2016年1月31日星期日

Features of ATLSXA212D Laser Driver

ATLSXA212D series laser drivers are independent research and development products of ATI. ATI is a company specializing in designing and releasing laser driversTEC controllersSMT/SMD component kits, and so on. ATLSXA212D series laser driver is a typical one with high efficiency (more than 90%) and low noise (less than 12µA@0.1Hz ~ 10Hz). And ATLSXA212D provides four maximum output currents, 500mA, 1A, 2A and 3A, for users to select. Figure 1 is the photo of ATLS1A212D laser driver with maximum output current 1A. 
Figure 1. The photo of the ATLS1A212D laser driver
This laser driver comes with dual independent current set ports, which can be used to set output current. Moreover, it also provides dedicated ports to regulate and monitor the actual laser current and temperature during operation. If the temperature exceeds the limit, 120°C, the laser driver will close the output stage automatically and force the laser driver into Standby Mode. 
If you want to know more about ATLSXA212D series laser drivers or some other laser drivers, please visit our web site at:

ATLS3A212Laser Driver with 3A Constant Current

ATLS3A212laser driver is an electric module with 3A constant current, which is designed and released by our company (ATI). This laser driver has full swing output voltage, from 0.8V to VPS. It has been used to drive one or multiple laser diodes with high efficiency and low noise. Figure 1 is the photo of the ATLS3A212laser driver.
Figure 1. The photo of the ATLS3A212laser driver
The ATLS3A212laser driver comes with three control states: shutdown, standby and operation. Under different control states, components inside has different operating states. This driver can regulate and monitor output current at the same time. As the driver is packaged in a metal enclosure, the inferences from surrounding electronics are blocked. There are two packages available, DIP and SMT Packages.
 
If you want to know more about laser drivers, please visit our website at:

2016年1月25日星期一

High Voltage Laser Driver ATLSXA214

Laser driver with high output voltage is capable of driving one or more laser diodes simultaneously. The input voltage can be 5V to 16V, and the output voltage is from 0V to 15V. The laser driver generates ultra low output current noise : < 12µA@0.1Hz~10Hz, with high current stability <±600µA@4A &-20°C~80°C.  
Though this laser driver comes with high efficiency >92%, it doesn't need heat sink to dissipate heat, a small amount of heat.

The laser driver will shut down by itself when the temperature exceeds the temperature limit 120°C. Under shutdown mode, all the parts will stop working, while the input current is reduced to < 3µA. A loop good indication output is used to tell users if this laser driver is working well.

A high modulation speed can be achieved due to the output stage. There is an over current protection circuit in this laser driver, which prevents the laser driver from being damaged by over current. There is also a soft start circuit which allows the laser driver to increase its output current slowly during start up process and shut down the current quickly.


The physical photo of high voltage laser driver ATLS10A214

If you want to know more, please contact us.
For detailed information of laser drivers, please visit us at: http://www.analogtechnologies.com/atlsxa214.html

ATE1-TC-199Series Thermal Cycling TEC Module

ATE1-TC-199 series thermal cycling TEC module comes with 199 pairs of Peltier elements inside. These TEC modules are designed to regulatethe target object temperature with high changing speed and stabilize the temperature with high precision. The thermal cycling TEC modules have a longer operational life than standard TEC modules since the service life of the standard TEC modules will be reduced significantly when they are exposed to demanding physical stresses as the module shifts from heating to cooling. 
There are two TEC modules in this series, ATE1-TC-199-13A and ATE1-TC-199-13AS. The only difference between them is that the former is a non-sealed one and the latter is a sealed one. The maximum input voltage of the TEC modules is 27.4 Volt. The output current is 13A. The temperature difference is 72°C. 
Thermal cycling TEC modules can work withTEC controllersntc thermistors, and heat sinks to build a temperature controlsystem.  
Physical photo ofATE1-TC-199 series thermal cyclingTEC module 
For more parameters and other information about this TEC module or more types of Peltier modules, please refer to the webpage and its datasheet:
For more related products, please visit our main website:

2016年1月24日星期日

Driving Laser Diodes with ATLS2A212D Laser Driver

Since the invention of laser diode, it has been widely used in many technical fields, such as telecommunications, industrial production, and measurement equipment. In order to make laser diodes work well, our company (ATI) has designed and released a laser driver with high voltage and constant current. There are various laser drivers in our company and users can select what they need. 
Figure 1. The photo of the ATLS2A212D laser driver
ATLS2A212D laser driver is a typical laser driver, as shown in Figure 1. This driver has a maximum output current of 2A and a wide modulation bandwidth: DC ∼ 10 kHz. And it also has a wide output voltage range, 0.8~15V, which allows driving one or multiple laser diodes at the same time. During operation, little amount of heat will be generated, so there is no need of heat sinks. Moreover, the laser driver has a strong anti-interference capability because of being packaged in a metal enclosure.   
 
If you want to know more about laser drivers, please visit our website at:

Driving laser diodes with an electric module

In order to drive laser diodes, our company (ATI) has designed and produced an electric module, which is also called laser driver. And laser drivers released from our company features high stability, high efficiency, low noise and small size. There are many series laser drivers available and Figure 1 is the photo of a typical one. 
Figure 1. The photo of a laser driver
By using a laser driver, many functions can be realized, such as laser current setting and monitoring, controlling loop good indication, switching working mode automatically and so on. Because of high efficiency, no heat sink is needed for normal operation. Moreover, the driver is packaged in a metal enclosure, so there is no interference. 
By the way, our company has also designed a load assembly to emulate laser diodes for evaluating laser drivers. In this way, the cost can be reduced.  
If you want to know more about laser drivers, please visit our website at:

2016年1月21日星期四

Noise Measurement Amplifier

An oscilloscope can measure noise, but for ultra low noise, such as nV and µV level noises, it's hard to measure. There is anoise measurement amplifier ATNMA1.0, which is used to test and measure ultra low noise that can't be measured by an oscilloscope. 
This noise measurement amplifier can detect and amplify the noise signals by touching the selected point. There are seven magnifications, 10,000×, 30,000×, 100,000×, 300,000×, 1,000,000×, 3,000,000×, 10,000,000×. There are also three filter bandwidths available: : 0.1Hz ~ 10Hz, 0.1Hz ~ 1kHz, 0.1Hz ~ 100kHz.
There are several parts in this amplifier, a rechargeable battery, a coaxial cable and probes. The rechargeable battery can be used for over 20 hours. The battery capacity is 500mAh. The charging voltage is 4.2V. There is a function to monitor the battery capacity. When battery indicator switch is pressed, it's easy to observe if the battery needs to be charged. There are several LEDs on the amplifier, which shows the capacity. Meanwhile, when the battery is being charged, there are two charging display LEDs.
 
The physical photo of Noise Measurement Amplifier ATNMA1.0 
If you want to know more about this amplifier, please contact us. 
Our web site is 

Advanced laser drivers in ATI

ATI is the abbreviation of Analog Technologies, Inc., which specializes in designing and releasing laser drivers, TEC controllers, SMD/SMT component kits, etc. Laser driver is a typical product of ATI, which is used to drive laser diodes with high stability, high efficiency, and low noise. And there is a wide variety of advanced laser drivers available, such asATLSXA212 series, ATLSXA214 series, ATLS_XXX_103 series and so on. 
Figure 1. The photo of the ATLS1A212D laser driver
The above photo is a typical one of lasers drivers. This laser driver has high efficiency (more than 90%), so there is no heat sink for normal operation. And it contains three work modes: shutdown, standby and operation. Under different work conditions, the driver can automatically switch operation mode. Moreover, by using a laser driver, the actual current and temperature can be monitored in real time. 
 
If you want to know more about laser drivers or other products, please visit our website at:

2016年1月20日星期三

New Peltier Controller TECA1-xV-xV-DAH

  TECA1-xV-xV-DAH is a new peltier controller released by our company. Peltier controllers is widely used in regulating the object temperature by driving peltier modules (TEC modules) with high stability, high efficiency, high energy efficiency, zero EMI, and a compact package.
  TECA1-xV-xV-DAHis an improved version of TECA1-xV-xV-D. The difference lies inTECA1-xV-xV-DAH has a higher accuracy, please refer to the table below.
 
Part #Maximum|VTEMP − VTEMPSP |(mV)
TECA1-xV-xV-DAH≤0.5
TECA1-xV-xV-D≤25
 
  This table shows that the voltage difference between VTEMPand VTEMPSP ofTECA1-xV-xV-D is ≤25mV, while the voltage difference between VTEMPand VTEMPSP ofTECA1-xV-xV-DAH is ≤0.5mV, ten times lower than that of TECA1-xV-xV-D. Moreover, Offset Object temp. vs. set-point temp. of TECA1-xV-xV-DAHis ±0.004°C or ±0.5mV, while that of TECA1-xV-xV-D is±0.1°C or ±15mV. Thus, it’s easily seen that the TECA1-xV-xV-DAHperforms better than TECA1-xV-xV-D.
  In the part number TECA1-xV-xV-DAH, the1st x indicates the power supply voltage, and it can be 3.3V or 5V; the 2nd x stands for the maximumoutput voltage across TEC, e.g. TECA1H-5V-5V-D. The above two specifications can be specified by the customers.
  Figure 1. The physical photo of Peltier controllerTECA1-xV-xV-DAH
  ATI provides more peltier controller products. If you want to know more about thisPelter controllers, please visit our website at:

ATLSXA212D Series Laser Driver

ATLSXA212D series laser driver is an electric module with high voltage and constant current and it is designed and released by ATI. ATI is specializes in R&D and production of laser driver or laser controller. The VPS range of ATLSXA212D series laser driver is from 4.5V to 6V and its full swing output voltage is from 0.8V to VPS (input voltage). There are four maximum output currents available, namely 500mA, 1A, 2A and 3A. Figure 1 is the physical photo of the ATLS1A212D laser driver with maximum output current 1A, which is the typical one in ATLSXA212D series.
Figure 1. The photo of the ATLS1A212D laser driver
During operation, ATLSXA212D series laser driver can drive one or multiple serial laser diodes at the same time, and it has high efficiency, low noise, high stability and zero EMI (Electro-Magnet Interferences). This laser driver provides three work modes: shutdown, standby and operation. In addition, it comes with dedicated ports to monitor the actual laser current and temperature inside, and there is also a loop good indication to tell whether the driver works well. 
 
If you want to know more about ATLSXA212D series laser drivers, please visit our website at:

2016年1月19日星期二

Thermoelectric Cooler Controller Design

This article is from Photonics Magazine. TEC controller design experts from Analog Tehcnologies, Inc offer tips to lower the cost and simplify the design of the devices, and to increase their ease of use.
Thermoelectric cooler (TEC) controllers are becoming more prevalent in thermal management designs because they can drive a thermoelectric cooler to stabilize the temperature of laser diodes or passive components used in communications equipment.
TECs have several advantages for temperature regulation: high accuracy and stability, fast response time, a wide set-point temperature range, and a simple structural design with no moving parts. Also, they are small and lightweight, reliable, noise-free and environmentally friendly. However, when comparing with temperature regulation approaches based on heat sinks or compressors, for applications requiring especially high thermal power output, TECs may have certain shortcomings: low efficiency, low thermal power, high cost of both TECs and controllers, and complex controller designs.
Figure 1. Thermoelectric coolers (TECs) are highly accurate and stable for temperature control, with a wide set-point temperature range and a simple packaging design with no moving parts. They are small and light, highly reliable, noise-free and environmentally friendly. Here, a structural diagram of a TEC.

Cold/hot sides and +/- terminals
In 1834, French physicist Jean-Charles Athanase Peltier found that the junctions of dissimilar metals are heated or cooled depending upon the direction in which an electric current passes through them. This effect became the Peltier effect.
A TEC has two ceramic plates with Peltier elements sandwiched in between. Based on the Peltier effect, these elements produce heat and cold by injecting an electric current through them. All the Peltier elements are connected in series; the first and last are each connected to a separate wire terminal. The plate on which the two terminals are mounted is often called the hot-side plate or simply the hot side; the other side is designated the cold-side plate or the cold side. The two sides are symmetrical in terms of thermal functionality, but the thermal load of the side with the terminals is a little higher because of the wire leads.
A DC current is injected into the TEC through the two terminals, and this generates a temperature difference between the two plates: One plate becomes cooler, while the other side becomes warmer.
When the cold side cools down, the TEC terminal connecting the positive lead of the power supply is designated as the plus (+) terminal, or the positive lead of the TEC; the other is designated as the minus (-) terminal, or the negative lead. As the DC current reverses direction – i.e., flows out from the plus terminal – the cold side will heat up and the hot side cool down. Therefore, TECs can be used both for cooling down and heating up the thermal load.
TECs can’t “generate” cold; they only move heat from one side to the other. They “produce” heat more efficiently than cold under the same size or current conditions because not all of the electric energy of the DC current is used for removing the heat; some energy is consumed by the Peltier elements and converted into heat, which is conducted to the two sides of the TEC at the same time. This heat boosts the heating-up power of the TEC but makes the cooling-down function less efficient.
http://www.analogtechnologies.com/a/New/Technology_innovation_related/2014/1219/88.htm

ATE1-TC-127 Series Thermal Cycling TEC Module

ATE1-TC-127 series thermal cycling TEC modules come with high input voltage, 17.5V. There are several types of thermal cycling TEC modules in this series. The output currents are 5.5A, 5.7A, 8.5A, 7.8A and 12.1, each corresponding to a TEC module respectively. The temperature differences can be 72°C, 72.5°C and 74.5°C. The dimensions are not the same either. 
These thermal cycling TEC modules are designed for temperature cycling applications. The operational life of standard TEC modules will be largely reduced when the TEC modules shift from heating to cooling. However, the thermal cycling TEC modules perform well during the shift and the service life is much longer than standard TEC modules. Therefore, it would be a perfect selection when the application needs TEC modules with long operation life.
Thermal cycling TEC modules can work with TEC controllersntc thermistors, and heat sinks to build a temperature control system.  
Physical photo of ATE1-TC-127 series thermal cycling TEC module 
For more parameters and other information about this TEC module or more types of Peltier modules, please refer to the webpage and its datasheet:
For more related products, please visit our main website:

2016年1月18日星期一

ATE1-TC-71 Series Thermal Cycling TEC Module

There are multiple series of Thermal cycling TEC modules in our company. ATE1-TC-71 TEC modules come with a longer thermal cycling operational life than standard TEC modules. These thermal cycling TEC modules are designed for temperature cycling applications. In these applications, TEC modules are exposed to demanding physical stresses when the TEC modules shift from heating to cooling, and this can reduce the operational life of standard TEC modules. Therefore, thermal cycling TEC modules will be a perfect solution.
ATE1-TC-71 series TEC modules have two products, ATE1-TC-71-5R5AS and ATE1-TC-71-7R8AS. There are totally 71 pairs of Peltier elements. The maximum currents through the TECs are 5.5A and 7.8A respectively; the maximum input voltage of both TEC modules is 9V. The size is very compact, 30*30mm.
Thermal cycling TEC modules can work with TEC controllersntc thermistors, and heat sinks to build a temperature control system.  
Physical photo of ATE1-TC-71 series thermal cycling TEC module 
For more parameters and other information about this TEC module or more types of Peltier modules, please refer to the webpage and its datasheet:
For more related products, please visit our main website:

ATE1-TC-71 Series Thermal Cycling TEC Module

There are multiple series of Thermal cycling TEC modules in our company. ATE1-TC-71 TEC modules come with a longer thermal cycling operational life than standard TEC modules. These thermal cycling TEC modules are designed for temperature cycling applications. In these applications, TEC modules are exposed to demanding physical stresses when the TEC modules shift from heating to cooling, and this can reduce the operational life of standard TEC modules. Therefore, thermal cycling TEC modules will be a perfect solution.
ATE1-TC-71 series TEC modules have two products, ATE1-TC-71-5R5AS and ATE1-TC-71-7R8AS. There are totally 71 pairs of Peltier elements. The maximum currents through the TECs are 5.5A and 7.8A respectively; the maximum input voltage of both TEC modules is 9V. The size is very compact, 30*30mm.
Thermal cycling TEC modules can work with TEC controllersntc thermistors, and heat sinks to build a temperature control system.  
Physical photo of ATE1-TC-71 series thermal cycling TEC module 
For more parameters and other information about this TEC module or more types of Peltier modules, please refer to the webpage and its datasheet:
For more related products, please visit our main website:

2016年1月17日星期日

ATLS4A214D laser driver of ATI

The ATLS4A214D laser driver is an independent research and development product of ATI. The laser driver features that the power supply voltage VPS range is from 5V to 14V, the full swing output voltage is from 0V to 75% VPS (input voltage) and the maximum output current is 4A. And it also has a wide output voltage range, 0~15V, which can drive one or multiple laser diodes at the same time and also control the current (up to 4A) well.
Figure 1. The photo of the ATLS4A214D laser driver
As shown in Figuire 1, this driver has a small size and is packaged in a metal enclosure to keep from the incoming and outgoing interfences. As it has high efficiency (more than 90%), and generates a small mount of heat, so there is no heat sink needed during operation. What’s more, the ATLS4A214D laser driver provides for users dual independent current set ports and direct digital modulation control. In a word, it is very convenient and efficient to use the ATLS4A214D laser driver.
If you want to know more about the ATLS4A214D laser driver, please visit our website at:

ATLS500mA212 Laser Driver

The ATLS500mA212 is a laser driver with low output noise and high efficiency. It is designed to drive one or multiple laser diodes for DPSSL, EDFA, or fiber lasers. This laser driver features high current stability, low output noise, and small size, as shown in Figure 1, and so on. And there are two package methods available: DIP and SMT packages.
Figure 1. The photo of the ATLS500mA212 laser driver
The ATLS500mA212 laser driver comes with three control modes: shutdown, standby and operation. Under standby mode, all the laser driver components work except the output stage. Under shutdown mode, all the components of the laser driver stop working and the power supply current is reduced to < 3µA. And during operation, the laser driver needs no heat sinks, so it is very convenient to use.
If you want to know more about ATLS500mA212 laser driver or some other laser drivers, please visit our website at:

2016年1月14日星期四

High Efficiency Laser Driver ATLD10A5

ATLD10A5 laser driver is an electronic module with a 10A output current, which is developed and released by ATI. This laser driver has high efficiency, low noise (less than 0.05%) and well controlled output current. And because of high efficiency, no heat sink is needed for the laser driver. The ATLD10A5 laser driver can not only be used to drive diode lasers, heaters and TEC, but also be used as DC-DC voltage converter. 
Figure 1. The photo of the ATLD10A5 laser driver
This laser driver provides two package methods: SMT and DIP Package. And it has dual mode control: current and power or voltage. In most cases, the current mode is utilized and the power or voltage mode is used as a protection tier. 
 
If you want to know more about the ATLD10A5 laser driver or some other laser drivers, please visit our website at:

ATE1-TC-31-3AS Thermal Cycling TEC Module

ATE1-TC-31-3AS thermal cycling TEC module is newly developed by our company, which is the updated and improved versions of the normal TEC modules. These TEC modules can bear thermal cycling applications, thus the service life is longer than normal TEC modules. Thermal cycling TEC module has wide applications for temperature cycling, such as instrumentation, PCR devices, thermal cyclers, chillers and analyzers, etc.  As the part number indicates, ATE1-TC-31-3AS, TC stands for thermal cycling; 31 is the pairs of Peltier elements;3A is the maximum current through the TEC module; S refers to the sealed version. The maximum input voltage is 3.9V. The maximum differential temperature between the TEC's two ceramic plates is 74.5°C.
TEC modules can also be controlled by TEC controllers, which aims to build a stable and efficient temperature regulating system. The ATE1-TC-31-3AS TEC modules can work with ntc thermistors in order to achieve precise and stable temperature sensing in temperature measurement or control.  
Physical photo of thermal cycling TEC module ATE1-TC-31-3AS
For more parameters and other information about this TEC module or more types of peltier modules, please refer to the webpage and its datasheet:
For more related products, please visit our main website:

2016年1月13日星期三

ATE1-71 TEC Modules

ATE1-71 series TEC modules are applied to regulate the temperature of the target object and widely used in solid state laser, icebox, air condition, IC’s, optical components, CPU’s, CCD cameras, etc. This series of tec modules come with high changing speed and stabilize the temperature to a wide range with high precision.
The maximum input voltage is 8.5V and the maximum output current is from 1A to 8A. There are two flat and bare ceramic surfaces on the both sides of the TECs and they can be mounted onto flat metal surfaces by inserting a thin layer thermal pads, which help heat dissipation. During mounting process, proper and constant pressure should be applied so that it can keep good thermal contacting between the metal and the TEC ceramic surfaces, which minimizes thermal resistance between them. There are two packaging methods, sealed version and non-sealed version. Users can select based on the applications.
Physical photo of TEC module ATE1-71
For more parameters and other information about this TEC module or more types of peltier modules, please refer to the webpage and its datasheet:
For more related products, please visit our main website:

High Voltage Constant Current Laser Driver

ATLSXA212 is a laser driver with high voltage and constant current. It is designed to drive one or multiple laser diodes for DPSSL, EDFA, and fiber lasers with low noise and high efficiency. And in order to meet more applications, our company (ATI) has developed and released ATLSXA212 series laser drivers: ATLS500mA212DATLS1A212DATLS2A212D, andATLS3A212D. Figure 1 is the photo of a typical one, ATLS1A212D laser driver. 
Figure 1. The photo of the ATLS1A212D laser driver
The ATLS1A212D laser driver has a maximum output current 1A and full swing output voltage: 0.8V to VPS. During operation, the laser driver has high efficiency (more than 90%), and there is no need of heat sinks. In addition, because of being packaged in a metal enclosure, it can keep from the inferences from others electronics.  
 
If you want to know about ATLSXA212 series or some other laser drivers, please visit our website at:

2016年1月12日星期二

High Voltage Laser Drivers: ATLSXA212

  There is an urgent need in the market for high voltage laser driver. High voltage laser driver is designed for driving a serial of diode laserssimultaneously, recently we developedATLSXA212 series laser drivers. The power supply voltage (VPS)is between 4.75V to 16V and the output voltage can be from 1V to (VPS -1V), e.g. the maximum output voltage can be 14V when powered by a 15V power supply.
  This series laser drivers come with three current, 1A, 2A and 3A. The corresponding part numbers are: ATLS1A212D, ATLS2A212D, and ATLS3A212D. The main features of these high voltage laser drivers are high efficiency, high output power, compact size, high current stability, low output noise, and wide modulation bandwidth. These controllers can be evaluated conveniently by using their evaluation board, ATLS212EV1.0.Since high power lasers are often costly, we have also developed a load assembly that can be used to emulate the expensive laser diodes for evaluating the laser controllers, which avoids costly mistakes when evaluating laser controllers.
  The laser driver comes with two packages: DIP (Dual in Line) package and SMT (Surface Mount Technology) package. The former has the part number with a suffix "D", and the latter with the suffix "S". DIP package is for easy evaluation. SMT package performs more stable, but it’s not easy to replace or take off.
  The physical photo of a high voltage constant current laser driver
  We also provides other high performance laser drivers with different voltages and currents. If you want to know more details, please visit our website or contact us directly.

Household Earthquake Alarm ATEQA2015

ATEQA2015, a household earthquake alarm, is used to measure the earthquake azimuth and it can inform government and people of earthquake as soon as possible. So people can get timely help.



The physical photo of ATEQA2015

Descriptions
1. Alarm mode
Geomagnetism loss alarm, magnetic north and south reverse and longitudinal P wave variation alarm
2. When will it alarm
When over 3 magnitude earthquake, earthmagnetic field will change, for example, magnet will loss, North and South Pole will change or P wave impact will occur, etc. The alarm can sense the above changes and then alarms. If there are no such changes, it will not alarm.
3. How far ahead of time will it alarm
Generally, it can alarm 10 minutes to dozens of seconds in advance.
If you want to know more, please contact us.
Our web site is http://www.analogti.com/ateqa2015.html

2016年1月11日星期一

Digital Peltier/Fan Controller ATFC107D

ATFC107D is designed to drive a Peltier/Fan assembly in order to regulate an enclosed chamber temperature. The assembly shows the working parameters in real time. These parameters can also be sent to a PC though USB port. The output stage has a soft-start and soft-cut function for driving the TECs so that the TEC's life time will be longer.
This controller assembly is consisted of a Peltier controller, a digital display, a fan controller, and a relay output. The Peltier controller is used to control Peltier module. The fan controller can control the fan. These components are assembled together into a whole digital Peltier/fan controller ATFC107D.   As shown in the figure below, this device show some temperatures, such as safety high temperature, safety low temperature, cool on temperature, heat on temperature, satisfied, TEC outside temperature, TEC inside temperature and chamber temperature. There are several LEDs indicating which temperature the digital display is showing. There are also some buttons to select the temperature. Therefore, it is overall an easy-to-use device in monitoring and controlling the chamber temperature.
The photos of actual ATFC107D 
Please read the datasheet for more detail information or contact us directly. 

High Voltage Laser Driver

Laser driver is an electronic module, which is designed for driving a serial of diode lasers. High voltage laser driver features an input voltage between 4.75V to 16V. this laser driver is of high efficiency, so it generates small amount of heat, thus, there is no need for a heat sink for normal operation.

This laser driver has a wide input and output voltage range and high output current capability. Moreover, it outputs low noise with high efficiency. The wide output voltage range allows driving one or multiple diode lasers simultaneously. The high voltage laser driver generates a high accuracy low noise reference voltage, which is applied for setting the output current

There are three control states, shutdown, standby and operation. The laser driver is packaged in 6-side metal enclosure, which prevents the laser driver and other electronics from interfering each other. Both DIP and SMT packages are available.
The physical photo of a constant current laser driver

This laser driver can be evaluated by our unique evaluation board conveniently. You can find it in our website too.

For different types of laser drivers, we also provide corresponding evaluation boards, which simplifies

If you want to know more, please contact us.
For detailed information of laser drivers, please visit us at:http://www.analogtechnologies.com/high_voltage_constant_current_laser_driver.html

2016年1月10日星期日

AHV12V3KV3RMAW High Voltage Power Supply

A series of high voltage power supplies are developed in our company. These products are designed for achieving DC-DC conversion from low voltage to high voltage, and can be applied in many fields, such as nondestructive inspection high voltage power supply, semiconductor manufacturing equipment high voltage power supply, capillary electrophoresis high voltage power supply, nondestructive detection high voltage power supply, particles injection high voltage power supply in semiconductor technology, etc. 
These high voltage power supplies feature high precision, full modulation range on output voltage, linear regulation and shutdown functions. The input voltage can be from 11V to 13V. The typical input voltage is 12V. The output current is 3.0mA. The short time drift is <0.5%/ min, and the long time drift is <1%/h. The output voltage temperature stability at −20 ~ 50°C is <±1%. The operating temperature range is from −20°C to 50°C. The storage temperature range is from −55°C to 100°C. The external dimensions is 82×55×28mm. 
Figure 1. The photo of high voltage power supply AHV12V3KV3RMAW
If you want to know more about high voltage power supplies, please visit our website at:

ATLS4A214 Laser Driver

The ATLS4A214 laser driver is an electric module, which is used to drive laser diodes with high voltage and constant current. The voltage range of the power supply is from 5V~16V. Because of high working efficiency, the laser driver needs no heat sink. This laser driver has a compact size, 27.4mm×20.9mm×8.9mm, as shown in Figure 1 and it is packaged in a metal enclosure to block electromagnetic interference.
Figure 1. The photo of the ATLS4A214 laser driver
The ATLS4A214 laser driver comes with dual independent current set ports and it provides for users three control states: shutdown, standby and operation. It is noteworthy that this laser driver has very low output current noise. 
In addition, there are many other laser drivers in our company (ATI), such as ATLSXA212 seriesATLS_XXX_103 series and so on. 
If you want to know more about this laser driver or other types of laser drivers, please visit our website at:

2016年1月7日星期四

Laser Technology

The laser is a device that a beam of light that is both scientifically and practically of great use because it is coherent light. The beam is produced by a process known as stimulated emission, and the word "laser" is an acronym for the phrase "light amplification by stimulated emission of radiation."
Lasers consist of several components. A few of the many things that the so-called active medium might consist of atoms of a gas, molecules in a liquid, and ions in a crystal. Another component consists of some method of introducing energy into the active medium, such as a flash lamp for example. Another component is the pair of mirrors on either side of the active medium which consists of one that transmits some of the radiation that hits it. If the active component in the laser is a gas laser than each atom is characterized by a set of energy states, or energy levels, of which it may consist. An example of the energy states could be pictured as a unevenly spaced ladder which the higher rungs mean higher states of energy and the lower rungs mean lower states of energy. If left disturbed for a long time the atom will reach its ground state or lowest state of energy. According to quantum mechanics there is only one light frequency that the atom will work with. There are three ways that the atom can deal with the presence of light either it can absorb the light, or spontaneous emission occurs, or stimulated emission occurs. This means that if the atom is at its lowest state that it may absorb the light and jump to its high state and emit extra light while doing so. The second thing it may do is if it is at its highest state it can fall spontaneously to its lower state thus emitting light. The third way is that the atom will jump from its upper state to its lower state thus emitting extra light. Spontaneous emission is not effected by light yet it is rather on a time scale characteristic of the states involved. That is called the spontaneous lifetime. In stimulated emission the frequency of the light is the same as the frequency of the light that stimulated it.

New Pakistan Distributor Joins Us!

The Connection from Pakistan becomes a new distributor of our company. Welcome!!
Till now, we have totally three global distributors worldwide and we are still looking forward to being joined by companies from many other countries, such as Australia, Austria, Belgium, Brazil, Canada, China, Cyprus, Denmark, England, Finland, France, Germany, Iceland, India, Israel, Italy, Korea, Malaysia, Netherlands, New Zealand, Northern Ireland, Norway, Republic of Ireland, Scotland, Singapore, Spain, Sweden, Switzerland, Taiwan, Thailand, U.K., United States of America, Vietnam, Wales...
If you love our products and like to promote our products in your country, please do not hesitate to email us or give us a call. Let's work together!

2016年1月6日星期三

Get A Reason on Why Use TEC Controller for Your Devices

The thermoelectric Cooler that is found in many electronic appliances requires precision temperature control. Reason being why TEC controllers are used and are must to maintain in order to keep a watch on temperature variation. Critical components that are controlled by temperature are integrated with a temperature monitor and are tied up into a single thermally engineered module.
 
Thermoelectric coolers can also heat by passing reverse current and therefore it is quintessential to implement TEC controllers such that a small variation in the flow of current can be monitored and recorded. Smaller size of TEC’s allow precision thermal control of individual components that are used, which may include precision voltage references, fiber-optic laser drivers, or any temperature-critical device. TEC will always be an essential element for precision thermal control applications. The performance by TEC controllers makes them a more attractive solution for a growing range of temperature-control applications.
 
Practical uses of this device help it in gaining wider acceptability and adoptability in various fields. TEC controllers have begun finding space in almost every essential electronic goods, thus protecting them from uncertain rise and fall in electric current. These devices are extremely important and effective and are capable even to replace vapor-cycle refrigeration devices used to heat and cool homes.
 
TEC modules are used in optical communication systems. It features greater with 90% efficiency and relatively much lesser noise. It supervises real temp monitoring, temp lock indication, current limit, and switching frequency and phase changeability. Used almost in every kind of appliances to save those from damage and protect during current variation makes TEC controller an important element in their manufacturing. You can always find best quality TEC controllers offered by Analog Technologies Inc, which are efficient, cost effective and long lasting. 

ATLS250MA106 Laser Driver with Ultra Low Noise

The ATLS250MA106 laser driver is an electric module, which is used to drive laser diodes with up to 250mA extra low noise current. When powered by 5V power supply, the range of its output voltage is from 1.5V to 4V. During operation, there is no need of heat sink, and it also has a compact size, as shown in Figure 1, so it is very convenient to use in applications with limited space. 
Figure 1. The physical photo of the ATLS250MA106 laser driver
The ATLS250MA106 laser driver is designed and released by our company (ATI). There is a compensation network inside, so that even when the controller temperature rises, the output current can still maintain the same. What’s more, the controller provides two packaging versions: DIP package and SMT package.  
If you want to know more about this laser driver, please visit our website at: