ADP51B62A01 PANASONIC | Alldatasheet
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2013.04 industrial.panasonic.com/ac/e/ Panasonic Corporation 2013© Circuit Components Catalog ASCTB244E 201303-T
ORDERING INFORMATION
Built-in amplifier and compensating circuit PS-A PRESSURE SENSOR
FEATURES
- Contains built-in amplification and temperature compensation circuit. Circuit design and adjustment of characteristics are not required by users. 2. High-level precision and high reliability realized.
- O verall accuracy is ±1.25% FS (Standard type)
- O verall accuracy is ±4% FS (Economy type)
- O verall accuracy is ±2.5% FS (Low pressure type) 3. Compact pressure sensor unit that saves space. Same size and as previous PS pressure sensor. (Standard/Economy type, S and M Packages) TYPICAL APPLICATIONS (Please evaluate under actual conditions before using.)
- Industrial use: pressure switches and pneumatic devices, etc.
- Medical use: blood pressure monitors, compressed air pressure measurement, air beds, etc.
- Other pneumatically operated pressure devices 1. Water level detection for household appliances Washing machines and dishwashers. 2. Medical applications Respiratory pressure measuring instrument, etc. S Package M Package L Package P Package New RoHS compliant Low pressure type <Terminal profile> 1: DIP terminal ADP5 1 <Rated pressure> B6: (Low pressure type) ±100 kPa –100 kPa 25 kPa 50 kPa 100 kPa 200 kPa 500 kPa 1,000 kPa 40 kPa 6 kPa <Package/Pressure inlet hole> 0: S Package length: 3 mm .118 inch, diameter: 3 mm .118 inch 1: M Package length: 5 mm .197 inch, diameter: 3 mm .118 inch 2: L Package (Only low pressure type) length: 13.5 mm .531 inch, diameter: 5.45 mm .215 inch 3: P Package (Only low pressure type) length: 15.6 mm .614 inch, diameter: 5.45 mm .215 inch <Base type> Nil: With glass base (Standard type/Low pressure type) Without glass base (Economy type) Note: Some part numbers may not be available depending on the combination. Please refer to the Table of PRODUCT TYPES on the next page.
Panasonic Corporation 2013© Panasonic Corporation Circuit Components Buisiness Division industrial.panasonic.com/ac/e/ PS-A (ADP5) –2– ASCTB244E 201303-T PRODUCT TYPES RATING 1. Standard type Notes: 1. Please consult us for pressure media other than air. 2. Indicates output when temperature is 25°C 77°F. 3. Indicates output when drive voltage is 5 V. Although output fluctuates due to fluctuations in the drive voltage, this is not included. 4. Overall accuracy indicates the accuracy of the offset voltage and rated output voltage at a temperature compensation range of 0 to 50°C 32 to 122°F. 2. Economy type Notes: 1. Please consult us for pressure media other than air. 2. Indicates output when temperature is 25°C 77°F. 3. Indicates output when drive voltage is 3 V. Although output fluctuates due to fluctuations in the drive voltage, this is not included. 4. Indicates from output value at 25°C 77°F and the change of output at 5 and 45°C 41 to 113°F. Item Standard type (with glass base) Remarks Type of pressure Gauge pressure Pressure medium Air Note* 1 Rated pressure Unit: kPa ±100 –100 25 50 100 200 500 1,000 Max. applied pressure Twice the rated pressure 1.5 times the rated pressure Drive voltage 5±0.25V DC Temperature compensation range 0 to 50 °C 32 to 122°F Offset voltage 2.5 ±0.05V 0.5 ±0.05V Note* 2, 3 Rated output voltage 4.5±0.05V (when +100kPa) 4.5±0.05V Note* 2, 3 Overall accuracy ±1.25%FS Note*3 Note*4 Current consumption Max. 10mA Note* 2, 3 Output impedance 15 Ω (Typical) Note* 2 Source current Max. 0.2mA Note* 2, 3 Sink current Max. 2mA Note* 2, 3 Item Economy type (without glass base) Remarks Type of pressure Gauge pressure Pressure medium Air Note* 1 Rated pressure Unit: kPa 40 Max. applied pressure Twice the rated pressure Drive voltage 3 ±0.15V DC Temperature compensation range 5 to 45 °C 41 to 113°F Offset voltage 0.3 ±0.09V Note* 2, 3 Span voltage 2.4 ±0.03V Note* 2, 3 Offset voltage temperature characteristics ±4.0%FS Note* 3, 4 Sensitivity temperature characteristics 1.3%FS Note* 3, 4 Current consumption Max. 3mA Note* 2 Output impedance 20 Ω (Typical) Note* 2, 3 Source current Max. 0.15mA Note* 2, 3 Sink current Max. 1.5mA Note* 2, 3 Standard packing: Carton: 100 pcs.; Case: 1,000 pcs. Pressure Package (Pressure inlet hole length) Part No. Standard type Standard/Economy type Low pressure type S Package (3mm .118inch) M Package (5mm .197inch) M Package (5mm .197inch) L Package (13.5mm .531inch) P Package (15.6mm .614inch) Terminal DIP terminal DIP terminal DIP terminal DIP terminal DIP terminal Standard type (with glass base) ±100kPa ADP5100 ADP5101 — — — –100kPa ADP5110 ADP5111 — — — 25kPa ADP5120 ADP5121 — — — 50kPa ADP5130 ADP5131 — — — 100kPa ADP5140 ADP5141 — — — 200kPa ADP5150 ADP5151 — — — 500kPa ADP5160 ADP5161 — — — 1,000kPa ADP5170 ADP5171 — — — Economy type (without glass base) 40kPa — ADP51A11 — — — Low pressure type 6kPa — — ADP51B61 ADP51B62 ADP51B63
Panasonic Corporation 2013© Panasonic Corporation Circuit Components Buisiness Division industrial.panasonic.com/ac/e/ PS-A (ADP5) –3– ASCTB244E 201303-T 3. Low pressure type Notes: 1. Please consult us for pressure media other than air. 2. Indicates output when drive voltage is 5 V. Although output fluctuates due to fluctuations in the drive voltage, this is not included. 3. Overall accuracy indicates the accuracy of the offset voltage and span voltage at temperatures between 0 to 70°C 32 to 158°F (FS=4V) 4. The initial offset voltage error is not included in the overall accuracy. * Items where no temperature is listed are specifications at 25°C 77°F. REFERENCE DATA 1. Standard type Item Low pressure type Remarks Type of pressure Gauge pressure Pressure medium Air Note* 1 Rated pressure Unit: kPa 6 Max. applied pressure Twice the rated pressure Drive voltage 5 ±0.25V DC Temperature compensation range 0 to 70 °C 32 to 158°F Offset voltage 0.5V (Typical) Note* Span voltage 4.0V (Typical) Note* 2 Overall accuracy ±2.5%FS Note* 2, 3, 4 Current consumption Max. 10mA Output impedance 15 Ω (Typical) Source current Max. 0.2mA Sink current Max. 2.0mA 1.-(1) Output voltage ADP5170 Drive voltage: 5V DC Temperature: 25°C 77°F Applied pressure: 0 to +1,000kPa 1.-(2) Overall accuracy (Offset voltage) ADP5170 Drive voltage: 5V DC Temperature: 0 to 50°C 32 to 122°F Applied pressure: 0kPa 1.-(3) Overall accuracy (Rated output voltage) ADP5170 Drive voltage: 5V DC Temperature: 0 to 50°C 32 to 122°F Applied pressure: +1,000kPa Pressure, kPa Output voltage, V 500 1000 Temperature, °C °F Accuracy, %FS -1.25 -1.00 -0.75 -0.50 -0.25 0.00 0.25 0.50 0.75 1.00 1.25 25 50 32 47 122 -1.25 -1.00 -0.75 -0.50 -0.25 0.00 0.25 0.50 0.75 1.00 1.25Accuracy, %FS Temperature, °C °F 02 5 5 0 32 47 122 2.-(1) Output voltage ADP5100 Drive voltage: 5V DC Temperature: 25°C 77°F Applied pressure: –100 to +100kPa 2.-(2) Overall accuracy (Offset voltage) ADP5100 Drive voltage: 5V DC Temperature: 0 to 50°C 32 to 122°F Applied pressure: 0kPa 2.-(3) Overall accuracy (Rated output voltage) ADP5100 Drive voltage: 5V DC Temperature: 0 to 50°C 32 to 122°F Applied pressure: +100kPa Pressure, kPa -100 0 100 Output voltage, V -1.25 -1.00 -0.75 -0.50 -0.25 0.00 0.25 0.50 0.75 1.00 1.25Accuracy, %FS Temperature, °C °F 02 5 5 0 32 47 122 -1.25 -1.00 -0.75 -0.50 -0.25 0.00 0.25 0.50 0.75 1.00 1.25Accuracy, %FS Temperature, °C °F 02 5 5 0 32 47 122
Panasonic Corporation 2013© Panasonic Corporation Circuit Components Buisiness Division industrial.panasonic.com/ac/e/ PS-A (ADP5) –4– ASCTB244E 201303-T 2. Low pressure type 1. Output voltage ADP51B61 Drive voltage: 5V Temperature: 25°C 77°F Applied pressure: 0 to 6kPa Applied pressure, kPa Output voltage, V 0.0 0.0 1.0 2.0 3.0 4.0 5.0 3.0 6.0 2. THB (high temperature high humidity bias test) ADP51B61 Within 85°C 185°F and 85% RH 5 V applied between No. 2 (Vdd) and No. 3 (GND) Applied pressure: 0kPa intial 100h 500h 1.00 0.80 0.60 0.40 0.20
0.00 Offset voltage, V
4.5 4.3 4.1 3.9 3.7 3.5 Span voltage, V 3. Ambient temperature characteristics Ambient temperature: 25°C 77°F → 0°C 32°F → 10°C 50°F → 60°C 140°F → 70°C 158°F 1.00 0.80 0.60 0.40 0.20 Temperature, °C °F 25 10 70 77 50 32 158 140 4.50 4.30 4.10 3.90 3.70
3.50 Span voltage, V
Temperature, °C °F 25 10 70 77 50 32 158 140 4. Shock test ADP51B61 Shock applied: 981 m/s2, 3 times in x, y and z directions Applied pressure: 0kPa intial after test 1.00 0.80 0.60 0.40 0.20 4.50 4.30 4.10 3.90 3.70
- Vibration test ADP51B61 Vibration applied: 10 to 55 Hz, amplitude: 1.5mm .059inch, x, y and z directions, 2 hrs each Applied pressure: 0kPa intial after test 1.00 0.80 0.60 0.40 0.20
4.50 4.30 4.10 3.90 3.70
- Temperature/humidity cycle test ADP51B61 Exposed to 10 cycles in the temperature and humidity conditions given below. Applied pressure: 0kPa 1 cycle (24h) 149°F 14°F 77°F 65°C −10°C 25°C 25°C 77°F 0% RH95% RH Temp. Time /H18554/H18554/H18554 149°F65°C intial 10cyc 1.00 0.80 0.60 0.40 0.20
4.50 4.30 4.10 3.90 3.70
Panasonic Corporation 2013© Panasonic Corporation Circuit Components Buisiness Division industrial.panasonic.com/ac/e/ PS-A (ADP5) –5– ASCTB244E 201303-T 3. Evaluation test DIMENSIONS (mm inch) Classification Tested item Tested condition Result Environmental characteristics Storage at high temperature Temperature: Left in a 85 °C 185°F constant temperature bath; Time: 100 hrs. Passed Storage at low temperature Temperature: Left in a –20 °C –4°F constant temperature bath; Time: 100 hrs. Passed Humidity resistance Temperature/humidity: Left at 40 °C 104°F, 90% RH; Time: 100 hrs. Passed Temperature cycle Temperature: –20 °C to 85°C –4°F to 185°F; 1 cycle: 30 min.; Times of cycle: 100 Passed Endurance characteristics High temperature/high humidity operation Temperature/humidity: 40°C 104°F, 90% RH; Operation times: 106, rated voltage applied Passed Mechanical characteristics Vibration resistance Double amplitude: 1.5 mm .059 inch; Vibration: 10 to 55 Hz; Applied vibration direction: X, Y , Z 3 directions; Times: 2 hrs each Passed Dropping resistance Dropping height: 75 cm 29.528 inch; Times: 2 times Passed Terminal strength Pulling strength: 9.8 N {1 kgf}, 10 sec.; Bending strength: 4.9 N {0.5 kgf}, left and right 90 ° 1 time Passed Soldering resistance Soldered in DIP soldering bath Temperature: 230 °C 446°F; Time: 5 sec. Passed Temperature (DIP) Temperature: 260 °C 500°F; Time: 10 sec. Passed The CAD data of the products with a CAD Data mark can be downloaded from: http://industrial.panasonic.com/ac/e/ 1. Standard type S Package (Pressure inlet hole length: 3mm .118inch) ADP51∗0 Atmospheric pressure inlet hole 0.5 .020 3.0 dia. .118 dia. 2.5 .098 2.5 .098 NUGND NU JAPAN Vcc NU Vout NU NU Vcc NU GND Vout Pressure inlet hole 2.2 dia. .087 dia. 7.2 .283 7.0 .276 4-R0.7 4-R.028 R0.2 R.008 1.8 .0713.0 .1186.5 .256 9.5 .374 0.25 .010 7.2 .283 7.0 .276 Recommended PC board pattern Terminal connection diagram Terminal No. Name
1 Vcc (Power supply [+])
2 NU (Not usable)
3V out (Output)
4 NU (Not usable)
5 NU (Not usable)
6 GND (Ground)
6-0.9 dia. 6-.035 dia. 7.5 .2952.5 .098 2.5 .098 Vcc (5V DC) Vout C GND 1 2 3 6 5 4 General tolerance: ±0.3 ±.012 CAD Data 2. Standard/Economy type M Package (Pressure inlet hole length: 5mm .197inch) ADP51∗1/ADP51A11 GND NUNU JAPAN Vcc NU Vout NU NU Vcc NU GND Vout 7.2 .283 7.0 .276 4-R0.7 4-R.028 Pressure inlet hole 2.2 dia. .087 dia. R0.2 R.008 3.0 dia. .118 dia. 5.0 .1978.5 .335 0.5 .020 1.8 .071 2.5 .098 2.5 .098 7.2 .283 7.0 .276 Atmospheric pressure inlet hole 9.5 .374 0.25 .010 Recommended PC board pattern Terminal connection diagram Terminal No. Name 3V out (Output) 6-0.9 dia. 6-.035 dia. 7.5 .2952.5 .098 2.5 .098 Vcc (5V DC) Vout C GND 1 2 3 6 5 4 CAD Data
Panasonic Corporation 2013© Panasonic Corporation Circuit Components Buisiness Division industrial.panasonic.com/ac/e/ PS-A (ADP5) –6– ASCTB244E 201303-T 3. Low pressure type M Package (Pressure inlet hole length: 5mm .197inch) ADP51B61 Atmospheric pressure inlet hole VoutGndVccNU NUNUNUNU Pressure inlet hole P/N,Lot 1B61 70124 JAPAN 14.0 .551 10.7 .421 2.7 .106 10.4 .409 10.4 .409 2.54 .100 P2.54×3=7.62 P.100×3=.300 3.0 dia. .118 dia. R0.5 R.020 5.0 .197 0.25 .010 0.76 .030 Recommended PC board pattern Terminal connection diagram Terminal No. Name
1 NU (Not usable)
2 Vcc (Power supply [+])
3 GND (Ground)
4V out (Output)
6 NU (Not usable)
7 NU (Not usable)
8 NU (Not usable)
P2.54×3=7.62 P.100×3=.300 2.54 .100 8-1.2 dia. 8-.047 dia. 13.97 .550 1.0 µF 0.01 µF General tolerance: ±0.3 ±.012 CAD Data 4. Low pressure type L Package (Pressure inlet hole length: 13.5mm .531inch) ADP51B62 Atmospheric pressure inlet hole Pressure inlet hole P/N,Lot 70124 JAPAN VoutGndVccNU NUNUNUNU 1B61 14.0 .551 2.7 .106 19.3 .760 2.54 .100 P2.54×3=7.62 P.100×3=.300 0.25 .010 10.4 .409 10.4 .409 R0.5 R.020 C0.3 R.012 0.76 .030 5.45 dia. .215 dia.(13.6) (.535) Recommended PC board pattern Terminal connection diagram Terminal No. Name 4V out (Output) P2.54×3=7.62 P.100×3=.300 8-1.2 dia. 8-.047 dia. 2.54 .100 13.97 .550 1.0 µF 0.01 µF CAD Data
Panasonic Corporation 2013© Panasonic Corporation Circuit Components Buisiness Division industrial.panasonic.com/ac/e/ PS-A (ADP5) –7– ASCTB244E 201303-T 5. Low pressure type P Package (Pressure inlet hole length: 15.6mm .614inch) ADP51B63 JAPAN 120215 1B63 P/N, Lot Atmospheric pressure inlet hole Pressure inlet hole P2.54×3=7.62 P.100×3=.300 2.54 .100 10.4 .40910.4 .409 14.0 .551 0.25 .010 3.3 .130 20.2 .795 5.45 dia. .215 dia. 0.76 .030 3 dia. .118 dia. 5.6 .220 15.6 .614 8 567 NU NU NUNU 1 432 NU VoutGndVcc Recommended PC board pattern Terminal connection diagram Terminal No. Name 4V out (Output) P2.54×3=7.62 P.100×3=.300 8-1.2 dia. 8-.047 dia. 2.54 .100 13.97 .550 1.0 µF 0.01 µF 8 567 1 432 CAD Data General tolerance: ±0.3 ±.012
Panasonic Corporation 2013© Panasonic Corporation Circuit Components Buisiness Division industrial.panasonic.com/ac/e/ PS-A (ADP5) –8– ASCTB244E 201303-T NOTES 1. Mounting Use lands on the printed-circuit boards to which the sensor can be securely fixed. 2. Soldering Due to its small size, the thermal capacity of the pressure sensor DIP type is low. Therefore, take steps to minimize the effects of external heat. Damage and changes to characteristics may occur due to heat deformation. Use a non-corrosive resin type of flux. Since the pressure sensor DIP type is exposed to the atmosphere, do not allow flux to enter inside. 1) Manual soldering
- Set the soldering tip from 260 to 300°C 500 to 572°F (30W), and solder for no more than 5 seconds.
- Please note that output may change if the pressure is applied on the terminals when the soldering.
- Thoroughly clean the soldering iron. 2) DIP soldering (DIP terminal type)
- Please keep the DIP solder bath temperature no higher than 260°C 500°F. When soldering, heat should be applied no longer than five seconds.
- When mounting onto a PCB of low thermal capacity, please avoid DIP soldering as this may cause heat deformity. 3) Solder reworking
- Finish reworking in one operation.
- For reworking of the solder bridge, use a soldering iron with a flat tip. Please do not add more flux when reworking.
- Please use a soldering iron that is below the temperature given in the specifications in order to maintain the correct temperature at the tip of the soldering iron. 4) Too much force on the terminals will cause deformation and loss in effectiveness of the solder. Therefore, please avoid dropping and careless handling of the product. 5) Please control warping of the PCB within 0.05 mm of the sensor width. 6) When cut folding the PCB after mounting the sensor, take measures to prevent stress to the soldered parts. 7) The sensor terminals are designed to be exposed, so contact of the terminals with metal shards and the like will cause output errors. Therefore, please be careful and prevent things such as metal shards and hands from contacting the terminals. 8) To prevent degradation of the PCB insulation after soldering, please be careful not to get chemicals on the sensor when coating. 9) Please consult us regarding the use of lead-free solder. 3. Connections 1) Please perform connections correctly in accordance with the terminal connection diagram. In particular, be careful not to reverse wire the power supply as this will cause damage or degrade to the product. 2) Do not connect terminals that are not used. This can cause malfunction of the sensor. 4. Cleaning 1) Since the pressure sensor chip is exposed to the atmosphere, do not allow cleaning fluid to enter inside. 2) Avoid ultrasonic cleaning since this may cause breaks or disconnections in the wiring. 5. Environment 1) Please avoid using or storing the pressure sensor chip in a place exposed to corrosive gases (such as the gases given off by organic solvents, sulfurous acid gas, hydrogen sulfides, etc.) which will adversely affect the performance of the pressure sensor chip. 2) To ensure resistance to power supply superimposed noise, you must provide a capacitor at the power supply input terminal of the sensor in order to stabilize the power supply voltage. We recommend to provide 0.1 µF and 1,000 pF capacitor in parallel. Please confirm the noise resistance with the actual equipment and choose adequate capacitor. 3) Since the internal circuitry may be destroyed if an external surge voltages is supplied, provide an element which will absorb the surges. 4) Malfunctioning may occur if the product is in the vicinity of electrical noise such as that from static electricity, lightning, a broadcasting station, an amateur radio, or a mobile phone. 5) Since this pressure sensor chip does not have a water-proof construction, please do not use the sensor in a location where it may be sprayed with water, etc. 6) Avoid using the pressure sensors chip in an environment where condensation may form. Furthermore, its output may fluctuate if any moisture adhering to it freezes. 7) The pressure sensor chip is constructed in such a way that its output will fluctuate when it is exposed to light. Especially when pressure is to be applied by means of a transparent tube, take steps to prevent the pressure sensor chip from being exposed to light. 8) Avoid using the pressure sensor chip where it will be susceptible to ultrasonic or other high-frequency vibration. 6. Quality check under actual loading conditions To assure reliability, check the sensor under actual loading conditions. Avoid any situation that may adversely affect its performance. 7. Other handling precautions 1) That using the wrong pressure range or mounting method may result in accidents. 2) The only direct pressure medium you can use is dry air. The use of other media, in particular, corrosive gases (organic solvent based gases, sulfurous acid based gases, and hydrogen sulfide based gases, etc.) and media that contains moisture or foreign substances will cause malfunction and damage. Please do not use them. 3) The pressure sensor chip is positioned inside the pressure inlet hole. Never poke wires or other foreign matter through the pressure inlet hole since they may damage the chip or block the inlet hole. Avoid use when the atmospheric pressure inlet is blocked. 4) Use an operating pressure which is within the rated pressure range. Using a pressure beyond this range may cause damage. 5) Since static charge can damage the pressure sensor chip, bear in mind the following handling precautions. (1) When storing the pressure sensor chips, use a conductive material to short the pins or wrap the entire chip in aluminum foil. Plastic containers should not be used to store or transport the chips since they readily become charged. (2) When using the pressure sensor chips, all the charged articles on the bench surface and the work personnel should be grounded so that any ambient static will be safely discharged. 6) Based on the pressure involved, give due consideration to the securing of the pressure sensor DIP type and to the securing and selection of the inlet tube. Consult us if you have any queries. 7) When coating a PC board after mounting the pressure sensor, be sure to prevent the material from entering the pressure inlet hole or atmospheric pressure inlet hole. Use an elastic resin for coating to avoid expansion and contraction due to heat, which apply stress to the sensor. Please carefully examine the usability.
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