Operating Temperature Range .......................... -40NC to +85NC
Soldering Temperature (reflow) ......................................+260NC
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional opera-
tion of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect device reliability.
PACKAGE THERMAL CHARACTERISTICS (Note 1)
OTDFN (Note 1)
Junction-to-Ambient Thermal Resistance (B
JA
) .…+83.9°C/W
Junction-to-Case Thermal Resistance (B
JC
) ............ +37°C/W
Note 1:
Package thermal resistances were obtained using the method described in JEDEC specification JESD51-7, using a four-layer
board. For detailed information on package thermal considerations, refer to
www.maximintegrated.com/thermal-tutorial.
ELECTRICAL CHARACTERISTICS
(V
DD
= 1.8V (MAX44006), V
DD
= 3.3V (MAX44008), T
A
= +25NC, min/max are from -40°C to +85°C, unless otherwise noted.) (Note 2)
PARAMETER
SYMBOL
Clear = 538nm
Red = 630nm
Maximum Sensitivity (Note 3)
Green = 538nm
Blue = 470nm
Infrared = 850nm
Clear = 538nm
Red = 630nm
Maximum Sense Capability
Green = 538nm
Blue = 470nm
Infrared = 850nm
Total Error
Gain Matching
Power-Up Time
Dark-Level Counts
t
ON
6.25ms conversion time, 0 lux, T
A
= +25NC
14-bit resolution (Note 4)
ADC Conversion Time
14-bit resolution, T
A
= +25NC
12-bit resolution
10-bit resolution
8-bit resolution
Maxim Integrated
CONDITIONS
MIN
TYP
0.002
0.002
0.002
0.004
0.002
8388
8388
8388
16,777
8388
2
0.5
10
MAX
UNITS
COLOR-SENSOR CHARACTERISTICS
FW/cm
2
FW/cm
2
TE
Power = 10FW/cm
2
, red = 630nm,
green = 538nm, blue = 470nm,
T
A
= +25NC, clear = 538nm, IR = 850nm
Red to green to blue, T
A
= +25NC
15
10
2
%
%
ms
Counts
400
100
25
6.25
1.5625
2
ms
MAX44006/MAX44008
RGB Color, Infrared, and Temperature Sensors
ELECTRICAL CHARACTERISTICS (continued)
(V
DD
= 1.8V (MAX44006), V
DD
= 3.3V (MAX44008), T
A
= +25NC, min/max are from -40°C to +85°C, unless otherwise noted.) (Note 2)
PARAMETER
ADC Conversion Accuracy
TEMPERATURE SENSOR
Accuracy (Note 5)
Resolution
POWER SUPPLY
Power-Supply Voltage
V
DD
MAX44006, guaranteed by total error
MAX44008, guaranteed by total error
MAX44006, CLEAR mode
Quiescent Current
I
DD
MAX44006, RGBC + IR mode
MAX44008, CLEAR mode
MAX44008, RGBC + IR mode
Software Shutdown Current
I
SHDN
MAX44006, T
A
= +25NC
MAX44008, T
A
= +25NC
1.7
2.7
10
15
10
16
2
5.5
18
30
18
30
1
1.5
0.4
1.4
0.4
200
10
V
IN
= 0V, T
A
= +25NC
V
IN
= 5.5V, T
A
= +25NC
0
1.3
0.6
1.3
0.6
0.6
0.6
0
100
400
0.9
0.1
0.1
400
FA
FA
V
T
A
= +25NC~+55NC
T
A
= 0NC~+70NC
±1
±2
0.25
±3
±5
NC
NC/LSB
SYMBOL
T
A
= +25NC
T
A
= -40NC to +85NC (Note 5)
CONDITIONS
MIN
TYP
1
2
MAX
10
15
UNITS
%
DIGITAL CHARACTERISTICS—SDA,
INT,
A0
I
SINK
= 6mA
Output Low Voltage SDA
V
OL
I
2
C Input Voltage High
I
2
C Input Voltage Low
Input Hysteresis
Input Capacitance
Input Leakage Current
V
IH
V
IL
V
HYS
C
IN
I
IN
f
SCL
t
BUF
t
HD,STA
t
LOW
t
HIGH
t
SU.STA
t
SU,STO
t
HD,DAT
t
SU,DAT
C
B
SDA, SCL, A0
SDA, SCL, A0
V
V
V
mV
pF
FA
I
2
C TIMING CHARACTERISTICS (Note 6)
Serial Clock Frequency
Bus Free Time Between STOP
and START
Hold Time (Repeated) START
Condition
Low Period of the SCL Clock
High Period of the SCL Clock
Setup Time for a Repeated START
Setup Time for STOP Condition
Data Hold Time
Data Setup Time
Bus Capacitance
kHz
Fs
Fs
Fs
Fs
Fs
Fs
Fs
ns
pF
Maxim Integrated
3
MAX44006/MAX44008
RGB Color, Infrared, and Temperature Sensors
ELECTRICAL CHARACTERISTICS (continued)
(V
DD
= 1.8V (MAX44006), V
DD
= 3.3V (MAX44008), T
A
= +25NC, min/max are from -40°C to +85°C, unless otherwise noted.) (Note 2)
PARAMETER
SDA and SCL Receiving Rise
Time
SDA and SCL Receiving Fall
Time
SDA Transmitting Fall Time
Pulse Width of Suppressed Spike
Note 2:
Note 3:
Note 4:
Note 5:
Note 6:
SYMBOL
t
R
t
F
t
f
t
SP
CONDITIONS
MIN
20 +
0.1C
B
20 +
0.1C
B
20 +
0.1C
B
0
TYP
MAX
300
300
250
50
UNITS
ns
ns
ns
ns
100% production tested at T
A
= +25NC. Specifications over temperature limits are guaranteed by bench or ATE characterization.
In AMBTIM[2:0] mode (100ms integration time).
At 14-bit resolution mode. Sensitivity is 4 times higher with 400ms integration time than 100ms integration time.
Production tested only at +25NC, guaranteed by bench characterization across temperature.
Design guidance only, not production tested.
Typical Operating Characteristics
(V
DD
= 1.8V (MAX44006), V
DD
= 3.3V (MAX44008), T
A
= +25NC, min/max are from -40°C to +85°C, unless otherwise noted.)
SPECTRUM OF LIGHT SOURCES
FOR MEASUREMENT
MAX44006/08 toc01
WAVELENGTH vs. COUNTS
14,000
12,000
10,000
COUNTS
8,000
6,000
4,000
2,000
0
250 350 450 550 650 750 850 950 1050
WAVELENGTH (nm)
RADIATION PATTERN
MAX44006/08 toc02
MAX44006/08 toc03
NORMALIZED RESPONSE
120
100
80
60
40
20
0
300
400
500 600 700 800
WAVELENGTH (nm)
FLUORESCENT
SUNLIGHT
NORMALIZED COUNTS (%)
COMPENSATION DISABLED
POWER DENSITY 15.83 µW/cm
2
AMBPGA [1:0] = 00
AMBTIM[2:0] = 000
160
140
INCANDESCENT
100
80
60
40
20
0
CLEAR
RED
GREEN
BLUE
IR
CLEAR CHANNEL
AMBPGA [1:0]= 00
AMBTIM [2:0] =000
PARALLEL TO DIP PINS DIRECTION
PERPENDICULAR TO DIP PINS DIRECTION
-90 -70 -50 -30 -10 10
30
50
70
90
ANGLE OF INCIDENCE IN DEGREE
900 1000
Maxim Integrated
4
MAX44006/MAX44008
RGB Color, Infrared, and Temperature Sensors
Typical Operating Characteristics (continued)
(V
DD
= 1.8V (MAX44006), V
DD
= 3.3V (MAX44008), T
A
= +25NC, min/max are from -40°C to +85°C, unless otherwise noted.)
[i=s]This post was last edited by cjjh2014 on 2021-12-10 06:53[/i]Before disassembling the hardware today, we will simply test the wireless charging function. First, connect them in sequence as shown ...
http://v.youku.com/v_show/id_XNzUyNjU3NjU2.html This robot was made by some MIT students. It can fold itself into shape and then run away without human help. Inspired by traditional origami, this robo...
After removing the system's native explorer.exe, I put in a new explorer.exe that I built from the code in the directory C:\WINCE600\PUBLIC\SHELL\OAK\HPC\EXPLORER. When running, other functions are no...
1. Characteristics of LED light sources (1) Voltage: LED uses a low-voltage power supply, with a supply voltage between 6-24V, which varies depending on the product, so it is a safer power supply than...
I send ABC, but only receive one of the letters. The number is different each time. The baud rate setting is fine. What's going on? I saw that it's written like this in the manual....
I have some doubts about the understanding of GPL. According to the GPL convention, if the embedded system used in the device is LINUX, then it must be open source? Does that mean that companies like ...
At present, the development of wireless power supply technology for electric vehicles (EVs) is becoming more and more active. In 2012, Volvo of Sweden established Volvo Technology Japan in Tokyo as...[Details]
At present, the traffic congestion in cities is quite serious. According to relevant news reports: In China, the traffic congestion has expanded from megacities such as Beijing, Shanghai, and Guang...[Details]
Automotive applications are particularly sensitive to EMI events, which are unavoidable in a noisy electrical environment consisting of a central battery, bundled wiring harnesses, various inductiv...[Details]
introduction
In the discharge process of tokamak plasma physics, the study of rupture and sawtooth is of great significance. Rupture and sawtooth exist in most tokamaks. Rupture is a notew...[Details]
In order to highlight the concept of "energy saving and environmental protection" of intelligent buildings, solar street lights are designed for intelligent communities. The inclination and capacit...[Details]
To differentiate their products in a crowded and competitive market, manufacturers of handheld devices often consider battery life and power management as key selling points for cell phones, PDAs, ...[Details]
July 11, 2012, Beijing - Altera Corporation (NASDAQ: ALTR) today announced the launch of 40-Gbps Ethernet (40GbE) and 100-Gbps Ethernet (100GbE) intellectual property (IP) core products. These core...[Details]
The data collector of the automatic weather station is generally designed based on a single-chip microcomputer or a PC/104 bus controller. It has the characteristics of good compatibility with PC, low...[Details]
Although it is relatively easy to check the stability of a simple amplifier at lower frequencies, it may be much more difficult to evaluate the stability of a more complex circuit. This artic...[Details]
A multi-point temperature control heating control system was designed using the SST89E564RC single-chip microcomputer and a new temperature measuring device. The heating system can be controlled in...[Details]
my country is a big country in agriculture, grain production and consumption. Grains are a necessary condition for our nation to survive and develop. The flour processing industry will exist forever w...[Details]
The automotive lighting and signal control system is responsible for controlling the vehicle's lighting, signal lights, electric horns, reversing and brake buzzers. Traditional automotive lighting...[Details]
The typical fault troubleshooting listed below is for reference of maintenance personnel.
When the computer is turned on, the indicator light is off and there is no screen display
Mainte...[Details]
In the single-chip microcomputer system, in addition to display devices, sound devices are often used, and the most common sound device is the buzzer. Buzzers are generally used for some low-demand...[Details]
The concept of state machine
State machine is an important concept in software programming. More important than this concept is its flexible application. In a clear and efficient program, ther...[Details]