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The NVIDIA Reflex SDK allows game developers to implement a low latency mode that aligns game engine work to complete just-in-time for rendering, eliminating the GPU render queue and reducing CPU back pressure in GPU-bound scenarios. As a developer, System Latency (click-to-display) can be one of the hardest metrics to optimize for. In addition to latency reduction functions, the SDK also features measurement markers to calculate both Game and Render Latency - great for debugging and visualizing in-game performance counters.


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Low Latency Mode

Nemo

Aligns game engine work to complete just-in-time for rendering, eliminating the GPU render queue and reducing CPU back pressure in GPU-bound scenarios.

Latency Metrics

Get real time latency metrics broken down by game pipeline stage: Input, Simulation, Render Submission, Graphics Driver, Render Queue, and GPU Render. Great for debugging and for real time in game overlays.

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Flash Indicator

Using the marker system, configure the flash indicator marker to draw a small white rectangle on the screen each click. This is helpful when automating the use of a tool like the NVIDIA Reflex Latency Analyzer to measure latency.


Developer Integration



NVIDIA Reflex will provide a more responsive experience for players while helping developers gain insight on engine performance in regards to latency, while optimizing and debugging in real-time.

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Customer Testimonials


“Valorant was designed from the beginning to be a precise, competitive FPS, and that means doing everything we can to ensure crisp, responsive gameplay. With GeForce RTX 30 Series and NVIDIA Reflex technology, we're able to serve players around the world with the lowest render latency possible.”

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Dave Heironymus, Director of Technology

“NVIDIA Reflex technology arms developers with new features to minimize latency in their games. We’re seeing excellent responsiveness and player control with Fortnite running on the GeForce RTX 30 Series.”

Nick Penwarden, VP of Engineering

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Routine Hemogram Reference Intervals

These reference intervals were established using our Advia 2120 Hematology Analyzer. The asterixed values are obtained from the Advia. The remaining values are determined by bench methods, including the differential cell count (cells are counted in a peripheral blood smear), number of nucleated red blood cells/100 WBC, percentage and absolute reticulocyte counts (cats only), and total protein (measured by refractometer).

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Nemo Analyzer 7.6 Crack
TestUnitsCanineFelineEquineBovineAlpacaCaprine
Red Blood Cells
HCT* % 41 - 58 31 - 48 34 - 46 25 - 33 26 - 45 28 - 44
RBC* x106/µL 5.7 - 8.5 6.9 - 10.1 6.6 - 9.7 5.0 - 7.2 10.6 - 18.4 13.6 - 23.7
Hgb* g/dl 14.1 - 20.1 10.9 - 15.7 11.8 - 15.9 8.7 - 12.4 11 - 19.3 8.9 - 13.8
MCV* fL 64 - 76 40 - 52 43 - 55 38 - 51 22 - 28 16 - 22
MCH* pg 21 - 26 13 - 17 15 - 20 14 - 19 9 - 12 5 - 7
MCHC* g/dL 33-36 32 - 35 34 - 37 34 - 38 42 - 49 32 - 34
RDW* % 10.6 - 14.3 13.2 - 17.5 16.3 - 19.3 15.0 - 19.4 ND 17.8 - 24.4
NRBC /100 WBC 0-1 0-1 0 0 0 - 3 0
Retic* % 0.2 - 1.5 0.1 - 0.7 ND ND ND ND
Retic* x 109/L 11 - 92 9-61 ND ND ND ND
White Blood Cells
WBC* x103/µL 5.7 - 14.2 5.1 - 16.2 5.2 - 10.1 5.9 - 14.0 7.1 - 18.6 7.2 - 17.7
Neuts x103/µL 2.7 - 9.4 2.3 - 11.6 2.7 - 6.6 1.8 - 7.2 3.5 - 11.7 1.9 - 9.5
Bands x103/µL 0 - 0.1 0 - 0.1 0 0 0 0 - 0.1
Lymphs x103/µL 0.9 - 4.7 0.9 - 6 1.2 - 4.9 1.7 - 7.5 1.1 - 5.5 2.6 - 11.7
Monos x103/µL 0.1 - 1.3 0 - 0.7 0 - 0.6 0 - 0.9 0 - 1.0 0 - 0.9
Eos x103/µL 0.1 - 2.1 0.1 - 1.8 0 - 1.2 0 - 1.3 0.1 - 4.3 0 - 0.8
Basos x103/µL 0 - 0.1 0 - 0.2 0 - 0.2 0 - 0.3 0 - 0.4 0 - 0.3
Platelets
PLT* x103/µL 186 - 545 195 - 624 94 - 232 252 - 724 220 - 817 247 - 912
MPV* fL 8.4 - 14.1 9.1 - 24.3 5.3 - 8.4 5.7 - 8.0 4.4 - 6.9 5.3 - 9.4
TP-Ref. g/dL 5.9 - 7.8 5.9 - 7.5 5.2 - 7.8 5.9 - 8.1 6.0 - 7.5 ND

Hematology Bench (Manual) Percent Differential Reference Intervals

The PCV is directly measured from a microhematocrit centrifuge tube. The percent differential is determined by counting a minimum of 100 cells in stained peripheral blood smears.

TestUnitsCanineFelineEquineBovineAlpacaCaprine
PCV % 42 - 54 31 - 48 31 - 48 24 - 37 22 - 45 24 - 37
Neuts % 42 - 84 27 - 82 36 - 79 27 - 72 35 - 79 18 - 57
Bands % 0 - 1 0 - 1 0 0 0 0 - 1
Lymphs % 9 - 47 9 - 56 18 - 55 22- 64 10 - 47 35 - 80
Monos % 2 - 12 0 - 6 0 - 7 0 - 10 0 - 8 0 - 6
Eos % 1 - 18 1 - 15 0 - 16 0 - 12 1 - 29 0 - 6
Basos % 0 - 1 0 - 2 0 - 3 0 - 3 0 - 3 0 - 3

Advia 2120 Automated Absolute Differential Reference Intervals

These reference intervals were established in our laboratory using the Advia. These intervals are applicable only for automated differentials, in which the differential count is provided by the Advia.

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TestUnitsCanineFelineEquineBovineAlpaca
Neuts x103/µL 3.0 - 9.6 2.3 - 10.7 2.6 - 6.5 1.9 - 6.8 3.5 - 12.1
Lymphs x103/µL 1.1 - 4.5 1.2 - 6.8 1.4 - 4.8 2.2 - 8.7 1.5 - 4.7
Monos x103/µL 0.1 - 1.0 0.1 - 0.4 0.2 - 0.6 0.2 - 0.9 0 - 0.9
Eos x103/µL 0.1 - 2.1 0.1 - 2.2 0.1 - 1.0 0.1 - 1.4 0.4 - 4.0
Basos x103/µL 0 -0.1 0-0.1 0 - 0.2 0 - 0.2 0 - 0.1
LUC x103/µL 0 - 0.1 0 - 0.1 0 - 0.1 0 - 0.3 0 - 0.3

Advia Automated Percent Differential Reference Intervals

These reference intervals were established in our laboratory using the Advia. These intervals are applicable only for automated differentials, in which the differential count is provided by the Advia.

TestUnitsCanineFelineEquineBovineAlpacas
Neuts % 43 - 80 25 - 77 40 - 75 25 - 62 35 - 75
Lymphs % 14 - 45 14 - 61 19 - 55 29 - 66 14 - 42
Monos % 2 - 9 1 - 5 3 - 7 2 - 9 0 - 5
Eos % 1 - 18 2 - 23 1 - 11 1 - 12 4 - 30
Basos % 0.1 - 1.1 0 - 0.8 0.1 -3 0.3 - 1.4 0.1 - 1.2
LUC % 0.1 - 1.4 0 - 0.5 0.2 - 1 0 - 4.7 0.4 - 2.0

Coagulation Reference Intervals

TestUnitsCanineFelineEquineBovineCaprine
Fibrinogen
(heat precipitation)
mg/dL NA NA 0 - 200 100 - 600 0 - 200

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