首页 > 器件类别 > 传感器

MMA6801KW

Accelerometers XY-AXIS 20/ 20G QFN

器件类别:传感器   

厂商名称:NXP(恩智浦)

厂商官网:https://www.nxp.com

下载文档
MMA6801KW 在线购买

供应商:

器件:MMA6801KW

价格:-

最低购买:-

库存:点击查看

点击购买

器件参数
参数名称
属性值
Product Attribute
Attribute Value
制造商
Manufacturer
NXP(恩智浦)
产品种类
Product Category
Accelerometers
RoHS
Details
Sensor Type
2-axis
Sensing Axis
X, Y
电源电压-最大
Supply Voltage - Max
5.25 VDC
电源电压-最小
Supply Voltage - Min
3.15 VDC
封装 / 箱体
Package / Case
QFN-16
系列
Packaging
Tube
Moisture Sensitive
Yes
工厂包装数量
Factory Pack Quantity
75
单位重量
Unit Weight
0.006325 oz
文档预览
NXP Semiconductors
Data sheet: Technical data
Document Number: MMA68xx
Rev. 9.0, 01/2017
MMA68xx, Dual-axis SPI Inertial
Sensor
MMA68xx, a SafeAssure solution, is a SPI-based, 2-axis, medium-g, over-
damped lateral accelerometer designed for use in automotive airbag systems.
Features
±20
g
to ±120
g
full-scale range, independently specified for each axis
3.3 V or 5 V single supply operation
SPI-compatible serial interface
10-bit digital signed or unsigned SPI data output
Independent programmable arming functions for each axis
Twelve low-pass filter options, ranging from 50 Hz to 1000 Hz
Optional offset cancellation with > 6 s averaging period and < 0.25 LSB/s
slew rate
Pb-free, 16-pin QFN, 6 mm x 6 mm x 1.98 mm package
MMA68xx
Bottom View
Pb-free, 16-pin QFN
6 mm x 6 mm x 1.98 mm package
Top View
Referenced Documents
V
SSA
• Qualified AEC-Q100, Revision G, Grade 1 (-40°C to +125°C)
(http://www.aecouncil.com/)
Ordering information
Device
MMA6811BKCW
MMA6813BKCW
MMA6821BKCW
MMA6823BKCW
MMA6825BKCW
MMA6826BKCW
MMA6827BKCW
MMA6811BKCWR2
MMA6813BKCWR2
MMA6821BKCWR2
MMA6823BKCWR2
MMA6825BKCWR2
MMA6826BKCWR2
MMA6827BKCWR2
X-axis
Range
±60
g
±50
g
±120
g
±120
g
±100
g
±60
g
±120
g
±60
g
±50
g
±120
g
±120
g
±100
g
±60
g
±120
g
Y-axis
Range
±25
g
±50
g
±25
g
±60
g
±100
g
±60
g
±120
g
±25
g
±50
g
±25
g
±60
g
±100
g
±60
g
±120
g
Package
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
98ASA00690D
Shipping
Tubes
Tubes
Tubes
Tubes
Tubes
Tubes
Tubes
Tape & Reel
Tape & Reel
Tape & Reel
Tape & Reel
Tape & Reel
Tape & Reel
Tape & Reel
V
REGA
1
V
SS
2
V
REG
3
V
SS
4
16 15 14 13
17
12 CS
11 MOSI
10 SCLK
9 V
CC
5
ARM_Y/PCM_Y
6
ARM_X/PCM_X
7
TEST/V
PP
8
MISO
Pin Connections
© 2017 NXP B.V.
V
SSA
N/C
N/C
1
1.1
V
CC
General Description
Application Diagram
V
CC
V
REG
V
REGA
CS
SCLK
MOSI
MISO
CS_A
SCLK1
MOSI1
MISO1
CS_D
SCLK2
MOSI2
MISO2
CS
SCLK
MOSI
MISO
C1
C2
C3
MMA68xx
V
SSA
V
SS
V
PP
/TEST
ARM_X
ARM_Y
Main MCU
Deployment IC
DEPLOY_EN1
DEPLOY_EN2
Figure 1. Application Diagram
Table 1. External Component Recommendations
Ref Des
C1
C2
C3
Type
Ceramic
Ceramic
Ceramic
Description
0.1
μF,
10 %, 10 V Minimum, X7R
1
μF,
10 %, 10 V Minimum, X7R
1
μF,
10 %, 10 V Minimum, X7R
Purpose
V
CC
Power Supply Decoupling
Voltage Regulator Output Capacitor (C
REG
)
Voltage Regulator Output Capacitor (C
REGA
)
1.2
Device Orientation and Part Marking
xxxxxxx
xxxxxxx
xxxxxxx
xxxxxxx
X: +1
g
Y: 0
g
TTT
xxxxxxx
xxxxxxx
X: 0
g
Y: +1
g
xxxxxxx
xxxxxxx
X: –1
g
Y: 0
g
X: 0
g
Y: 0
g
X: 0
g
Y: 0
g
X: 0
g
Y: –1
g
EARTH GROUND
Figure 2. Device Orientation Diagram
MMA68xx
BKCW
AWLYWWZ
Data Code Legend:
A: Assembly Location
WL: Wafer Lot Number (g-cell Lot Number)
Y: Year
WW: Work Week
Z: Assembly Lot Number
Figure 3. Part Marking
MMA68xx
2
Sensors
NXP Semiconductors
1.3
Internal Block Diagram
V
PP
V
CC
V
REG
V
SS
V
REGA
IIR
Offset
Compensation
Linear
Interpolation
Cancellation
Output
Scaling
Offset
Monitor
Clock CRC
Generation
Y-axis Register
Array
SPI
Mismatch
Verification
Y-axis
SPI
ARM_Y
V
SSA
ARM_Y
Over-Damped
Y-axis
g-Cell
SINC Filter
Low-Pass Filter
ΣΔ
Converter
Clock & bias
Generator
1 MHz
Self
Test
Analog
Regulator
8 MHz
Digital
V
REG
V
REGA
V
CC
SPI
OTP
Array
I/O
CS
SCLK
MOSI
MISO
1
MHz
Oscillator
Regulator
Voltage
Monitoring
Memory
V
REGA
ΣΔ
Converter
Over-Damped
X-axis
g-Cell
Clock & bias
Generator
V
REG
X-axis Register
Array
Clock CRC
Generation
IIR
SINC Filter
Low-Pass Filter
Compensation
Linear
Interpolation
Offset
Cancellation
Clock
Monitoring
Offset
Monitor
X-axis
SPI
Output
Scaling
ARM_X
ARM_X
Figure 4. Block Diagram
MMA68xx
Sensors
NXP Semiconductors
3
2
Pin Connections
V
SSA
16 15 14 13
V
REGA
1
V
SS
2
V
REG
3
V
SS
4
5
ARM_Y/PCM_Y
6
ARM_X/PCM_X
7
TEST/V
PP
8
MISO
17
12 CS
11 MOSI
10 SCLK
9 V
CC
V
SSA
N/C
N/C
Figure 5. 16-Pin QFN Package, Top View
Table 2. Pin Description
Pin
1
2
3
4
5
Pin
Name
V
REGA
V
SS
V
REG
V
SS
ARM_Y/
PCM_Y
Formal Name
Analog
Supply
Digital GND
Digital
Supply
Digital GND
Y-axis
Arm Output /
PCM Output
Definition
This pin is connected to the power supply for the internal analog circuitry. An external capacitor must be
connected between this pin and V
SSA
. Reference
Figure 1.
This pin is the power supply return node for the digital circuitry.
This pin is connected to the power supply for the internal digital circuitry. An external capacitor must be
connected between this pin and V
SS
. Reference
Figure 1.
This pin is the power supply return node for the digital circuitry.
The function of this pin is configurable via the DEVCFG register as described in
Section 4.1.6.5.
When the
arming output is selected, ARM_Y can be configured as an open drain, active low output with a pullup current;
or an open drain, active high output with a pulldown current. Alternatively, this pin can be configured as a digital
output with PCM signal proportional to the Y-axis acceleration data. Reference
Section 4.8.9
and
Section
4.8.9.1.
If unused, this pin must be left unconnected.
The function of this pin is configurable via the DEVCFG register as described in
Section 4.1.6.5.
When the
arming output is selected, ARM_X can be configured as an open drain, active low output with a pullup current;
or an open drain, active high output with a pulldown current. Alternatively, this pin can be configured as a digital
output with a PCM signal proportional to the X-axis acceleration data. Reference
Section 4.8.9
and
Section
4.8.9.1.
If unused, this pin must be left unconnected.
6
ARM_X/
PCM_X
X-axis
Arm Output /
PCM Output
7
8
9
10
11
12
13
14
15
16
17
TEST/
V
PP
MISO
V
CC
SCLK
MOSI
CS
V
SSA
N/C
N/C
V
SSA
PAD
Corner
Pads
Programming This pin provides the power for factory programming of the OTP registers. This pin must be connected to V
SS
Voltage
in the application.
SPI Data Out This pin functions as the serial data output for the SPI port.
Supply
SPI Clock
SPI Data In
Chip Select
Analog GND
No Connect
No Connect
Analog GND
This pin supplies power to the device. An external capacitor must be connected between this pin and V
SS
.
Reference
Figure 1.
This input pin provides the serial clock to the SPI port. An internal pulldown device is connected to this pin.
This pin functions as the serial data input to the SPI port. An internal pulldown device is connected to this pin.
This input pin provides the chip select for the SPI port. An internal pullup device is connected to this pin.
This pin is the power supply return node for analog circuitry.
No Connection
No Connection
This pin is the power supply return node for analog circuitry.
Die Attach Pad This pin is the die attach flag, and is internally connected to V
SS
.
Corner Pads
The corner pads are internally connected to V
SS
.
MMA68xx
4
Sensors
NXP Semiconductors
3
3.1
#
Electrical Characteristics
Maximum Ratings
Rating
1 Supply Voltage
2 C
REG
, C
REGA
3 SCLK, CS, MOSI, V
PP
/TEST
4 ARM_X, ARM_Y
5 MISO (high impedance state)
6 Acceleration without hitting internal
g-cell
stops
7 Acceleration without saturation of internal circuitry
8 Powered Shock (six sides, 0.5 ms duration)
9 Unpowered Shock (six sides, 0.5 ms duration)
10 Drop Shock (to concrete surface)
11
12
13
Electrostatic Discharge
Human Body Model (HBM)
Charge Device Model (CDM)
Machine Model (MM)
Maximum ratings are the extreme limits to which the device can be exposed without permanently damaging it.
Symbol
V
CC
V
REG
V
IN
V
IN
V
IN
g
gcell_Clip
g
ADC_Clip
g
pms
g
shock
h
DROP
V
ESD
V
ESD
V
ESD
T
stg
θ
JC
Value
–0.3 to +7.0
–0.3 to +3.0
–0.3 to V
CC
+ 0.3
–0.3 to V
CC
+ 0.3
–0.3 to V
CC
+ 0.3
±500
±375
±1500
±2000
1.2
±2000
±750
±200
–40 to +125
2.5
Unit
V
V
V
V
V
g
g
g
g
m
V
V
V
°C
°C/W
(3)
(3)
(3)
(3)
(3)
(3, 18)
(3)
(5, 18)
(5, 18)
(5)
(5)
(5)
(5)
(5)
(14)
14 Storage Temperature Range
15 Thermal Resistance - Junction to Case
3.2
#
16
17
18
Operating Range
Characteristic
Supply Voltage
Standard Operating Voltage, 3.3 V
Standard Operating Voltage, 5.0 V
Operating Ambient Temperature Range
Verified by 100 % Final Test
The operating ratings are the limits normally expected in the application and define the range of operation.
Symbol
V
CC
Min
V
L
+3.135
T
L
–40
0.000033
Typ
V
TYP
+3.3
+5.0
Max
V
H
+5.25
T
H
+105
3300
Units
V
V
C
V/μs
(15)
(15)
(1)
(19)
T
A
V
CC_r
19 Power-on Ramp Rate (V
CC
)
MMA68xx
Sensors
NXP Semiconductors
5
查看更多>
str912跑ucosii浮点异常
定义一个浮点数,有时候输出居然是0.000000 大家碰到过这个问题吗? str912跑ucos...
zzc_opk stm32/stm8
LM3S6965+lwip的UPD传输速率问题
使用UDP进行数据传输的速率测试,无限循环传输一个随机数组,没有采用操作系统,最高速度只有500K字...
cisco032 微控制器 MCU
求解,求助!
有没有书籍是关于模拟电路计算的资料。上一次见老师傅搭了一个音频放大电路,阻值,电容值是烂熟于心,但我...
strawberry 模拟电子
PCB 手册:《利用自动验证消除原理图设计错误》|Mentor 有奖活动
关于手册 当今的复杂设计已经不允许手动评审和验证原理图。Xpedition 原理图完整性分析可...
EEWORLD社区 PCB设计
急!!为什么编译时,evc模拟器连接不上
为什么每次编译时总提示:“ one or more files from the Emulator ...
yongle_2005 嵌入式系统
有谁知道《opc应用程序入门》这本书哪里可以买到?
请问各位: 有谁知道《opc应用程序入门》这本书哪里可以买到?我是江苏的,除了江苏其他的也可以...
hongrui 嵌入式系统
热门器件
热门资源推荐
器件捷径:
A0 A1 A2 A3 A4 A5 A6 A7 A8 A9 AA AB AC AD AE AF AG AH AI AJ AK AL AM AN AO AP AQ AR AS AT AU AV AW AX AY AZ B0 B1 B2 B3 B4 B5 B6 B7 B8 B9 BA BB BC BD BE BF BG BH BI BJ BK BL BM BN BO BP BQ BR BS BT BU BV BW BX BY BZ C0 C1 C2 C3 C4 C5 C6 C7 C8 C9 CA CB CC CD CE CF CG CH CI CJ CK CL CM CN CO CP CQ CR CS CT CU CV CW CX CY CZ D0 D1 D2 D3 D4 D5 D6 D7 D8 D9 DA DB DC DD DE DF DG DH DI DJ DK DL DM DN DO DP DQ DR DS DT DU DV DW DX DZ
需要登录后才可以下载。
登录取消