TriggerMask_1,&TriggerMask[0] = TriggerMask_0
5:3
2:0
TriggerMask[2:0]
0b000
0b000
R/W No
No
Note: Qorvo does not allow for changing the trigger mask
and sending triggers within the same RFFE write.
Setting these bits to '1' will cause the registers associated
with that trigger to be loaded with the contents of its
corresponding shadow register. Trigger[2] = Trigger_2,
Trigger[1] = Trigger_1, and Trigger[0] = Trigger_0
Trigger[2:0]
W
Yes No
Note: Qorvo does not allow for changing the trigger mask
and sending triggers within the same RFFE write.
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13 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Table 1: RFFE MIPI Register Map (3 of 4)
Register 29 (0x1D) – PRODUCT_ID
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G TRIG.
This is a read-only register. However, during the
programming of the USID a write command sequence is
performed on this register, even though the write does
not change its value.
7:0
PRODUCT_ID[7:0]
0x07
R
No
No
Register 30 (0x1E) – MANUFACTURER_ID
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G TRIG.
This is a read-only register. However, during the
programming of the USID, a write command sequence is
performed on this register, even though the write does
not change its value. Note: This is the lower 8 least
significant bits of the RFFE's MANUFACTURER_ID (i.e.
MANUFACTURER_ID[7:0] =
MANUFACTURER_ID_
LSB[7:0]
7:0
0xC6
R
No
No
MANUFACTURER_ID_LSB[7:0]
Qorvo Manufacturer ID = 0x3C6 = 0011_1100_0110
Register 31 (0x1F) – MAN_US_ID
DEFAUL
T
BIT(S) FIELD NAME
DESCRIPTION
R/W
B/G TRIG.
These bits are read-only. However, during the
programming of the USID, a write command sequence is
performed on this register even though the write does
not change its value. Note: This is the 4 most
significant bits of the RFFE's MANUFACTURER_ID (i.e.
MANUFACTURER_ID[11:8] =
MANUFACTURER_ID_
7:4
3:0
0b0011
R
No
No
No
No
MSB[3:0]
MANUFACTURER_ID_MSB[3:0]
Programmable USID. Performing a write to this register
using the described programming sequences will
program the USID in devices supporting this feature.
These bits store the USID of the device.
USID[3:0]
0b1111
R/W
Register 32 (0x20) – EXT_PRODUCT_ID
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G TRIG.
This is a read-only register. However, during the
programming of the USID a write command sequence is
performed on this register, even though the write does
not change its value.
7:0
EXT_PRODUCT_ID[7:0] 0x00
R
No
No
Register 33 (0x21) – REVISION_ID
BIT(S) FIELD NAME
DEFAULT DESCRIPTION
R/W B/G
No
TRIG.
This is an RFFE2 register to contain information about
the revision of this module.
7:0 REVISION_ID
0x01
R
No
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14 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Table 1: RFFE MIPI Register Map (4 of 4)
Register 34 (0x22) – GROUP_ID2
BIT(S) FIELD NAME
DEFAULT
DESCRIPTION
R/W B/G TRIG.
Group slave ID 0
There is only 1 register for GSID0&GSID1, but this
register can be accessed from either Reg27 or Reg34.
This means that write to Reg34 will reflect in Reg27
also, and vice versa
7:4
3:0
GSID0_2[3:0]
GSID1_2[3:0]
0x00
R/W No
No
Group slave ID 1
There is only 1 register for GSID0&GSID1, but this
register can be accessed from either Reg27 or Reg34.
This means that write to Reg34 will reflect in Reg27
also, and vice versa
0x00
Register 35 (0x23) – RFFE_STATUS2
BIT(S) FIELD NAME
DEFAULT
DESCRIPTION
R/W
B/G TRIG.
0: Normal operation
1: Software reset (reset of all configurable registers to
default values, except for USID)
7
SW_RESET_2[7]
0b0
There is only 1 register for RFFE_STATUS, but this
register can be accessed from either Reg26 or Reg35.
This means that write to Reg35 will reflect in Reg27
also, and vice versa
R/W
No
No
6
5
4
3
2
1
0
Reserved[6]
Reserved[5]
Reserved[4]
Reserved[3]
Reserved[2]
Reserved[1]
Reserved[0]
0b0
0b0
0b0
0b0
0b0
0b0
0b0
Reserved
Reserved
Reserved
Reserved
Reserved
Reserved
Reserved
Register 36 (0x24) – ERR_SUM (RFFE_STATUS3)
BIT(S) FIELD NAME
DEFAULT
DESCRIPTION
R/W B/G TRIG.
7
6
Reserved[7]
0b0
Reserved
Command sequence received with parity
error – discard command.
CMD_FRAME_P_ERR_2[6]
0b0
5
4
3
2
1
CMD_LEN_ERR_2[5]
0b0
Command length error
ADDR_FRAME_P_ERR_2[4] 0b0
DATA_FRAME_P_ERR_2[3] 0b0
Address frame parity error = 1
Data frame with parity error
R/W No
No
READ_UNUSED_REG_2[2]
0b0
Read command to an invalid address
Write command to an invalid address
WRITE_UNUSED_REG_2[1] 0b0
Read command with a Broadcast_ID or
GROUP_ID
0
BID_GID_ERR_2[0]
0b0
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15 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Evaluation Board Schematic
QM55001 Data Sheet REV G | Subject to change without notice
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16 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Evaluation Board Layout
QM55001 Data Sheet REV G | Subject to change without notice
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17 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Evaluation Board Bill of Material
Designator
Description
Manuf.
Part number
AVX/KYOCERA ASIA
LTD.
C16, C17, C18
CAP, 100uF, 20%, 10V, TANT-D
TAJD107M010RNJ
TAIYO YUDEN
(SINGAPORE) PTE
LTD
C19, C21, C15, C20
CAP, 10uF, 10%, 6.3V, X5R, 0805
CE JMK212BJ106KG-T
R3
RES, 0 OHM, 5%, 1/20W, 0201
RES, 49.9 OHM, 1%, 1/20W, 0201
Kamaya, Inc
Kamaya, Inc
RMC1/20JPPA15
R1, R2
RMC1/20-49R9FPA15
AVX/KYOCERA ASIA
LTD.
C10, C11
CAP, 10pF, 5%, 25V, C0G, 0201
02013A100JAT2A
MURATA
ELECTRONICS
SINGAPORE PTE LT
5600 PF,10%,X7R,LF,0402, 25V,LEAD
FREE
C2, C5, C8, C14
GRM155R71E562KA01D
MURATA
C3, C6, C7, C12
CAP, 100pF, 5%, 25V, C0G, 0201
ELECTRONICS
SINGAPORE PTE LT
GRM0335C1E101JA01D
CONN, HDR, SHRD, RT-ANG, 2x6,
0.100",T/H
P1
P2
MOLEX
90130-3212
CONN, HDR, ST, 2X3, 0.100"
SAMTEC INC.
TSW-103-07-G-D
J1, J2, J3, J4, J5, J6,
J7
CONN, SMA, EL FLT VIPER, MAT-21-1038
Aliner Industries, Inc.
20-001CH-T
C1, C4, C9
C13
-
-
-
-
-
-
-
-
-
R4
QM55001 Data Sheet REV G | Subject to change without notice
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18 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Pin Configuration
Top View (see through from top)
Pin Description
Pin Number
Label
TRX1
GND
Description
1
2 - 3
4
Auxillary transimit and receive port 1.
Connected to module gnd.
RF Output port.
ANT
5 - 8
9
GND
Connected to module gnd.
Supply voltage for MIPI RFFE.
Serial interface clock input signal.
Serial interface data I/O signal.
VIO18
SCLK
SDATA
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
Vbias/VBATT Supply voltage for bias circuitry.
GND
MBTX
GND
Connected to module gnd.
MB RF Input
Connected to module gnd.
LB RF Input
LBTX
GND
Connected to module gnd.
Driver stage supply of PA.
Connected to module gnd.
Output stage supply of PA.
Connected to module gnd.
Auxillary transimit and receive port 4.
Auxillary transimit and receive port 3.
Auxillary transimit and receive port 2.
VCC1
GND
VCC2
GND
TRX4
TRX3
TRX2
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19 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Package Outline Drawing
QM55001 Data Sheet REV G | Subject to change without notice
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20 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Package Land Pattern
QM55001 Data Sheet REV G | Subject to change without notice
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21 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Tape and Reel Information
QM55001 Data Sheet REV G | Subject to change without notice
www.qorvo.com
22 of 24
QM55001
Mid-Band Low-Band NB_IoT TxM
Handling Precautions
Parameter
Rating
Standard
Caution!
ESD – Human Body Model (HBM)
ESD – Charged Device Model (CDM)
MSL – Moisture Sensitivity Level
Class 1C
Class C3
MSL 3
ESDA/JEDEC JS-001-2012
JEDEC JESD22-C101F
IPC/JEDEC J-STD-020
ESD sensitive device
Solderability
Compatible with both lead-free (260 °C max. reflow temperature) and tin/lead (245 °C max. reflow temperature) soldering processes.
Package lead plating: Electrolytic plated Au over Ni
RoHS Compliance
This part is compliant with the 2011/65/EU RoHS directive (Restrictions on the Use of Certain Hazardous Substances in Electrical and
Electronic Equipment), as amended by Directive 2015/863/EU.
This product also has the following attributes:
•
•
•
•
Halogen Free (Chlorine, Bromine)
Antimony Free
TBBP-A (C15H12Br402) Free
SVHC Free
QM55001 Data Sheet REV G | Subject to change without notice
www.qorvo.com
23 of 24
REVISION HISTORY
REVISION
DATE
DESCRIPTION OF CHANGE
A
B
10/31/2018
05/15/2019
Initial version
Add Cat-M1 performance;
Change Vbat max value; update package outline drawing; BOM list change to Vbat/Vio
separate; Package drawing picture update: hight change to 0.64;
Delete product status comment in the first page;
Add Band 85;
Change ruggedness/stability test condition;
Change opertating temp to -40C ~ 105C;
For specification table, modulations are changed to 1tone and 1RB for NBIoT and CatM1,
which were 12tones and 6RB.
Update typical values based on production data
Update leakage current limit with norminal condition and update RX noise power for
NBIoT;
C
D
E
06/24/2019
08/02/2019
09/19/2019
04/28/2020
04/30/2021
Remove preliminary; update tape and reel information
Add B4, 14,27,39 in first page and specification table
Add BPSK waveforms in power Vs modulation table
Add TRIG. description in MIPI table
F
G
Change operating temp to -40C in ROC table
Contact Information
For the latest specifications, additional product information, worldwide sales and distribution locations:
Web: www.qorvo.com
Tel: 1-844-890-8163
Email: customer.support@qorvo.com
Important Notice
The information contained herein is believed to be reliable; however, Qorvo makes no warranties regarding the information contained herein and assumes no responsibility or
liability whatsoever for the use of the information contained herein. All information contained herein is subject to change without notice. Customers should obtain and verify the
latest relevant information before placing orders for Qorvo products. The information contained herein or any use of such information does not grant, explicitly or implicitly, to
any party any patent rights, licenses, or any other intellectual property rights, whether with regard to such information itself or anything described by such information. THIS
INFORMATION DOES NOT CONSTITUTE A WARRANTY WITH RESPECT TO THE PRODUCTS DESCRIBED HEREIN, AND QORVO HEREBY DISCLAIMS ANY AND
ALL WARRANTIES WITH RESPECT TO SUCH PRODUCTS WHETHER EXPRESS OR IMPLIED BY LAW, COURSE OF DEALING, COURSE OF PERFORMANCE,
USAGE OF TRADE OR OTHERWISE, INCLUDING THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
Without limiting the generality of the foregoing, Qorvo products are not warranted or authorized for use as critical components in medical, life-saving, or life-sustaining
applications, or other applications where a failure would reasonably be expected to cause severe personal injury or death.
Copyright 2016 © Qorvo, Inc. | Qorvo is a registered trademark of Qorvo, Inc.
QM55001 Data Sheet REV G | Subject to change without notice
www.qorvo.com
24 of 24
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