CCM.M-K8.2024
CIPM MRA COMPARISON REPORTS
CCM.M-K8.2024
Realization of the kilogram
M. Stock
,
P. Conceição
,
H. Fang
,
F. Bielsa
,
A. Kiss
,
Y.H. Wu
,
S.J. Shen
,
L. Tsao
,
S.J. Chen
,
L. Nielsen
...
,
M. Thomas
,
F. Beaudoux
,
K. Dougdag
,
P. Espel
,
D. Ziane
,
H. Baumann
,
K. Marti
,
D. Zahnd
,
Z. Li
,
J. Wang
,
Y. Bai
,
Y. Wang
,
R. Zhong
,
D. Wu
,
D. Haddad
,
J. Graybill
,
Z. Kubarych
,
N. Kuramoto
,
K. Kano
,
Y. Ota
,
K. Fujita
,
H. Inaba
,
S. Okubo
,
L. Zhang
,
S. Davidson
,
R. Green
,
N. Murnaghan
,
H. Parks
,
D.A. Castro
,
K. Kato
,
M. Borys
,
D. Knopf
,
D. Eppers
,
S. Quabis
,
E. Kuhn
,
A. Peter
,
M. Müller
,
F. Scholz
,
A. Schofeld
,
M. Hämpke
,
H. Ahmedov
,
R. Orhan
,
H. Mutaf
Published on 20/02/2026 - © 2026 M. Stock
et al
Citation M. Stock
et al 2026 CIPM MRA Comparison reports
Authors
M. Stock
https://orcid.org/0000-0002-9282-7421
Bureau International des Poids et Mesures (BIPM)
BIPM - International Organization
Abstract
This report describes the third CCM key comparison of realizations of
the kilogram definition based on the fixed numerical value of the Planck
constant, which came into force on 20 May 2019. As for the previous
comparisons, the objectives were to determine the level of agreement
between realizations of the kilogram using Kibble and joule balances and
the X-ray crystal density (XRCD) method and to provide input for the
calculation of the third "consensus value" of the kilogram.
The consensus value serves as the basis for an internationally
coordinated dissemination of the kilogram and is updated after each new
key comparison. Its use will continue until the CCM decides that
satisfactory agreement between realization experiments has been
achieved. Another objective was the determination of the reproducibility
of the realization experiments by comparing the new results with those
of the previous key comparisons of kilogram realizations, CCM.M-K8.2019
and CCM.M-K8.2021.
The comparison was organized by the BIPM and had ten participants. The BIPM, LNE, METAS, NIST, NRC and UME operated Kibble balances, the NIM used a joule balance and the CMS/ITRI, NMIJ and the PTB participated using 28 Si spheres, the masses of which were determined with the XRCD method. These realization methods were used to calibrate 1 kg mass standards under vacuum or in air. The standards were sent (in containers filled with air) to the BIPM where they were compared with each other (in vacuum or in air, as at the participants' laboratories) and with BIPM Pt-Ir working standards. The latter were traceable to the International Prototype of the Kilogram (IPK), the mass of which served as the definition of the kilogram until 20 May 2019.
The results of the weighings at the BIPM together with the measurement results communicated by the participants allowed comparison of the values attributed to 1 kg mass standards using the realization experiments of the participants. The level of agreement between mass determinations with the realization experiments and the BIPM as-maintained mass unit, traceable to the Planck constant through the mass of the International Prototype of the Kilogram, could also be deduced.
The comparison was organized by the BIPM and had ten participants. The BIPM, LNE, METAS, NIST, NRC and UME operated Kibble balances, the NIM used a joule balance and the CMS/ITRI, NMIJ and the PTB participated using 28 Si spheres, the masses of which were determined with the XRCD method. These realization methods were used to calibrate 1 kg mass standards under vacuum or in air. The standards were sent (in containers filled with air) to the BIPM where they were compared with each other (in vacuum or in air, as at the participants' laboratories) and with BIPM Pt-Ir working standards. The latter were traceable to the International Prototype of the Kilogram (IPK), the mass of which served as the definition of the kilogram until 20 May 2019.
The results of the weighings at the BIPM together with the measurement results communicated by the participants allowed comparison of the values attributed to 1 kg mass standards using the realization experiments of the participants. The level of agreement between mass determinations with the realization experiments and the BIPM as-maintained mass unit, traceable to the Planck constant through the mass of the International Prototype of the Kilogram, could also be deduced.