SA-5600

Fully Automated Blood Rheology Analyzer

1. Designed for Small-level Lab.
2. Rotational Cone plate method.
3. Non-Newtonian standard marker win China National Certification.
4. Original Non-Newtonian Controls, Consumables and application make whole solution.


Product Detail

Analyzer Introduction

SA-5600 automated blood rheology analyzer adopts cone/plate type measurement mode. The product imposes a controlled stress on the fluid to be measured through a low inertial torque motor. The drive shaft is maintained in the central position by a low resistance magnetic levitation bearing, which transfers the imposed stress to the fluid to be measured and whose measuring head is cone-plate type. The whole mensuration is automatically controlled by the computer. The shear rate can be set randomly at the range of (1~200) s-1, and can trace two-dimensional curve for shear rate and viscosity in real time. The measuring principle is drawn on the Newton Viscidity Theorem.

Fully Automated Blood Rheology Analyzer

Technical Specification

Spec \ Model SUCCEEDER
SA5000 SA5600 SA6000 SA6600 SA6900 SA7000 SA9000 SA9800
Principle Rotation method Rotation method Rotation method Whole blood: Rotation method;
Plasma: Rotation method, capillary method
Whole blood: Rotation method;
Plasma: Rotation method, capillary method
Whole blood: Rotation method;
Plasma: Rotation method, capillary method
Whole blood: Rotation method;
Plasma: Rotation method, capillary method
Whole blood: Rotation method;
Plasma: Rotation method, capillary method
Method Cone plate method Cone plate method Cone plate method Cone plate method,
capillary method
Cone plate method,
capillary method
Cone plate method,
capillary method
Cone plate method,
capillary method
Cone plate method,
capillary method
Signal collection High-precision raster subdivision technology High-precision raster subdivision technology High-precision raster subdivision technology Cone plate method:High-precision raster subdivision technologyCapillary method: Differential capture technology with fluid autotracking function Cone plate method:High-precision raster subdivision technologyCapillary method: Differential capture technology with fluid autotracking function Cone plate method:High-precision raster subdivision technologyCapillary method: Differential capture technology with fluid autotracking function Cone plate method:High-precision raster subdivision technologyCapillary method: Differential capture technology with fluid autotracking function Cone plate method:High-precision raster subdivision technologySample tube mixing by mechanical arm shaking.Capillary method: Differential capture technology with fluid autotracking function
Working Mode / / / Dual probes, dual plates and dual methodologies work simultaneously Dual probes, dual plates and dual methodologies work simultaneously Dual probes, dual plates and dual methodologies work simultaneously Dual probes, dual plates and dual methodologies work simultaneously Dual probes, dual cone-plates and dual methodologies work simultaneously
Function / / / / / / / 2 probes with cap-piercing for closed tube.
Sample barcode reader with external barcode reader.
Newly designed softwre and hardware for easier use.
Accuracy ≤±1% ≤±1% ≤±1% ≤±1% ≤±1% ≤±1% ≤±1% Accuracy of Newtonian fluid viscosity <±1%;
Accuracy of Non-Newtonian fluid viscosity <±2%.
CV CV≤1% CV≤1% CV≤1% CV≤1% CV≤1% CV≤1% CV≤1% Accuracy of Newtonian fluid viscosity=< ±1%;
Accuracy of Non-Newtonian fluid viscosity =<±2%.
Test time ≤30 sec/T ≤30 sec/T ≤30 sec/T Whole blood≤30 sec/T,
plasma≤0.5sec/T
Whole blood≤30 sec/T,
plasma≤0.5sec/T
Whole blood≤30 sec/T,
plasma≤0.5sec/T
Whole blood≤30 sec/T,
plasma≤0.5sec/T
Whole blood≤30 sec/T,
plasma≤0.5sec/T
Shear rate (1~200)s-1 (1~200)s-1 (1~200)s-1 (1~200)s-1 (1~200)s-1 (1~200)s-1 (1~200)s-1 (1~200)s-1
Viscosity (0~60)mPa.s (0~60)mPa.s (0~60)mPa.s (0~60)mPa.s (0~60)mPa.s (0~60)mPa.s (0~60)mPa.s (0~60)mPa.s
Shear stress (0-12000)mPa (0-12000)mPa (0-12000)mPa (0-12000)mPa (0-12000)mPa (0-12000)mPa (0-12000)mPa (0-12000)mPa
Sampling volume 200-800ul adjustable 200-800ul adjustable ≤800ul Whole blood: 200-800ul adjustable, plasma≤200ul Whole blood: 200-800ul adjustable, plasma≤200ul Whole blood: 200-800ul adjustable, plasma≤200ul Whole blood: 200-800ul adjustable, plasma≤200ul Whole blood: 200-800ul adjustable, plasma≤200ul
Mechanism Titanium alloy Titanium alloy, jewel bearing Titanium alloy, jewel bearing Titanium alloy, jewel bearing Titanium alloy, jewel bearing Titanium alloy, jewel bearing Titanium alloy, jewel bearing Titanium alloy, jewel bearing
Sample position 0 3x10 60 sample position with single rack 60 sample position with single rack 90 sample position with single rack 60+60 sample position with 2 rack
totally 120 sample positions
90+90 sample position with 2 racks;
totally 180 sample positions
2*60 sample position;
totally 120 sample positions
Test channel 1 1 1 2 2 2 2 3  (2 with cone-plate, 1 with capillary)
Liquid system Dual squeezing peristaltic pump Dual squeezing peristaltic pump,Probe with liquid sensor and automatic-plasma-separation function Dual squeezing peristaltic pump,Probe with liquid sensor and automatic-plasma-separation function Dual squeezing peristaltic pump,Probe with liquid sensor and automatic-plasma-separation function Dual squeezing peristaltic pump,Probe with liquid sensor and automatic-plasma-separation function Dual squeezing peristaltic pump,Probe with liquid sensor and automatic-plasma-separation function Dual squeezing peristaltic pump,Probe with liquid sensor and automatic-plasma-separation function Dual squeezing peristaltic pump,Probe with liquid sensor and automatic-plasma-separation function
Interface RS-232/485/USB RS-232/485/USB RS-232/485/USB RS-232/485/USB RS-232/485/USB RS-232/485/USB RS-232/485/USB RJ45, O/S mode, LIS
Temperature 37℃±0.1℃ 37℃±0.1℃ 37℃±0.1℃ 37℃±0.1℃ 37℃±0.1℃ 37℃±0.1℃ 37℃±0.1℃ 37℃±0.5℃
Control L-J control chart with save, query, print function;
Original Non-Newtonian fluid control with SFDA certification.
Calibration Newtonian fluid calibrated by national primary viscosity liquid;
Non-Newtonian fluid win national standard marker certification by AQSIQ of China.
Report Open

Fully Automated Blood Rheology Analyzer

Routine startup and shutdown procedures

1. Check before starting:
1.1 Sampling system:
Whether the sample needle is dirty or bent; if it is dirty, please rinse the sample needle several times after turning on the machine; if the sample needle is bent, ask the manufacturer's after-sales service personnel to repair it.
1.2 Cleaning fluid:
Check the cleaning fluid, if the cleaning fluid is insufficient, please add it in time.
1.3 Waste liquid bucket
Pour out the waste liquid and clean the waste liquid bucket. This work can also be carried out after the end of the daily work.
1.4 Printer
Put enough printing paper in the correct position and method.

2. Turn on:
2.1 Turn on the main power switch of the tester (located on the lower left side of the instrument), and the instrument is in a state of preparation for testing.
2.2 Turn on the computer power, enter the Windows operating desktop, double-click the icon, and enter the operating software of the SA-6600/6900 automatic blood rheology tester.
2.3 Turn on the printer power, the printer will perform self-check, the self-check is normal, and it enters the printing state.

3. Shut down:
3.1 In the main test interface, click the "×" button in the upper right corner or click the "Exit" menu item in the menu bar [Report] to exit the test program.
3.2 Turn off the computer and printer power.
3.3 Press the "power" switch on the key panel of the tester to turn off the main power switch of the tester.

4. Maintenance after shutdown:
4.1 Wipe the sample needle:
Wipe the surface of the needle with gauze dipped in sterile ethanol.
4.2 Clean the waste liquid bucket
Pour out the waste liquid in the waste liquid bucket and clean the waste liquid bucket.

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