LabJack LJTick-InAmp – Instumentation Amplifier for U3 T7 U6 UE9 T4 Series

Availability:

5 in stock


The LJTick‑InAmp 2 (LJTIA 2) is a signal‑conditioning module designed to amplify low‑level differential signals such as those from bridge circuits (strain gauges) and thermocouples. Each of its two instrumentation amplifiers converts a differential input into a single‑ended output, making it ideal for precision measurements with LabJack devices.

Status Barang: Ready

Kondisi: Baru

Minimal Order: 1 pcs

Bagikan:

Signal-conditioning module provides two instrumentation amplifiers ideal for low-level signals such as bridge circuits (e.g. strain gauges) and thermocouples. Each amplifier converts a differential input to single-ended. The LJTIA has switches to choose from 5 gain settings (x1, x11, x51, x201, or custom) and two output voltage offsets. The 4-pin design plugs into the standard AIN/AIN/GND/VS screw terminal block found on LabJacks such as the U3, U6, UE9, T7, and T4. The LJTIA datasheet has more information.

Compatible Products:
◆ U3 Series
◆ T7 Series
◆ U6 Series
◆ UE9 Series
◆ T4 Series

EACH UNIT INCLUDES WITH:
◆ LJTick-InAmp only

SKU: LJ-TickInAmp Category: Brand:
Weight 0.2 kg

The LJTick-InAmp (aka LJTIA2) is a signal-conditioning module that provides two instrumentation amplifiers ideal for low-level signals such as bridge circuits (strain gauges) and thermocouples. The LJTIA 2 has 5 gain settings per channel and two selectable output voltage offsets (Voffset). The 4-pin design plugs into the standard AIN/AIN/GND/VS screw-terminal block found on the LabJacks such as the U3, U6, UE9, T4, & T7.

The pictures below show the LJTIA 2 by itself on the left and plugged into the U3 on the right.

LJTIA-Figure1.png
Figure 1: LJTick-InAmp

LJTIA-Figure2-wU3.png
Figure 2: LJTick-InAmp with U3

The block of 4 screw-terminals at the left edge of the LJTIA 2 (Figure 1 above) provides a positive and negative input for each differential channel. Towards the LabJack side of the LJTIA 2 is a pair of screw-terminals that provide a ground connection (GND) and a +2.50 volt reference (VREF). The reference is capable of sourcing enough current (see the Specifications section below) to function as the excitation voltage for most common bridge circuits.

Subsections

The following subsections have additional information relative to the LJTick-InAmp.

Dip Switches

In between the blocks of screw-terminals is a 10-position DIP switch used to specify gain and offset.

Table 1. DIP Switch Descriptions

Switch # Name Description
1 BxR32 Custom gain determined by R32 Applies to channel B only. All off equals a gain of 1.
2 Bx11 Gain of 11
3 Bx52 Gain of 51
4 Bx201 Gain of 201
5 0.4V Output offset of +0.4 volts. Voffset applies to both channels. Switch # 5 or 6 should always be on, but not both.
6 1.25V Output offset of +1.25 volts.
7 AxR17 Custom gain determined by R17 Applies to channel A only. All off equals a gain of 1.
8 Ax11 Gain of 11
9 Ax51 Gain of 51
10 Ax201 Gain of 201
Each channel has a switch (numbers 1 & 7) that has been left without factory-installed gain resistors:  R17 for channel A and R32 for channel B.  Resistors can be installed by the end-user to provide custom gains according to G=1+(100k/R). For example, a resistance of 100 ohms would provide the maximum allowable gain of 1001.  Also, multiple switches can be closed at the same time to get a few other gains (x61, x211, x251, and x261), as the gain settings resistors (10k, 2k, and 500) wind up in parallel. The packages for resistors R17 & R32 are 0805, while all other resistors and capacitors are 0603. The tolerance of the factory installed resistors is 0.1% & 25 ppm/degC, so consider the RG20P series from digikey.com (100ohm = RG20P100BCT).

Extending from the back of the LJTick-InAmp 2 are four pins. The first two pins provide +5 volt power and ground from the LabJack. The other two pins are the instrumentation amplifier outputs and connect to analog inputs on the LabJack. The four pins plug directly into the 5.0 mm spaced screw-terminals on the LabJack U3, UE9, or other future devices as shown in Figure 4.

Figure 4: LJTick-InAmp 2 lined up to UE9

Each channel on the LJTIA 2 has an AD623 instrumentation amplifier (in-amp) from Analog Devices. The allowable signal range (Vin) is determined by a combination of Gain, Voffset, Vcm, and Vout. See the Signal Range Tables in Appendix A.

Voffset: This is an offset voltage added to the in-amp output. If DIP switch #5 is on, the offset is +0.4 volts, and if DIP switch #6 is on, the offset is +1.25 volts. The same offset applies to both channels of the LJTick-InAmp 2. One offset must always be selected (0 volts is not an option), but both offsets should never be enabled at the same time. The +0.4 volt offset is generally used with signals that are mostly unipolar, while the +1.25 volt offset is generally used with bipolar signals.

Vcm: This is the common mode voltage of the differential inputs. For an in-amp, that is defined as the average of the common mode voltage of each input. For instance, if the negative input is grounded, and single-ended signal is connected to the positive input, Vcm is equal to Vin/2. Another common situation is when using a wheatstone bridge where VREF=2.5 is providing the excitation. In this case, each input is at about 1.25 volts compared to ground, and thus Vcm is about 1.25 volts.

Vin: This is the voltage difference between IN+ and IN-. In the following Signal Range Tables, the “Low” column is the minimum Vin where Vout is 10 mV or higher, the “High 2.5V” column is the maximum Vin where Vout is 2.5 volts or less, and the “High 4.5V” column is the maximum Vin where Vout is 4.5 volts or less.

Vout: Vout = (Vin * Gain) + Voffset.  This is the single-ended (referred to ground) voltage output from the in-amp. Because of the power supply to the in-amp, the full output swing is about 0.01 volts to 4.5 volts. The “Low” and “High” columns in the Signal Range Tables give the output at the respective Vin.

Specifications

Parameter Conditions Min Typical Max Units
General          
Supply Voltage   3.6 5 5.5 volts
Supply Current No Loads   1.5   mA
Operating Temperature    -40   85 °C
Signal Specs          
Gain Accuracy (1)     0.35 1.2 %
Offset Accuracy (1) G = 1    0.5 1.2  %
  G = 11    0.5 1.2  %
  G = 51    2.5 4.0  %
  G = 201    10 15.0  %
Input Signal Limits (2)   -0.15   VS – 1.5 volts
Output Signal Limits (2) Load ≥ 10 kΩ 0.01   VS – 0.5 volts
Input Bias Current (3)     17   nA
 Input Impedance      2  
Each Input vs. GND (4) Normal Operation     -0.3 to +5.3 volts
Each Input vs. GND (4) No Damage     -10 to +15 volts
-3 dB Bandwidth x1   18   kHz
  x11   18   kHz
  x51   18   kHz
  x201   10   kHz
Vref          
Output Voltage   2.495 2.50 2.505 volts
Initial Accuracy     0.2   %
Current Output (5) For rated V accuracy 0   25 mA

(1) The max accuracy specs are the tested device limits and are expected to be met whether device is warmed up or not.  Typical specs are what is normally seen with a warmed-up device at room temperature. Gain and offset are very stable at a stable temperature, so a user-calibration can achieve accuracy much better than the specs listed here.
(2) The input signal limits are the simple limit of the voltage on each input terminal versus ground.  The output signal limit is the simple typical limit of the voltage that can be produced on the output pins and depends on load so see the AD623 datasheet for more information.  The actual limits in most situations are more complex, as described in Appendix A of this datasheet.
(3) The current in/out of the input terminals is nanoamps from -0.3 to +5.3 volts.  Beyond that range it increases up to 10mA at -10 or +15 volts.
(4) This is the limit of the voltage on any input terminal versus ground.  See Appendix A for actual limits in different situations.
(5) Higher currents will not cause damage, but the reference voltage will start to sag. The reference output can handle a continuous short-circuit to ground and has a short-circuit current of about 45 mA typically.

Dimensions

Based on 0 reviews

0.0 overall
0
0
0
0
0

Be the first to review “LabJack LJTick-InAmp – Instumentation Amplifier for U3 T7 U6 UE9 T4 Series”

There are no reviews yet.

SHOPPING CART

close
Hi, There!

How can I help you?

Chat
wild bandito mempercepat taktik saat ritme permainan melambat turnamen game online akhir pekan diramaikan ratusan peserta wild bandito memikat perhatian pemain lewat tren teranyar kategori aksi petualangan mendominasi dunia game online kompetisi game digital bergengsi siap digelar total hadiah memahami pola rtp yang jarang dibeberkan kunci target mahjong ways kembali populer saat komunitas seluler mencari membedah pola rtp serta multiplier yang menjadi kunci pgsoft menyajikan kejutan spesial di merahputih emerald temple mahjong ways 2 menggabungkan warna bentuk dan dinamika 45430 45431 45432 45438 45439 https://journal.ugm.ac.id/ifnp/article/view/86602/45440 https://journal.ugm.ac.id/ifnp/article/view/86602/45441 https://journal.ugm.ac.id/ifnp/article/view/86602/45442 https://journal.ugm.ac.id/ifnp/article/view/86602/45443 https://journal.ugm.ac.id/ifnp/article/view/86602/45444 rtp live starlight princess pagi ini pola sabar nunggu multiplier yang lebih menggiurkan dari sekadar spin cepat gates of olympus lagi hangat cara menang dimulai dari baca rtp live sebelum zeus lepas multiplier scatter hitam mahjong ways bisa jadi kompas saat tumbling sweet bonanza mulai berapi strategi scatter hitam mahjong ways 2 baca ritme spin sebelum free spin manis meledak trik rahasia sweet bonanza dan starlight princess untuk baca kapan scatter hitam mahjong ways siap meledak slot thailand Millard's Crossing Dorfcafé Eglofs War138 SS Fallschirmjager Coffee Beans Arabica Era77 Era77 Avinença Monpazier War138 rajacabe88 War138 rajacabe88 ratuperi79 What is corn meal in Mexico War138 Gerakan99 Era77 Dog69 war138 war138 rajacabe88 war138 war138 era77 era77 era77 era77 Sbobet88 rajacabe88 Sbobet88 Sbobet88 Sbobet88 duta76 perihoki duta76 duta76 duta76 duta76 duta76 duta76 duta76 duta76 duta76 duta76 duta76 duta76 stc76 perihoki perihoki rajacabe88 cakar76 cakar76 kincir88 perihoki duta76 duta76 duta76 duta76 duta76 duta76 rajacabe88 duta76 duta76 duta76 duta76 duta76 duta76 duta76 duta76 duta76 duta76 rajacabe88 duta76 duta76 duta76 duta76 duta76 rajacabe88 abc1131 ABC1131 x SLOT THAILAND https://ampawsbetx.store/ AWSBET STC76 https://www.thewayofthespirit.com/contact/ https://abc1131-daftar.mssg.me/ https://pttun-palembang.go.id/ slot thailand hebitop Seputar Medan Liputan Sumut Liputan Aceh Liputan Padang Liputan Semarang Kabar Solo Liputan Bandung Lumajang News Liputan Surabaya Seputar Malang Berita Kendal Harian Nusantara Seputar Bali Harian Jateng Kabar Jatim Warta Sumut Seputar Jakarta Liputan Riau Bisnis Medan Kabar Sumatera slot gacor qris analisa taktik probabilitas pola mahjong wild deluxe menguji strategi teknik sicbo fluktuasi rtp live gates of olympus metodologi teknik observasi analisa strategi baccarat taktik pola mahjong ways 2 pgsoft rtp live starlight princess ksplorasi strategi pemetaan teknik analisa taktik blackjack pola mahjong wins 3 pragmatic rtp live sweet bonanza 49 50 51 optimasi manajemen putaran teknik pola mahjong wild deluxe strategi rtp live dadu sicbo gates of olympus formula strategi teknik pola mahjong ways 2 pgsoft analisa baccarat starlight princess sinergi strategi teknik presisi pola mahjong wins 3 pragmatic blackjack rtp sweet bonanza dekonstruksi pola multiplier mahjong ways 2 pgsoft teknik analisa roulette rtp wild bounty hunter matriks kuantitatif eksplorasi pola mahjong wins 3 pragmatic taktik analisa statistik sv388 strategi rtp live 11 12 13 pendekatan analitis strategi mahjong wild deluxe kalkulasi taktis dadu sicbo strategi rotasi teknik pola mahjong ways 2 pgsoft sweet bonanza baccarat analisa pola rtp live mahjong wins 3 starlight princess taktik meja blackjack sinergi taktis pola rtp live pgsoft mahjong ways 2 wild west gold roulette metodologi analisa pola scatter mahjong wins 3 pragmatic taktik sv388 fenomena integrasi taktik poker mahjong ways rtp harian observasi digital mahjong wins 3 ritme respon positif timing position wild bandito multiplier layer situasional formulasi taktik multidimensi gates of olympus pola adaptif mahjong wild deluxe teknik analisis dadu sicbo dekonstruksi algoritma rtp live strategi pola mahjong ways 2 pg soft kalkulasi baccarat starlight princess evaluasi pola volatilitas taktik eksekusi mahjong wins 3 pragmatic rtp live sweet bonanza blackjack panduan taktik analitik manajemen risiko pola paylines mahjong ways 2 pg soft sistem roulette wild west gold sinkronisasi rtp live pemetaan pola scatter mahjong wins 3 pragmatic blackjack tren sv388 kendali variansi cerdas sinkronisasi strategi analisa mahjong wild deluxe taktik teknik sicbo pola indikator rtp live gates of olympus analisa taktik algoritma silang meracik strategi baccarat teknik pola mahjong ways 2 pg soft evaluasi rtp live starlight princess metodologi mitigasi risiko kuantitatif taktik strategi blackjack analisa teknik pola mahjong wins 3 pragmatic rtp live sweet bonanza sinergi kalibrasi terstruktur analisa teknik taktik roulette dinamika strategi pola mahjong ways 2 pg soft rtp live wild west gold manajemen mitigasi risiko kuantitatif strategi teknik blackjack analisa taktik pola mahjong wins 3 pragmatic berbasis rtp live sv388 45381 45382 45383 45384 45385 45386 45387 45388 45389 45390 14354 14355 14356 14357 14358 14359 14360 14361 14362 14363 black scatter premium mahjong wins tiga observasi scatter mahjongways berdasarkan data aktual pengaruh visual digital mahjong ways terungkap pola spin mahjongways dua probabilitas tumbling rotasi strategi baccarat menuju mahjong wins baccarat sv388 ubah ritme wild bandito data history sweet bonanza runtuhan simbol scatter kalkulasi ai interaksi starlight princess durasi putaran statistik perubahan strategi mahjong ways komunitas timing presisi spin mahjong wins hindari false signal kajian akumulasi spin sweet bonanza objektif kolaborasi ai analisis rtp starlight princess presisi modal kecil spin mahjong wins multiplier probabilitas tumbling mahjong wins pragmatic play meningkat tren timing spin gates olympus perspektif ai algoritma ai prediksi scatter mahjong modern historis evolusi sistem mahjong pragmatic eksplorasi mobile perkembangan mahjong ways variasi bonus tempo digital sinyal visual scatter mahjong ekosistem adaptif modern wild bandito pg soft ai algoritma numerik 14371 14372 14373 14374 14375 14376 14377 14378 14379 14380 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545
morfintoto