Menu English Ukrainian russian Home

Free technical library for hobbyists and professionals Free technical library


ENCYCLOPEDIA OF RADIO ELECTRONICS AND ELECTRICAL ENGINEERING
Free library / Schemes of radio-electronic and electrical devices

Foreign integrated amplifiers of low frequency. Encyclopedia of radio electronics and electrical engineering

Free technical library

Encyclopedia of radio electronics and electrical engineering / Reference materials

Comments on the article Comments on the article

At present, a wide range of imported low-frequency integrated amplifiers has become available. Their advantages are satisfactory electrical parameters, the ability to select microcircuits with a given output power and supply voltage, stereo or quad performance with the possibility of bridging.

For the manufacture of a structure based on an integral ULF, a minimum of attachments is required. The use of known-good components ensures high repeatability and typically no further tuning is required.

The given typical switching circuits and the main parameters of integrated ULF are designed to facilitate the orientation and selection of the most suitable microcircuit.

For quadraphonic ULF, the parameters in the bridged stereo connection are not indicated.

TDA1010
TDA1011
TDA1013
TDA1015
TDA1020
TDA1510
TDA1514
TDA1515
TDA1516
TDA1517
TDA1518
TDA1519
TDA1551
TDA1521
TDA1552
TDA1553
TDA1554
TDA1555
TDA1556
TDA1557
TDA1558
TDA1561
TDA1904
TDA1905
TDA1910
TDA2003
TDA2004
TDA2005
TDA2006
TDA2007
TDA2008
TDA2009
TDA2030
TDA2040
TDA2050
TDA2051
TDA2052
TDA2611
TDA2613
TDA2614
TDA2615
TDA2822
TDA7052
TDA7053
TDA2824
TDA7231
TDA7235
TDA7240
TDA7241

TDA1010

Supply voltage - 6...24 V

Maximum current consumption - 3 A

Output power (Un \u14,4d 10 V, THD \uXNUMXd XNUMX%):
RL=2 ohm - 6,4W
RL=4 ohm - 6,2W
RL=8 ohm - 3,4W

SOI (P=1 W, RL=4 Ohm) - 0,2%

Quiescent current - 31 mA

Inclusion circuit

TDA1011

Supply voltage - 5,4...20 V

Maximum current consumption - 3 A

Output power (RL=4 ohm, THD=10%):
Un=16V - 6,5W
Un=12V - 4,2 W
Un=9V - 2,3 W
Un=6V - 1,0W

SOI (P=1 W, RL=4 Ohm) - 0,2%

Quiescent current - 14 mA

Inclusion circuit

TDA1013

Supply voltage - 10...40 V

Maximum current consumption - 1,5 A

Output power (THD=10%) - 4,2 W

SOI (P=2,5 W, RL=8 Ohm) - 0,15%

Inclusion circuit

TDA1015

Supply voltage - 3,6 ... 18 V

Maximum current consumption - 2,5 A

Output power (RL=4 ohm, THD=10%):
Un=12V - 4,2 W
Un=9V - 2,3 W
Un=6V - 1,0W

SOI (P=1 W, RL=4 Ohm) - 0,3%

Quiescent current - 14 mA

Inclusion circuit

TDA1020

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Un =14,4 V, THD=10%):
RL=2 Ohm - 12 W
RL=4 ohm - 7W
RL=8 ohm - 3,5W

Quiescent current - 30 mA

Inclusion circuit

TDA1510

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Un=14,4V RL=4 Ohm):
THD=0,5% - 5,5 W
THD=10% - 7,0 W

Quiescent current - 120 mA

Inclusion circuit

TDA1514

Supply voltage - ±10...±30 V

Maximum current consumption - 6,4 A

Output power:
Un \u27,5d ± 8 V, R \u40d XNUMX Ohm - XNUMX W
Un \u23d ± 4 V, R \u48d XNUMX Ohm - XNUMX W

Quiescent current - 56 mA

Inclusion circuit

TDA1515

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Un =14,4 V, THD=0,5%):
RL=2 ohm - 9W
RL=4 ohm - 5,5W

Output power (Un=14,4V, THD=10%):
RL=2 Ohm - 12 W
RL4 Ohm - 7W

Quiescent current - 75 mA

Inclusion circuit

TDA1516

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Un =14,4 V, THD=0,5%):
RL=2 ohm - 7,5W
RL=4 ohm - 5W

Output power (Un =14,4 V, THD=10%):
RL=2 Ohm - 11 W
RL=4 ohm - 6W

Quiescent current - 30 mA

Inclusion circuit

TDA1517

Supply voltage - 6 ... 18 V

Maximum current consumption - 2,5 A

Output power (Un=14,4V RL=4 Ohm):
THD=0,5% - 5 W
THD=10% - 6 W

Quiescent current - 80 mA

Inclusion circuit

TDA1518

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Un =14,4 V, THD=0,5%):
RL=2 ohm - 8,5W
RL=4 ohm - 5W

Output power (Un =14,4 V, THD=10%):
RL=2 Ohm - 11 W
RL=4 ohm - 6W

Quiescent current - 30 mA

Inclusion circuit

TDA1519

Supply voltage - 6 ... 17,5 V

Maximum current consumption - 4 A

Output power (Up=14,4 V, THD=0,5%):
RL=2 ohm - 6W
RL=4 ohm - 5W

Output power (Un =14,4 V, THD=10%):
RL=2 ohm - 11W
RL=4 ohm - 8,5W

Quiescent current - 80 mA

Inclusion circuit

TDA1551

Supply voltage -6...18 V

Output power (Un = 14,4 V, RL = 4 ohms):
THD=0,5% - 5 W
THD=10% - 6 W

Quiescent current - 160 mA

Inclusion circuit

TDA1521

Supply voltage - ±7,5...±21 V

Maximum current consumption - 2,2 A

Output power (Un=±12V, RL=8 ohm):
THD=0,5% - 6 W
THD=10% - 8 W

Quiescent current - 70 mA

Inclusion circuit

TDA1552

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Un = 14,4 V, RL = 4 ohms):
THD=0,5% - 17 W
THD=10% - 22 W

Quiescent current - 160 mA

Inclusion circuit

TDA1553

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Up=4,4 V, RL=4 Ohm):
THD=0,5% - 17 W
THD=10% - 22 W

Quiescent current - 160 mA

Inclusion circuit

TDA1554

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Up = 14,4 V, RL = 4 ohms):
THD=0,5% - 5 W
THD=10% - 6 W

Quiescent current - 160 mA

Inclusion circuit

TDA2004

Dual integrated ULF, designed specifically for use in a car and allowing operation at a low-resistance load (up to 1,6 Ohm).

Supply voltage - 8 ... 18 V

Maximum current consumption - 3,5 A

Output power (Un=14,4V, THD=10%):
RL=4 ohm - 6,5W
RL=3,2 ohm - 8,0W
RL=2 ohm - 10W
RL=1,6 ohm - 11W

KHI (Un=14,4V, P=4,0 W, RL=4 Ohm) - 0,2%;

Bandwidth (by level -3 dB) - 35...15000 Hz

Quiescent current - <120 mA

Inclusion circuit

TDA2005

Dual integrated ULF, designed specifically for use in a car and allowing operation at a low-resistance load (up to 1,6 Ohm).

Supply voltage - 8 ... 18 V

Maximum current consumption - 3,5 A

Output power (Up = 14,4 V, THD = 10%):

RL=4 ohm - 20W
RL=3,2 ohm - 22W

SOI (Up = 14,4 V, P = 15 W, RL = 4 Ohm) - 10%

Bandwidth (by level -3 dB) - 40...20000 Hz

Quiescent current - <160 mA

Inclusion circuit

TDA2006

Integral ULF providing high output current, low harmonics and intermodulation distortion. The pinout matches the pinout of the TDA2030 chip.

Supply voltage - ±6,0...±15 V

Maximum current consumption - 3 A

Output power (Ep=±12V, THD=10%):
at RL=4 Ohm - 12 W
at RL=8 Ohm - 6...8 W SOI (Ep=±12V):
at P=8 W, RL= 4 Ohm - 0,2%
at P=4 W, RL= 8 Ohm - 0,1%

Bandwidth (by level -3 dB) - 20...100000 Hz

Consumption current:
at Р=12 W, RL=4 Ohm - 850 mA
at Р=8 W, RL=8 Ohm - 500 mA

Inclusion circuit

TDA2007

A dual integrated ULF with a single in-line arrangement of pins, specially designed for use in television and portable radio receivers.

Supply voltage - +6...+26 V

Quiescent current (Ep=+18 V) - 50...90 mA

Output power (THD=0,5%):
at En=+18 V, RL=4 Ohm - 6 W
at En=+22 V, RL=8 Ohm - 8 W

SOI:
at En=+18 V P=3 W, RL=4 Ohm - 0,1%
at En=+22 V, P=3 W, RL=8 Ohm - 0,05%

Bandwidth (by level -3 dB) - 40...80000 Hz

Maximum consumption current - 3 A

Inclusion circuit

TDA2008

Integral ULF, designed to operate on a low-resistance load, providing a high output current, very low harmonic content and intermodulation distortion.

Supply voltage - +10...+28 V

Quiescent current (Ep=+18 V) - 65...115 mA

Output power (Ep=+18V, THD=10%):
at RL=4 Ohm - 10...12 W
at RL=8 Ohm - 8 W

THD (Ep= +18 V):
at Р=6 W, RL=4 Ohm - 1%
at Р=4 W, RL=8 Ohm - 1%

Maximum consumption current - 3 A

Inclusion circuit

TDA2009

Dual integrated ULF, designed for use in high-quality music centers.

Supply voltage - +8...+28 V

Quiescent current (Ep=+18 V) - 60...120 mA

Output power (Ep=+24 V, THD=1%):
at RL=4 Ohm - 12,5 W
at RL=8 Ohm - 7 W

Output power (Ep=+18 V, THD=1%):
at RL=4 Ohm - 7 W
at RL=8 Ohm - 4 W

SOI:
at En= +24 V, P=7 W, RL=4 Ohm - 0,2%
at En= +24 V, P=3,5 W, RL=8 Ohm - 0,1%
at En= +18 V, P=5 W, RL=4 Ohm - 0,2%
at En= +18 V, P=2,5 W, RL=8 Ohm - 0,1%

Bandwidth (by level -3 dB) - 20...80000 Hz

Maximum consumption current - 3,5 A

Inclusion circuit

TDA2030

Integral ULF providing high output current, low harmonics and intermodulation distortion.

Supply voltage - ±6...±18 V

Quiescent current (Ep=±14 V) - 40...60 mA

Output power (Ep=±14 V, THD=0,5%):
at RL=4 Ohm - 12...14 W
at RL=8 Ohm - 8...9 W

SOI (Ep=±12V):
at Р=12 W, RL=4 Ohm - 0,5%
at Р=8 W, RL=8 Ohm - 0,5%

Bandwidth (by level -3 dB) - 10...140000 Hz

Consumption current:
at Р=14 W, RL=4 Ohm - 900 mA
at Р=8 W, RL=8 Ohm - 500 mA

Inclusion circuit

TDA2040

Integral ULF providing high output current, low harmonics and intermodulation distortion.

Supply voltage - ±2,5...±20 V

Quiescent current (Ep=±4,5...±14 V) - mA 30...100 mA

Output power (Ep=±16 V, THD=0,5%):
at RL=4 Ohm - 20...22 W
at RL=8 Ohm - 12 W

SOI (Ep=±12V, P=10W, RL=4 Ohm) - 0,08%

Maximum consumption current - 4 A

Inclusion circuit

TDA2050

Integral ULF, providing high output power, low harmonics and intermodulation distortion. Designed to work in Hi-Fi stereo complexes and high-end TVs.

Supply voltage - ±4,5...±25 V

Quiescent current (Ep=±4,5...±25 V) - 30...90 mA

Output power (Ep=±18, RL=4 Ohm, THD=0,5%) - 24...28 W

THD (Ep=±18V, P=24W, RL=4 Ohm) - 0,03...0,5%

Bandwidth (by level -3 dB) - 20...80000 Hz

Maximum consumption current - 5 A

Inclusion circuit

TDA2051

Integral ULF, which has a small number of external elements and provides a low content of harmonics and intermodulation distortion. The output stage operates in class AB, which allows you to get more output power.

Output power:
at Ep=±18 V, RL=4 Ohm, SOI=10% - 40 W
at Ep=±22 V, RL=8 Ohm, SOI=10% - 33 W

Inclusion circuit

TDA2052

Integral ULF, the output stage of which operates in class AB. Allows a wide range of supply voltages and has a large output current. It is intended for work in television and radio receivers.

Supply voltage - ±6...±25 V

Quiescent current (En = ±22 V) - 70 mA

Output power (Ep = ±22 V, THD = 10%):
at RL=8 Ohm - 22 W
at RL=4 Ohm - 40 W

Output power (En = 22 V, THD = 1%):
at RL=8 Ohm - 17 W
at RL=4 Ohm - 32 W

SOI (with a bandwidth of -3 dB 100 ... 15000 Hz and Pout = 0,1 ... 20 W):
at RL=4 Ohm - <0,7%
at RL=8 Ohm - <0,5%

Inclusion circuit

TDA2611

Integral ULF, designed to work in household equipment.

Supply voltage - 6 ... 35 V

Quiescent current (Ep=18 V) - 25 mA

Maximum consumption current - 1,5 A

Output power (THD=10%): at Ep=18 V, RL=8 Ohm - 4 W
at Ep=12V, RL=8 0m - 1,7 W
at Ep=8,3 V, RL=8 Ohm - 0,65 W
at Ep=20 V, RL=8 Ohm - 6 W
at Ep=25 V, RL=15 Ohm - 5 W

SOI (at Рout=2 W) - 1%

Bandwidth - >15 kHz

Inclusion circuit

TDA2613

Integral ULF, designed to work in household equipment (television and radio receivers).

Supply voltage - 15 ... 42 V

SOI:
(Ep=24 V, RL=8 Ohm, Pout=6 W) - 0,5%
(Ep=24 V, RL=8 Ohm, Pout=8 W) - 10%

Quiescent current (Ep=24 V) - 35 mA

Maximum consumption current - 2,2 A

Inclusion circuit

TDA2614

Integral ULF, designed to work in household equipment (television and radio receivers).

Supply voltage - 15 ... 42 V

Maximum consumption current - 2,2 A

Quiescent current (Ep=24 V) - 35 mA

SOI:
(Ep=24 V, RL=8 Ohm, Pout=6,5 W) - 0.5%
(Ep=24 V, RL=8 Ohm, Pout=8,5 W) - 10%

Bandwidth (by level -3 dB) - 30...20000 Hz

Inclusion circuit

TDA2615

Dual ULF, designed to work in stereo radios or TVs.

Supply voltage - ±7,5...21 V

Maximum current consumption - 2,2 A

Quiescent current (Ep=7,5...21 V) - 18...70 mA

Output power (Ep=±12 V, RL=8 ohm):
THD=0,5% - 6 W
THD=10% - 8 W

Bandwidth (by level-3 dB and Рout=4 W) - 20...20000 Hz

Inclusion circuit

TDA2822

Dual ULF, designed to work in portable radio and television receivers.

Supply voltage - 3 ... 15 V

Maximum current consumption - 1,5 A

Quiescent current (Ep=6 V) - 12 mA

Output power (THD=10%, RL=4 ohm):
En \u9d 1,7V - XNUMX W
En \u6d 0,65V - XNUMX W
En \u4.5d 0,32V - XNUMX W

Inclusion circuit

TDA7052

Inclusion circuit

TDA7053

Inclusion circuit

TDA2824

Dual ULF, designed to work in portable radio and television receivers

Supply voltage - 3 ... 15 V

Maximum current consumption - 1,5 A

Quiescent current (Ep=6 V) - 12 mA

Output power (THD=10%, RL=4 Ohm)
En \u9d 1,7 V - XNUMX W
En \u6d 0,65 V - XNUMX W
En \u4,5d 0,32 V - XNUMX W

SOI (Ep=9 V, RL=8 Ohm, Pout=0,5 W) - 0,2%

Inclusion circuit

TDA7231

ULF with a wide range of supply voltages, designed to work in portable radios, cassette recorders, etc.

Supply voltage - 1,8 ... 16 V

Maximum current consumption - 1,0 A

Quiescent current (Ep=6 V) - 9 mA

Output power (THD=10%):
En=12V, RL=6 Ohm - 1,8 W
En=9B, RL=4 Ohm - 1,6 W
Ep=6 V, RL=8 Ohm - 0,4 W
Ep=6 V, RL=4 Ohm - 0,7 W
En \u4d Z V, RL \u0,11d XNUMX Ohm - XNUMX W
Ep=3 V, RL=8 Ohm - 0,07 W

SOI (Ep=6 V, RL=8 Ohm, Pout=0.2 W) - 0,3%

Inclusion circuit

TDA7235

ULF with a wide range of supply voltages, designed to work in portable radio and television receivers, cassette recorders, etc.

Supply voltage - 1,8 ... 24 V

Maximum current consumption - 1,0 A

Quiescent current (Ep=12 V) - 10 mA

Output power (THD=10%):
Ep=9 V, RL=4 Ohm - 1,6 W
Ep=12 V, RL=8 Ohm - 1,8 W
Ep=15 V, RL=16 Ohm - 1,8 W
Ep=20 V, RL=32 Ohm - 1,6 W

SOI (Ep=12V, RL=8 Ohm, Pout=0,5 W) - 1,0%

Inclusion circuit

TDA7240

Bridge ULF, designed for use in car radios. It has protection against short circuit in the load, as well as against overheating.

Maximum supply voltage - 18 V

Maximum current consumption - 4,5 A

Quiescent current (Ep=14,4 V) - 120 mA

Output power (Ep=14,4 V, THD=10%):
RL=4 ohm - 20W
RL=8 ohm - 12W

SOI:
(Ep=14,4 V, RL=4 Ohm, Pout=12 W) - 0,1%

(Ep=14,4 V, RL=8 Ohm, Pout=12W) - 0,05%

Bandwidth level -3 dB (RL=4 Ohm, Pout=15 W) - 30...25000 Hz

Inclusion circuit

TDA7241

Bridge ULF, designed for use in car radios. It has protection against short circuit in the load, as well as against overheating.

Maximum supply voltage - 18 V

Maximum current consumption - 4,5 A

Quiescent current (Ep=14,4 V) - 80 mA

Output power (Ep=14,4 V, THD=10%):
RL=2 ohm - 26W
RL=4 ohm - 20W
RL=8 ohm - 12W

SOI:
(Ep=14,4 V, RL=4 Ohm, Pout=12 W) - 0,1%
(Ep=14,4 V, RL=8 Ohm, Pout=6 W) - 0.05%

Bandwidth level -3 dB (RL=4 Ohm, Pout=15 W) - 30...25000 Hz

Inclusion circuit

TDA1555Q

Supply voltage - 6...18 V

Maximum current consumption - 4 A

Output power (Up = 14,4 V. RL = 4 ohms):
- THD=0,5% - 5 W
- THD=10% - 6 W Quiescent current - 160 mA

Inclusion circuit

TDA1557Q

Supply voltage - 6 ... 18 V

Maximum current consumption - 4 A

Output power (Up = 14,4 V, RL = 4 ohms):

- THD=0,5% - 17 W
- THD=10% - 22 W

Quiescent current, mA 80

Inclusion circuit

TDA1556Q

Supply voltage -6...18 V

Maximum current consumption -4 A

Output power: (Up=14.4 V, RL=4 Ohm):
- THD=0,5%, - 17 W
- THD=10% - 22 W

Quiescent current - 160 mA

Inclusion circuit

TDA1558Q

Supply voltage - 6..18 V

Maximum current consumption - 4 A

Output power (Up=14 V, RL=4 Ohm):
- THD=0.6% - 5 W
- THD=10% - 6 W

Quiescent current - 80 mA

Inclusion circuit

TDA1561

Supply voltage - 6 ... 18 V

Maximum consumed current - 4 A

Output power (Up=14V, RL=4 Ohm):

- THD=0.5% - 18 W
- THD=10% - 23 W

Quiescent current - 150 mA

Inclusion circuit

TDA1904

Supply voltage - 4 ... 20 V

Maximum consumed current - 2 A

Output power (RL=4 ohm, THD=10%):
- Up=14 V - 4 W
- Up=12V - 3,1 W
- Up=9 V - 1,8 W
- Up=6 V - 0,7 W

SOI (Up=9 V, P<1,2 W, RL=4 Ohm) - 0,3%

Quiescent current - 8...18 mA

Inclusion circuit

TDA1905

Supply voltage - 4 ... 30 V

Maximum consumed current - 2,5 A

Output power (THD=10%)
- Up=24 V (RL=16 Ohm) - 5,3 W
- Up=18V (RL=8 Ohm) - 5,5 W
- Up=14 V (RL=4 Ohm) - 5,5 W
- Up=9 V (RL=4 Ohm) - 2,5 W

SOI (Up=14 V, P<3,0 W, RL=4 Ohm) - 0,1%

Quiescent current - <35 mA

Inclusion circuit

TDA1910

Supply voltage - 8 ... 30 V

Maximum consumed current - 3 A

Output power (THD=10%):
- Up=24 V (RL=8 Ohm) - 10 W
- Up=24 V (RL=4 Ohm) - 17,5 W
- Up=18 V (RL=4 Ohm) - 9,5 W

SOI (Up=24 V, P<10,0 W, RL=4 Ohm) - 0,2%

Quiescent current - <35 mA

Inclusion circuit

TDA2003

Supply voltage - 8 ... 18 V

Maximum consumed current - 3,5 A

Output power (Up=14V, THD=10%):
- RL=4,0 Ohm - 6 W
- RL=3,2 Ohm - 7,5 W
- RL=2,0 Ohm - 10 W
- RL=1,6 Ohm - 12 W

SOI (Up=14,4 V, P<4,5 W, RL=4 Ohm) - 0,15%

Quiescent current - <50 mA

Inclusion circuit

Publication: N. Bolshakov, rf.atnn.ru

See other articles Section Reference materials.

Read and write useful comments on this article.

<< Back

Latest news of science and technology, new electronics:

Air trap for insects 01.05.2024

Agriculture is one of the key sectors of the economy, and pest control is an integral part of this process. A team of scientists from the Indian Council of Agricultural Research-Central Potato Research Institute (ICAR-CPRI), Shimla, has come up with an innovative solution to this problem - a wind-powered insect air trap. This device addresses the shortcomings of traditional pest control methods by providing real-time insect population data. The trap is powered entirely by wind energy, making it an environmentally friendly solution that requires no power. Its unique design allows monitoring of both harmful and beneficial insects, providing a complete overview of the population in any agricultural area. “By assessing target pests at the right time, we can take necessary measures to control both pests and diseases,” says Kapil ... >>

The threat of space debris to the Earth's magnetic field 01.05.2024

More and more often we hear about an increase in the amount of space debris surrounding our planet. However, it is not only active satellites and spacecraft that contribute to this problem, but also debris from old missions. The growing number of satellites launched by companies like SpaceX creates not only opportunities for the development of the Internet, but also serious threats to space security. Experts are now turning their attention to the potential implications for the Earth's magnetic field. Dr. Jonathan McDowell of the Harvard-Smithsonian Center for Astrophysics emphasizes that companies are rapidly deploying satellite constellations, and the number of satellites could grow to 100 in the next decade. The rapid development of these cosmic armadas of satellites can lead to contamination of the Earth's plasma environment with dangerous debris and a threat to the stability of the magnetosphere. Metal debris from used rockets can disrupt the ionosphere and magnetosphere. Both of these systems play a key role in protecting the atmosphere and maintaining ... >>

Solidification of bulk substances 30.04.2024

There are quite a few mysteries in the world of science, and one of them is the strange behavior of bulk materials. They may behave like a solid but suddenly turn into a flowing liquid. This phenomenon has attracted the attention of many researchers, and we may finally be getting closer to solving this mystery. Imagine sand in an hourglass. It usually flows freely, but in some cases its particles begin to get stuck, turning from a liquid to a solid. This transition has important implications for many areas, from drug production to construction. Researchers from the USA have attempted to describe this phenomenon and come closer to understanding it. In the study, the scientists conducted simulations in the laboratory using data from bags of polystyrene beads. They found that the vibrations within these sets had specific frequencies, meaning that only certain types of vibrations could travel through the material. Received ... >>

Random news from the Archive

Motorola Project Ara Modular Smartphone Platform 30.10.2013

Motorola Mobility's advanced technology division has unveiled a project codenamed Ara to create a universal platform for building modular smartphones.

The idea is to give users the freedom to choose components for their cell phones, replace them as needed, and change the functionality of the devices.

Work on the project has been going on for more than a year. The concept of modular smartphones involves the use of the so-called endoskeleton - the basis on which a wide variety of electronic modules will be placed. As planned by Motorola, users will be able to choose the processor, display and / or keyboard they need, the camera unit and battery, the required set of sensors, etc. As the device is used, its owners will be able to upgrade aging components without having to buy a new smartphone entirely.

The ultimate goal of Motorola Mobility is to create a free and open ecosystem where all interested developers and manufacturers can release functional hardware modules for smartphones of any class.

Other interesting news:

▪ Electronics will park the car

▪ Driving school for rats

▪ Conductive bacteria

▪ Across the English Channel on a jet hoverboard

▪ The world managed to twist

News feed of science and technology, new electronics

 

Interesting materials of the Free Technical Library:

▪ section of the site Electrician in the house. Article selection

▪ article Oh holy simplicity! Popular expression

▪ article Who made the first glasses? Detailed answer

▪ Leek article. Legends, cultivation, methods of application

▪ article Bipolar UHF antenna. Encyclopedia of radio electronics and electrical engineering

▪ article Three cards (Find a lady). Focus Secret

Leave your comment on this article:

Name:


Email (optional):


A comment:





All languages ​​of this page

Home page | Library | Articles | Website map | Site Reviews

www.diagram.com.ua

www.diagram.com.ua
2000-2024