Part Number Hot Search : 
2N6172 IZ8018 L7805 LM4007G BAT240 RS604 FDSD0420 MP7683KQ
Product Description
Full Text Search
 

To Download PL-IRM0101-3 Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Package Dimensions
REV: B / 0
NOTES : 1. All dimensions are in millimeters. 2. Tolerance is 0.25(0.010") unless otherwise specified DRAWING NO.: DS-27-01-0001 DATE: 2004-08-31 Page: 1
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Description
A miniaturized receiver for infrared remote control and IR data transmission. PIN diode and preamplifier are assembled on lead frame. The epoxy package is designed as IR filter. The demodulated output signal can directly be decoded by a microprocessor. The main benefit is the operation with high data rates and long distances.
REV: B / 0
Features
Photo detector and preamplifier in one package Internal band filter for PCM frequency Internal shielding against electrical field disturbance TTL and CMOS compatibility Output active low Small size package
Special Features
Supply voltage 5.5 V Short settling time after power on High envelope duty cycle can be received Enhanced immunity against disturbance from energy saving lamps
Application
AV instruments such as Audio, TV, VCR, CD, DVD, MD etc. Home appliances such as Air conditioner, Fan etc. The other equipments with wireless remote control. CATV set top boxes. Multi-media Equipment. Sensors and light barrier systems for long distances
DRAWING NO.: DS-27-01-0001
DATE: 2004-08-31
Page: 2
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Block Diagram
VS
REV: B / 0
IN INPUT
AGC FILTER
OUT
DEMODULATOR
us
OSCILLATOR
AGC/ATCDIGITAL CONTROL
GND
Application Circuit
IRM
cc
4.7u 2.4K uC
DD
GND
GND
Transmit Signal (Carrier Frequency=fo)
IR Transmitter Output Wave Form

Delay
Output Pulse Of Device
Twl Twh
VOH VOL
DATE: 2004-08-31 Page: 3
DRAWING NO.: DS-27-01-0001
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Data Transmission Rate, Vs=5V
5000
REV: B / 0
4000
3000 (bit/s) 2000 1500 1000
0 25.0
35.0
45.0
55.0 fo(KHz)
65.0
75.0
85.0
Illustration Of Used Terms
600us 600us 8 8
IN
1
8
tDON
tDOFF
600us
600us
OUT
ENVELOPE1 ENVELOPE2 ENVELOPE23
27600us/DATA WORD
OUT
DATA WORD TELEGRAM PAUSE DATA WORD t 27.6ms Trep=62ms
DRAWING NO.: DS-27-01-0001
DATE: 2004-08-31
Page: 4
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Absolute Maximum Ratings : ( Ta = 25C )
Symbol Vcc Tstg Topr Tsol Supply Voltage Storage Temperature Range Operating Temperature Range Soldering Temperature Parameter Ultra Condition 5.5 25to 85 25to 85 255(Max 5sec) Unit V
REV: B / 0
Lead Soldering Temperature 1.6mm0.063inchFrom Body2505 For 3 Seconds.
Electro-Optical Characteristics : ( Ta = 25)
Symbol Vcc Icc P fo L Voh Vol Twh Twl Parameter Supply Voltage Current Consumption Peak Emission Wavelength B.P.F Center Frequency Arrival Distance H Level Output Voltage L Level Output Voltage H Level Output Pulse Width L Level Output Pulse Width Output Form L-514EIR1C 0 45 4.5 0.1 500 500 600 600 0.5 700 700 Input signal=0 940 38 35 8 Condition Min. 4.5 Typ. 5 2.5 Max. Unit V mA nm KHz m m V V s s
30cm Over The Axis Burst Wave=600s Period=1.2ms
Active Low Output
Note 1.Distance between emitter & detector specifies maximum distance that output waveform satisfies the standard under the conditions below against the standard transmitter.
Measuring place------Indoors without extreme reflection of light. Ambient light source------Detecting surface illumination shall be 20050Lux under ordinary fluorescence lamp of no high frequency lighting. Standard transmitter------Burst wave indicated shall be arranged to 50mVp-p under the measuring circuit.
Note 2. (Electro-optical chrematistics) shall be satisfied after leaving 2 hours in the normal temperature.
DRAWING NO.: DS-27-01-0001 DATE: 2004-08-31 Page: 5
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Typical CharacteristicsTa=25
REV: B / 0
po-Output Pulse Width(ms)
=940nm optical test signal,fig1
Eemin/Ee-Rel.Responsivity
f=fo5% f(3dB)=fo/10
Ee-Irradiance(mW/)
f/fo-Relative Frequency
1
Pulse Diagram
=940nm optical test signal,fig3
Eemin-Threshold Irradiance(mW/)
=940nm
Ee-Irradiance(mW/)
E-Ambient DC Irradiance(mW/)
2
Pulse Diagram
4
Eemin-Threshold Irradiance(mW/)
10KHz 1KHz
100KHz
Vsrms-AC Voltage on DC Supply Voltage(mV)
Eemin-Threshold Irradiance(mW/)
Tamb-Ambient Temperature()
DRAWING NO.: DS-27-01-0001
DATE: 2004-08-31
Page: 6
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Typical CharacteristicsTa=25
S()rel-Relative Spectral Sensitivity Eemin-Threshold Irradiance(mW/)
REV: B / 0
Ee-Field Strength of Disturbance(KV/m)
-Wavelength(nm)
MAX.Envelope Duty Cycle
Burst Length (number of cycles/burst)
drel-Relative transmission Distance
DRAWING NO.: DS-27-01-0001
DATE: 2004-08-31
Page: 7
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Operation Notes(Standard Condition)
IR CODE Grundig Code Nec Code Rc5 Code Rc6 Code Rcmm Code Rcs-80 Code R-2000 Code Rca Code Sharp Code Sony 12bit Code Sony 15bit Code Zenith Code High Data Rate Code Disturbance Suppression Note: @: Best For Application @ @ @ @ @ @ @ @ @ @ @ IR Receiver PL-IRM0101-3
Best Application Suitable Not Recommended
REV: B / 0
@ @ @
Overview Of The Disturbance Suppression Behavior
Disturbance Lamp From Most Used Fluorescent Lamps (With Switched Supply) From Most Used Fluorescent Lamps (With Direct Line Supply) From Most Used Fluorescent Lamps (With Strong Ballast) IR Receiver PL-IRM0101-3 Best Suppression
Best Suppression
Possibility Of Disturbance Pulses
DRAWING NO.: DS-27-01-0001
DATE: 2004-08-31
Page: 8
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Static-Electricity Resistant Packaging Cautions
Store and use where there is no force causing transformation or change in quality. Store and use where there is no corrosive gas or sea (salt) breeze. Store and use where there is no extreme humidity. Solder the lead-pin within the condition of ratings. After soldering do not add extra force. Do not wash this device. Wipe the stains of diode side with a soft cloth. You can use the solvent, ethyl alcohol or methyl alcohol or propylene only. 6. To prevent static electricity damage to the Pre-AMP make sure that the human body, the soldering iron is connected to ground before using. 7. Put decoupling device between Vcc and GND for reduce the noise from power supply line. 8. The performance of remote-control system depends on environments condition and ability of peripheral parts. Customer should evaluate the performance as total system in those conditions after system up with components such as commander and this receiver module. 9. This device is not design to endure radioactive rays and heavily charged particles. 10. In case where any trouble or questions arise, all parties agree to make full discussion covering the said problem. 1. 2. 3. 4. 5.
REV: B / 0
DRAWING NO.: DS-27-01-0001
DATE: 2004-08-31
Page: 9
INFRARED REMOTE CONTROL RECEIVER MODULE PL-IRM0101-3
Reliability Test Item And Condition
Test Items Test Conditions Failure Judgment Criteria Samples (n) Defectives(c) N=22 C=0 N=22 C=0 N=22 C=0 N=22 C=0 N=22 C=0
REV: B / 0
High Temperature +85 240hrs Storage Low Temperature -25 240hrs Storage Temperature Cycle -55--------+105 (10min) (10min) 20cycles
Performance test requirement and criteria given in page 6 should be satisfied.
High Temperature 85 85%RH 240hrs High Humidity Soldering Heat 2555 10s
Others:
The appearance and specifications of the product may be modified for improvement without notice.
DRAWING NO.: DS-27-01-0001
DATE: 2004-08-31
Page: 10


▲Up To Search▲   

 
Price & Availability of PL-IRM0101-3

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X